Lithium ion battery transportation device with buffering effect

By designing a combination of multiple mechanisms, buffer protection and stable transportation of lithium-ion battery transportation equipment are achieved, solving the safety hazards caused by impact and shaking of lithium-ion batteries during transportation and improving transportation efficiency.

CN115402626BActive Publication Date: 2025-10-17HENAN HAITIAN FIRE SCI RES INST CO LTD
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Patent Information

Application Number
CN202211147691.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-19
Publication Date
2025-10-17
Estimated Expiration
2042-09-19

AI Technical Summary

Technical Problem

Existing lithium-ion battery transportation equipment is difficult to cover and protect lithium-ion batteries, which can easily cause lithium-ion batteries to be affected by external factors, posing the risk of damage from impact, explosion, and shaking.

Method used

A lithium-ion battery transportation device is designed, which includes a base, a guide rod, a spring, a placement frame, an opening and closing mechanism, a pulling mechanism, a limiting mechanism, a clamping mechanism, a fixing mechanism and a moving mechanism. Through spring buffering, limiting plate separation, splint clamping and universal wheel movement, buffering protection and stable transportation of lithium-ion batteries are achieved.

Benefits of technology

Effectively prevent lithium-ion batteries from explosion and damage caused by impact and shaking during transportation, reduce labor and improve transportation efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to a kind of transport equipment, especially a kind of lithium ion battery transport equipment with buffering effect. Provide a kind of lithium ion battery can be covered protection, in turn can prevent lithium ion battery from being influenced by external factors and using lithium ion battery transport equipment with buffering effect. A kind of lithium ion battery transport equipment with buffering effect, including placement frame and first guide rod etc., placement frame bottom left and right sides are equipped with two first guide rods. The present application is by lithium ion battery is placed into placement frame, first rotating plate can cover protection to lithium ion battery, while first spring can buffer shock absorption to lithium ion battery, to prevent lithium ion battery from impacting explosion when transporting.
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Description

TECHNICAL FIELD

[0001] The present application relates to a kind of transport equipment, especially a kind of lithium ion battery transport equipment with buffering effect. BACKGROUND

[0002] With the continuous development of social economy, people's living standards are also improving, and the use of electric energy is the cleanest energy in today's society. Since lithium ion batteries can be charged and reused, they are widely used in daily life. Lithium ion batteries are prone to explosion when they collide with each other. When transporting lithium ion batteries, care must be taken. The existing lithium ion battery transport equipment mostly places lithium ion batteries in a placing frame, and then people lift the placing frame to transport lithium ion batteries. This method is simple to operate, but it requires a lot of labor and is difficult to cover and protect lithium ion batteries, which can easily affect the use of lithium ion batteries by external factors.

[0003] Therefore, the present application develops a lithium ion battery transport equipment with buffering effect, which can cover and protect lithium ion batteries, thereby preventing lithium ion batteries from being affected by external factors. SUMMARY

[0004] In order to overcome the above-mentioned shortcomings of the transport method, which is difficult to cover and protect lithium ion batteries and is prone to affect the use of lithium ion batteries by external factors, the technical problem to be solved is to provide a lithium ion battery transport equipment with buffering effect, which can cover and protect lithium ion batteries, thereby preventing lithium ion batteries from being affected by external factors.

[0005] The technical scheme is: a lithium ion battery transport equipment with buffering effect, comprising a base, a first guide rod, a first spring, a placing frame, an opening and closing mechanism and a pulling mechanism. The placing frame is installed with two first guide rods on the left and right sides of the bottom, and the two first guide rods are symmetrically arranged front and back. The base is slidably connected between the four first guide rods. The first guide rod and the inner wall of the base are connected with the first spring on the left and right sides. The first spring is wound around the surface of the first guide rod. The placing frame is provided with an opening and closing mechanism. The placing frame is provided with a pulling mechanism.

[0006] Further explanation, the opening and closing mechanism includes a first fixed block, a rotating shaft, a first rotating plate and a first handle. The first fixed block is installed on the left and right sides of the upper part of the placing frame. The first rotating shaft is rotatably connected to the first fixed block. The first rotating plate is connected to the first rotating shaft. The first handle is rotatably connected to the lower side of the first rotating plate.

