Anti-pressing and anti-collision hollow plate logistics box
By setting up buffer airbag parts and foam protective pads at the corners of the logistics box, and using "Day"-shaped anti-collision airbags and telescopic compression airbag parts, the problem of insufficient compression and anti-collision performance of the traditional logistics box is solved, and the safety and stability of the logistics box is significantly improved.
Patent Information
- Application Number
- CN202421496193.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-27
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-06-27
AI Technical Summary
Traditional logistics boxes have insufficient performance in terms of compression and collision resistance, which is prone to deformation or damage during stacking or load bearing, and lacks sufficient anti-collision design, resulting in damage to the goods during transportation.
A pressure-proof and anti-collision hollow plate logistics box is designed. By setting corner guards with buffer airbag parts at the four corners of the logistics box body, combining the connecting plate between adjacent corner guards and the foam protective pads on the inside, the "Day" shape anti-collision airbag and telescopic pressure airbag parts are used, and connected through a communication hose to ensure that the impact force can be effectively dispersed and absorbed.
It significantly improves the compression and collision resistance of the logistics box, enhances the overall structural stability and collision resistance, and ensures the safety and stability of the goods during transportation.
Smart Images

Figure CN222860033U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of logistics boxes, in particular to a pressure-proof and collision-proof hollow plate logistics box. Background Art
[0002] With the vigorous development of the logistics industry, logistics boxes, as an indispensable and important container in the logistics transportation process, play a vital role in ensuring the safety of goods and improving transportation efficiency. Logistics boxes, as a key link in the logistics chain that directly carries goods, not only carry the function of transportation, but also are the guardian of goods safety. In the logistics process, goods will experience long-distance travel, multiple handlings, complex road conditions and other severe tests. As the first line of defense for these tests, the protection performance of logistics boxes directly determines whether the goods can arrive at the destination intact. First of all, the compression resistance of logistics boxes is crucial. In logistics transportation, goods may be subjected to various pressures. The logistics boxes must have sufficient compressive strength to ensure that they will not deform or break under heavy pressure, thereby protecting the internal goods from damage. Secondly, the anti-collision performance of the logistics boxes should not be ignored. During the logistics process, the goods may encounter various sudden collisions and impacts, such as sudden braking of vehicles, falling goods, etc. These impacts may cause the logistics boxes to be damaged or deformed, thereby affecting the safety of the goods. Therefore, the logistics boxes must have good anti-collision performance, which can quickly disperse or absorb the impact force when a collision occurs, thereby reducing the impact damage to the internal goods.
[0003] Traditional logistics boxes have a core position in the logistics industry, but their shortcomings in pressure resistance and collision resistance cannot be ignored, especially when facing bumpy road conditions and accidental collisions in logistics transportation. These shortcomings are particularly prominent. Since they usually use relatively single materials and structures, traditional logistics boxes have weak pressure resistance and are prone to deformation or damage when stacked or bearing loads, which in turn affects logistics efficiency and causes cargo loss. At the same time, they lack sufficient anti-collision design, making the box body easily damaged when facing impacts such as sudden braking of vehicles and falling cargo. The internal supporting structure may even loosen or break, exacerbating the safety risks of the cargo. Such vibrations and impacts not only damage the box body, but may also cause displacement and collision of the internal cargo. For special cargo such as fragile items and precision instruments, the damage may be catastrophic. Therefore, improving the pressure resistance and collision resistance of logistics boxes has become an issue that the industry urgently needs to solve. Utility Model Content
[0004] 1. Technical issues to be resolved
[0005] The utility model aims to improve the compression resistance and anti-collision performance of the logistics box to meet the demand of the logistics industry for high-performance logistics boxes, and proposes a compression-proof and anti-collision hollow plate logistics box.
[0006] (II) Technical Solution
[0007] The technical solution of the present utility model for solving the above technical problems is as follows:
[0008] An anti-pressure and anti-collision hollow board logistics box, comprising a logistics box body,
[0009] a bottom plate, arranged below the logistics box body and in contact with the bottom of the logistics box body;
[0010] corner protection members, fixedly installed on the bottom plate, and the number thereof is four, respectively distributed at the four corners of the logistics box body;
[0011] a buffer airbag member, arranged on the corner protection member, which is used to achieve buffer protection and provide additional support force to the logistics box body when being impacted or shocked, so as to prevent the logistics box body from being damaged when being impacted;
[0012] a cover plate, detachably connected to the corner protection member, which is used to limit the logistics box body between the corner protection member and the bottom plate, and the logistics box body can be covered by the cover plate, the corner protection member and the bottom plate to avoid deformation when being impacted externally.
