US2483534A - Side shift mechanism for lift truck forks - Google Patents
Side shift mechanism for lift truck forks Download PDFInfo
- Publication number
- US2483534A US2483534A US783980A US78398047A US2483534A US 2483534 A US2483534 A US 2483534A US 783980 A US783980 A US 783980A US 78398047 A US78398047 A US 78398047A US 2483534 A US2483534 A US 2483534A
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- United States
- Prior art keywords
- carriage
- plate
- lift truck
- load
- truck
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- 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
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Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B66—HOISTING; LIFTING; HAULING
- B66F—HOISTING, LIFTING, HAULING OR PUSHING, NOT OTHERWISE PROVIDED FOR, e.g. DEVICES WHICH APPLY A LIFTING OR PUSHING FORCE DIRECTLY TO THE SURFACE OF A LOAD
- B66F9/00—Devices for lifting or lowering bulky or heavy goods for loading or unloading purposes
- B66F9/06—Devices for lifting or lowering bulky or heavy goods for loading or unloading purposes movable, with their loads, on wheels or the like, e.g. fork-lift trucks
- B66F9/075—Constructional features or details
- B66F9/12—Platforms; Forks; Other load supporting or gripping members
- B66F9/19—Additional means for facilitating unloading
- B66F9/195—Additional means for facilitating unloading for pushing the load
Definitions
- This invention relates broadly to industrial trucks and more specifically to mechanism to effect the lateral translation of the load-supporting member thereon.
- the invention further relates to certain structural refinements and improvements in the loadsupporting mechanism disclosed in Letters Patent No. 2,270,664, entitled Industrial truck, issued January 20, 1942, to Elverton W. Weaver.
- the present invention contemplates a structure which will overcome the foregoing difficulties and increase the utility of the machine without sacrifice to the maneuverability thereof in other types of operation.
- Fig. 1 is a view in perspective of the forward end of a lift truck illustrating the improved side shifting mechanism in its assembled relation thereon,
- Fig, 2 is a similar view of a fragmentary portion of the'mechanism shown in Fig. 1, the shifting mechanism being illustrated in its extreme left hand position.
- Fig. 3 is a front elevational view of the improved cross slide and. supporting frame therefor, and
- Fig. 4 is a verticalsectional view of the frame and cross slide, the section being taken on a plane indicated by the line 44 in Fig. 3.
- the load-supporting carriage I0 is mounted for vertical reciprocative movement on an extensible mast 12 which in turn is mounted on the forward end of a lift truck of a well-known type. Since the structure of the vehicle, the load-elevating mechanism and hydraulic system therefor form no part of 'the present invention, further description thereof .is deemed unnecessary herein.
- the mast comprises a pair of channels l3 held in spaced relation by plates I4 mounted in the customary manner for forward and rearward tilting movement on a fulcrum, not shown, ad-
- mast further includes a secondary pair of changular frame 19 (Fig. 3) having a transversely disposed angle iron 20 on the rearward face thereof, a tie plate 2
- the brackets 22 are braced by reinforcing plates 23 set on edge and welded to a side wall of the brackets and the rearward faces of the respective cross members 20 and 2
- the ends of the brackets are fabricated to accommodate the support of pintles 24 having rollers thereon which are engaged with the channels 15 of the inner mast assembly.
- the upper frame cross member or angle iron 20 is provided with a rail 25 ,of angular transverse section, having the lower flange 26 thereof welded to the upper face of the angle 20 and the upper flange '21 thereof disposed upwardly in spaced parallel thereto and machined with outboard ledges 34 designed for engagement with the rearward face of the cross slide plate 32.
- the plate and hangers are drilled for the reception of bolts 35, the bolt in the center of the assembly being bored and cross-drilled for communication with lubricant channels 36 in the hangers and angle iron and The angle I grooves llin the portions of the shoe that are engaged with the rail 25.
- the inner flange "of the rail 20 is engaged with a plate 3!
- the inner wall ll of one of the vertical side members of the frame I! is provided with a bifurcated bracket 45 which is drilled for the reception of a pin 46 constituting the fulcrum for 2.
- cylinder 41 having a piston therein and a push rod 48 protruding therefrom.
- the end of the push rod is pivoted in a bracket 49 welded or otherwise afiixed upon the rearward face of the plate 32.
- the end portions of the cylinder are drilled and tapped to receive fittings for the support of flexible conduits 5B which are coupled with the valve unit H.
- the lower end of the plate 32 is drilled for the reception of bolts 5
- the control lever of the valve unit I! When it is desired to shift the cross slide to accommodate the disposition of the load to the right or left of its supported position, the control lever of the valve unit I! is manipulated to effect the admission of fluid under pressure to the requisite end of the cylinder to attain the desired translation of the carriage.
