Pre-loaded transfer vehicle

By designing a transfer carrier with detachable central and side partitions, the cost and cycle issues when printing product production changes are resolved, achieving stable support and adaptive transfer, and reducing product damage.

CN117922959BActive Publication Date: 2026-03-27CHONGQING FARSIGHT PRINTING
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-03-11
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

When changes occur in the production of printed products, existing technologies require the creation of new molds for special purposes, resulting in high costs and long cycles, and making it difficult to efficiently adapt to the transfer needs of different products.

Method used

Design a pre-loaded material transfer carrier, including a detachable central partition and side partitions. Through the staggered arrangement of support bars and connecting components, it achieves stable support and adaptation for printed products, adapts to different product specifications, and reduces product damage.

Benefits of technology

It reduces the cost and cycle time of changes in printed product production, improves stability and adaptability during transportation, and reduces product damage.

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Abstract

The application relates to the field of special packaging equipment, and relates to a preloaded material transfer carrier which comprises a base, two side partitions and a middle partition arranged between the two side partitions, the side partitions are parallel to the middle partition and perpendicular to the base, and the side partitions and the middle partition are detachably arranged on the base; the opposite side walls of the two adjacent side partitions and the two opposite plate surfaces of the middle partition are each provided with a plurality of supporting strips, the supporting strips located on the same plate surface of the side partition and the middle partition are arranged in a staggered mode with the supporting strips of the adjacent middle partition or side partition, the length of the intersecting and overlapping part of the supporting strips of the middle partition and the middle partition of the adjacent side partition is L, and L>=0. The application is suitable for preloading of different printing products, and can significantly reduce the cost and period when the printing product production is changed.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of special packaging equipment, in particular to a pre-loaded material transfer carrier. BACKGROUND

[0002] In the process of transferring printed products, especially for products that need to be pre-loaded and then sealed with film, the transfer requirements are relatively high. Therefore, for such products, it is often necessary to load them into designated molds for loading and transportation.

[0003] Using a special mold that is opened, a customized mold needs to be designed for a specific product, which is different from standardized products or other products in the printing industry. Except for a small number of single products that need to be supplied for a long time, the general situation of printed products is to adjust according to demand.

[0004] Therefore, in the process of producing new printed products, the special mold used by the previously opened mold cannot be pre-loaded and transferred for new products. At this time, it is still necessary to re-open the mold to produce a new product-specific mold, which has a relatively high production cost, and waiting for the production of the special mold will also cause the cycle to be lengthened. Therefore, how to reduce the cost and cycle of printed product production changes is a problem that needs to be solved at present. SUMMARY

[0005] In order to reduce the cost and cycle of printed product production changes, the present application provides a pre-loaded material transfer carrier.

[0006] The pre-loaded material transfer carrier provided by the present application adopts the following technical solution:

[0007] A pre-loaded material transfer carrier, comprising a base, two edge partitions and a middle partition arranged between the two edge partitions, the edge partitions are parallel to the middle partition and perpendicular to the base, and the edge partitions and the middle partition are detachably arranged on the base; the opposite side walls of the two adjacent edge partitions and the two opposite plate surfaces of the middle partition are each provided with a plurality of support bars, the support bars on the same plate surface of the edge partition and the middle partition are arranged in a staggered manner with the support bars of the adjacent middle partition or edge partition, the length of the overlapping part of the support bars in the middle partition and the adjacent edge partition is L, and L≥0.

[0008] By adopting the technical scheme, when the printed product changes, only part of the partition plates need to be added or removed, so that the spacing between adjacent partition plates and the spacing between the partition plates and adjacent edge partition plates are adapted to the size of different printed products; meanwhile, the support of the printed product can be realized by the support strips of the partition plates and adjacent partition plates and the staggered overlap of the support strips between adjacent two partition plates, and the printed product is kept in gap cooperation with the base, so as to facilitate the transfer of the printed product, thereby not only being able to adapt to different printed products, but also being able to keep the gap cooperation with the base after the printed product is replaced, reducing the possibility of damaging the printed product in the process of transferring the printed product, and being able to relatively fully support the printed product.

