Anti-seismic packaging wooden box for logistics transportation
The plug-in structure of the supporting ribs and the auxiliary ribs solves the problem of cumbersome disassembly and damage of wooden boxes in logistics transportation, realizes convenient disassembly and diversified earthquake protection, and improves the service life and stability of the wooden boxes.
Patent Information
- Application Number
- CN202422844823.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-21
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-11-21
AI Technical Summary
Existing logistics transport wooden boxes need to be forcibly disassembled using screws during disassembly, which makes the disassembly process cumbersome and easily damages the buffer components and wooden boxes, resulting in serious waste of resources.
The supporting ribs and auxiliary ribs are fixed through a plug-in structure to avoid the use of external screws. The plug-in method of the positioning head, positioning groove and fastening ribs is used to achieve convenient installation and disassembly. Combined with the limited support of the buffer pad, it can adapt to the seismic requirements of items of different specifications.
It realizes the convenient installation and disassembly of wooden boxes, improves the diversity and stability of earthquake resistance, reduces the risk of damage during disassembly, and extends the service life of wooden boxes.
Smart Images

Figure CN223356177U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of logistics and transportation, in particular to an earthquake-resistant packaging wooden box for logistics and transportation. Background Art
[0002] Logistics transport wooden boxes are outer protective devices that protect the transported items. Due to shaking and bumps during transportation, in order to ensure the safety and stability of the items in the wooden boxes, buffer components are usually added inside to improve the shock resistance of the device.
[0003] In order to improve the stable supporting performance of wooden boxes, they are generally required to be fastened in place by screws during assembly, which also plays a role in providing stable support for the internal buffer components. However, the internal buffer components are in an unfixed state, which can easily cause them to move out of the buffer position. At the same time, due to the limitation of the screws, when the wooden boxes are disassembled, they need to be forcibly broken by external force, which makes the disassembly process more cumbersome. Moreover, when disassembling by force, it is easy to cause damage to the buffer components and the wooden box itself, making it impossible to use it again, resulting in a waste of resources.
[0004] Therefore, we provide a shock-resistant wooden packaging box for logistics transportation. Utility Model Content
[0005] The purpose of this utility model is to address the above-mentioned technical problems and provide a shock-resistant packaging wooden box for logistics transportation, which has the effect of convenient installation and disassembly, and can provide comprehensive and stable buffering according to the size of the items.
[0006] In view of this, the utility model provides a shock-resistant packaging wooden box for logistics transportation, comprising two supporting ribs distributed relatively to each other, and a plurality of horizontal auxiliary ribs located between the two supporting ribs, the two supporting ribs in relative positions form a group, at least two supporting ribs are arranged on the same vertical plane, and a plurality of vertical auxiliary ribs are arranged between two adjacent supporting ribs on the same vertical plane, the horizontal auxiliary ribs and the vertical auxiliary ribs are both on two sides, and the horizontal auxiliary ribs and the vertical auxiliary ribs on two sides are located in relative positions, and the horizontal auxiliary ribs and the vertical auxiliary ribs are perpendicular to each other, a plurality of side fastening ribs are arranged on opposite sides of the supporting ribs, and the side fastening ribs are distributed on two sides, the horizontal auxiliary ribs, the vertical auxiliary ribs, the side fastening ribs and the supporting ribs form a sealed space, and a plurality of buffer pads for shock-resistant buffering are installed inside the sealed space.
[0007] Preferably, a plurality of horizontal positioning grooves are provided on the surface of one side of the support rib close to the horizontal auxiliary rib, and horizontal positioning heads are installed at opposite ends of the horizontal auxiliary rib. The number of the horizontal positioning heads is consistent with the number of the horizontal positioning grooves, and the horizontal positioning heads are plugged into the horizontal positioning grooves.
[0008] Preferably, a vertical positioning groove is installed on the surface of one side of the supporting rib close to the vertical auxiliary rib, and vertical positioning heads are installed at both opposite ends of the vertical auxiliary rib. The number of the vertical positioning grooves is the same as that of the vertical positioning heads, and the vertical positioning heads are plugged into the vertical positioning grooves.
[0009] Preferably, side connecting grooves are provided at opposite ends of the support ribs, and two evenly distributed side fastening heads are provided on a side surface of the side fastening ribs close to the support ribs, and the side fastening heads are plugged into the side connecting grooves.