[0007] Further explanation, the pulling mechanism comprises a second fixed block, a rotating block, a connecting block, a hollow block and a second handle, two second fixed blocks are installed on the left and right sides of the placing frame, the two second fixed blocks on the left side are arranged in front and back symmetry, the two second fixed blocks on the right side are also arranged in front and back symmetry, rotating blocks are rotatably connected to the second fixed blocks, connecting blocks are connected to the rotating blocks, hollow blocks are slidably connected to the connecting blocks, a second handle is connected between the two hollow blocks on the left side, and a second handle is also connected between the two hollow blocks on the right side.

[0008] Further explanation, further comprising a limiting mechanism, the limiting mechanism comprises a placing frame, a connecting plate, a limiting plate, a third handle and a second spring, the placing frame is slidably connected to the placing frame, two connecting plates are installed on the front and back sides of the placing frame, the two connecting plates are arranged in up and down symmetry, three limiting plates are connected between the connecting plates on the front and back sides, third handles are slidably connected to the top of the placing frame on the front and back sides, and second springs are connected between the third handles and the placing frame.

[0009] Further explanation, further comprising a clamping mechanism, the clamping mechanism comprises a second guide rod, a first sliding plate, a third spring, a clamping plate, a fourth spring, a second sliding plate, a pressing block, a fifth spring and a pressing plate, two second guide rods are installed on the front and back sides of the placing frame, the two second guide rods are arranged in left and right symmetry, a first sliding plate is slidably connected between the two second guide rods on the front side, a first sliding plate is also slidably connected between the two second guide rods on the back side, third springs are connected between the second guide rods and the side of the first sliding plate away from each other, clamping plates are slidably connected to the first sliding plates, two fourth springs are connected between the side of the clamping plate away from the first sliding plate, the two fourth springs are arranged in left and right symmetry, two second sliding plates are slidably connected to the top of the placing frame on the front and back sides, the two second sliding plates on the front side are arranged in left and right symmetry, the two second sliding plates on the right side are also arranged in left and right symmetry, pressing blocks are installed on the second sliding plates, fifth springs are connected between the second sliding plates and the top of the placing frame, pressing plates are connected to the upper side of the first rotating plate, and the two pressing plates are arranged in front and back symmetry.

[0010] Further explanation, further comprising a fixing mechanism, the fixing mechanism comprises a third fixed block, a clamping plate and a torsion spring, third fixed blocks are installed on the front and back sides of the upper portion of the placing frame, clamping plates are rotatably connected to the third fixed blocks, and torsion springs are connected between the left and right sides of the third fixed blocks and the clamping plates.

[0011] Further illustrate, still include moving mechanism, moving mechanism includes fourth fixed block, universal wheel, second rotating plate, third guide rod, sixth spring, sliding frame and third rotating plate, the inner wall of base left and right sides are each installed with two fourth fixed blocks, adjacent two fourth fixed blocks are each set symmetrically in front and back, the fourth fixed block is each rotatably connected with universal wheel, the side of universal wheel on the front and back sides that are close to each other is connected with second rotating plate, the bottom of placing frame left and right sides are each symmetrically installed with third guide rod, the sliding frame is slidably connected between the two third guide rods of front side, the sliding frame is also slidably connected between the two third guide rods of back side, the left and right sides of sliding frame are rotatably connected with adjacent second rotating plate, the sixth spring is connected between the lower side of sliding frame of front side and third guide rod of front side, the sixth spring is also slidably connected between the lower side of sliding frame of back side and third guide rod of back side, the side of two adjacent rotating blocks that are away from each other is installed with third rotating plate.

[0012] Further illustrate, still include limiting block, the left and right sides of third handle upper part are each provided with limiting block.

[0013] Compared with the prior art, the present application has the following advantages: 1, the lithium ion battery is placed in the placing frame, the first rotating plate can cover and protect the lithium ion battery, and the first spring can buffer and shock absorb the lithium ion battery, so that the lithium ion battery can be prevented from being impacted and exploded during transportation.

