US3093248A - Self powered boom assembly - Google Patents

Self powered boom assembly Download PDF

Info

Publication number
US3093248A
US3093248A US833826A US83382659A US3093248A US 3093248 A US3093248 A US 3093248A US 833826 A US833826 A US 833826A US 83382659 A US83382659 A US 83382659A US 3093248 A US3093248 A US 3093248A
Authority
US
United States
Prior art keywords
head
boom
mast
assembly
hoisting
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
US833826A
Inventor
Winter Charles Melville
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
US TRUCK CRANES Inc A PA CORP
American LaFrance LLC
SIDE O MATIC UNLOADER CORP
Original Assignee
SIDE O MATIC UNLOADER CORP
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by SIDE O MATIC UNLOADER CORP filed Critical SIDE O MATIC UNLOADER CORP
Priority to US833826A priority Critical patent/US3093248A/en
Application granted granted Critical
Publication of US3093248A publication Critical patent/US3093248A/en
Anticipated expiration legal-status Critical
Assigned to U.S. TRUCK CRANES, INC. A PA CORP. reassignment U.S. TRUCK CRANES, INC. A PA CORP. ASSIGNMENT OF ASSIGNORS INTEREST. Assignors: HIAB CRANES AND LOADERS, INC. A DE CORP.
Assigned to AMERICAN LAFRANCE, LLC reassignment AMERICAN LAFRANCE, LLC PATENT ASSIGNMENT AGREEMENT Assignors: Ladder Towers, Inc.
Assigned to PATRIARCH PARTNERS AGENCY SERVICES, LLC reassignment PATRIARCH PARTNERS AGENCY SERVICES, LLC PATENT COLLATERAL SECURITY AGREEMENT Assignors: AMERICAN LAFRANCE, LLC
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66CCRANES; LOAD-ENGAGING ELEMENTS OR DEVICES FOR CRANES, CAPSTANS, WINCHES, OR TACKLES
    • B66C13/00Other constructional features or details
    • B66C13/18Control systems or devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66CCRANES; LOAD-ENGAGING ELEMENTS OR DEVICES FOR CRANES, CAPSTANS, WINCHES, OR TACKLES
    • B66C2700/00Cranes
    • B66C2700/06Cranes in which the lifting movement is done with a hydraulically controlled plunger
    • B66C2700/062Cranes in which the lifting movement is done with a hydraulically controlled plunger mounted on motor vehicles
    • B66C2700/065Cranes in which the lifting movement is done with a hydraulically controlled plunger mounted on motor vehicles with a slewable jib