[0010] Preferably, a plurality of side fastening holes are provided through the side of the horizontal auxiliary rib close to the side fastening rib, and the side fastening head is plugged into the side fastening hole. A side positioning hole is provided through the side of the vertical auxiliary rib, and a positioning long rod is plugged into the side positioning hole. The positioning long rod is simultaneously plugged into the two side fastening ribs.
[0011] Preferably, a plurality of buffer fastening grooves are provided on the inner surfaces of the vertical auxiliary ribs and the horizontal auxiliary ribs, a plurality of buffer auxiliary grooves are provided on the inner surfaces of the side fastening ribs, and a plurality of buffer fastening rods are installed on the lower end surface of the buffer pad, and the buffer fastening rods are respectively plugged into the buffer fastening grooves and the buffer auxiliary grooves.
[0012] Preferably, the four side fastening ribs located at the corners are provided with fastening ring grooves on their sides, and each of the side fastening ribs is provided with at least three evenly distributed fastening ring grooves. The fastening ring grooves on the same horizontal plane are also provided with fastening ropes, and the fastening ropes are provided with adjustment bolts for fastening adjustment, and the vertical auxiliary ribs and the side fastening ribs are both located inside the fastening ropes.
[0013] Compared with the existing technology, the utility model provides a shock-resistant packaging wooden box for logistics transportation, which has the following beneficial effects:
[0014] The present invention, with the assistance of multiple side fastening heads and buffer fastening grooves, can provide limiting support for buffer pads of different specifications, so that the device can provide corresponding anti-seismic support at multiple angles according to items of different specifications, thereby improving its diversity in anti-seismic use. The present invention, through the plug-in fixation of the horizontal positioning head and the horizontal positioning groove, and through the plug-in fixation of the vertical positioning head and the vertical positioning groove, enables the support ribs and the horizontal auxiliary ribs and the vertical auxiliary ribs to be directly fixed and limited, so that it is no longer necessary to use outer screws for positioning and fastening, effectively preventing the screws from being removed one by one when the device is disassembled, resulting in a more complicated disassembly process. The present invention, through the plug-in fastening of the side fastening head and the side connecting groove, and through the plug-in fastening of the positioning long rod and the side fastening ribs and the side positioning hole, enables the side fastening ribs to simultaneously fasten and limit the support ribs, the horizontal auxiliary ribs, and the vertical auxiliary ribs, further improving the stability and safety of the fastening state of the horizontal auxiliary ribs and the vertical auxiliary ribs.
[0015] The parts not involved in the device are the same as those in the prior art or can be implemented by using the prior art. The utility model has a simple structure and is easy to operate. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a schematic diagram of the fastened structure of an earthquake-resistant wooden packaging box for logistics transportation proposed by the utility model;
[0017] Figure 2 This is a schematic diagram of the upper half of the three-dimensional structure of an earthquake-resistant packaging wooden box for logistics transportation proposed by the utility model;
[0018] Figure 3 This is a schematic diagram of the overall three-dimensional structure of an earthquake-resistant packaging wooden box for logistics transportation proposed by the utility model;
[0019] Figure 4 The utility model is a schematic diagram of the structure of a cushion for an earthquake-resistant packaging wooden box for logistics transportation.
[0020] In the figure: 1. Support rib; 2. Horizontal positioning groove; 201. Vertical positioning groove; 3. Horizontal auxiliary rib; 301. Horizontal positioning head; 302. Side fastening hole; 4. Vertical auxiliary rib; 401. Vertical positioning head; 402. Side positioning hole; 403. Buffer fastening groove; 5. Side connecting groove; 6. Side fastening rib; 601. Side fastening head; 602. Buffer auxiliary groove; 7. Positioning long rod; 8. Fastening ring groove; 9. Fastening rope; 10. Adjustment bolt; 11. Buffer pad; 12. Buffer fastening rod. DETAILED DESCRIPTION
[0021] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0022] In the description of the present invention, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "top", "bottom", "inside", "outside", etc., indicating directions or positional relationships, are based on the directions or positional relationships shown in the accompanying drawings. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific direction, be constructed and operated in a specific direction. Therefore, they cannot be understood as limitations on the present invention.