[0014] 2, the lithium ion battery is placed between the two limiting plates, which can be placed separately, and can be limited, and the clamping plate moves to the side close to each other, which can clamp and limit the lithium ion battery, so that the lithium ion battery can be prevented from being damaged due to shaking during transportation.

[0015] 3, the universal wheel is rotated downward to expand, which can facilitate people to move the equipment, thereby reducing the labor of people and improving the transportation efficiency of lithium ion battery. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is the first kind of three-dimensional structure schematic diagram of the present application.

[0017] Figure 2 It is the second kind of three-dimensional structure schematic diagram of the present application.

[0018] Figure 3 It is the first kind of partial three-dimensional structure schematic diagram of the present application.

[0019] Figure 4 It is the second kind of partial three-dimensional structure schematic diagram of the present application.

[0020] Figure 5 It is the first kind of three-dimensional structure schematic diagram of the opening and closing mechanism of the present application.

[0021] Figure 6 The second perspective view of the opening and closing mechanism of the present application.

[0022] Figure 7 The perspective view of the pulling mechanism of the present application.

[0023] Figure 8 The perspective exploded view of the pulling mechanism of the present application.

[0024] Figure 9 The first perspective view of the limiting mechanism of the present application.

[0025] Figure 10 The second perspective view of the limiting mechanism of the present application.

[0026] Figure 11 The perspective view of the clamping mechanism of the present application.

[0027] Figure 12 The first partial perspective view of the clamping mechanism of the present application.

[0028] Figure 13 The second partial perspective view of the clamping mechanism of the present application.

[0029] Figure 14 The first partial perspective view of the clamping mechanism of the present application.

[0030] Figure 15 The second partial perspective view of the clamping mechanism of the present application.

[0031] Figure 16 The perspective view of the fixing mechanism of the present application.

[0032] Figure 17 The partial perspective view of the fixing mechanism of the present application.

[0033] Figure 18 The perspective view of the moving mechanism of the present application.

[0034] Figure 19 The first partial perspective view of the moving mechanism of the present application.

[0035] Figure 20 The second partial perspective view of the moving mechanism of the present application.

[0036] Explanation of the reference numerals: 1_base, 2_first guide rod, 3_first spring, 4_placement frame, 5_opening and closing mechanism, 50_first fixed block, 51_rotating shaft, 52_first rotating plate, 53_first handle, 6_pulling mechanism, 60_second fixed block, 61_rotating block, 611_connecting block, 62_hollow block, 63_second handle, 7_limiting mechanism, 70_placement frame, 71_connecting plate, 72_limiting plate, 73_third handle, 74_second spring, 8_clamping mechanism, 80_second Guide rod, 81_first sliding plate, 811_third spring, 82_clamping plate, 83_fourth spring, 84_second sliding plate, 85_extrusion block, 86_fifth spring, 87_lower pressure plate, 9_fixing mechanism, 90_third fixed block, 91_locking plate, 92_torsion spring, 10_moving mechanism, 101_fourth fixed block, 102_universal wheel, 103_second rotating plate, 104_third guide rod, 105_sixth spring, 106_sliding frame, 107_third rotating plate, 11_limiting block. DETAILED DESCRIPTION

[0037] Hereinafter, embodiments of the present invention will be described with reference to the accompanying drawings.

[0038] A lithium-ion battery transport device with a buffering effect, such as Figures 1-8 As shown, it includes a base 1, a first guide rod 2, a first spring 3, a placement frame 4, an opening and closing mechanism 5 and a pulling mechanism 6. Two first guide rods 2 are installed on the left and right sides of the bottom of the placement frame 4. The placement frame 4 can be used to place lithium-ion batteries. The two first guide rods 2 are symmetrically arranged front to back. The base 1 is slidably connected between the four first guide rods 2. The base 1 can support the placement frame 4. First springs 3 are connected between the first guide rods 2 and the left and right sides of the inner wall of the base 1. The first springs 3 are all wound on the surface of the first guide rods 2. The first springs 3 can buffer and reset the placement frame 4. An opening and closing mechanism 5 is provided on the placement frame 4. The opening and closing mechanism 5 can cover the placement frame 4, thereby protecting the lithium-ion batteries. A pulling mechanism 6 is provided on the placement frame 4. The pulling mechanism 6 can facilitate people to lift the device.