[0009] Optionally, the base is provided with mounting grooves matched with the partition plates, the edge partition plates and the support strips, the partition plates and the edge partition plates are protrudingly arranged towards the base relative to the support strips, and the inner walls of the mounting grooves are matched with the partition plates, the edge partition plates and the support strips.

[0010] By adopting the technical scheme, the partition plates and the edge partition plates are protrudingly arranged relative to the fixed support strips and are inserted and matched in the mounting grooves, at this time, after the printed product is clamped and fixed, the pressure of the tension of the printed product applied to the edge partition plates and the partition plates can not only be limited by abutting against the base through the support strips, but also further generate a reverse force arm through the protruding parts of the partition plates and the edge partition plates cooperating with the mounting grooves, so as to further optimize the stability in use.

[0011] Optionally, the partition plates and the edge partition plates are detachably connected to the base through the connecting assemblies, the base is provided with connecting holes corresponding to the connecting assemblies, the connecting holes are stepped holes with large ends opening towards the side of the edge partition plates, the connecting assembly comprises a connecting pin and a plurality of locking pins arranged around the connecting pin, the connecting pin is provided with a connecting groove and is fixed to the partition plate or the edge partition plate, the locking pin is inserted and slidably connected to the inner wall of the large end of the connecting hole, the connecting pin is provided with a chamfer for spreading the locking pin, and the connecting hole is provided with a contraction member for driving the plurality of locking pins to contract and be inserted into the connecting groove.

[0012] By adopting the technical scheme, due to the automation of production, if the partition plates and the edge partition plates are fixed by bolts, a separate screwing equipment is needed, but in the foregoing scheme, only the partition plates and the edge partition plates need to be moved towards the base and the connecting pin is inserted into the connecting hole, in this process, the locking pin is spread due to the chamfer, and then the locking pin is inserted and matched in the connecting groove under the action of the contraction member, so as to fix the partition plate or the edge partition plate to the base, and when the partition plate or the edge partition plate is removed, only the locking pin needs to be spread.

[0013] Optionally, the contraction member is an elastic ring and is arranged in the plurality of locking pins, and the connecting pin is arranged in the contraction member.

[0014] By using the above technical scheme, when in use, under the elastic contraction of the contraction member, the plurality of locking pins will keep a tendency of sliding towards the connecting pin, so that after the connecting pin is inserted into the connecting hole and the middle partition plate and the side partition plate abut against the base, the locking pin can be timely inserted into and abut against the connecting groove.

[0015] Optionally, at least part of the structure of the locking pin is made of a magnetic material or the locking pin is fixed with a magnetic member, and the periphery of the connecting hole is further provided with a control member for controlling the opening of the plurality of locking pins, and the control member is an electromagnet.

[0016] By using the above technical scheme, when the middle partition plate or the side partition plate needs to be disassembled, the control member is only needed to control the locking pin to separate from the connecting pin, so that the connecting pin can be separated from the base, and the disassembly of the middle partition plate or the side partition plate is completed.

[0017] Optionally, the control member is in a ring structure and is embedded in the inner wall of the large end of the connecting hole, and the plurality of locking pins are located on the inner side of the control member.

[0018] By using the above technical scheme, a plurality of locking pins can be simultaneously attracted to open, so as to facilitate automatic operation.

[0019] Optionally, the connecting pin is inserted into the small end of the connecting hole from the part of the connecting groove facing the connected middle partition plate or side partition plate.

[0020] By using the above technical scheme, the connecting pin can be inserted into the small end of the connecting hole, so as to increase the contact area with the base and optimize the stability during use.

[0021] Optionally, at least the part of the connecting pin located in the connecting groove facing the connected middle partition plate or side partition plate is in a polygonal structure, and the small end of the connecting hole is adapted to the part of the connecting pin located in the connecting groove facing the connected middle partition plate or side partition plate.

