CN113173370B - Heavy object case transfer device for commodity circulation - Google Patents

Heavy object case transfer device for commodity circulation Download PDF

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Publication number
CN113173370B
CN113173370B CN202110451091.0A CN202110451091A CN113173370B CN 113173370 B CN113173370 B CN 113173370B CN 202110451091 A CN202110451091 A CN 202110451091A CN 113173370 B CN113173370 B CN 113173370B
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fixedly connected
plates
sliding
control frame
rods
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CN113173370A (en
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张梦珂
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Yibin Comprehensive Bonded Zone Supply Chain Management Co ltd
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Yibin Comprehensive Bonded Zone Supply Chain Management Co ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G7/00Devices for assisting manual moving or tilting heavy loads
    • B65G7/02Devices adapted to be interposed between loads and the ground or floor, e.g. crowbars with means for assisting conveyance of loads

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Abstract

The invention provides a heavy object box transfer device for logistics, and relates to the field of logistics box transfer. This heavy object case transfer device for commodity circulation, including the control frame, the below of control frame is provided with two bottom plates, the right-hand member of two bottom plates all with the bottom surface fixed connection of control frame, the upper end left surface fixedly connected with mounting bracket of control frame, the left side of control frame is provided with the motor, motor and mounting bracket fixed connection, the left surface of mounting bracket runs through threaded shaft. This heavy object case transfer device for commodity circulation through setting up push rod A, push rod B, stay cord, rotor plate and bearing plate, has reached the bearing plate and has reseed at the case and rotate the in-process and lie in the case below, can be to the effect of the bottom sprag of case, has solved the case and has put subaerial, presss from both sides tightly to the case both sides through the device and mentions when shifting, and the bottom of case does not have the support, because the material overweight spills from the case bottom often to cause the problem of material damage.

Description

Heavy object case transfer device for commodity circulation
Technical Field
The invention relates to the field of logistics box transfer, in particular to a weight box transfer device for logistics.
Background
The logistics refers to the whole process of planning, implementing and managing raw materials, semi-finished products, finished products or related information from the production place of the commodities to the consumption place of the commodities by means of transportation, storage, distribution and the like in order to meet the requirements of customers, and modern logistics is a product of economic globalization and is an important service industry for promoting the economic globalization.
In the commodity circulation warehouse, need shift the material wherein, wherein have a lot of heavy objects to put into the case and remove, now when shifting the case, because the case is put on ground, generally press from both sides tightly the both sides of case through transfer device, then lift the case and shift, the bottom of case does not have the support like this, because the material overweight often can spill from the case bottom to cause the material damage.
Disclosure of Invention
Aiming at the defects of the prior art, the invention provides a transferring device for a logistics heavy object box, which solves the problems that when the box is placed on the ground, and the two sides of the box are clamped, lifted and transferred through the transferring device, the bottom of the box is not supported, and materials are frequently leaked from the bottom of the box due to overweight, so that the materials are damaged.
In order to achieve the purpose, the invention is realized by the following technical scheme: the utility model provides a heavy object case transfer device for commodity circulation, including the control frame, the below of control frame is provided with two bottom plates, the right-hand member of two bottom plates all with the bottom surface fixed connection of control frame, the upper end left surface fixedly connected with mounting bracket of control frame, the left side of control frame is provided with the motor, motor and mounting bracket fixed connection, threaded shaft runs through on the left surface of mounting bracket, the right-hand member of threaded shaft rotates the left surface that runs through the mounting bracket, the output of motor and the right-hand member face fixed connection of threaded shaft, the left side of mounting bracket is provided with the movable plate, the movable plate screw thread cup joints the surface at the threaded shaft, both sides all are provided with the riser around the left side that is located the threaded shaft of movable plate, the equal fixedly connected with shank in upper end right flank of two risers, the equal screw thread of right-hand member of two shanks runs through the left surface of movable plate, the right flank that is located the movable plate all is provided with push rod A, the below of two push rod A all is provided with push rod B, the left end of two push rod B respectively with the right flank fixed connection of two risers.