Definitions

  • This invention relates to a ihoisting assembly which is mounted on a platform such as a bed of a truck or the like. Specifically, the assembly has a power driven traversing type boom capable of a full circle movement.
  • a principal objective of this invention is to provide a hoisting assembly of the type described with the capability of rotating, projecting and lifting through power supplied by the assembly itself.
  • Another important objective of this invention is to provide a hoisting assembly which can easily be removed from a supporting structure and is self-contained to the extent that it may be packaged and transported as compact units ready for assembly.
  • a still further objective of the invention is to provide a hoisting assembly with a self-contained power unit which may readily be controlled at a point remote from the assembly.
  • Another objective of particular advantage in this invention is to provide a relatively uncomplex hoisting structure which has a boom supported on a mast, the boom having a full circle swing about the mast and slidable along its length over the mast.
  • the boom encloses hydraulic means to raise and lower a lifting cable at one end thereof.
  • the invention includes the structure and arrangement of power means whereby each of these operations is performed by power contained on the hoisting structure itself.
  • FIG. 1 is a side elevation of an exemplary vehicle to which a boom assembly and supporting means has been connected to the bed thereof, said boom assembly and supporting means embodying the principles of the present invention.
  • FIG. 2 is a slightly enlarged top plan view or" the boom assembly per se, otherwise illustrated in side elevation in FIG. 1.
  • FIG. 3 is a rear end view, on a still larger scale, of the upper portion of the boom assembly and supporting means illustrated in FIGS. 1 and 2.
  • FIG. 4 is a fragmentary bottom plan view of the boom per se and illustrating the hydraulic unit and cable operable to move the boom longitudinally relative to its supporting head.
  • FIG. 5 is a fragmentary vertical sectional view through the head and upper end of the mast which supports the head rotatably to illustrate certain details of the bearing structure and boom sluing mechanism.
  • FIG. 6 is a fragmentary side elevation of the supporting head for the longitudinally movable boom.
  • FIG. 7 is an enlarged vertical sectional view taken on the line 7-7 of FIG. 6 especially to show details of anchoring certain of the hydraulic cylinders.
  • FIG. 8 is a hydraulic circuit diagram of an exemplary power system used to energize and operate the various reciprocable and rotatable hydraulic motors of the boom assembly and by which the same is actuated to achieve its various movements and also raise and lower the boisting cable.
  • the assembly 10 is comprised of a mast 12 which is fixedly secured to the bed of a truck or any suitable platform, and the boom assembly 13 which is supported on the mast.
  • the lower end of mast 12 is secured to the bed and/or frame structure of the truck 11, preferably in suitably fixed manner, and a plurality of angularly arranged braces 15 are fixedly connected at the opposite ends thereof respectively to the upper portion of the mast 12 and the frame or bed of the truck 11.
  • the boom assembly is comprised of a head member 14 which consists of heavy steel parallel side plates 16 and '18, which have a bottom piece 19 therebetween.
  • a socket 20 to receive the upper end of mast 12 rotatably is vertically formed within the bottom piece 19 and also preferably is positioned between and secured to the opposite side plates .16 and 18 of the head 14 so as to :be movable therewith.
  • This socket arrangement rotatably supports the head member on the mast and the cylindrical sleeve which comprises socket 20 preferably is interiorly arranged to receive a circular row of vertical needle bearing members 21 as best shown in FIG. 5.
  • a sprocket gear 22 Surrounding and fixed to the mast adjacent the lower end of the socket 20 and also at the lower end of the head 14 is a sprocket gear 22, the same being secured to the mast 12 by any suitable means such as a weldment 22 shown in FIG. 5.
  • These anti-friction members each consist of a pair of transversely spaced rollers respectively engaging the upper and lower surfaces of the boom and permit transverse movement of the boom with respect to the upper end of mast 12.
  • the lower rollers 30' respectively supported by the interior of plates 16 and 18, extend horizontally outward, toward the hoisting end of the boom, beyond the upper rollers 26 and, correspondingly, the lower rollers 32 extend forwardly of the upper rollers 28, thereby alfording maximum support of the boom against downward movement at the forward end for minimum weight and size of the side plates 16 and 18.
  • Additional anti-frictional rollers 33 may be mounted on the side plates 16 and 18 to engage the outer surfaces of the sides of the boom and thereby prevent contact with and drag along the inner surfaces of the plates and the boom.
  • a hydraulically operated cylinder 34 which opcrates the hoisting cable 44.
  • the cylinder 34 operates the piston rod 35 therein which, in turn, is interconnected to the movable pulley block of a complete arrangement of pulleys constituting fixed and movable pulley blocks which are mounted within the boom to effect a raising and lowering of hoisting cable 44 in response to the longitudinal movements of the piston rod 35.
  • These fixed and movable pulley blocks are clearly shown in FIG. 2 especially, together with suitable guide pulleys adjacent the left-hand, or forward end of the boom, as viewed in FIG. 2, over which the hoisting cable 44 is trained as best shown in FIG.
  • the operating piston rod 47 supports a movable pulley block 49 around which cable 49 passes, said cable also passing around sheave 49, the pivot of which is fixed relative to boom 24, while forwardly of the cylinder 36 and movable block 49 is another sheave 49, the pivot of which is fixed relative to the boom 24.
  • Opposite ends of the cable 49 are fixed respectively to boom 24 at 49 and 49 as clearly shown in FIG. 4.
  • the movable block 49 is a double sheave and by tracing the arrangement of the cable 49, 49 it will be seen that movement of the piston rod 47 in opposite directions respectively will move the boom 24 in corresponding directions relative to head 14.
  • Rotation of the head 14 and the boom 24 carried thereby relative to the upper end of mast 12 is effected by a swing motor 48 which preferably is hydraulic and is fixed by any suitable bracket means relative to head 14, which bracket for example may be secured to one of the side plates such as plate 18 of said head.