[0013] On the basis of the above technical solution, the present utility model can also be improved as follows.
[0014] Furthermore, a connecting plate is fixedly installed between two adjacent corner protection members. The cross-section of the corner protection member is in an L shape. A foam protection pad is pasted at the inner corner of the corner protection member. The number of the foam protection pads is several, and they are equally divided into four groups and respectively arranged on the four corner protection members.
[0015] Furthermore, the buffer airbag member includes:
[0016] an anti-collision airbag, fixedly installed on the corner protection member and integrally in a "day" shape, and the number and distribution position thereof are adapted to the corner protection member;
[0017] a connecting hose, arranged between two adjacent anti-collision airbags and communicating with the two adjacent anti-collision airbags, and the number thereof is four; and
[0018] a telescopic pressing airbag member, one end of which communicates with the anti-collision airbag, and the other end penetrates through the connecting plate, and elongates and contacts the logistics box body when being impacted or shocked, so as to provide additional support force to the logistics box body.
[0019] Furthermore, a wear-resistant layer is arranged at one end of the telescopic pressing airbag member close to the logistics box body, and the number of the telescopic pressing airbag members is several, and they are equally divided into four groups and symmetrically distributed according to the center of the bottom plate.
[0020] Further, four holes are machined on the surface of the cover plate away from the corner protection member. One end of a hand-tightening screw is disposed in each of the four holes and extends through and into the inner side of the corner protection member. The cover plate is fixed to the end of the corner protection member by the four hand-tightening screws. The horizontal height of the end of the hand-tightening screw away from the corner protection member is lower than the horizontal height of the surface of the cover plate away from the corner protection member.
[0021] Further, rubber buffer pads are detachably connected to the surfaces of the bottom plate and the cover plate close to the logistics box body. One surface of the rubber buffer pad is in contact with one surface of the logistics box body.
[0022] Further, a double-sided adhesive layer is provided on the surfaces of the bottom plate and the cover plate close to the logistics box body. The rubber buffer pad is fixed to the bottom plate and the cover plate by the double-sided adhesive layer.
[0023] (III) Beneficial Effects
[0024] Compared with the prior art, the technical solution of the present application has the following beneficial technical effects:
[0025] By integrating a number of innovative technical means, the present utility model significantly improves the compressive and anti-collision performance of the logistics box. Specifically, by providing corner protection members with buffer airbag members at the four corners of the logistics box body, combined with the connecting plates between adjacent corner protection members and the inner foam protection pads, the present utility model not only enhances the overall structural stability of the logistics box, but also greatly improves its anti-collision performance. The specially designed "day"-shaped anti-collision airbag and telescopic pressing airbag member are connected by a connecting hose to ensure that the impact force can be effectively dispersed and absorbed. At the same time, the telescopic pressing airbag member can quickly extend to provide additional supporting force during impact, further enhancing the compressive performance of the logistics box. In addition, the setting of the wear-resistant layer and the symmetrical distribution of the telescopic pressing airbag members ensure that the logistics box can be evenly supported and protected when being impacted. The detachable cover plate and the fixing method of the hand-tightening screws enable the protection range of the logistics box to be flexibly adjusted and are easy to repair and replace components. Finally, by installing rubber buffer pads with double-sided adhesive layers on the bottom plate and the cover plate, the compressive and anti-collision capabilities of the logistics box are further enhanced, providing a more reliable and safe logistics transportation solution for users. Description of the Drawings
[0026] Figure 1 Schematic diagram of the overall connection structure of the present utility model;
[0027] Figure 2 Schematic diagram of the connection structure between the logistics box body and the corner protection member of the present utility model;
[0028] Figure 3 This is a schematic diagram of the connection structure between the corner protection piece and the buffer airbag of the utility model;
[0029] Figure 4 It is a schematic diagram of the explosion structure of the cover plate and the rubber buffer pad of the utility model.