[0023] Example 1: A shock-resistant wooden box for logistics transportation, such as Figure 1 - Figure 4 As shown, it includes two 1s that are relatively distributed, and several 3s located between the two 1s, the two 1s in relative positions form a group, at least two 1s are arranged on the same vertical plane, and several 4s are arranged between two adjacent 1s on the same vertical plane, the 3 and the 4 are both two sides, and the 3 and the 4 on the two sides are in relative positions, and the 3 and the 4 are perpendicular to each other, several 6s are arranged on both sides of the relative sides of the 1, and the 6s are distributed on two sides, the 3, the 4, the 6 and the 1 form a sealed space, and several 11s for seismic buffering are installed inside the sealed space.
[0024] Based on two groups of 1 to 3 limits on the same horizontal plane, the upper and lower sides of the device are fixed; based on two groups of 1 to 4 limits on the same vertical plane, the front and rear sides of the device are fixed; finally, based on 6 pairs of multiple 1, 3 and 4 limits on the left and right sides, and the connection methods are all set to mortise and tenon structures, the overall device can be tightened and stabilized without using external screws, thereby facilitating the safety of components during disassembly, enabling repeated use, and, under the buffer support of multiple inconsistent specifications 11, ensuring that the device can provide earthquake protection for items of different specifications, thereby improving its safety performance during use.
[0025] like Figure 1 - Figure 4 As shown, a plurality of 2 are opened on the surface of one side of the 1 close to the 3, and 301 are installed at both opposite ends of the 3. The number of the 301 is the same as that of the 2, and the 301 is plugged into the 2.
[0026] 201 is installed on the surface of one side of the 1 close to the 4, and 401 is installed on both opposite ends of the 4. The number of the 201 is the same as that of the 401, and the 401 is plugged into the 201.
[0027] By plugging and fixing 301 and 2, and plugging and fixing 401 and 201, 1, 3 and 4 can be directly fixed and limited, so that they no longer need to use outer screws for positioning and tightening, effectively preventing the screws from being removed one by one when disassembling the device, resulting in a more complicated disassembly process.
[0028] like Figure 1 - Figure 4 As shown, 5 is provided at both opposite ends of the 1, and two evenly distributed 601 are provided on the surface of the 6 close to the 1, and the 601 is plugged into the 5.
[0029] The side edge of the 3 near the side edge of the 6 is penetrated by several 302, and the 601 is plugged with the 302. The side edge of the 4 is penetrated by 402, and the 402 is plugged with 7. The 7 is simultaneously plugged with the two 6 on the side edge.
[0030] By plugging and fastening 601 and 5, and plugging and fastening 7 and 6 as well as 402, 6 is fastened and limited to 1, 3, and 4 at the same time, further improving the stability and safety of the fastening states of 3 and 4.
[0031] like Figure 1 - Figure 4 As shown, several 403 are opened on the inner surface of 4 and 3, several 602 are opened on the inner surface of 6, and several 12 are installed on the lower end surface of 11, and the 12 are plugged into the 403 and the 602 respectively.
[0032] With the assistance of multiple 601 and 403 fastenings, it is possible to provide limited support for 11 of different specifications, so that the device can provide corresponding seismic support at multiple angles according to items of different specifications, thereby improving its diversity in seismic use and enhancing its protection strength.
[0033] like Figure 1 - Figure 4 As shown, the four sides of the 6 located at the corners are each provided with 8, each of the 6 is provided with at least three evenly distributed 8s, the 8s on the same horizontal plane are simultaneously provided with 9s, the 9s are provided with 10s for tightening and adjusting, and the 4s and 6s are both located inside the 9s.
[0034] By rotating 10, 9 is put in a taut state, and multiple 6 on both sides are limited at the same time, ensuring the stability of the limits on 3 and 4, and the accurate and reliable position of 6 itself, thereby improving the stability of the overall transportation of the device, and by using the outer connecting blocks, the device combination can be extended to increase its various usage methods, and, based on the support of 602 and 403, 11 can be installed accordingly to ensure the stability of its buffer protection.
[0035] The above is only a preferred specific implementation method of the present invention, but the protection scope of the present invention is not limited to this. Any technician familiar with the technical field within the technical scope disclosed by the present invention can make equivalent replacements or changes based on the technical solution and utility model concept of the present invention, which should be covered by the protection scope of the present invention.