  • a sprocket gear 52 Extending from the lower end of swing motor 48 is a sprocket gear 52 of substantially smaller diameter than sprocket 22.
  • Extending around gear 52 and sprocket 22 is a link sprocket chain 54. Inasmuch as the sprocket 22 is stationary with respect to the fixed mast 12, it will be seen that by rotating sprocket gear 52, the chain will cause the head member 14 to rotate about the axis of vertical mast 12. This, in turn, will allow the entire boom assembly to rotate a full 360, selectively in either direction, as desired.
  • the boom assembly is self-powered.
  • the power unit 40 in accordance with the invention preferably is a selfcontained gasoline motor which activates a hydraulic pump 56.
  • the motor and pump are mounted upon a suitable bracket or plate 57, as well illustrated in FIGS. 2 and 3.
  • the pump 56 supplies hydraulic power to the hoist cylinder 34 and the boom cylinder 36 through the tubular connections 58 and 60 respectively as best shown in the fluid circuit diagram illustrated in FIG. 8, said diagram also showing a line 64 which supplies fluid power to swing motor 48.
  • Conventional return lines shown diagrammatically in FIG. 8 carry the hydraulic fluid to an oil reservoir 66. From oil tank 66 the fluid is returned to pump 56 by appropriate conduits, also shown in the fluid power diagram of FIG. 8.
  • the cylinders 34 and 36 remain stationary with respect to the pump 56.
  • a suitable solenoid valve control unit diagrammatically shown at 70 is associated with the power unit and the swing motor 48 and operating cylinders 34 and 36 such that the individual operations are under the control of an operator.
  • a manual switch box 74 may be electrically connected to the valve unit by a flexible cable so that the assembly may be controlled at a point remote from the hoisting assembly.
  • three 4-way valves 71, 72 and 73 are connected in the hydraulic fluid line between the pump 56 and the hydraulic cylinders 36, 34, and hydraulic swing motor 48, the solenoids of said valves being operated by exemplary solenoid switch box 74 shown in FIG. 1.
  • the self-contained boom mechanism is secured to the mast 12 only through the socket 20 and chain 54.
  • the hoist assembly there is only required a separation of the sprocket chain from around the two sprocket gears 22 and 52.
  • the entire head and boom assembly may be lifted directly from the mast.
  • the mast and its associated bracing members may also be shipped in a second package and mounted directly on a truck bed when a customer receives it.
  • the customer In order to mount the assembly on a truck, the customer only requires a derrick to lift the entire assembly onto the top of a previously secured mast and connect the sprocket chain around the sprocket and drive gear. The entire assembly is then in working condition.
  • the boom assembly may readily be transferred from one mast to another.
  • the mast and its supporting structure are relatively inexpensive pieces of equipment. This results in important financial savings to the owners of the equipment.
  • a hoisting assembly comprising in combination, a mast connectable fixedly at the normally lower end thereof to a substantially horizontal supporting surface so as to extend substantially vertically upward therefrom in use for support thereby, a head having a socket receiving the upper portion of said mast and supported solely by said upper portion of said mast for rotation about the axis thereof, a boom extending substantially horizontally through the upper portion of said head and longitudinally movable relative to said head in opposite directions, flexible hoisting means operably supported by said boom and extending from one end thereof to raise and lower load means, self-energizing power generating means supported entirely by said head and not extending appreciably above the upper surface of said boom, and power transmitting means between said power generating means and said head and operable to rotate said head relative to the upper end of said mast and about the axis thereof.
  • a hoisting assembly comprising in combination a mast arranged to be secured stationarily and substantially vertically to the normally horizontal bed of a truck or the like, a head having a socket receiving the upper end portion of said mast and rotatably supported solely thereby for movement around the upper end of said mast, a boom very substantially longer than said head and received substantially horizontally by said head and supported thereby for longitudinal movement in opposite directions transverse to the axis of said mast, the ends of said boom projecting in opposite directions from the opposite ends of said head, said boom being positioned for movement above the upper end of said mast, a self-energizing power generating unit supported substantially entirely by said head, hoisting means supported for raising and lowering movement at one end of said boom, actuating means operable by said power generating unit to move said boom longitudinally relative to said head and transversely to the axis of said mast, means supported by said head and openable by said power generating unit on said head to rotate said head and said boom as a unit about the axis of said mast, and
  • the hoisting assembly set forth in claim 2 further oharacterized by said power generating unit comprising a plurality of components and certain of said components being mounted upon said head at one side of the vertical axis thereof and other components being mounted upon said head at the opposite side of said vertical axis, thereby distributing the weight of said power generating unit upon said head to provide a counterbalancing efiect.
  • the hoisting assembly set forth in claim 2 further characterized by said power generating unit comprising an internal combustion engine, a hydraulic pump, means to connect said engine to said pump to drive the same, and hydraulic control valves, said head also having supporting means at opposite transverse sides thereof, some of said items comprising said power generating unit being supported by one of said brackets and the rest of said items being supported by said other bracket, and means connecting said hydnaulic control valves between said pump and the actuating means of said hoisting assembly.
  • said power generating unit comprising an internal combustion engine, a hydraulic pump, means to connect said engine to said pump to drive the same, and hydraulic control valves, said head also having supporting means at opposite transverse sides thereof, some of said items comprising said power generating unit being supported by one of said brackets and the rest of said items being supported by said other bracket, and means connecting said hydnaulic control valves between said pump and the actuating means of said hoisting assembly.