[0030] In the figure: 1. Logistics box body; 2. Bottom plate; 3. Corner protection part; 4. Buffer airbag part; 41. Anti-collision airbag; 42. Connecting hose; 43. Telescopic pressure airbag part; 5. Cover plate; 6. Connecting plate; 7. Foam protection pad; 8. Wear-resistant layer; 9. Holes; 10. Hand-tightened screw; 11. Rubber buffer pad. DETAILED DESCRIPTION
[0031] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0032] Combination Figure 1-Figure 4 As shown, the utility model is a pressure-proof and collision-proof hollow plate logistics box, comprising a logistics box body 1,
[0033] The bottom plate 2 is disposed below the logistics box body 1 and is in contact with the bottom of the logistics box body 1;
[0034] Corner protection members 3 are fixedly mounted on the bottom plate 2, and are four in number and are respectively distributed at the four corners of the logistics box body 1;
[0035] The cushioning airbag member 4 is arranged on the corner protection member 3, and is used to achieve cushioning protection when hit or impacted and provide additional support force to the logistics box body 1 to prevent the logistics box body 1 from being damaged when impacted;
[0036] The cover plate 5 is detachably connected to the corner guard 3, and is used to limit the logistics box body 1 between the corner guard 3 and the bottom plate 2. The logistics box body 1 can be covered by the cover plate 5, the corner guard 3 and the bottom plate 2 to prevent it from being deformed when subjected to external impact.
[0037] First, the logistics box body 1 is placed on the base plate 2, and the base plate 2 is in close contact with the bottom of the logistics box body 1, providing a stable support foundation for the logistics box body 1. Next, four corner guards 3 are fixedly installed on the base plate 2, respectively located at the four corners of the logistics box body 1. These corner guards 3 provide additional protection for the vulnerable parts of the logistics box body 1 to cope with possible collisions or impacts. Buffer airbag parts 4 are arranged on the corner guards 3. When the logistics box is hit or impacted, these buffer airbag parts 4 can respond quickly and absorb the impact force, while providing additional support force to the logistics box body 1. This design effectively prevents the logistics box from The main body 1 is deformed or damaged when impacted, thereby protecting the safety of the internal goods. Finally, the cover 5 is connected to the corner guard 3 in a detachable manner. The function of the cover 5 is to limit the logistics box body 1 between the corner guard 3 and the bottom plate 2 to form a closed protective space. Through this design, the logistics box body 1 can be fully protected when subjected to external impact, avoiding deformation or damage caused by impact. In summary, the pressure-proof and collision-proof hollow plate logistics box achieves comprehensive protection of the logistics box body 1 through the coordinated work of the bottom plate 2, the corner guard 3, the buffer airbag 4 and the cover 5, and effectively improves the pressure resistance and collision resistance of the logistics box.
[0038] It should also be noted that the logistics box body 1 can be reused many times. Unlike the ordinary express logistics box in the prior art, it is specially used for objects that require high protection, long-term or frequent logistics transportation. The pressure-proof and anti-collision hollow board logistics box is particularly suitable for the following industries due to its unique design and function:
[0039] Auto parts industry, Reason: Auto parts products need a high degree of protection during transportation and storage to prevent damage and wear. The high load-bearing and anti-breakage characteristics of the logistics box body 1, as well as the additional support and cushioning effect provided by the corner protection parts 3 and the cushioning airbag parts 4, can ensure the integrity and safety of auto parts products during transportation. Material selection: For the auto parts industry, logistics boxes may be subjected to heavy loads and collisions, so it is recommended to choose materials with high strength and good wear resistance, such as aluminum alloy or reinforced PVC polyvinyl chloride.
[0040] Fresh fruit and vegetable industry, Reason: Fresh fruit and vegetable products have high requirements for preservation and transportation conditions, and need to avoid squeezing, collision and moisture during transportation. The logistics box can ensure the freshness and quality of fruits and vegetables during transportation through waterproof and moisture-proof design, as well as the protection provided by foam protective pads 7 and rubber buffer pads 11. Material selection: For the fresh fruit and vegetable industry, it is recommended to choose materials with good waterproof and moisture-proof properties, such as PVC polyvinyl chloride or high-density polyethylene HDPE, which also have good durability and impact resistance.
[0041] Electronic components industry, Reason: Electronic components are very sensitive to static electricity and impact, and need to avoid static interference and collision during transportation. The logistics box uses anti-static materials and the cushioning effect provided by the cushioning airbag 4 to ensure the safety and stability of electronic components during transportation. Material selection: For the electronic components industry, it is recommended to choose anti-static and conductive materials, such as conductive PVC or carbon fiber composite materials, which can effectively prevent static interference.