- and guided by the flanged portions of the rails 25 and 28 will slide transversely to the point desired by the operator or to the limit of the piston stroke which in normal conditions of operation positions the outer edge of the load-carrying members 53 flush with the side wall of the truck.
- a truck embodying a frame, a mast thereon, a carriage supported thereby, and means for elevating the carriage; mechanism for moving the load-supporting member transverse the medial axis of the truck comprising a horizontal rail formed from an angle iron mounted on the carriage with one of the flanges thereof disposed in a vertical plane, a second angle iron constituting a shoe mounted in telescopic relation therewith and for sliding movement thereon, a plate secured to said shoe, a second guide rail formed of an 4 angle iron mounted on the carriage in spaced parallelrelatlon to the first named rail, a guide member engaged with a flange of the last named angle iron, a load-supporting fork afiixed to said plate, a hydraulic cylinder pivotally mounted on one side of the carriage, a piston therein, a push rod connected thereto and pivotally connected to said plate and means for the control of fluid under pressure to said cylinder.
- a truck embodying a frame, a mast thereon, a carriage supported thereby, and means for elevating the carriage; mechanism for moving the load-supporting member transverse the medial axis of the truck comprising a pair of angle irons constituting cross rails mounted on the carriage in spaced parallel relation, 8. plate, a pair of guide members mounted on the plate with a flanged portion thereof interengaged with flanged portions of said angle iron rails, a load-carrying member mounted on said plate, and a hydraulic cylinder mounted on the carriage and connected to said plate to efiectuate the reciprocation thereof upon said rails.
- a truck embodying a frame, a mast thereon, a carriage supported thereby, and means for elevating the carriage; mechanism for moving the load-supportin member transverse the medial axis of the truck comprising a pair of horizontal parallel rails mounted on the carriage, flanges on said rails disposed in opposition to each other, an angle iron constituting a shoe mounted for sliding movement on the upper rail rearward the flanges thereof, a guide member engaged within a flange of the other rail, a plate constituting a cross slide, bolts therein connected to said shoe and guide member, certain of said bolts and said shoe and said guide member having a lubricant passageway therein, a lift fork on said plate and a hydraulic ram interposed between the carriage and cross slide for the actuation thereof upon said rails.
- a lift truck comprising a frame, a mast supported thereon, a carriage elevatable on the mast, a pair of vertically spaced horizontal rails on the carriage, a support member reciprocable upon the rails and interlocked with both rails, means for engaging and supporting a load mounted upon the support member, and a hydraulic ram coupled between the carriage and support member to reciprocate the member on the rails.
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- Engineering & Computer Science (AREA)
- Transportation (AREA)
- Structural Engineering (AREA)
- Civil Engineering (AREA)
- Life Sciences & Earth Sciences (AREA)
- Geology (AREA)
- Mechanical Engineering (AREA)
- Forklifts And Lifting Vehicles (AREA)
Description
Oct. 4, 1949- J. A. FRISCHMANN |-:r AL 2,483,534
SIDE SHIFT MECHANISM FOR LIFT TRUCK FORKS Filed Nov. 4, 1947 2 sheexs-shet 1 INVENTOR. J0$PH A. FPISCHMANA/ TOENE Y5 M M 5 y a m W a 4 v X s f 1. w 0* w l '0 a @Wi Wl M Mi Cw Oct- 4, 1 9- J. A. FRISCHMANN El AL 2,483,534
SIDE SHIFT MECHANISM FOR LIFT TRUCK FORKS Filed Nov. 4, 1947 2 Sheets-Sheet 2 MW AILL:
lul illllli l IN VEN TOR. JOSEPH A. FE/SCHMA/V/V Y z/mwoxva f #69144 B A7 OE/VE Y5 mama 6. .1949 I UNITED STATES. PATENT OFFICE Joseph A. Frischmann and Raymond J. Herman,
Cleveland, Ohio, asslgnors. to Towmotor Corporation, Cleveland, Ohio, a corporation of Oluo Application November 4, 1947, Serial No. 783,980
4 Claims. (Cl. 214-113) This invention relates broadly to industrial trucks and more specifically to mechanism to effect the lateral translation of the load-supporting member thereon.
The invention further relates to certain structural refinements and improvements in the loadsupporting mechanism disclosed in Letters Patent No. 2,270,664, entitled Industrial truck, issued January 20, 1942, to Elverton W. Weaver.
In operating industrial trucks within the confines of a boxcar or similar environs it has heretofore been difficult to deposit the load in contiguous relation with a side wall of the enclosure or in vertical alignment without rehandling the material. Obviously, such practice is costly in point of time and labor, and is particularly objectionable when handling loads at high elevations. The present invention contemplates a structure which will overcome the foregoing difficulties and increase the utility of the machine without sacrifice to the maneuverability thereof in other types of operation.