[0039] like Figure 1 、 Figure 2 、 Figure 5 and Figure 6 As shown, the opening and closing mechanism 5 includes a first fixed block 50, a rotating shaft 51, a first rotating plate 52 and a first handle 53. The first fixed blocks 50 are installed on the left and right sides of the upper part of the placement frame 4. The first fixed blocks 50 are rotatably connected to the first rotating shaft 51, and the first rotating plates 52 are connected to the first rotating shaft 51. The first rotating plates 52 can cover the placement frame 4 and thus protect the lithium-ion battery. The lower side of the first rotating plate 52 is rotatably connected to the first handle 53. The first handle 53 facilitates people to rotate the first rotating plate 52.

[0040] As Figure 1 , Figure 2 , Figure 7 and Figure 8 shown, pull mechanism 6 includes a second fixed block 60, rotating block 61, connecting block 611, hollow block 62 and second handle 63, both sides of the placement frame 4 are provided with two second fixed blocks 60, the two second fixed blocks 60 on the left side are symmetrically arranged, the two second fixed blocks 60 on the right side are also symmetrically arranged, the second fixed block 60 is rotatably connected with the rotating block 61, the rotating block 61 is connected with the connecting block 611, the connecting block 611 is slidably connected with the hollow block 62, the connecting block 611 can guide the hollow block 62, the second handle 63 is connected between the two hollow blocks 62 on the left side, the second handle 63 is also connected between the two hollow blocks 62 on the right side, the second handle 63 is convenient for people to lift the device.

[0041] When people need to transport lithium ion batteries, the device can be used to achieve, first, people will be placed in the placement of lithium ion batteries in the frame 4 in order, lithium ion batteries during placement, due to the weight of lithium ion batteries, so that the placement of frame 4 to the side down, the placement of frame 4 to the side down drive the first guide rod 2 to the side down, the first spring 3 is compressed, the first spring 3 can play a buffer reset effect on the placement of frame 4, in turn, can play a buffer effect on the lithium ion battery, prevent the lithium ion battery from being hit explosion, placed, people turn to the side of the first rotating plate 52 close, the first rotating plate 52 can play a cover effect on the placement of frame 4, in turn, can play a protective effect on the lithium ion battery, then people will be pulled down the second handle 63, the second handle 63 to the side down drive the hollow block 62 to the side down, the connecting block 611 can play a guide effect on the hollow block 62, then people will be turned to the side of the second handle 63 away from each other, the second handle 63 drive the hollow block 62, connecting block 611 and rotating block 61 rotation, then people can lift the device, in turn, can transport lithium ion batteries, then when the base 1 and the ground is separated, the base 1 will move down under the action of the first spring 3, then when people transport to the specified location needs to be taken out of the lithium ion battery, first, people will be placed on the ground, the device will move up the side of the base 1, the first spring 3 is compressed, then people turn to the side of the second handle 63 close, then the second handle 63 reverse drive the hollow block 62, connecting block 611 and rotating block 61 reverse, then people move up the second handle 63 reset, the second handle 63 to the side up drive the hollow block 62 to the side up reset, then people turn the first handle 53, then through the first handle 53 will be turned to the side of the first rotating plate 52 away from each other open, the first handle 53 facilitate people to turn on the first rotating plate 52, then people will be taken out of the lithium ion battery, when the lithium ion battery is taken out, the placement of frame 4 will move up reset under the action of the first spring 3, the placement of frame 4 to the side up drive the first guide rod 2 to the side up, repeat the above operation can be stacked lithium ion battery buffer, so as to prevent the lithium ion battery from being hit to cause explosion, and in lithium ion transport can be covered and protected, and facilitate people to lift the device.