Description

June 11, 1963 c. M. WINTER 3,093,248
SELF POWERED BOOM ASSEMBLY Filed Aug. 14, 1959 2 Sheets-Sheet 1 fa 8 INVENTOR.
j (anus M. Mun? Y B TTOR/Vi Y June 11, 1963 Filed Aug. 14, 1959 2 Sheets-Sheet 2 INVEN TOR. (f/413158 M. Wnvmz ATTORNEY United rates Patent Q 3,093,248 SELF POWERED BOOM ASSEMBLY Charles Melville Winter, York, Pa., assignor to The Side- O-Matic Unloader Corporation, a corporation of Pennsylvania Filed Aug. 14, 1959, Ser. No. 833,826 4 Claims. (Cl. 212-55) This invention relates to a ihoisting assembly which is mounted on a platform such as a bed of a truck or the like. Specifically, the assembly has a power driven traversing type boom capable of a full circle movement.
A principal objective of this invention is to provide a hoisting assembly of the type described with the capability of rotating, projecting and lifting through power supplied by the assembly itself.
Another important objective of this invention is to provide a hoisting assembly which can easily be removed from a supporting structure and is self-contained to the extent that it may be packaged and transported as compact units ready for assembly.
A still further objective of the invention is to provide a hoisting assembly with a self-contained power unit which may readily be controlled at a point remote from the assembly.
Another objective of particular advantage in this invention is to provide a relatively uncomplex hoisting structure which has a boom supported on a mast, the boom having a full circle swing about the mast and slidable along its length over the mast. The boom encloses hydraulic means to raise and lower a lifting cable at one end thereof. The invention includes the structure and arrangement of power means whereby each of these operations is performed by power contained on the hoisting structure itself.
Further objectives and advantages of this invention will be apparent from the following description and claims wherein the construction, arrangement and cooperation of the several parts of the assembly are set forth.
In the drawings:
FIG. 1 is a side elevation of an exemplary vehicle to which a boom assembly and supporting means has been connected to the bed thereof, said boom assembly and supporting means embodying the principles of the present invention.
FIG. 2 is a slightly enlarged top plan view or" the boom assembly per se, otherwise illustrated in side elevation in FIG. 1.
FIG. 3 is a rear end view, on a still larger scale, of the upper portion of the boom assembly and supporting means illustrated in FIGS. 1 and 2.
FIG. 4 is a fragmentary bottom plan view of the boom per se and illustrating the hydraulic unit and cable operable to move the boom longitudinally relative to its supporting head.
FIG. 5 is a fragmentary vertical sectional view through the head and upper end of the mast which supports the head rotatably to illustrate certain details of the bearing structure and boom sluing mechanism.
FIG. 6 is a fragmentary side elevation of the supporting head for the longitudinally movable boom.
FIG. 7 is an enlarged vertical sectional view taken on the line 7-7 of FIG. 6 especially to show details of anchoring certain of the hydraulic cylinders.
FIG. 8 is a hydraulic circuit diagram of an exemplary power system used to energize and operate the various reciprocable and rotatable hydraulic motors of the boom assembly and by which the same is actuated to achieve its various movements and also raise and lower the boisting cable.
Referring now to the drawings where like numerals indicate like parts, the numeral 10' indicates generally the hoisting assembly of this invention. The assembly 10 is comprised of a mast 12 which is fixedly secured to the bed of a truck or any suitable platform, and the boom assembly 13 which is supported on the mast. The lower end of mast 12 is secured to the bed and/or frame structure of the truck 11, preferably in suitably fixed manner, and a plurality of angularly arranged braces 15 are fixedly connected at the opposite ends thereof respectively to the upper portion of the mast 12 and the frame or bed of the truck 11. The boom assembly is comprised of a head member 14 which consists of heavy steel parallel side plates 16 and '18, which have a bottom piece 19 therebetween. A socket 20 to receive the upper end of mast 12 rotatably is vertically formed within the bottom piece 19 and also preferably is positioned between and secured to the opposite side plates .16 and 18 of the head 14 so as to :be movable therewith. This socket arrangement rotatably supports the head member on the mast and the cylindrical sleeve which comprises socket 20 preferably is interiorly arranged to receive a circular row of vertical needle bearing members 21 as best shown in FIG. 5. Surrounding and fixed to the mast adjacent the lower end of the socket 20 and also at the lower end of the head 14 is a sprocket gear 22, the same being secured to the mast 12 by any suitable means such as a weldment 22 shown in FIG. 5.
A hollow boom 24, having a rectangular cross-section, is received between side plates 16 and 18 of head 14 and is supported therebetween by anti-friction members 26, 28, 30 and 32. These anti-friction members each consist of a pair of transversely spaced rollers respectively engaging the upper and lower surfaces of the boom and permit transverse movement of the boom with respect to the upper end of mast 12. The lower rollers 30', respectively supported by the interior of plates 16 and 18, extend horizontally outward, toward the hoisting end of the boom, beyond the upper rollers 26 and, correspondingly, the lower rollers 32 extend forwardly of the upper rollers 28, thereby alfording maximum support of the boom against downward movement at the forward end for minimum weight and size of the side plates 16 and 18. Additional anti-frictional rollers 33 may be mounted on the side plates 16 and 18 to engage the outer surfaces of the sides of the boom and thereby prevent contact with and drag along the inner surfaces of the plates and the boom.