[0022] By using the above technical scheme, the connecting pin can be further closely matched with the connecting hole.

[0023] Optionally, the locking pin is provided with a magnetic member, the magnetic member is a permanent magnet with a fixed magnetic field direction, the magnetic field direction of the control member is variable, the outer wall of the locking pin on the side facing the base is arranged at an angle with the axial direction of the connecting pin, and the outer wall of the connecting groove on the side away from the connected middle partition plate or side partition plate is adapted to the locking pin and is used to push the connecting pin to slide towards the inner side of the connecting hole.

[0024] By adopting the technical scheme, the control member can not only make the plurality of locking pins spread, but also further increase the pressure of the locking pins abutting against the inner wall of the connecting groove after the middle partition plate or the side partition plate is fixed to the base, so as to reduce the possibility that the inner wall of the connecting groove which is obliquely arranged pushes the locking pins to retract due to the vibration or pressure of the connecting pin.

[0025] In summary, the present application has at least one of the following beneficial technical effects:

[0026] When preloading the printing product material, the middle partition plate and the side partition plate are fixed to the base through the connecting assembly one by one, and the spacing is adapted to the corresponding printing product. Meanwhile, the fixed number of the middle partition plate and the insertion into different mounting grooves can adapt to the installation space required by different products. In the production process, in order to conveniently replace and disassemble the middle partition plate and the side partition plate for automatic operation, after the connecting pin spreads the plurality of locking pins, the locking pins are relatively close to the inner wall of the connecting groove under the action of the retracting member and the control member, so as to fix the middle partition plate and the side partition plate. BRIEF DESCRIPTION OF DRAWINGS

[0027] Figure 1 is a structural schematic diagram of an embodiment of the present application.

[0028] Figure 2 is a structural schematic diagram of a base in an embodiment of the present application.

[0029] Figure 3 is Figure 1 is a sectional structural schematic diagram of line A-A in the middle.

[0030] Figure 4 is Figure 3 is an enlarged structural schematic diagram of part B.

[0031] Reference signs: 1, base; 11, mounting groove; 12, connecting hole; 121, locking hole; 2, side partition plate; 3, middle partition plate; 4, support strip; 5, connecting assembly; 51, connecting pin; 511, connecting groove; 52, locking pin; 521, magnetic attraction member; 53, retracting member; 54, control member. DETAILED DESCRIPTION

[0032] The following will be described in detail in combination with the accompanying Figures 1-4 The present application will be further described in detail.

[0033] An embodiment of the present application discloses a preloading material transfer carrier. Referring to Figure 1 and Figure 2The preloading material transfer vehicle comprises a base 1, two mutually parallel side partitions 2 and a plurality of middle partitions 3, the side partitions 2 are parallel to the middle partitions 3, and the side partitions 2 are perpendicular to the base 1. The side partitions 2 are arranged at the two ends of the base 1 along the direction perpendicular to the side partitions 1, and the plurality of middle partitions 3 are distributed along the distribution direction of the two side partitions 2 to form a preloading material space. Wherein, the middle partitions 3 and the side partitions 2 are detachably fixed to the base 1 through the connecting assembly 5 and are located on the same side surface of the base 1.

[0034] Specifically, in order to be able to pre-load different printed products, the side surface of the two side partitions 2 facing each other is fixedly connected with a plurality of support bars 4, the plurality of support bars 4 are arranged in the direction parallel to the surface of the base 1 and the side partitions 2, and the support bars 4 are arranged at an angle with the connected side partitions 2, preferably 90°, that is, the support bars 4 are perpendicular to the side partitions 2.