[0042] As Figure 1 , Figure 9 and Figure 10As shown, the lithium ion battery limiting mechanism 7 is also included, which can limit the lithium ion battery. The lithium ion battery limiting mechanism 7 includes a placing frame 70, a connecting plate 71, a limiting plate 72, a third handle 73, and a second spring 74. The placing frame 70 is slidably connected to the inner wall of the placing frame 4 and can be detached. The placing frame 70 can be used to place the lithium ion battery. Two connecting plates 71 are connected to the front and rear sides of the placing frame 70 through bolts. Adjacent two connecting plates 71 are arranged symmetrically. Three limiting plates 72 are connected between the front and rear connecting plates 71. The limiting plate 72 can separate the lithium ion battery to limit the effect. The third handle 73 is slidably connected to the top of the front and rear sides of the placing frame 70. The third handle 73 is convenient for people to lift the placing frame 70. The second spring 74 is connected between the third handle 73 and the placing frame 70. The second spring 74 can move the third handle 73 to reset.

[0043] As shown in Figure 9 , it also includes a limiting block 11. The limiting block 11 is connected to the left and right sides of the upper part of the third handle 73. The limiting block 11 can prevent the third handle 73 from being too close to the placing frame 70, which is not convenient for people to pull.

[0044] When people need to transport lithium ion batteries, first, people place the lithium ion batteries in order between the adjacent two limiting plates 72 in the placing frame 70. The limiting plate 72 can limit the lithium ion battery, so as to prevent the lithium ion battery from being scattered and damaged during transportation. Then people can transport the lithium ion battery. After transportation, people pull the third handle 73 upward. At this time, the second spring 74 is compressed. Then people pull the placing frame 70 upward through the third handle 73 to take it out, which is convenient for people to take out the lithium ion battery. After taking out, people reset the placing frame 70. Then release the third handle 73. The third handle 73 moves downward under the action of the second spring 74 to reset. At the same time, the limiting block 11 can limit the third handle 73 to prevent the third handle 73 from being too close to the placing frame 70, which is not convenient for people to pull. Repeating the above operation can limit the lithium ion battery, so as to prevent the lithium ion battery from being scattered and damaged during transportation. It is also convenient for people to take out the lithium ion battery.

[0045] As shown in Figure 1 , Figure 11 , Figure 12 , Figure 13 , Figure 14 and Figure 15As shown, it also includes a clamping mechanism 8 that can clamp and limit the lithium-ion battery. The clamping mechanism 8 includes a second guide rod 80, a first sliding plate 81, a third spring 811, a clamping plate 82, a fourth spring 83, a second sliding plate 84, an extrusion block 85, a fifth spring 86 and a lower pressure plate 87. Two second guide rods 80 are installed on the front and back sides of the inner wall of the placement frame 4. The two second guide rods 80 are symmetrically arranged. The first sliding plate 81 is slidably connected between the two second guide rods 80 on the front side, and the first sliding plate 81 is also slidably connected between the two second guide rods 80 on the rear side. The second guide rod 80 can guide the first sliding plate 81. The third spring 811 is connected between the side of the first sliding plate 81 that is close to each other and the second guide rod 80. The third spring 811 can make the first sliding plate 81 move and reset. The clamping plate 82 is slidably connected to the first sliding plate 81. The clamping plate 82 can clamp and limit the lithium-ion battery. Two fourth springs 83 are connected between the side where the clamping plate 82 and the first sliding plate 81 are close to each other. The two adjacent fourth springs 83 are symmetrically arranged on the left and right. Two second sliding plates 84 are slidably connected to the front and rear sides of the top of the placement rack 70. The two second sliding plates 84 on the front side are symmetrically arranged on the left and right. The two second sliding plates 84 on the right side are also symmetrically arranged on the left and right. An extrusion block 85 is installed on the second sliding plate 84. The extrusion block 85 moves downward to squeeze the first sliding plate 81 to move. A fifth spring 86 is connected between the second sliding plate 84 and the top of the placement rack 70. The fifth spring 86 can make the second sliding plate 84 move and reset. A lower pressing plate 87 is welded on the upper side of the first rotating plate 52. The two adjacent lower pressing plates 87 are symmetrically arranged front and back. The lower pressing plate 87 can squeeze the second sliding plate 84 to move.