Enclosed within the boom 24 and fixed suitably at one end against longitudinal movement relative to the boom is a hydraulically operated cylinder 34 which opcrates the hoisting cable 44. The cylinder 34 operates the piston rod 35 therein which, in turn, is interconnected to the movable pulley block of a complete arrangement of pulleys constituting fixed and movable pulley blocks which are mounted within the boom to effect a raising and lowering of hoisting cable 44 in response to the longitudinal movements of the piston rod 35. These fixed and movable pulley blocks are clearly shown in FIG. 2 especially, together with suitable guide pulleys adjacent the left-hand, or forward end of the boom, as viewed in FIG. 2, over which the hoisting cable 44 is trained as best shown in FIG. 1, whereby a loop of said hoisting cable passes over a sheave 45, see FIG. 1, in the upper end of a material engaging member, such as a lift fork 45, by which appropriate products such as cement blocks readily may be lifted from and onto the bed of the truck 11. Movement of the movable block on the outer end of piston rod 35 toward and from the other block which has a stationary axis relative to the boom, will cause raising and lowering of the member 45, as desired. In order to effect such movement of the hoisting cable 44 however, one end of the cable is fastened to clamp 42 carried by the outer end of the boom as shown in FIGS. 1 and 2.
Also associated with the boom 24, as shown particularly in FIGS. 1 and 4, is another hydraulic cylinder 36 but this cylinder is connected against long tudinal movement at one end relative to the head 14 as best shown in FIG. 7, by any suitable anchor means such as a transverse plate 36 the opposite ends of which are connected by any suitable means such as rivets to the side plates 16 and 18 of head 14, and an appropriate bracket 36' extends between the anchoring plate 36 and a lug at the end of the cylinder 36 opposite that firom which the piston rod 47 extends as shown in FIG. 4. From FIG. 4, it will be clear that the operating piston rod 47 supports a movable pulley block 49 around which cable 49 passes, said cable also passing around sheave 49, the pivot of which is fixed relative to boom 24, while forwardly of the cylinder 36 and movable block 49 is another sheave 49, the pivot of which is fixed relative to the boom 24. Opposite ends of the cable 49 are fixed respectively to boom 24 at 49 and 49 as clearly shown in FIG. 4. It will be understood that the movable block 49 is a double sheave and by tracing the arrangement of the cable 49, 49 it will be seen that movement of the piston rod 47 in opposite directions respectively will move the boom 24 in corresponding directions relative to head 14.
Rotation of the head 14 and the boom 24 carried thereby relative to the upper end of mast 12 is effected by a swing motor 48 which preferably is hydraulic and is fixed by any suitable bracket means relative to head 14, which bracket for example may be secured to one of the side plates such as plate 18 of said head. Extending from the lower end of swing motor 48 is a sprocket gear 52 of substantially smaller diameter than sprocket 22. Extending around gear 52 and sprocket 22 is a link sprocket chain 54. Inasmuch as the sprocket 22 is stationary with respect to the fixed mast 12, it will be seen that by rotating sprocket gear 52, the chain will cause the head member 14 to rotate about the axis of vertical mast 12. This, in turn, will allow the entire boom assembly to rotate a full 360, selectively in either direction, as desired.
The boom assembly is self-powered. The power unit 40 in accordance with the invention preferably is a selfcontained gasoline motor which activates a hydraulic pump 56. The motor and pump are mounted upon a suitable bracket or plate 57, as well illustrated in FIGS. 2 and 3. The pump 56 supplies hydraulic power to the hoist cylinder 34 and the boom cylinder 36 through the tubular connections 58 and 60 respectively as best shown in the fluid circuit diagram illustrated in FIG. 8, said diagram also showing a line 64 which supplies fluid power to swing motor 48. Conventional return lines shown diagrammatically in FIG. 8 carry the hydraulic fluid to an oil reservoir 66. From oil tank 66 the fluid is returned to pump 56 by appropriate conduits, also shown in the fluid power diagram of FIG. 8. The cylinders 34 and 36 remain stationary with respect to the pump 56.
A suitable solenoid valve control unit diagrammatically shown at 70 is associated with the power unit and the swing motor 48 and operating cylinders 34 and 36 such that the individual operations are under the control of an operator. A manual switch box 74 may be electrically connected to the valve unit by a flexible cable so that the assembly may be controlled at a point remote from the hoisting assembly. Referring again to the power circuit diagram in FIG. 8, it will be seen that three 4- way valves 71, 72 and 73, all of which are solenoidoperated, are connected in the hydraulic fluid line between the pump 56 and the hydraulic cylinders 36, 34, and hydraulic swing motor 48, the solenoids of said valves being operated by exemplary solenoid switch box 74 shown in FIG. 1.
For purposes of counter-balancing the weight of the engine 40 and pump 56 which are carried by L-shaped bracket 57 mounted at one side of head 14, the opposite side of the head is provided with another L-shaped bracket 76 upon which is mounted the relatively heavy assembly of valve units generally designated and comprising the individual solenoid-actuated 4- way valves 71, 72 and 73, as well as the oil reservoir tank 66. Further, it will be understood that, as illustrated in exemplary manner in FIGS. 1 and 2, most of the lines illustrated in the fluid power circuit diagram of FIG. 8 are flexible.
