Turnover box
By introducing clamping and splicing mechanisms into the turnover box, the bumps and dumping problems of items during the handling process are solved, and the stability and neat stacking of items are achieved.
Patent Information
- Application Number
- CN202421626489.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-10
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-07-10
AI Technical Summary
When handling the turnover box, it is difficult to maintain level, causing items to move back and forth in the box, which may lead to bumps and damage.
Using clamping mechanisms and splicing mechanisms, including transverse and vertical clamping rods, moving components and splicing blocks, the position of the clamping rod is adjusted by manual knobs, rubber sleeves are used to reduce wear, and ensure neat stacking through splicing grooves and plug joints.
Effectively reduce the bumps and dumping of items during transportation, and improve the stability and neat stacking of items.
Smart Images

Figure CN223174617U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of article transportation, and particularly to a turnover box. Background Art
[0002] Turnover boxes, also known as logistics boxes, are widely used in industries such as machinery, automobiles, household appliances, light industry, and electronics. They are acid and alkali resistant, oil resistant, non-toxic and odorless, can be used to hold food, etc., are easy to clean, convenient for parts turnover, neatly stacked, and easy to manage. Their reasonable design and excellent quality are suitable for transportation, distribution, storage, circulation processing and other links in factory logistics.
[0003] The shape of the turnover box is generally an open rectangle. When moving an article using a turnover box, first place the article to be moved into the turnover box, and then the operator directly uses the handle of the turnover box to move the turnover box to another area or onto a moving transport vehicle.
[0004] During the use of the turnover box, when placing spherical articles or articles that do not fill the space of the turnover box, it is very difficult for the operator to keep the turnover box level when moving it. When the turnover box tilts, the articles in the turnover box may move back and forth and collide with each other, resulting in the possibility of damage to the articles in the turnover box. Summary of the Utility Model
[0005] The purpose of this application is to solve the problem proposed in the above background art that it is very difficult for the operator to keep the turnover box level when moving it. When the turnover box tilts, the articles in the turnover box may move back and forth and collide with each other, resulting in the possibility of damage to the articles in the turnover box. This application provides a turnover box.
[0006] This application specifically adopts the following technical solutions to achieve the above purpose:
[0007] A turnover box includes a turnover box bottom plate. On both sides of the turnover box bottom plate, a first surrounding baffle is fixed. At both ends of the turnover box bottom plate, a first surrounding baffle is also fixed. The first surrounding baffle is fixedly connected to the second surrounding baffle. A clamping mechanism is arranged on the turnover box bottom plate. A splicing mechanism is arranged on the first surrounding baffle and the second surrounding baffle. Handle holes are opened on both the first surrounding baffle and the second surrounding baffle.
[0008] By adopting the above technical solution, place the article on the turnover box bottom plate. The first surrounding baffle and the second surrounding baffle fixed on the turnover box bottom plate surround the article. Then move the clamping mechanism on the turnover box bottom plate. The clamping mechanism clamps the article placed on the turnover box bottom plate, thereby reducing the possibility that the article rolls back and forth at the bottom of the turnover box and the articles collide with each other when the turnover box is being carried.
[0009] Furthermore, the clamping mechanism includes four support columns symmetrically arranged in pairs on the bottom plate of the turnover box. Uniformly distributed transverse clamping rods are fixed between two adjacent support columns. Four pairs of symmetric transverse support sliding rods are arranged between the two baffle plates II. The two ends of three of the transverse support sliding rods are fixedly connected to the baffle plate II, and the two ends of the other transverse support sliding rod are rotatably connected to the baffle plate II. The transverse support sliding rod penetrates through the corresponding support column and is slidably connected to the support column. A moving component is arranged on the bottom plate of the turnover box, and a vertical clamping component is arranged on the bottom plate of the turnover box.
[0010] By adopting the above technical solution, the moving component is used to drive the transverse clamping to clamp the items placed on the bottom plate of the turnover box, and then the vertical clamping component is used to clamp the items, so that the items placed on the bottom plate of the turnover box can be in contact with each other and then be clamped, reducing the possibility that the items move back and forth and collide on the bottom plate of the turnover box during handling after being placed on the bottom plate of the turnover box.
[0011] Furthermore, the moving component includes a manual knob I arranged on the baffle plate II. The manual knob I is fixedly connected to the transverse support sliding rod rotatably connected to the baffle plate II. A bidirectional thread groove is formed on the transverse support sliding rod, and the transverse support sliding rod is threadedly connected to the corresponding support column.