A rotating plate is arranged below the control frame, the front end and the rear end of the rotating plate are elastically hinged with the right ends of the two bottom plates, the surfaces, close to each other, of the two bottom plates are respectively provided with a sliding groove, the left ends of the two bottom plates are respectively provided with a clamping groove, the two clamping grooves are respectively communicated with the two sliding grooves, the inner parts of the two sliding grooves are respectively inserted and connected with a sliding block in a sliding way, the surfaces, far away from each other, of the two sliding blocks are respectively fixedly connected with a transmission rod, the ends, far away from each other, of the two transmission rods respectively penetrate through the inner walls of the two sliding grooves in a sliding way, one side, far away from each other, of the two bottom plates is respectively fixedly connected with one end, far away from each other, of the two bottom plates are respectively fixedly connected with a fixed block, the right ends of the two pull rods respectively penetrate through the left sides of the two fixed blocks in a sliding way, and the outer surfaces of the two pull rods are respectively sleeved and connected with a connecting spring in a sliding way, the left ends of the two connecting springs are fixedly connected with the right side faces of the two fixing blocks respectively, the right ends of the two connecting springs are fixedly connected with the right ends of the two pull rods respectively, the left sides of the two base plates are provided with bearing plates, one ends of the two bearing plates, which are close to each other, are movably inserted into the two clamping grooves respectively, the left sides of the two sliders are hinged with short shafts respectively, one ends of the two bearing plates, which are close to each other, are fixedly connected with the outer surfaces of the two short shafts respectively, the upper ends of the two short shafts are rotated to penetrate through the inner top walls of the two sliding grooves respectively, sliding frames are inserted into the upper surfaces of the two base plates in a sliding mode, the two sliding frames are rotatably connected with the outer surfaces of the two short shafts respectively in a sleeved mode, the upper ends of the two torsional springs are fixedly connected with the upper ends of the two short shafts respectively, and the two torsional springs are movably connected with the outer surfaces of the two short shafts respectively.
The equal fixedly connected with holding ring of right flank of two bearing plates, the equal fixedly connected with mount of left end upper surface of two bottom plates, two carriages are located between two mounts, the inside of two holding rings all slides and pegs graft and have the inserted bar, the upper end of two inserted bars slides respectively and runs through the bottom surface of two mounts, two inserted bars are located the equal fixedly sleeved joint in top of two holding rings respectively and have solid fixed ring, the equal fixedly connected with of upper surface of two solid fixed ring promotes the spring, the upper end of two promotion springs respectively with the bottom surface fixed connection of two mounts, two promote the spring and slide respectively and cup joint the surface at two inserted bars, the top of two mounts all is provided with the baffle, the bottom surface of two baffles respectively with the upper end fixed connection of two inserted bars, the upper surface of two mounts all articulates there is directive wheel A, the upper surface of two bottom plates all articulates there is directive wheel B, two directive wheel B are located the right side of two directive wheel A respectively, the equal fixedly connected with stay cord of upper surface of two baffles, the upper end of two directive wheel A is walked around respectively, the right-hand member of two stay cords walks around the bottom surfaces of directive wheel B respectively, the right-hand member respectively with the rotor plate.
Preferably, two curb plates of the equal fixedly connected with of upper surface of two bottom plates are provided with four (holding) chucks between four curb plates, and the equal fixedly connected with in one side that four (holding) chucks were kept away from each other connects the telescopic link, and four connect the telescopic link to keep away from the one end of four (holding) chucks respectively with the upper end fixed connection of four curb plates respectively.
Preferably, both sides all are provided with the stabilizing telescopic rod around the threaded shaft, and the right-hand member of two stabilizing telescopic rods all is connected with the left surface fixed connection of mounting bracket, and the left end of two stabilizing telescopic rods all is connected with the right-hand member fixed connection of movable plate.