[0046] When people need to transport lithium ion batteries, first, people put lithium ion batteries into the placing frame 70, then people rotate the first rotating plate 52 to the side of mutual approach, the rotation of the first rotating plate 52 drives the rotation of the lower pressing plate 87, when the lower pressing plate 87 contacts the second sliding plate 84, the continuous rotation of the lower pressing plate 87 will push the second sliding plate 84 to the downside, at this time the fifth spring 86 is compressed, the downward movement of the second sliding plate 84 drives the downward movement of the extrusion block 85, the downward movement of the extrusion block 85 will move the first sliding plate 81 to the side of mutual approach, the second guide rod 80 can guide the first sliding plate 81, at this time the third spring 811 is compressed, the movement of the first sliding plate 81 to the side of mutual approach drives the clamping plate 82 to move to the side of mutual approach, then the clamping plate 82 can clamp and limit the lithium ion battery, so as to prevent the lithium ion battery from shaking during transportation, when the clamping plate 82 contacts the lithium ion battery, the continuous movement of the first sliding plate 81 will compress the fourth spring 83, then people can transport the lithium ion battery, when the lithium ion battery needs to be taken out after transportation is completed, first, people rotate the first rotating plate 52 to the side of mutual separation through the first handle 53, the reverse rotation of the first rotating plate 52 drives the reverse rotation of the lower pressing plate 87, when the lower pressing plate 87 is separated from the second sliding plate 84, the second sliding plate 84 moves upward to reset under the action of the fifth spring 86, the upward movement of the second sliding plate 84 drives the upward movement of the extrusion block 85 to reset, when the extrusion block 85 is separated from the first sliding plate 81, the first sliding plate 81 moves to the side of mutual separation under the action of the third spring 811, the movement of the first sliding plate 81 drives the clamping plate 82 to move to the side of mutual separation, then the clamping plate 82 resets under the action of the fourth spring 83, then people can take out the lithium ion battery, repeating the above operation can clamp and limit the lithium ion battery, so as to prevent the lithium ion battery from being damaged due to shaking during transportation.

[0047] As Figure 1 , Figure 2 , Figure 16 and Figure 17 indicate, it also includes a fixing mechanism 9 that can fix the first rotating plate 52, the fixing mechanism 9 includes a third fixed block 90, a clamping plate 91 and a torsional spring 92, the third fixed block 90 is installed on the upper front and rear sides of the placing frame 4, the clamping plate 91 is rotatably connected to the third fixed block 90, the clamping plate 91 can clamp and fix the first rotating plate 52, the torsional spring 92 is connected between the left and right sides of the third fixed block 90 and the clamping plate 91, and the torsional spring 92 can make the clamping plate 91 rotate to reset.

[0048] When people need to fix the first rotating plate 52, first, people rotate the first rotating plate 52 to the side close to each other, when the first rotating plate 52 contacts the clamping plate 91, the first rotating plate 52 continues to rotate, which makes the clamping plate 91 rotate, at this time the torsional spring 92 is twisted, the first rotating plate 52 is in the state of clamping the clamping plate 91, so the clamping plate 91 cannot rotate to reset, then the clamping plate 91 can clamp and fix the first rotating plate 52, so that the first rotating plate 52 can be prevented from opening automatically during transportation, and the safety of transporting lithium ion batteries can be improved, then people can transport lithium ion batteries, when people need to take out the lithium ion batteries, first, people rotate the first rotating plate 52 to the side away from each other, when the first rotating plate 52 is separated from the clamping plate 91, the clamping plate 91 reverses and resets under the action of the torsional spring 92, then people can take out the lithium ion batteries, and the above operation can clamp and fix the first rotating plate 52, thereby preventing the first rotating plate 52 from rotating and opening automatically during transportation.

[0049] As shown in Figure 1 , Figure 2 , Figure 18 , Figure 19 and Figure 20 , the mobile mechanism 10 is further included, which can facilitate people to move the device, the mobile mechanism 10 includes the fourth fixed block 101, the universal wheel 102, the second rotating plate 103, the third guide rod 104, the sixth spring 105, the sliding frame 106 and the third rotating plate 107, two fourth fixed blocks 101 are installed on the left and right inner walls of the base 1, and the adjacent two fourth fixed blocks 101 are symmetrically arranged front and back, the universal wheel 102 is rotatably connected to the fourth fixed block 101, the universal wheel 102 can facilitate people to move the device, the side close to each other of the universal wheels 102 on the front and back sides is connected with the second rotating plate 103, the third guide rod 104 is symmetrically installed on the left and right sides of the bottom of the placing frame 4, the sliding frame 106 is slidably connected between the two third guide rods 104 on the front side, the sliding frame 106 is also slidably connected between the two third guide rods 104 on the back side, the third guide rod 104 can guide the sliding frame 106, the left and right sides of the sliding frame 106 are rotatably connected with the adjacent second rotating plate 103, the sixth spring 105 is connected between the lower side of the sliding frame 106 on the front side and the third guide rod 104 on the front side, the sixth spring 105 is also slidably connected between the lower side of the sliding frame 106 on the back side and the third guide rod 104 on the back side, the sixth spring 105 can make the sliding frame 106 move to reset, the third rotating plate 107 is installed on the side away from each other of the adjacent two rotating blocks 61, and the rotation of the third rotating plate 107 can make the sliding frame 106 move.