[0012] By adopting the above technical solution, the manual knob I is rotated to make the transverse support sliding rod provided with the bidirectional thread groove rotate, so that the transverse clamping rods on both sides of the item can clamp the item at the same time.
[0013] Furthermore, the vertical clamping component includes four connecting rods symmetrically arranged in pairs on the baffle plate II. Uniformly distributed vertical clamping rods are fixed between the two connecting rods. The vertical clamping rods and the transverse clamping rods are staggered. The two ends of the vertical clamping rod penetrate through the baffle plate II and are slidably connected to the baffle plate II.
[0014] By adopting the above technical solution, after the transverse clamping rod clamps the item placed on the bottom plate of the turnover box, the connecting rod is used to drive the vertical clamping rod to clamp the item again, so that the stability of clamping the item can be further improved, and the possibility that the item moves back and forth at the bottom of the turnover box can be reduced.
[0015] Furthermore, two symmetric support blocks are fixed on one of the baffle plates II. A vertical bidirectional threaded rod is rotatably connected between the two support blocks. Two symmetric threaded blocks are threadedly connected to the vertical bidirectional threaded rod. The two threaded blocks are fixedly connected to the corresponding connecting rods. One end of the vertical bidirectional threaded rod is fixed with a manual knob II.
[0016] By adopting the above technical solution, rotate the manual knob two, so that the vertical double-threaded screw rod rotates under the support of the support block, and make the two threaded blocks approach each other. The two threaded blocks drive the corresponding connecting rods, so that the vertical clamping rods on both sides of the article can clamp the article simultaneously.
[0017] Furthermore, rubber sleeves are wrapped on both the horizontal clamping rod and the vertical clamping rod.
[0018] By adopting the above technical solution, the rubber protective sleeves on the horizontal clamping rod and the vertical clamping rod abut against the article, so that when the horizontal clamping rod and the vertical clamping rod abut against the article, the possibility of abrasion to the article can be reduced.
[0019] Furthermore, the splicing mechanism includes four splicing blocks symmetrically arranged in pairs on the bottom plate of the turnover box. The splicing blocks are fixedly connected to the corresponding first baffle and second baffle. Four symmetrically arranged splicing grooves in pairs are opened at the bottom of the turnover box bottom plate. The splicing blocks correspond to the splicing grooves, and corresponding pin holes are opened on the inner walls of the splicing blocks and the splicing grooves.
[0020] By adopting the above technical solution, when the upper turnover bottom plate is placed on the lower first baffle and second baffle, the splicing blocks are inserted into the splicing grooves on the bottom plate of the turnover box, so that when the stacked turnover boxes are placed neatly, the possibility of the turnover boxes tipping over can be reduced.
[0021] Furthermore, a plug connector is fixed on the splicing block, and the plug connector is a quadrangular pyramid.
[0022] By adopting the above technical solution, when the splicing block enters the splicing groove, the plug connector is used for guiding, so that the splicing block can enter the splicing groove more conveniently.
[0023] In summary, the present application includes at least one of the following beneficial effects;
[0024] 1. In the present application, after placing the article on the bottom plate of the turnover box, rotate the manual knob one to drive the horizontal support sliding rod provided with the double-threaded groove to rotate, make the two symmetric support columns approach each other, the two support columns drive the corresponding horizontal clamping rods, make the corresponding support columns move on the horizontal support sliding rod, and the horizontal clamping rod clamps the article on the bottom plate of the turnover box. Then rotate the manual knob two, so that the vertical double-threaded screw rod rotates under the support of the support block, make the two threaded blocks approach each other, the two threaded blocks drive the corresponding connecting rods, the connecting rods drive the vertical clamping rods to move, and the vertical clamping rods clamp the article, so that the articles placed on the bottom plate of the turnover box can abut against each other and then be clamped, reducing the possibility that the articles move back and forth and collide on the bottom plate of the turnover box during handling after being placed on the bottom plate of the turnover box.
[0025] 2. In this application, when multiple turnover boxes need to be stacked, first align the splicing groove on the bottom plate of the turnover box with the splicing blocks supported by the first surrounding baffle and the second surrounding baffle on the bottom plate of the turnover box that has been placed below. Then, under the guidance of the insertion joint, insert the splicing block completely into the splicing groove so that the bottom plate of the upper turnover box is completely aligned with the first surrounding baffle and the second surrounding baffle below. Then, it is possible to insert a wire into the pin hole to limit the splicing block inserted into the pin hole, achieving the purpose of neatly arranging the stacked turnover boxes and reducing the possibility of the turnover boxes tipping over. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 is the first three-dimensional structure schematic diagram of the turnover box in this application;
[0027] Figure 2 is the second three-dimensional structure schematic diagram of the turnover box in this application;
[0028] Figure 3 is this application Figure 2 the enlarged schematic diagram at A in;
[0029] Figure 4 is this application Figure 2 the enlarged schematic diagram at B in.