Preferably, the rear end fixedly connected with connecting plate of the bearing plate that is located the rear, the spread groove has been seted up to the front end of the bearing plate that is located the place ahead, and the thickness of spread groove equals with the thickness of connecting plate.
Preferably, the right side of control frame is provided with two limiting plates, and the one side that two limiting plates are close to each other respectively with the dead-back fixed connection of rotor plate.
Preferably, the two push rods a are arranged in parallel with the two push rods B, and the length of the two push rods a is greater than that of the two push rods B.
Compared with the prior art, the invention has the following beneficial effects:
1. this heavy object case transfer device for commodity circulation, through setting up push rod A, push rod B, the stay cord, rotor plate and bearing plate, when needing to the material case transfer, through transfer device mobile control frame, make the material case be located between two bottom plates, the case contacts with the rotor plate left side, make push rod A and push rod B be located the left side of case, the starter motor drives the movable plate through the screw axis and moves right, then promote the upper left end of case earlier through push rod A, make the case incline, the case promotes the rotor plate and rotates, simultaneously through stay cord upwards pull the peg graft pole, pull out the peg pole from the position ring, then the bearing plate rotates under the torsion of torsional spring, because the case inclines, make the bearing plate can move the below of case, after two bearing plates rotate to the parallel, the slider moves right under the promotion of connecting spring, make the bearing plate move under the case, after the right side contact of push rod B and case, make the case reach the maximum inclination angle, the bearing plate moves to rightmost right side under the promotion of connecting spring this moment, then reverse rotation motor, make the push rod A move, reach the effect of the dead weight of the box support from the box under the box, thereby the material of the effect of the box support of the box, thereby the material can solve the normal lifting of the material that the case is leaked from the left side of pushing of shifting, thereby, the box, thereby, the effect of the box is supported, the effect of the box is solved under the supporting, the effect of the normal lifting of the box, thereby, the box is supported.
2. This heavy object case transfer device for commodity circulation, through setting up connecting plate and spread groove, when two bearing plates are close to each other under the drive of torsional spring, inside the spread groove was pegged graft gradually to the connecting plate, links together two bearing plates, prevents that the bearing plate from keeping away from the one end of minor axis because the bearing takes place to incline.
3. This heavy object case transfer device for commodity circulation through setting up push rod A and push rod B, because push rod B's length is less than push rod A, when push rod A and push rod B were close to the case, push rod A contacted in advance in the upper left end of case, promoted the case slope and rotated, when push rod B contacted with the case, limited the biggest inclination of case, prevented the too big phenomenon that takes place to turn on one's side of case inclination angle.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of the connection between the threaded shaft and the moving plate according to the present invention;
FIG. 3 is a schematic view of the connection of the pull cord to the pivotal plate in accordance with the present invention;
FIG. 4 is a schematic view of the connection between the connecting spring and the pull rod according to the present invention;
FIG. 5 is a schematic view of the inner structure of the chute of the present invention;
FIG. 6 is an enlarged view of the structure at A in FIG. 4 according to the present invention.
The device comprises a control frame 1, a bottom plate 2, a mounting frame 3, a motor 4, a threaded shaft 5, a movable plate 6, a vertical plate 7, a bolt rod 8, a push rod A9, a push rod B10, a rotating plate 11, a sliding chute 12, a clamping groove 13, a transmission rod 14, a sliding block 15, a pull rod 16, a fixing block 17, a connecting spring 18, a bearing plate 19, a short shaft 20, a torsion spring 21, a positioning ring 22, a fixing frame 23, a plug-in rod 24, a fixing ring 25, a pushing spring 26, a baffle plate 27, a steering wheel A28, a limiting plate 29, a steering wheel B30, a pull rope 31, a side plate 32, a chuck 33, a connecting telescopic rod 34, a stabilizing telescopic rod 35, a connecting plate 36, a connecting groove 37 and a sliding frame 38.