Further objects and advantages of the invention reside in a construction which is efficient of operation, economic of manufacture, durable of structure, and more flexible of operation than mechanisms of a like character heretofore produ'ced.
Other objects and advantages more or less ancillary to the foregoing and the manner in which all the various objects are realized will appear in the following description, which, considered in connection with the accompanying drawings, sets forth the preferred embodiment of the invention.
Referring to the drawings:
Fig. 1 is a view in perspective of the forward end of a lift truck illustrating the improved side shifting mechanism in its assembled relation thereon,
Fig, 2 is a similar view of a fragmentary portion of the'mechanism shown in Fig. 1, the shifting mechanism being illustrated in its extreme left hand position.
Fig. 3 is a front elevational view of the improved cross slide and. supporting frame therefor, and
Fig. 4 is a verticalsectional view of the frame and cross slide, the section being taken on a plane indicated by the line 44 in Fig. 3.
As will be seen in Fig. 1, the load-supporting carriage I0 is mounted for vertical reciprocative movement on an extensible mast 12 which in turn is mounted on the forward end of a lift truck of a well-known type. Since the structure of the vehicle, the load-elevating mechanism and hydraulic system therefor form no part of 'the present invention, further description thereof .is deemed unnecessary herein.
The mast comprises a pair of channels l3 held in spaced relation by plates I4 mounted in the customary manner for forward and rearward tilting movement on a fulcrum, not shown, ad-
jacent the forward lower end of the truck. The
mast further includes a secondary pair of changular frame 19 (Fig. 3) having a transversely disposed angle iron 20 on the rearward face thereof, a tie plate 2| mounted in spaced relation therewith and a pair of brackets 22 welded to the angle iron and tie plate inparallel relation with each other and the forward face of the frame. The brackets 22 are braced by reinforcing plates 23 set on edge and welded to a side wall of the brackets and the rearward faces of the respective cross members 20 and 2|. The ends of the brackets are fabricated to accommodate the support of pintles 24 having rollers thereon which are engaged with the channels 15 of the inner mast assembly. The upper frame cross member or angle iron 20 is provided with a rail 25 ,of angular transverse section, having the lower flange 26 thereof welded to the upper face of the angle 20 and the upper flange '21 thereof disposed upwardly in spaced parallel thereto and machined with outboard ledges 34 designed for engagement with the rearward face of the cross slide plate 32. The plate and hangers are drilled for the reception of bolts 35, the bolt in the center of the assembly being bored and cross-drilled for communication with lubricant channels 36 in the hangers and angle iron and The angle I grooves llin the portions of the shoe that are engaged with the rail 25. The inner flange "of the rail 20 is engaged with a plate 3! machined with a recess in the forward face thereof which defines a ledge 38 engaged with the rearward face of the cross slide plate 32. The plates 32 and 38 are drilled to receive bolts 40, the center bolt 4| being bored to form a lubricant passageway 2 arranged for communication with grooves 43 in the face of the plate that is engaged with the frame cross member 2i. i
The inner wall ll of one of the vertical side members of the frame I! is provided with a bifurcated bracket 45 which is drilled for the reception of a pin 46 constituting the fulcrum for 2. cylinder 41 having a piston therein and a push rod 48 protruding therefrom. The end of the push rod is pivoted in a bracket 49 welded or otherwise afiixed upon the rearward face of the plate 32. The end portions of the cylinder are drilled and tapped to receive fittings for the support of flexible conduits 5B which are coupled with the valve unit H.
The lower end of the plate 32 is drilled for the reception of bolts 5| which support a spacer plate 52 and the fork tines 53 or equivalent mechanism of the load-supporting element.
When it is desired to shift the cross slide to accommodate the disposition of the load to the right or left of its supported position, the control lever of the valve unit I! is manipulated to effect the admission of fluid under pressure to the requisite end of the cylinder to attain the desired translation of the carriage. As the piston is distended or retracted the plate 32 riding on its shoe 3| and guided by the flanged portions of the rails 25 and 28 will slide transversely to the point desired by the operator or to the limit of the piston stroke which in normal conditions of operation positions the outer edge of the load-carrying members 53 flush with the side wall of the truck.
Although the foregoing description is necessarily of a detailed character, in order that the invention may be completely set forth, it is to be understood that the specific terminology is not intended to be restrictive or confining, and that various rearrangements of parts and modifications of detail may be resorted to without departing from the scope or spirit of the invention as herein claimed.
' We claim:
1. In a truck embodying a frame, a mast thereon, a carriage supported thereby, and means for elevating the carriage; mechanism for moving the load-supporting member transverse the medial axis of the truck comprising a horizontal rail formed from an angle iron mounted on the carriage with one of the flanges thereof disposed in a vertical plane, a second angle iron constituting a shoe mounted in telescopic relation therewith and for sliding movement thereon, a plate secured to said shoe, a second guide rail formed of an 4 angle iron mounted on the carriage in spaced parallelrelatlon to the first named rail, a guide member engaged with a flange of the last named angle iron, a load-supporting fork afiixed to said plate, a hydraulic cylinder pivotally mounted on one side of the carriage, a piston therein, a push rod connected thereto and pivotally connected to said plate and means for the control of fluid under pressure to said cylinder.