[0030] DESCRIPTION OF THE REFERENCE NUMERALS:
[0031] 1. Bottom plate of the turnover box; 2. First surrounding baffle; 3. Second surrounding baffle; 4. Clamping mechanism; 41. Support column; 42. Horizontal clamping rod; 43. Horizontal support slide rod; 44. Moving component; 441. Manual knob one; 442. Bidirectional thread groove; 45. Vertical clamping component; 451. Vertical clamping rod; 452. Connecting rod; 453. Support block; 454. Threaded block; 455. Vertical bidirectional threaded rod; 456. Manual knob two; 5. Splicing mechanism; 51. Splicing block; 52. Splicing groove; 53. Pin hole; 54. Insertion joint; 6. Handle hole. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0032] The following further elaborates on this application Figure 1 in conjunction with FIGS. 1-4.
[0033] The embodiment of this application discloses a turnover box.
[0034] Refer to Figure 1 . Figure 2 and Figure 3, A turnover box, comprising a turnover box bottom plate 1, with a retaining plate one 2 fixed on both sides of the turnover box bottom plate 1, and a retaining plate one 2 fixed at both ends of the turnover box bottom plate 1. The retaining plate one 2 is fixedly connected to the retaining plate two 3. A clamping mechanism 4 is arranged on the turnover box bottom plate 1, a splicing mechanism 5 is arranged on the retaining plate one 2 and the retaining plate two 3, and handle holes 6 are opened on both the retaining plate one 2 and the retaining plate two 3.
[0035] When using this turnover box, when it is necessary to put spherical items or smaller items into the turnover box, first place the items on the turnover box bottom plate 1. The retaining plate one 2 and the retaining plate two 3 fixed on the turnover box bottom plate 1 surround the items. Then, use the clamping mechanism 4 to move on the turnover box bottom plate 1, and the clamping mechanism 4 clamps the items placed on the turnover box bottom plate 1. Then, the operator uses the handle holes 6 to carry and transport the entire turnover box. When placing the turnover box and it is necessary to stack the turnover boxes, use the splicing mechanism 5 on the turnover box bottom plate 1 to limit and splice adjacent turnover boxes. By placing the items on the bottom of the turnover box and then using the clamping mechanism 4 to clamp the items on the turnover box bottom plate 1, it is possible to reduce the possibility that the items roll back and forth at the bottom of the turnover box and collide with each other when handling the turnover box.
[0036] Refer to Figure 1 , Figure 2 and Figure 3 , The clamping mechanism 4 includes four support columns 41 symmetrically arranged in pairs on the turnover box bottom plate 1. Uniformly distributed transverse clamping rods 42 are fixed between two adjacent support columns 41. Four symmetrically arranged transverse support sliding rods 43 are arranged between the two retaining plates two 3. The two ends of three of the transverse support sliding rods 43 are fixedly connected to the retaining plate two 3, and the two ends of the other transverse support sliding rod 43 are rotatably connected to the retaining plate two 3. The transverse support sliding rod 43 penetrates through the corresponding support column 41 and is slidably connected to the support column 41. A moving component 44 is arranged on the turnover box bottom plate 1, and a vertical clamping component 45 is arranged on the turnover box bottom plate 1.
[0037] In addition, the moving component 44 includes a manual knob one 441 arranged on the retaining plate two 3. The manual knob one 441 is fixedly connected to the transverse support sliding rod 43 rotatably connected to the retaining plate two 3. A bidirectional thread groove 442 is opened on the transverse support sliding rod 43, and it is threadedly connected to the corresponding support column 41.
[0038] Furthermore, the vertical clamping component 45 includes four connecting rods 452 symmetrically arranged in pairs on the retaining plate two 3. Uniformly distributed vertical clamping rods 451 are fixed between two connecting rods 452. The vertical clamping rods 451 and the transverse clamping rods 42 are staggered. The two ends of the vertical clamping rods 451 penetrate through the retaining plate two 3 and are slidably connected to the retaining plate two 3.