Detailed Description
As shown in fig. 1-6, a heavy object case transfer device for logistics, including control frame 1, control frame 1 is connected with this body of transfer device, can remove, the below of control frame 1 is provided with two bottom plates 2, the right-hand member of two bottom plates 2 all is connected with the bottom surface fixed connection of control frame 1, the upper end left surface fixedly connected with mounting bracket 3 of control frame 1, the left side of control frame 1 is provided with motor 4, motor 4 and mounting bracket 3 fixed connection, threaded shaft 5 runs through the left surface of mounting bracket 3, the right-hand member of threaded shaft 5 rotates the left surface that runs through mounting bracket 3, the output of motor 4 and the right-hand member face fixed connection of threaded shaft 5, the left side of mounting bracket 3 is provided with movable plate 6, both sides all are provided with stabilizing telescopic link 35 around the threaded shaft 5, the right-hand member of two stabilizing telescopic links 35 all is connected with the left surface fixed connection of mounting bracket 3, the left end of two stabilizing telescopic links 35 all is connected with the right-hand member fixed connection of movable plate 6, stabilizing telescopic link 35 improves the stability when movable plate 6 removes.
The outer surface at threaded shaft 5 is cup jointed to the 6 screw threads of movable plate, and both sides all are provided with riser 7 around the left side that movable plate 6 is located threaded shaft 5, and the equal fixedly connected with shank of bolt 8 of the upper end right flank of two risers 7, the screw thread of shank of bolt 8 are thinner, guarantee that after riser 7 rotates, riser 7 can remain stable when not receiving external force, make riser 7 can rotate movable plate 6 top, and the case of being convenient for moves riser 7 right side.
The equal screw thread of right-hand member of two shank of bolt 8 runs through the left surface of movable plate 6, the below that the right flank of two riser 7 is located movable plate 6 all is provided with push rod A9, the below of two push rod A9 all is provided with push rod B10, the left end of two push rod B10 respectively with the right flank fixed connection of two riser 7, two push rod A9 and two push rod B10 parallel arrangement, the length of two push rod A9 is greater than the length of two push rod B10, the angle that the length of push rod A9 and push rod B10 formed, inject the biggest inclination of case, prevent that the case from turning on one's side because inclination excessively causes.
The below of control frame 1 is provided with rotor plate 11, and both ends and the right-hand member elasticity of two bottom plates 2 are articulated around rotor plate 11, and the right side of control frame 1 is provided with two limiting plates 29, and the one side that two limiting plates 29 are close to each other respectively with rotor plate 11's positive back fixed connection, rotor plate 11 drives limiting plate 29 and control frame 1 contact under elasticity articulated effect, and limiting plate 29 is injectd the initial position of rotor plate 11.
Chute 12 has all been seted up to the one side that is close to each other of two bottom plates 2, draw-in groove 13 has all been seted up to the left end of two bottom plates 2, two draw-in grooves 13 communicate with two chute 12 respectively, the inside of two chute 12 all slides and pegs graft there is slider 15, the equal fixedly connected with transfer line 14 in the one side that two sliders 15 kept away from each other, the one end that two transfer line 14 kept away from each other slides respectively and runs through the inner wall of two chute 12, the one side that two bottom plates 2 kept away from each other all is provided with pull rod 16, the left end of two pull rod 16 respectively with the one end fixed connection that two transfer line 14 kept away from each other, the equal fixedly connected with fixed block 17 in the one side that two bottom plates 2 kept away from each other, the right-hand member of two pull rod 16 slides respectively and runs through the left side of two fixed block 17, the equal slip of surface of two pull rod 16 cup joints connecting spring 18, the left end of two connecting spring 18 respectively with the right-hand member fixed connection of two pull rod 16, the left side of two bottom plates 2 all is provided with bearing plate 19, the one end of two bearing plate 19 that the one end that two bearing plates 19 are close to each other is pegged graft at the inside of two minor axis movable respectively 20, the side that two minor axis 15 is articulated have the fixed sleeve 20 that is close to each other, the top wall that two minor axis 20 that the fixed sleeve 20 that the one end that is close to each other, two minor axis 20, the top wall that two minor axis 20 that the slide respectively runs through the fixed sleeve 20.