[0035] Referring to Figure 1 and Figure 2 At the same time, the two side surfaces of the middle partition 3 are also fixedly connected with a plurality of support bars 4, and the support bars 4 are perpendicular to the connected middle partition 3. The support bars 4 on the side partitions 2 are arranged in a staggered manner with the support bars 4 on the adjacent middle partitions 3, so that the support bars 4 on the side partitions 2 and the support bars 4 on the adjacent middle partitions 3 can overlap. The support bars 4 on the facing side surfaces of the two adjacent middle partitions 3 are also arranged in a staggered manner, and the support bars 4 on the facing side surfaces of the two adjacent middle partitions 3 can overlap. Wherein, the length of the overlapping part of the support bars 4 on the facing side surfaces of the two adjacent middle partitions 3 is L, and the length of the overlapping part of the support bars 4 on the side partitions 2 and the adjacent middle partitions 3 is also L, then L≥0; so that when the distance between the adjacent middle partitions 3 changes, the printed products can be supported by the support bars 4.

[0036] In addition, since the side partitions 2 and the middle partitions 3 are connected to the base 1 through the connecting assembly 5, when the side partitions 2 and the middle partitions 3 are subjected to the thrust generated by the tension of the printed products, the side partitions 2 and the middle partitions 3 are easy to be deflected relative to the base 1, at this time, although the support bars 4 can limit the effect by abutting the base 1, the stability is still relatively low. Therefore, the edge of the middle partition 3 towards the base 1 is protrudingly arranged relative to the support bar 4 towards the base 1; and the edge of the side partition 2 towards the base 1 is also protrudingly arranged relative to the support bar 4 towards the base 1; at the same time, the base 1 is provided with a mounting groove 11, the mounting groove 11 is adapted to the side partitions 2, the middle partitions 3 and the support bars 4, and the edge of the side partitions 2, the middle partitions 3 and the support bars 4 towards the base 1 is inserted into the mounting groove 11, so that when the side partitions 2 and the middle partitions 3 are subjected to the tension of the printed products, the side partitions 2 and the middle partitions 3 can reduce the torque on one hand and limit the deflection of the middle partitions 3 and the side partitions 2 on the other hand through the protruding part of the middle partitions 3 and the middle partitions 3 relative to the support bar 4, thereby optimizing the stability during use.

[0037] With reference to Figure 3 and Figure 4 , the same side partition plate 2 and the middle partition plate 3 are respectively provided with three connecting assemblies 5, and in order to cooperate with the connecting assemblies 5, the bottom wall of the mounting groove 11 on the base 1 is provided with a plurality of connecting holes 12 corresponding to the connecting assemblies 5. The connecting hole 12 is a counterbore hole and a stepped hole, and the small end of the connecting hole 12 is arranged to open towards the side of the middle partition plate 3.

[0038] Specifically, the connecting assembly 5 includes a connecting pin 51 in a polygonal prism structure and a plurality of locking pins 52 arranged around the connecting pin 51, and the connecting pin 51 is perpendicular to the locking pin 52, and the connecting pin 51 is perpendicular to the base 1 and parallel to the middle partition plate 3, so as to be inserted into the connecting hole 12. The inner wall of the large end of the connecting hole 12 is provided with a plurality of locking holes 121 arranged around the central axis of the connecting hole 12, and the locking hole 121 is a stepped hole and the small end communicates with the connecting hole 12. The locking pin 52 is in a stepped shaft structure and the large end is located inside the large end of the locking hole 121, and the locking pin 52 is inserted and slides in the locking hole 121, and the sliding path of the locking pin 52 is limited by the abutment of the large end of the locking pin 52 to the inner wall of the locking hole 121.

[0039] The middle part of the connecting pin 51 is provided with a connecting groove 511, and the connecting groove 511 is arranged around the central axis of the connecting pin 51, and the connecting groove 511 is located inside the large end of the connecting hole 12, so as to be inserted and cooperated with the locking pin 52. And the part of the connecting pin 51 away from the base 1 is inserted and cooperated in the small end of the connecting hole 12 and passes through the support strip 4, so as to further optimize the stability during use. Among them, the shrinkage member 53 is arranged in the large end of the connecting hole 12, so as to control the state that the plurality of locking pins 52 are inserted and cooperated in the connecting groove 511 without other external force; at the same time, the end edge of the connecting pin 51 away from the connected side partition plate 2 or middle partition plate 3 is arranged in a chamfer, so as to facilitate the expansion of the plurality of connecting pins 51 while being relatively stably abutted and cooperated with the bottom wall of the connecting hole 12.