[0039] Moreover, two symmetrical support blocks 453 are fixed on one of the baffle plates II 3. A vertical bidirectional threaded rod 455 is rotatably connected between the two support blocks. Two symmetrical threaded blocks 454 are threadedly connected to the vertical bidirectional threaded rod 455. The two threaded blocks 454 are fixedly connected to the corresponding connecting rods 452. One end of the vertical bidirectional threaded rod is fixed with a manual knob II 456.
[0040] After placing the article on the turnover box bottom plate 1, first rotate the manual knob I 441 to drive the transverse support slide bar 43 provided with the bidirectional thread groove 442 by the manual knob I 441, so that the two symmetrical support columns 41 approach each other. The two support columns 41 drive the corresponding transverse clamping rods 42, and enable the corresponding support columns 41 to move on the transverse support slide bar 43, so that the transverse clamping rods 42 clamp the article on the turnover box bottom plate 1. Then rotate the manual knob II 456 to make the vertical bidirectional threaded rod 455 rotate under the support of the support block 453, so that the two threaded blocks 454 approach each other. The two threaded blocks 454 drive the corresponding connecting rods 452, and the connecting rods 452 drive the vertical clamping rod 451 to move. The vertical clamping rod 451 clamps the article. By placing the article on the turnover box bottom plate 1, then clamping the article with the transverse clamping rod 42, and then clamping the article again with the vertical clamping rod 451, it is possible to make the articles placed on the turnover box bottom plate 1 contact each other and then be clamped, reducing the possibility that the articles move back and forth and collide on the turnover box bottom plate 1 during handling after being placed on the turnover box bottom plate 1.
[0041] Refer to Figure 1 and Figure 2 Rubber sleeves are wrapped on both the transverse clamping rod 42 and the vertical clamping rod 451. When clamping the article with the transverse clamping rod 42 and the vertical clamping rod 451, the rubber protective sleeves on the transverse clamping rod 42 and the vertical clamping rod 451 abut against the article. By sleeving rubber sleeves on the transverse clamping rod 42 and the vertical clamping rod 451, it is possible to reduce the possibility of wearing the article when the transverse clamping rod 42 and the vertical clamping rod 451 abut against the article.
[0042] Refer to Figure 2 and Figure 4 Refer to
[0043] The splicing mechanism 5 includes four splicing blocks 51 that are symmetrically arranged in pairs on the turnover box bottom plate 1. The splicing blocks 51 are fixedly connected to the corresponding baffle plates I 2 and baffle plates II 3. Four splicing grooves 52 that are symmetrically arranged in pairs are formed at the bottom of the turnover box bottom plate 1. The splicing blocks 51 correspond to the splicing grooves 52. Corresponding pin holes 53 are formed on the inner walls of the splicing blocks 51 and the splicing grooves 52.
[0044] When multiple turnover boxes need to be stacked, first align the splicing groove 52 on the bottom plate 1 of the turnover box with the splicing block 51 supported by the first surrounding baffle 2 and the second surrounding baffle 3 on the bottom plate 1 of the turnover box that has been placed below. Then, under the guidance of the insertion joint 54, insert the splicing block 51 completely into the splicing groove 52, align the upper bottom plate 1 of the turnover box with the first surrounding baffle 2 and the second surrounding baffle 3 below completely. Then, it is possible to insert a wire into the pin hole 53 to limit the splicing block 51 inserted into the pin hole 53. When placing the upper turnover bottom plate on the first surrounding baffle 2 and the second surrounding baffle 3 below, the splicing block 51 enters the splicing groove 52 on the bottom plate 1 of the turnover box, so that the stacked turnover boxes can be placed neatly and the possibility of the turnover boxes tipping over can be reduced.
[0045] Working principle: When a spherical item or a smaller item needs to be placed into the turnover box, first place the item on the bottom plate 1 of the turnover box. The first surrounding baffle 2 and the second surrounding baffle 3 are fixed on the bottom plate 1 of the turnover box to surround the item. Rotate the first manual knob 441 to drive the transverse support slide rod 43 provided with a double-thread groove 442 to rotate by the first manual knob 441, and make two symmetric support columns 41 approach each other. The two support columns 41 drive the corresponding transverse clamping rods 42, and make the corresponding support columns 41 move on the transverse support slide rod 43, so that the transverse clamping rods 42 clamp the item on the bottom plate 1 of the turnover box. Then rotate the second manual knob 456 to drive the vertical double-threaded screw rod 455 to rotate under the support of the support block 453, and make two threaded blocks 454 approach each other. The two threaded blocks 454 drive the corresponding connecting rods 452, and the connecting rods 452 drive the vertical clamping rods 451 to move, and the vertical clamping rods 451 clamp the item. When multiple turnover boxes need to be stacked, first align the splicing groove 52 on the bottom plate 1 of the turnover box with the splicing block 51 supported by the first surrounding baffle 2 and the second surrounding baffle 3 on the bottom plate 1 of the turnover box that has been placed below. Then, under the guidance of the insertion joint 54, insert the splicing block 51 completely into the splicing groove 52, align the upper bottom plate 1 of the turnover box with the first surrounding baffle 2 and the second surrounding baffle 3 below completely. Then, it is possible to insert a wire into the pin hole 53 to limit the splicing block 51 inserted into the pin hole 53.