[0042] In general, the design and function of the pressure-proof and collision-proof hollow board logistics box meet the different needs of multiple industries for logistics boxes. By selecting suitable materials, the performance and adaptability of the logistics box can be further improved.
[0043] In a preferred embodiment, the present invention can be further configured as follows: Figure 1 , Figure 3 As shown; a connecting plate 6 is fixedly installed between two adjacent corner guards 3, wherein the cross-section of the corner guard 3 is L-shaped, and a foam protective pad 7 is pasted at the inner corner of the corner guard 3. There are several foam protective pads 7, which are equally divided into four groups and are respectively arranged on four corner guards 3. In the design of the pressure-proof and collision-proof hollow board logistics box, a connecting plate 6 is fixedly installed between two adjacent corner guards 3. This design not only enhances the overall structural stability of the logistics box, but also enables the logistics box to form a more solid protection system when it is impacted. The fixed installation of the connecting plate 6 ensures the tight connection between the corner guards 3, and effectively prevents loosening or deformation caused by impact. At the same time, the cross-section of the corner guard 3 adopts an L-shaped setting. This L-shaped design enables the corner guard 3 to better fit the logistics The corners of the box body 1 provide a more fitting and comprehensive protection. Foam protection pads 7 are pasted on the inner corners of the L-shaped corner guards 3. As a soft material with good cushioning properties, the foam protection pads 7 can quickly deform and absorb impact force when the logistics box is impacted, thereby further enhancing the anti-collision performance of the logistics box. The number of foam protection pads 7 is set to several, and they are equally divided into four groups and respectively arranged on four corner guards 3. This distribution method ensures that each corner of the logistics box is fully protected, so that the logistics box can be well cushioned and protected when impacted from different directions. In summary, through the fixed installation of the connecting plate 6, the L-shaped design of the corner guard 3 and the addition of the foam protection pad 7, its anti-collision performance is further improved, providing more comprehensive and reliable protection for the logistics box.
[0044] In a preferred embodiment, the present invention can be further configured as follows: Figure 2 , Figure 3 As shown; the cushioning airbag member 4 includes:
[0045] The airbag 41 is fixedly installed on the corner protection member 3 and is integrally arranged in a "day" shape. Its quantity and distribution position are adapted to the corner protection member 3;
[0046] The connecting hose 42 is arranged between two adjacent airbags 41 and is interconnected with the two adjacent airbags 41. The number of the connecting hoses 42 is four; and
[0047] The telescopic pressing airbag member 43 has one end interconnected with the airbag 41 and the other end passing through the connecting plate 6. When being impacted or shocked, it elongates and contacts the logistics box body 1 to provide additional supporting force to the logistics box body 1. As a key protection component of the logistics box, the buffer airbag member 4 significantly enhances the anti-collision and anti-compression performance of the logistics box. First of all, the airbag 41 is fixedly installed on the corner protection member 3 and is integrally arranged in a "day" shape. This shape design enables the airbag 41 to cover the corner area of the logistics box body 1, providing large-area protection. The quantity and distribution position of the airbag 41 are adapted to the corner protection member 3 to ensure that each important corner is fully protected. Between two adjacent airbags 41, the connecting hoses 42 are arranged. These connecting hoses 42 not only connect the adjacent airbags 41 but also allow the impact force to be transmitted and dispersed among multiple airbags. When the logistics box is impacted, the impact force can be quickly dispersed into multiple airbags through the connecting hoses 42, thereby reducing the pressure on a single airbag and improving the stability and durability of the entire buffer system. The telescopic pressing airbag member 43 is another important component in the buffer airbag member 4. One end of it is interconnected with the airbag 41, and the other end passes through the connecting plate 6. When the logistics box is impacted or shocked, the telescopic pressing airbag member 43 can quickly elongate and contact the logistics box body 1. This design enables the telescopic pressing airbag member 43 to provide additional supporting force to prevent the logistics box body 1 from deforming or being damaged under the impact. In summary, through the "day" shape setting of the airbag 41, the dispersion of the impact force by the connecting hoses 42, and the additional supporting force of the telescopic pressing airbag member 43, the buffer airbag member 4 provides efficient and comprehensive anti-collision and anti-compression protection for the logistics box, effectively improving the safety and reliability of the logistics box.