It can be seen from the above description that the self-contained boom mechanism is secured to the mast 12 only through the socket 20 and chain 54. In order to separate the hoist assembly from the mast, there is only required a separation of the sprocket chain from around the two sprocket gears 22 and 52. In other words, after the sprocket chain is separated, by removing a pin from one of its links, the entire head and boom assembly may be lifted directly from the mast. Hence, it is possible to ship the boom assembly as a separate package from the manufacturer.
The mast and its associated bracing members may also be shipped in a second package and mounted directly on a truck bed when a customer receives it. In order to mount the assembly on a truck, the customer only requires a derrick to lift the entire assembly onto the top of a previously secured mast and connect the sprocket chain around the sprocket and drive gear. The entire assembly is then in working condition.
Since there are no complicated drive connections between the unit and the truck (or other supporting structure), the boom assembly may readily be transferred from one mast to another. The mast and its supporting structure are relatively inexpensive pieces of equipment. This results in important financial savings to the owners of the equipment.
In a general manner, while I have in the above description, disclosed what I deem to be practical and etficient embodiments of my invention, it should be well understood that I do not wish to be limited thereto, as there might be changes made in the arrangement, disposition and form of the parts without departing from the principle of the present invention as comprehended within the scope of the accompanying claims.
I claim:
1. A hoisting assembly comprising in combination, a mast connectable fixedly at the normally lower end thereof to a substantially horizontal supporting surface so as to extend substantially vertically upward therefrom in use for support thereby, a head having a socket receiving the upper portion of said mast and supported solely by said upper portion of said mast for rotation about the axis thereof, a boom extending substantially horizontally through the upper portion of said head and longitudinally movable relative to said head in opposite directions, flexible hoisting means operably supported by said boom and extending from one end thereof to raise and lower load means, self-energizing power generating means supported entirely by said head and not extending appreciably above the upper surface of said boom, and power transmitting means between said power generating means and said head and operable to rotate said head relative to the upper end of said mast and about the axis thereof.
2. A hoisting assembly comprising in combination a mast arranged to be secured stationarily and substantially vertically to the normally horizontal bed of a truck or the like, a head having a socket receiving the upper end portion of said mast and rotatably supported solely thereby for movement around the upper end of said mast, a boom very substantially longer than said head and received substantially horizontally by said head and supported thereby for longitudinal movement in opposite directions transverse to the axis of said mast, the ends of said boom projecting in opposite directions from the opposite ends of said head, said boom being positioned for movement above the upper end of said mast, a self-energizing power generating unit supported substantially entirely by said head, hoisting means supported for raising and lowering movement at one end of said boom, actuating means operable by said power generating unit to move said boom longitudinally relative to said head and transversely to the axis of said mast, means supported by said head and openable by said power generating unit on said head to rotate said head and said boom as a unit about the axis of said mast, and a second actuating means operable by said power generating unit to actuate said hoisting means, and control means for distributing the required power selectively from said power generating means to said actuating means.
3. The hoisting assembly set forth in claim 2 further oharacterized by said power generating unit comprising a plurality of components and certain of said components being mounted upon said head at one side of the vertical axis thereof and other components being mounted upon said head at the opposite side of said vertical axis, thereby distributing the weight of said power generating unit upon said head to provide a counterbalancing efiect.
4. The hoisting assembly set forth in claim 2 further characterized by said power generating unit comprising an internal combustion engine, a hydraulic pump, means to connect said engine to said pump to drive the same, and hydraulic control valves, said head also having supporting means at opposite transverse sides thereof, some of said items comprising said power generating unit being supported by one of said brackets and the rest of said items being supported by said other bracket, and means connecting said hydnaulic control valves between said pump and the actuating means of said hoisting assembly.
References Cited in the file of this patent UNITED STATES PATENTS 2,082,017 McClain June 1, 1937 2,272,949 Kidder Feb. 10, 1942 2,786,583 Garrison Mar. 26, 1957 2,787,383 Antos Apr. 2, 1957 2,798,622 Kelley July 9, 1957 2,812,868 Crile Nov. 12, 1957 2,911,111 Grove Nov. 3, 1959 2,993,605 Smith July 25, 1961