[0050] When people need to move the device, first, people pull the second handle 63 away from each other, in turn, the rotating block 61 rotates, the third rotating plate 107 rotates, the third rotating plate 107 pushes the sliding frame 106 to the downside, the third guide rod 104 can guide the sliding frame 106, the sixth spring 105 is compressed at this time, the sliding frame 106 moves to the downside, the second rotating plate 103 rotates to the downside, the second rotating plate 103 drives the universal wheel 102 to rotate to the downside, the universal wheel 102 rotates, which can facilitate people to move the device, then people can move the device, in turn, the lithium ion battery can be transported, when the lithium ion device is transported, people rotate the second handle 63 to each other, in turn, the rotating block 61 reverses, the rotating block 61 reverses the third rotating plate 107, when the third rotating plate 107 is separated from the sliding frame 106, the sliding frame 106 moves upward under the action of the sixth spring 105 and resets, the sliding frame 106 moves upward, the second rotating plate 103 moves upward, the second rotating plate 103 rotates upward, the universal wheel 102 rotates upward, and the above operation can facilitate people to move the device, thereby reducing the labor of people and improving the transportation efficiency of the lithium ion battery.

[0051] The above is only an embodiment of the present application, and does not limit the patent range of the present application, any equivalent structure or equivalent process transformation using the content of the present application specification, or direct or indirect application in other related technical fields, are also included in the patent protection range of the present application.

Claims

1. A lithium-ion battery transport device with a buffering effect, comprising a base (1), a first guide rod (2), a first spring (3) and a placement frame (4), wherein two first guide rods (2) are installed on both the left and right sides of the bottom of the placement frame (4), and the two first guide rods (2) are symmetrically arranged in a front-to-back manner. The base (1) is slidably connected between the four first guide rods (2), and first springs (3) are connected between the first guide rods (2) and the left and right sides of the inner wall of the base (1), and the first springs (3) are all wound on the surface of the first guide rods (2). The device is characterized in that: It also includes an opening and closing mechanism (5) and a pulling mechanism (6), wherein the placing frame (4) is provided with the opening and closing mechanism (5), and the placing frame (4) is provided with the pulling mechanism (6); The pulling mechanism (6) includes a second fixed block (60), a rotating block (61), a connecting block (611), a hollow block (62) and a second handle (63). Two second fixed blocks (60) are installed on both the left and right sides of the placement frame (4). The two second fixed blocks (60) on the left are symmetrically arranged front to back, and the two second fixed blocks (60) on the right are also symmetrically arranged front to back. The second fixed blocks (60) are rotatably connected to the rotating blocks (61), and the rotating blocks (61) are connected to the connecting blocks (611). The connecting blocks (611) are slidably connected to the hollow blocks (62). The second handle (63) is connected between the two hollow blocks (62) on the left, and the second handle (63) is also connected between the two hollow blocks (62) on the right. The mobile mechanism (10) further comprises a fourth fixed block (101), a universal wheel (102), a second rotating plate (103), a third guide rod (104), a sixth spring (105), a sliding frame (106) and a third rotating plate (107). Two fourth fixed blocks (101) are installed on both sides of the inner wall of the base (1). The two adjacent fourth fixed blocks (101) are symmetrically arranged front to back. The fourth fixed blocks (101) are rotatably connected to the universal wheel (102). The sides of the universal wheels (102) on the front and rear sides that are close to each other are connected to the second rotating plate (103). The front and rear sides of the bottom of the placement frame (4) are symmetrically arranged left to right. A third guide rod (104) is provided, a sliding frame (106) is slidably connected between the two third guide rods (104) on the front side, a sliding frame (106) is also slidably connected between the two third guide rods (104) on the rear side, the sliding frame (106) is rotatably connected to the adjacent second rotating plate (103) on the left and right sides, a sixth spring (105) is connected between the lower side of the sliding frame (106) on the front side and the third guide rod (104) on the front side, and a sixth spring (105) is also slidably connected between the lower side of the sliding frame (106) on the rear side and the third guide rod (104) on the rear side, and a third rotating plate (107) is installed on the side away from each other of the two adjacent rotating blocks (61).