[0040] With reference to Figure 3 and Figure 4 , the shrinkage member 53 is a elastic ring, that is, the shrinkage member 53 is a ring structure made of elastic material, and the shrinkage member 53 is simultaneously arranged in the opposite ends of the plurality of locking pins 52, so as to drive the locking pin 52 to slide towards the connecting pin 51 and be inserted and cooperated in the connecting groove 511.

[0041] In addition, in order to make the locking pin 52 relatively tightly connected with the connecting pin 51, the angle between the outer wall of the connecting groove 511 on one side of the base 1 and the central axis of the connecting pin 51 is α, and 30°≥α≥5°, and the connecting groove 511 is provided with a large end opening to the outside. The outer wall of the locking pin 52 on one side of the base 1 is inclined and parallel to the groove wall of the connecting groove 511, so that when the locking pin 52 slides towards the connecting pin 51 and abuts against the connecting groove 511, the connecting pin 51 can be stably limited to the current position, and at the same time, the outer wall of the connecting groove 511 on one side of the base 1 is inclined, which can reduce the possibility of the locking pin 52 being pushed back by the connecting pin 51, thereby optimizing the stability during use.

[0042] Of course, in other embodiments, the contraction member 53 includes a plurality of elastic ropes made of elastic material, and an elastic rope is arranged between adjacent two locking pins 52, and the two ends of the elastic rope are fixedly connected to the adjacent locking pins 52, so as to drive the contraction of the plurality of locking pins 52.

[0043] Referring to Figure 3 and Figure 4 Meanwhile, the connecting assembly 5 further includes a control member 54 arranged in the connecting hole 12, which is used to expand the plurality of locking pins 52 when the middle partition plate 3 or the side partition plate 2 is disassembled, so as to facilitate the disengagement of the middle partition plate 3 and the side partition plate 2 from the base 1. The control member 54 is an annular electromagnet, and the control member 54 is embedded in the base 1, and the plurality of locking pins 52 are located on the inner side of the control member 54. Among them, at least part of the structure of the locking pin 52 is made of magnetic sensitive material or fixedly connected with a magnetic attraction member 521, and in the embodiment, the magnetic attraction member 521 is fixedly connected, and the magnetic poles of the magnetic attraction member 521 are distributed parallel to the locking pin 52, so that when the magnetic field direction of the control member 54 changes, the magnetic attraction member 521 can slide towards or away from the connecting pin 51, and when the middle partition plate 3 and the side partition plate 2 are fixed, the locking pin 52 can be relatively more tightly attached to the inner wall of the connecting groove 511.

[0044] Of course, in other embodiments, the connecting assembly 5 can also use a plurality of column buckles fixed to the edges of the middle partition plate 3 or the side partition plate 2, and control the expansion and contraction of the column buckles by the control member 54 cooperating with the magnetic attraction member 521 fixed to the column buckles, so as to realize the fixing and disassembly.

[0045] The implementation principle of the embodiment of the application is that when the material is preloaded, the middle partition plate 3 and the side partition plate 2 are fixed to the base 1 through the connecting assembly 5 one by one, and the spacing is adapted to the corresponding printed product, and at the same time, the fixed number of the middle partition plate 3 and the plug-in cooperation in different mounting grooves 11 can adapt to the installation space required by different products.

[0046] Meanwhile, in order to conveniently replace and disassemble the middle partition plate 3 and the side partition plate 2 in the production process, so as to facilitate the automatic operation, after the connecting pin 51 supports the plurality of locking pins 52 during the process that the middle partition plate 3 or the side partition plate 2 is inserted into the installation groove 11, the locking pins 52 are relatively tightly abutted against the inner wall of the connecting groove 511 under the action of the contraction member 53 and the control member 54, so as to realize the fixation of the middle partition plate 3 and the side partition plate 2.