Claims
1. A seismic-resistant packaging wooden box for logistics transportation, comprising two supporting ribs (1) that are relatively distributed, and a plurality of horizontal auxiliary ribs (3) located between the two supporting ribs (1), characterized in that: The two supporting ribs (1) at relative positions form a group, at least two supporting ribs (1) are arranged on the same vertical plane, and a plurality of vertical auxiliary ribs (4) are arranged between two adjacent supporting ribs (1) on the same vertical plane, the horizontal auxiliary ribs (3) and the vertical auxiliary ribs (4) are both on two sides, and the horizontal auxiliary ribs (3) and the vertical auxiliary ribs (4) on the two sides are located at relative positions, and the horizontal auxiliary ribs (3) and the vertical auxiliary ribs (4) are perpendicular to each other, a plurality of side fastening ribs (6) are arranged on opposite sides of the supporting ribs (1), and the side fastening ribs (6) are distributed on two sides, the horizontal auxiliary ribs (3), the vertical auxiliary ribs (4), the side fastening ribs (6) and the supporting ribs (1) form a sealed space, and a plurality of buffer pads (11) for anti-seismic buffering are installed inside the sealed space.
2. The earthquake-resistant wooden packaging box for logistics transportation according to claim 1, characterized in that: A plurality of horizontal positioning grooves (2) are provided on a surface of one side of the support rib (1) close to the horizontal auxiliary rib (3), and horizontal positioning heads (301) are installed at opposite ends of the horizontal auxiliary rib (3). The number of the horizontal positioning heads (301) is the same as that of the horizontal positioning grooves (2), and the horizontal positioning heads (301) are plugged into the horizontal positioning grooves (2).
3. The earthquake-resistant wooden packaging box for logistics transportation according to claim 1, characterized in that: A vertical positioning groove (201) is installed on the surface of one side of the supporting rib (1) close to the vertical auxiliary rib (4), and vertical positioning heads (401) are installed at opposite ends of the vertical auxiliary rib (4). The number of the vertical positioning grooves (201) and the number of the vertical positioning heads (401) are the same, and the vertical positioning heads (401) are plugged into the vertical positioning grooves (201).
4. The earthquake-resistant wooden packaging box for logistics transportation according to claim 1, characterized in that: The supporting rib (1) is provided with side connecting grooves (5) at opposite ends, and the side fastening rib (6) is provided with two evenly distributed side fastening heads (601) on a side surface close to the supporting rib (1), and the side fastening heads (601) are plugged into the side connecting grooves (5).
5. The earthquake-resistant wooden packaging box for logistics transportation according to claim 4, characterized in that: The side of the horizontal auxiliary rib (3) close to the side fastening rib (6) is provided with a plurality of side fastening holes (302), and the side fastening head (601) is plugged into the side fastening hole (302). The side of the vertical auxiliary rib (4) is provided with a side positioning hole (402), and the side positioning hole (402) is plugged into a positioning rod (7). The positioning rod (7) is simultaneously plugged into the two side fastening ribs (6).
6. The earthquake-resistant packaging wooden box for logistics transportation according to claim 1, characterized in that: A plurality of buffer fastening grooves (403) are provided on the inner surfaces of the vertical auxiliary ribs (4) and the horizontal auxiliary ribs (3), a plurality of buffer auxiliary grooves (602) are provided on the inner surfaces of the side fastening ribs (6), and a plurality of buffer fastening rods (12) are installed on the lower end surface of the buffer pad (11), and the buffer fastening rods (12) are respectively plugged into the buffer fastening grooves (403) and the buffer auxiliary grooves (602).
7. The earthquake-resistant wooden packaging box for logistics transportation according to claim 1, characterized in that: The four side fastening ribs (6) located at the corners are each provided with a fastening ring groove (8), and each side fastening rib (6) is provided with at least three evenly distributed fastening ring grooves (8). The fastening ring grooves (8) on the same horizontal plane are simultaneously provided with a fastening rope (9), and the fastening rope (9) is provided with an adjustment bolt (10) for fastening adjustment, and the vertical auxiliary ribs (4) and the side fastening ribs (6) are both located inside the fastening rope (9).