Equal slip grafting in upper surface of two bottom plates 2 has carriage 38, two carriages 38 rotate respectively and cup joint the surface at two minor axis 20, the equal fixedly connected with torsional spring 21 of upper surface of two carriages 38, the upper end of two torsional springs 21 respectively with the upper end fixed connection of two minor axis 20, two torsional springs 21 activity respectively cup joints the surface at two minor axis 20, the rear end fixedly connected with connecting plate 36 that is located the bearing plate 19 at rear, spread groove 37 has been seted up to the front end of the bearing plate 19 that is located the place ahead, spread groove 37's thickness equals with connecting plate 36's thickness, bearing plate 19 is close to each other under torsional spring 21's torsion, then connecting plate 36 can insert in the spread groove 37, link together two bearing plates 19, improve two bearing plate 19's bearing capacity.
The right side surfaces of the two bearing plates 19 are fixedly connected with positioning rings 22, the upper surfaces of the left ends of the two base plates 2 are fixedly connected with fixing frames 23, the two sliding frames 38 are located between the two fixing frames 23, the insides of the two positioning rings 22 are inserted with insertion rods 24 in a sliding mode, the upper ends of the two insertion rods 24 respectively penetrate through the bottom surfaces of the two fixing frames 23 in a sliding mode, the two insertion rods 24 are respectively located above the two positioning rings 22 and are fixedly sleeved with fixing rings 25, the upper surfaces of the two fixing rings 25 are fixedly connected with pushing springs 26, the upper ends of the two pushing springs 26 are respectively fixedly connected with the bottom surfaces of the two fixing frames 23, the two pushing springs 26 are respectively sleeved on the outer surfaces of the two insertion rods 24 in a sliding mode, the tops of the two fixing frames 23 are respectively provided with a baffle plate 27, the bottom surfaces of the two baffle plates 27 are respectively fixedly connected with the upper end surfaces of the two insertion rods 24, the upper surfaces of the two fixing frames 23 are respectively hinged with steering wheels A28, the upper surfaces of the two base plates 2 are respectively hinged with steering wheels B30, the two steering wheels B30 are respectively located on the right sides of the two steering wheels A28, and the steering wheels A28 and the steering wheels B30 change the direction of a pulling rope 31.
The equal fixedly connected with stay cord 31 of upper surface of two baffles 27, the upper surface of two directive wheel A28 is walked around respectively to the upper end of two stay cords 31, the bottom surface of two directive wheel B30 is walked around respectively to the right-hand member of two stay cords 31, the right-hand member of two stay cords 31 respectively with the dead-back fixed connection of rotor plate 11, two curb plates 32 of the equal fixedly connected with of upper surface of two bottom plates 2, be provided with four (holding) chucks 33 between four curb plates 32, the equal fixedly connected with in one side of keeping away from each other of four (holding) chucks 33 connects telescopic link 34, four connect the upper end fixed connection that telescopic link 34 kept away from four (holding) chucks 33 respectively with four curb plates 32, it is tight to connect telescopic link 34 to promote the side of (holding) chuck 33 to the case, supplementary case fixed transfer.