2. In a truck embodying a frame, a mast thereon, a carriage supported thereby, and means for elevating the carriage; mechanism for moving the load-supporting member transverse the medial axis of the truck comprising a pair of angle irons constituting cross rails mounted on the carriage in spaced parallel relation, 8. plate, a pair of guide members mounted on the plate with a flanged portion thereof interengaged with flanged portions of said angle iron rails, a load-carrying member mounted on said plate, and a hydraulic cylinder mounted on the carriage and connected to said plate to efiectuate the reciprocation thereof upon said rails.
3. In a truck embodying a frame, a mast thereon, a carriage supported thereby, and means for elevating the carriage; mechanism for moving the load-supportin member transverse the medial axis of the truck comprising a pair of horizontal parallel rails mounted on the carriage, flanges on said rails disposed in opposition to each other, an angle iron constituting a shoe mounted for sliding movement on the upper rail rearward the flanges thereof, a guide member engaged within a flange of the other rail, a plate constituting a cross slide, bolts therein connected to said shoe and guide member, certain of said bolts and said shoe and said guide member having a lubricant passageway therein, a lift fork on said plate and a hydraulic ram interposed between the carriage and cross slide for the actuation thereof upon said rails.
4. A lift truck comprising a frame, a mast supported thereon,a carriage elevatable on the mast, a pair of vertically spaced horizontal rails on the carriage, a support member reciprocable upon the rails and interlocked with both rails, means for engaging and supporting a load mounted upon the support member, and a hydraulic ram coupled between the carriage and support member to reciprocate the member on the rails.
, JOSEPH A. FRISCHMANN.
RAYMOND J. HERMAN.
REFERENCES CITED The following references are of record in the file of this patent:
UNITED STATES" PATENTS Number
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US783980A US2483534A (en) | 1947-11-04 | 1947-11-04 | Side shift mechanism for lift truck forks |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US783980A US2483534A (en) | 1947-11-04 | 1947-11-04 | Side shift mechanism for lift truck forks |
Publications (1)
Publication Number | Publication Date |
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US2483534A true US2483534A (en) | 1949-10-04 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US783980A Expired - Lifetime US2483534A (en) | 1947-11-04 | 1947-11-04 | Side shift mechanism for lift truck forks |
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US (1) | US2483534A (en) |
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US2650732A (en) * | 1950-08-30 | 1953-09-01 | Smith Corp A O | Combination fork and finger lift attachment |
US2650733A (en) * | 1950-08-19 | 1953-09-01 | Smith Corp A O | Side shift for crate lifting attachment |
US2663443A (en) * | 1951-04-18 | 1953-12-22 | Baker Raulang Co | Carrier for industrial elevating trucks |
US2709018A (en) * | 1952-09-05 | 1955-05-24 | Baker Raulang Co | Load handling equipment for industrial trucks |
DE938419C (en) * | 1950-08-10 | 1956-01-26 | Hans Still Ag | Sack stacker on floor conveyor equipment |
Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US2270664A (en) * | 1940-11-06 | 1942-01-20 | Towmotor Co | Industrial truck |
US2360407A (en) * | 1943-07-10 | 1944-10-17 | Clark Equipment Co | Industrial truck |
US2451943A (en) * | 1946-05-20 | 1948-10-19 | Clark Equipment Co | Industrial truck |
-
1947
- 1947-11-04 US US783980A patent/US2483534A/en not_active Expired - Lifetime
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US2270664A (en) * | 1940-11-06 | 1942-01-20 | Towmotor Co | Industrial truck |
US2360407A (en) * | 1943-07-10 | 1944-10-17 | Clark Equipment Co | Industrial truck |
US2451943A (en) * | 1946-05-20 | 1948-10-19 | Clark Equipment Co | Industrial truck |
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE938419C (en) * | 1950-08-10 | 1956-01-26 | Hans Still Ag | Sack stacker on floor conveyor equipment |
US2650733A (en) * | 1950-08-19 | 1953-09-01 | Smith Corp A O | Side shift for crate lifting attachment |
US2650732A (en) * | 1950-08-30 | 1953-09-01 | Smith Corp A O | Combination fork and finger lift attachment |
US2663443A (en) * | 1951-04-18 | 1953-12-22 | Baker Raulang Co | Carrier for industrial elevating trucks |
US2709018A (en) * | 1952-09-05 | 1955-05-24 | Baker Raulang Co | Load handling equipment for industrial trucks |
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