Claims
1. A turnover box, comprising a turnover box bottom plate (1), characterized in that: On both sides of the bottom plate (1) of the turnover box, there are fixed first enclosing baffles (2). At both ends of the bottom plate (1) of the turnover box, there are fixed first enclosing baffles (2). The first enclosing baffle (2) is fixedly connected to the second enclosing baffle (3). A clamping mechanism (4) is arranged on the bottom plate (1) of the turnover box. A splicing mechanism (5) is arranged on the first enclosing baffle (2) and the second enclosing baffle (3). Handle holes (6) are formed in both the first enclosing baffle (2) and the second enclosing baffle (3).
2. The turnover box according to claim 1, characterized in that: The clamping mechanism (4) includes four support columns (41) symmetrically arranged in pairs on the bottom plate (1) of the turnover box. Horizontally clamping rods (42) evenly distributed are fixed between two adjacent support columns (41). Four laterally supporting sliding rods (43) symmetrically arranged in pairs are arranged between the two second enclosing baffles (3). The two ends of three of the laterally supporting sliding rods (43) are fixedly connected to the second enclosing baffle (3), and the two ends of the other laterally supporting sliding rod (43) are rotatably connected to the second enclosing baffle (3). The laterally supporting sliding rod (43) penetrates through the corresponding support column (41) and is slidably connected to the support column (41). A moving component (44) is arranged on the bottom plate (1) of the turnover box. A vertical clamping component (45) is arranged on the bottom plate (1) of the turnover box.
3. The turnover box according to claim 2, characterized in that: The moving component (44) includes a manual knob one (441) arranged on the second enclosing baffle (3). The manual knob one (441) is fixedly connected to the laterally supporting sliding rod (43) rotatably connected to the second enclosing baffle (3). A bidirectional thread groove (442) is formed in the laterally supporting sliding rod (43), and it is threadedly connected to the corresponding support column (41).
4. The turnover box according to claim 2, characterized in that: The vertical clamping component (45) includes four connecting rods (452) symmetrically arranged in pairs on the second enclosing baffle (3). Vertically clamping rods (451) evenly distributed are fixed between the two connecting rods (452). The vertically clamping rods (451) and the horizontally clamping rods (42) are staggered. The two ends of the vertically clamping rod (451) penetrate through the second enclosing baffle (3) and are slidably connected to the second enclosing baffle (3).
5. The turnover box according to claim 2, wherein: Two symmetric support blocks (453) are fixed on one of the second enclosing baffles (3). A vertical bidirectional threaded rod (455) is rotatably connected between the two support blocks. Two symmetric threaded blocks (454) are threadedly connected to the vertical bidirectional threaded rod (455). The two threaded blocks (454) are fixedly connected to the corresponding connecting rods (452). One end of the vertical bidirectional threaded rod is fixedly connected to a manual knob two (456).
6. The turnover box according to claim 4, characterized in that: Rubber sleeves are wrapped on both the horizontally clamping rod (42) and the vertically clamping rod (451).
7. A turnover box according to claim 1, characterized in that: The splicing mechanism (5) includes four splicing blocks (51) symmetrically arranged in pairs on the bottom plate (1) of the turnover box. The splicing blocks (51) are fixedly connected to the corresponding first baffle (2) and second baffle (3). Four splicing grooves (52) symmetrically arranged in pairs are formed at the bottom of the bottom plate (1) of the turnover box. The splicing blocks (51) correspond to the splicing grooves (52). Corresponding pin holes (53) are formed on the inner walls of the splicing blocks (51) and the splicing grooves (52).
8. The turnover box according to claim 7, characterized in that: A plug connector (54) is fixed on the splicing block (51), and the plug connector (54) is a quadrangular pyramid.