When the material box is needed to be transferred, the control frame 1 is moved by the transfer device to enable the material box to be positioned between the two bottom plates 2, the box is contacted with the left side of the rotating plate 11, the push rod A9 and the push rod B10 are positioned on the left side of the box, the starting motor 4 rotates through the threaded shaft 5 to drive the moving plate 6 to move rightwards, then the push rod A9 pushes the upper left end of the box to enable the box to incline, the box pushes the rotating plate 11 to rotate, meanwhile, the plug rod 24 is pulled upwards through the pull rope 31 to pull the plug rod 24 out of the positioning ring 22, the push spring 26 is compressed, then the bearing plate 19 rotates under the torsion force of the torsion spring 21, and due to the inclination of the box, the bearing plate 19 can move to the lower part of the box, when the two bearing plates 19 rotate to be parallel, the connecting plate 36 is gradually inserted into the connecting groove 37 to connect the two bearing plates 19 together, then the sliding block 15 moves rightwards under the pushing of the connecting spring 18 to enable the bearing plate 19 to move rightwards under the box, after the push rod B10 is in contact with the right side of the box, the box reaches the maximum inclination angle, at the moment, the bearing plate 19 moves rightmost under the pushing of the connecting spring 18, then the motor 4 is reversed, the vertical plate 7 drives the push rod A9 and the push rod B10 to move leftwards, the box resets under the pushing of the rotating plate 11 and the self gravity, the bearing plate 19 is located below the box in the box resetting and rotating process and can support the bottom of the box, then the telescopic rod 34 is connected to push the chuck plate 33 to clamp the side face of the box, and the box is assisted to be fixed.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. The utility model provides a heavy object case transfer device for commodity circulation, includes control frame (1), its characterized in that: two bottom plates (2) are arranged below the control frame (1), the right ends of the two bottom plates (2) are fixedly connected with the bottom surface of the control frame (1), the left side surface of the upper end of the control frame (1) is fixedly connected with a mounting frame (3), the left side of the control frame (1) is provided with a motor (4), the motor (4) is fixedly connected with the mounting frame (3), a threaded shaft (5) penetrates through the left side surface of the mounting frame (3), the right end of the threaded shaft (5) rotates to penetrate through the left side surface of the mounting frame (3), the output end of the motor (4) is fixedly connected with the right end surface of the threaded shaft (5), a movable plate (6) is arranged on the left side of the mounting frame (3), the movable plate (6) is in threaded sleeve joint with the outer surface of the threaded shaft (5), vertical plates (7) are arranged on the front side and the rear side of the threaded shaft (5) on the left side of the movable plate (6), bolt rods (8) are fixedly connected with the right side surfaces of the upper ends of the two vertical plates (7), two push rods (10) are arranged below the push rods (9A) and 10A) are respectively arranged on the right side surfaces of the push rods (9A) below the push rods (10);
a rotating plate (11) is arranged below the control frame (1), the front end and the rear end of the rotating plate (11) are elastically hinged with the right ends of the two bottom plates (2), sliding grooves (12) are formed in the surfaces, close to each other, of the two bottom plates (2), clamping grooves (13) are formed in the left ends of the two bottom plates (2), the two clamping grooves (13) are respectively communicated with the two sliding grooves (12), sliding blocks (15) are respectively inserted into the insides of the two sliding grooves (12) in a sliding manner, driving rods (14) are respectively and fixedly connected to the surfaces, far away from each other, of the two sliding blocks (15), one ends, far away from each other, of the two driving rods (14) respectively penetrate through the inner walls of the two sliding grooves (12) in a sliding manner, pull rods (16) are respectively arranged on the sides, far away from each other, of the two pull rods (16) are respectively and fixedly connected with the ends, far away from each driving rods (14), fixed blocks (17) are respectively and fixedly connected to the surfaces, the right ends of the two springs (18) are respectively and fixedly connected with the right ends of the two fixed blocks (16), bearing plates (19) are arranged on the left sides of the two bottom plates (2), one ends, close to each other, of the two bearing plates (19) are movably inserted into the two clamping grooves (13) respectively, short shafts (20) are hinged to