Claims (1)

1. A HOISTING ASSEMBLY COMPRISING IN COMBINATION, A MAST CONNECTABLE FIXEDLY AT THE NORMALLY LOWER END THEREOF TO A SUBSTANTIALLY HORIZONTAL SUPPORTING SURFACE SO AS TO EXTEND SUBSTANTIALLY VERTICALLY UPWARD THEREFROM IN USE FOR SUPPORT THEREBY, A HEAD HAVING A SOCKET RECEIVING THE UPPER PORTION OF SAID MAST AND SUPPORTED SOLELY BY SAID UPPER PORTION OF SAID MAST FOR ROTATION ABOUT THE AXIS THEREOF, A BOOM EXTENDING SUBSTANTIALLY HORIZONTALLY THROUGH THE UPPER PORTION OF SAID HEAD AND LONGITUDINALLY MOVABLE RELATIVE TO SAID HEAD IN OPPOSITE DIRECTIONS, FLEXIBLE HOISTING MEANS OPERABLY SUPPORTED BY SAID BOOM AND EXTENDING FROM ONE END THEREOF TO RAISE AND LOWER LOAD MEANS, SELF-ENERGIZING POWER GENERATING MEANS SUPPORTED ENTIRELY BY SAID HEAD AND NOT EXTENDING APPRECIABLY ABOVE THE UPPER SURFACE OF SAID BOOM, AND POWER TRANSMITTING MEANS BETWEEN SAID POWER GENERATING MEANS AND SAID HEAD AND OPERABLE TO ROTATE SAID HEAD RELATIVE TO THE UPPER END OF SAID MAST AND ABOUT THE AXIS THEREOF.
US833826A 1959-08-14 1959-08-14 Self powered boom assembly Expired - Lifetime US3093248A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US833826A US3093248A (en) 1959-08-14 1959-08-14 Self powered boom assembly

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US833826A US3093248A (en) 1959-08-14 1959-08-14 Self powered boom assembly

Publications (1)

Publication Number Publication Date
US3093248A true US3093248A (en) 1963-06-11

Family

ID=25265366

Family Applications (1)

Application Number Title Priority Date Filing Date
US833826A Expired - Lifetime US3093248A (en) 1959-08-14 1959-08-14 Self powered boom assembly

Country Status (1)

Country Link
US (1) US3093248A (en)

Cited By (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3129821A (en) * 1960-06-20 1964-04-21 Side O Matic Unloader Corp Hoist for vehicle
US3207044A (en) * 1963-05-20 1965-09-21 Thomas R Hall Feeder tube cylinder
US3239072A (en) * 1964-09-30 1966-03-08 D & M Equipment Company Hoisting fork
US3259251A (en) * 1963-12-26 1966-07-05 Galion Jeffrey Mfg Co Extensible boom with tandem operating cylinders
US3285431A (en) * 1965-04-30 1966-11-15 Universal Marion Corp Guide roll assembly for telescopic boom
US3307713A (en) * 1964-02-13 1967-03-07 Greater Iowa Corp Telescoping boom for material handling mechanism
US3817007A (en) * 1971-10-04 1974-06-18 Altec Mfg Co Inc Aerial lift mechanism
US3854594A (en) * 1973-11-26 1974-12-17 Raymond Lee Organization Inc Collapsible hoisting apparatus
US3985248A (en) * 1974-09-25 1976-10-12 Badger Dynamics, Inc. Telescopic boom assembly
US6056252A (en) * 1997-11-26 2000-05-02 Thor Steel & Welding Ltd. Support assembly for telescopic conveyor system
US20090045011A1 (en) * 2007-08-16 2009-02-19 Rockit Corporation Self-powered lift apparatus

Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2082017A (en) * 1935-05-18 1937-06-01 James Harry Layne Portable crane
US2272949A (en) * 1940-07-27 1942-02-10 American Creosoting Company In Car loading and unloading apparatus
US2786583A (en) * 1954-07-06 1957-03-26 Ward S Garrison Power operated boom for hoists or the like
US2787383A (en) * 1951-03-13 1957-04-02 Baldwin Lima Hamilton Corp Full circle boom crane
US2798622A (en) * 1956-09-10 1957-07-09 Kelley Truck loading and unloading apparatus with leveling means
US2812868A (en) * 1955-02-28 1957-11-12 Builders Equip Co Loading and unloading device for trucks
US2911111A (en) * 1956-11-27 1959-11-03 John L Grove Mobile hydraulic crane
US2993605A (en) * 1957-06-14 1961-07-25 Curtiss Wright Corp Loading and unloading crane