[0047] The above are preferred embodiments of the present application, and are not intended to limit the protection scope of the present application, so that: any equivalent changes made according to the structure, shape, principle of the present application should be covered within the protection scope of the present application.

Claims

1. A pre-loaded transfer carrier, characterized by: The utility model provides a kind of cabinet, including base (1), two edge partitions (2) and the middle partition (3) being arranged between two edge partitions (2), the edge partition (2) is parallel to middle partition (3) and is perpendicular to base (1), and the edge partition (2) and middle partition (3) are all detachably arranged in base (1); Opposite side outer walls of adjacent two edge partitions (2) and two opposite plate surfaces of middle partition (3) are all provided with a plurality of support strips (4), support strip (4) on the same plate surface of the edge partition (2) and the middle partition (3) is arranged in staggered with the support strip (4) of adjacent middle partition (3) or edge partition (2), the length of the cross-over overlapping portion of the support strip (4) in the middle partition (3) and the adjacent edge partition (2) is L, and L is greater than or equal to 0; The base (1) is provided with a mounting groove (11) matched with the middle partition (3), the edge partition (2) and the support strip (4), the middle partition (3) and the edge partition (2) are protruded towards the base (1) relative to the support strip (4), and the inner wall of the mounting groove (11) is matched with the middle partition (3), the edge partition (2) and the support strip (4); The middle partition (3) and the edge partition (2) are detachably connected to the base (1) by a connecting assembly (5), the base (1) is provided with a connecting hole (12) corresponding to the connecting assembly (5), and the connecting hole (12) is a stepped hole with a large end opening towards one side of the edge partition (2); The connecting assembly (5) includes a connecting pin (51) and a plurality of locking pins (52) arranged around the connecting pin (51), the connecting pin (51) is provided with a connecting groove (511) and is fixed to the middle partition (3) or the edge partition (2), the locking pin (52) is inserted and slidably connected to the inner wall of the large end of the connecting hole (12), the connecting pin (51) is provided with a chamfer for spreading the locking pin (52), and the connecting hole (12) is provided with a contraction member (53) for driving the plurality of locking pins (52) to contract and be inserted into the connecting groove (511); The contraction member (53) is an elastic ring and is inserted into the plurality of locking pins (52), and the connecting pin (51) is inserted into the contraction member (53); At least part of the structure of the locking pin (52) is made of a magnetic sensing material or the locking pin (52) is fixed with a magnetic attraction member (521), and the connecting hole (12) is further provided with a control member (54) for controlling the opening of the plurality of locking pins (52), and the control member (54) is an electromagnet; The locking pin (52) is provided with a magnetic attraction member (521), and the magnetic attraction member (521) is a permanent magnet with a fixed magnetic field direction, the magnetic field direction of the control member (54) is variable, the outer wall of the locking pin (52) towards one side of the base (1) is arranged at an angle with the axial direction of the connecting pin (51), and the outer wall of the connecting groove (511) away from the connected middle partition (3) or edge partition (2) is matched with the locking pin (52) and used for pushing the connecting pin (51) to slide towards the inner side of the connecting hole (12).

2. The precharged tote of claim 1, wherein: The control member (54) is in a ring structure and is embedded in the inner wall of the large end of the connecting hole (12), and the plurality of locking pins (52) are located on the inner side of the control member (54).

3. The preloaded tote of claim 1, wherein: The connecting pin (51) is inserted and matched with the small end of the connecting hole (12) at the part of the connecting groove (511) towards the connected middle partition plate (3) or side partition plate (2).

4. The precharged tote of claim 3, wherein: The connecting pin (51) is at least in a multi-prism structure at the part of the connecting groove (511) towards the connected middle partition plate (3) or side partition plate (2), and the small end of the connecting hole (12) is adapted to the part of the connecting pin (51) at the part of the connecting groove (511) towards the connected middle partition plate (3) or side partition plate (2).

Citation Information

Patent Citations

  • Material transfer device for fabricated building construction

    CN209683749U

  • Baffle type classified transfer frame for PCBs (printed circuit boards)

    CN217261577U