2. The lithium-ion battery transport device with a buffering effect according to claim 1, characterized in that: The opening and closing mechanism (5) comprises a first fixed block (50), a rotating shaft (51), a first rotating plate (52) and a first handle (53). The first fixed blocks (50) are installed on both the left and right sides of the upper part of the placement frame (4). The first fixed blocks (50) are rotatably connected to the rotating shaft (51), the rotating shaft (51) is connected to the first rotating plate (52), and the lower side of the first rotating plate (52) is rotatably connected to the first handle (53).

3. The lithium-ion battery transport device with a buffering effect according to claim 2, characterized in that: The invention also includes a limiting mechanism (7), which includes a placement frame (70), a connecting plate (71), a limiting plate (72), a third handle (73) and a second spring (74). The inner wall of the placement frame (4) is slidably connected to a detachable placement frame (70). Two connecting plates (71) are installed on the front and rear sides of the placement frame (70). The two adjacent connecting plates (71) are symmetrically arranged in an upper and lower manner. Three limiting plates (72) are connected between the connecting plates (71) on the front and rear sides. The top of the placement frame (70) is slidably connected to the third handle (73) on the front and rear sides. The second spring (74) is connected between the lower side of the third handle (73) and the placement frame (70).

4. The lithium-ion battery transport device with a buffering effect according to claim 3, characterized in that: The clamping mechanism (8) further comprises a second guide rod (80), a first sliding plate (81), a third spring (811), a clamping plate (82), a fourth spring (83), a second sliding plate (84), an extrusion block (85), a fifth spring (86) and a lower pressing plate (87). Two second guide rods (80) are installed on both the front and rear sides of the inner wall of the placement frame (4). The two second guide rods (80) are symmetrically arranged. The first sliding plate (81) is slidably connected between the two second guide rods (80) on the front side, and the first sliding plate (81) is also slidably connected between the two second guide rods (80) on the rear side. The third spring (811) is connected between the side of the first sliding plate (81) that is close to each other and the second guide rod (80). The plates (81) are all slidably connected with a clamping plate (82), and two fourth springs (83) are connected between the clamping plate (82) and the side close to each other of the first sliding plate (81), and the two adjacent fourth springs (83) are symmetrically arranged. The top of the placement rack (70) is slidably connected with two second sliding plates (84), the two second sliding plates (84) on the front side are symmetrically arranged, and the two second sliding plates (84) on the rear side are also symmetrically arranged. An extrusion block (85) is installed on the second sliding plate (84), and a fifth spring (86) is connected between the second sliding plate (84) and the top of the placement rack (70). The upper side of the first rotating plate (52) is connected with a lower pressing plate (87), and the two adjacent lower pressing plates (87) are symmetrically arranged.

5. The lithium-ion battery transport device with a buffering effect according to claim 4, characterized in that: The device further comprises a fixing mechanism (9), which comprises a third fixing block (90), a locking plate (91) and a torsion spring (92). The third fixing blocks (90) are installed on both the front and rear sides of the upper portion of the placement frame (4). The locking plates (91) are rotatably connected to the third fixing blocks (90). The torsion springs (92) are connected between the left and right sides of the third fixing block (90) and the locking plates (91).

6. The lithium-ion battery transport device with a buffering effect according to claim 5, characterized in that: It also includes a limiting block (11), and the limiting blocks (11) are arranged on both the left and right sides of the upper part of the third handle (73).

Citation Information

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