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2082017A (en) * 1935-05-18 1937-06-01 James Harry Layne Portable crane
US2272949A (en) * 1940-07-27 1942-02-10 American Creosoting Company In Car loading and unloading apparatus
US2787383A (en) * 1951-03-13 1957-04-02 Baldwin Lima Hamilton Corp Full circle boom crane
US2786583A (en) * 1954-07-06 1957-03-26 Ward S Garrison Power operated boom for hoists or the like
US2812868A (en) * 1955-02-28 1957-11-12 Builders Equip Co Loading and unloading device for trucks
US2798622A (en) * 1956-09-10 1957-07-09 Kelley Truck loading and unloading apparatus with leveling means
US2911111A (en) * 1956-11-27 1959-11-03 John L Grove Mobile hydraulic crane
US2993605A (en) * 1957-06-14 1961-07-25 Curtiss Wright Corp Loading and unloading crane

Cited By (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3129821A (en) * 1960-06-20 1964-04-21 Side O Matic Unloader Corp Hoist for vehicle
US3207044A (en) * 1963-05-20 1965-09-21 Thomas R Hall Feeder tube cylinder
US3259251A (en) * 1963-12-26 1966-07-05 Galion Jeffrey Mfg Co Extensible boom with tandem operating cylinders
US3307713A (en) * 1964-02-13 1967-03-07 Greater Iowa Corp Telescoping boom for material handling mechanism
US3239072A (en) * 1964-09-30 1966-03-08 D & M Equipment Company Hoisting fork
US3285431A (en) * 1965-04-30 1966-11-15 Universal Marion Corp Guide roll assembly for telescopic boom
US3817007A (en) * 1971-10-04 1974-06-18 Altec Mfg Co Inc Aerial lift mechanism
US3854594A (en) * 1973-11-26 1974-12-17 Raymond Lee Organization Inc Collapsible hoisting apparatus
US3985248A (en) * 1974-09-25 1976-10-12 Badger Dynamics, Inc. Telescopic boom assembly
US6056252A (en) * 1997-11-26 2000-05-02 Thor Steel & Welding Ltd. Support assembly for telescopic conveyor system
US20090045011A1 (en) * 2007-08-16 2009-02-19 Rockit Corporation Self-powered lift apparatus

Similar Documents

Publication Publication Date Title
US2646182A (en) Loading and unloading apparatus
US2019938A (en) Automotive lifting device
US2433598A (en) Loading and unloading mechanism for motor vehicles
US3112035A (en) Mobile crane
US2911111A (en) Mobile hydraulic crane
US3093248A (en) Self powered boom assembly
US2598517A (en) Portable winch
US3312291A (en) Derricks
US3487964A (en) Self-loading side loaders
US3809249A (en) Telescopic crane boom with chain actuation of fly section
US2387568A (en) Industrial truck
US3018902A (en) Hydraulic crane
US2290738A (en) Motorized hauling and dumping vehicle
US2961102A (en) Hydraulic swinging boom-type hoist
US3029954A (en) Adjustable boom crane
US2760661A (en) Industrial truck attachment
US2296827A (en) Material collecting and loading apparatus
US2365167A (en) Truck crane
US3092268A (en) Industrial lift truck
US2755943A (en) Loading conveyor for vehicles
US2357600A (en) Conveyer
US2261870A (en) Counterweight for hoisting machinery
US2392004A (en) Hydraulic crane
US2915137A (en) Mobile aerial tower
US2251435A (en) Tipping vehicle

Legal Events

Date Code Title Description
AS Assignment

Owner name: U.S. TRUCK CRANES, INC. A PA CORP.

Free format text: ASSIGNMENT OF ASSIGNORS INTEREST.;ASSIGNOR:HIAB CRANES AND LOADERS, INC. A DE CORP.;REEL/FRAME:004030/0086

Effective date: 19820623

AS Assignment

Owner name: AMERICAN LAFRANCE, LLC, SOUTH CAROLINA

Free format text: PATENT ASSIGNMENT AGREEMENT;ASSIGNOR:LADDER TOWERS, INC.;REEL/FRAME:016945/0245

Effective date: 20051214

AS Assignment

Owner name: PATRIARCH PARTNERS AGENCY SERVICES, LLC, NORTH CAR

Free format text: PATENT COLLATERAL SECURITY AGREEMENT;ASSIGNOR:AMERICAN LAFRANCE, LLC;REEL/FRAME:017154/0385

Effective date: 20051214