the left side faces of the two sliding blocks (15), one ends, close to each other, of the two bearing plates (19) are fixedly sleeved on the outer surfaces of the two short shafts (20) respectively, the upper ends of the two short shafts (20) penetrate through the inner top walls of the two sliding grooves (12) respectively in a rotating mode, sliding frames (38) are inserted into the upper surfaces of the two bottom plates (2) in a sliding mode, the two sliding frames (38) are rotatably sleeved on the outer surfaces of the two short shafts (20) respectively, torsion springs (21) are fixedly connected to the upper surfaces of the two sliding frames (38), the upper ends of the two torsion springs (21) are fixedly connected with the upper ends of the two short shafts (20) respectively, and the two torsion springs (21) are movably sleeved on the outer surfaces of the two short shafts (20) respectively;
positioning rings (22) are fixedly connected to the right side surfaces of the two bearing plates (19), fixing frames (23) are fixedly connected to the upper surfaces of the left ends of the two bottom plates (2), two sliding frames (38) are positioned between the two fixing frames (23), insertion rods (24) are inserted into the two positioning rings (22) in a sliding mode, the upper ends of the two insertion rods (24) respectively penetrate through the bottom surfaces of the two fixing frames (23), the two insertion rods (24) are respectively positioned above the two positioning rings (22) and fixedly sleeved with fixing rings (25), pushing springs (26) are respectively fixedly connected to the upper surfaces of the two fixing rings (25), the upper ends of the two pushing springs (26) are respectively fixedly connected to the bottom surfaces of the two fixing frames (23), the two pushing springs (26) are respectively sleeved on the outer surfaces of the two insertion rods (24) in a sliding mode, baffles (27) are respectively arranged above the two fixing frames (23), the bottom surfaces of the two baffles (27) are respectively fixedly connected to the upper end surfaces of the two insertion rods (24), the upper surfaces of the two fixing frames (23) are respectively hinged with steering wheels A (28), the upper surfaces of the two bottom plates (2) are respectively hinged with two steering wheels (30) and the upper surfaces of the two steering wheels (30B) are respectively hinged to the steering wheels (31), the upper ends of the two pull ropes (31) respectively wind around the upper surfaces of the two steering wheels A (28), the right ends of the two pull ropes (31) respectively wind around the bottom surfaces of the two steering wheels B (30), and the right ends of the two pull ropes (31) are respectively fixedly connected with the front and back surfaces of the rotating plate (11).
2. The box-weight transfer device for logistics according to claim 1, wherein: the upper surface of two bottom plates (2) is equal fixedly connected with two curb plates (32), is provided with four (holding) chucks (33) between four curb plates (32), and the equal fixedly connected with in one side that four (holding) chucks (33) kept away from each other connects telescopic link (34), and four connect telescopic link (34) keep away from the one end of four (holding) chucks (33) respectively with the upper end fixed connection of four curb plates (32).
3. The box transfer device for logistics heavy objects according to claim 1, wherein: both sides all are provided with around threaded shaft (5) and stabilize telescopic link (35), and the right-hand member of two telescopic link (35) of stabilizing all with the left surface fixed connection of mounting bracket (3), the left end of two telescopic link (35) of stabilizing all with the right-hand member fixed connection of movable plate (6).
4. The box-weight transfer device for logistics according to claim 1, wherein: the rear end of the bearing plate (19) located behind is fixedly connected with a connecting plate (36), the front end of the bearing plate (19) located in front is provided with a connecting groove (37), and the thickness of the connecting groove (37) is equal to that of the connecting plate (36).
5. The box transfer device for logistics heavy objects according to claim 1, wherein: two limiting plates (29) are arranged on the right side of the control frame (1), and one surfaces, close to each other, of the two limiting plates (29) are fixedly connected with the front back surface of the rotating plate (11) respectively.
6. The box transfer device for logistics heavy objects according to claim 1, wherein: the two push rods A (9) and the two push rods B (10) are arranged in parallel, and the length of the two push rods A (9) is larger than that of the two push rods B (10).
CN202110451091.0A 2021-04-26 2021-04-26 Heavy object case transfer device for commodity circulation Active CN113173370B (en)

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