[0048] In a preferred embodiment of the present utility model, it can be further configured as: such as Figure 2 、 Figure 3As shown; a wear-resistant layer 8 is provided at one end of the telescopic pressure-resisting airbag component 43 close to the logistics box body 1, and a plurality of telescopic pressure-resisting airbag components 43 are provided, which are equally divided into four groups and symmetrically distributed according to the center of the bottom plate 2. In the design of the pressure-proof and collision-proof hollow plate logistics box, the telescopic pressure-resisting airbag component 43 is a key component, which plays an important supporting and protecting role when the logistics box is hit or impacted. In order to improve the durability and service life of the telescopic pressure-resisting airbag component 43, a wear-resistant layer 8 is provided at one end close to the logistics box body 1. The wear-resistant layer 8 is usually made of high-strength and wear-resistant material, which can effectively resist the friction and wear generated during the contact with the logistics box body 1, thereby extending the service life of the telescopic pressure-resisting airbag component 43. In addition, there are several telescopic pressure airbag members 43, which are equally divided into four groups and symmetrically distributed according to the center of the bottom plate 2. This symmetrical distribution design ensures that the logistics box can be evenly and effectively supported and protected when it is impacted from different directions. When the logistics box is hit, each telescopic pressure airbag member 43 can extend at the same time and contact with the logistics box body 1 to form a uniform support network, thereby effectively preventing the deformation and damage of the logistics box body 1. In summary, by arranging a wear-resistant layer 8 on the telescopic pressure airbag member 43 and adopting a symmetrical distribution design, not only the anti-collision and pressure resistance of the logistics box are improved, but also its durability and service life are enhanced, providing a more reliable guarantee for the safe transportation of the logistics box.
[0049] In a preferred embodiment, the present invention can be further configured as follows: Figure 1 , Figure 4As shown; four holes 9 are processed on the surface of the side of the cover plate 5 away from the corner guard 3, and a hand screw 10 with one end penetrating and extending to the inner side of the corner guard 3 is arranged in each of the four holes 9, wherein the cover plate 5 is fixed to the end of the corner guard 3 by the four hand screws 10, and the horizontal height of the end of the hand screw 10 away from the corner guard 3 is lower than the horizontal height of the surface of the side of the cover plate 5 away from the corner guard 3. In the design of the pressure-proof and collision-proof hollow plate logistics box, the cover plate 5 plays a role in limiting the logistics box body 1 at the corner guard The key role of forming a closed protective space between the guard 3 and the bottom plate 2 is that in order to ensure that the cover plate 5 can be firmly fixed on the corner guard 3, four holes 9 are processed on the surface of the cover plate 5 on the side away from the corner guard 3. These four holes 9 not only provide a position reference for fixing the cover plate 5, but also ensure the uniformity and stability of the fixing method. In the four holes 9, there are hand screws 10 with one end penetrating and extending to the inner side of the corner guard 3. These hand screws 10 can easily realize the cover by rotating. The fixing between the plate 5 and the corner guard 3, when the cover plate 5 needs to be fixed, the user only needs to pass the hand screw 10 through the hole 9 and screw it into the inner side of the corner guard 3, and by tightening the hand screw 10, the cover plate 5 can be tightly fixed on the corner guard 3. It is worth noting that the horizontal height of the end of the hand screw 10 away from the corner guard 3 is designed to be lower than the horizontal height of the side surface of the cover plate 5 away from the corner guard 3. This design makes the head of the hand screw 10 not protrude from the surface of the cover plate 5, thereby avoiding the safety hazard caused by the protrusion of the hand screw 10 during transportation or use. At the same time, this design also makes the surface of the cover plate 5 smoother, which is convenient for users to perform operations such as stacking or carrying. In summary, by processing four holes 9 and setting the hand screw 10, the cover plate 5 and the corner guard 3 are firmly fixed, ensuring the safety and stability of the logistics box during transportation. At the same time, the design of the hand screw 10 also takes into account the convenience and safety of use, providing users with a better logistics box usage experience.
[0050] In a preferred embodiment, the present invention can be further configured as follows: Figure 1 , Figure 4As shown; a rubber buffer pad 11 is detachably connected to the surface of one side of the bottom plate 2 and the cover plate 5 close to the logistics box body 1, wherein one side surface of the rubber buffer pad 11 is in contact with one side surface of the logistics box body 1. In the design of the pressure-proof and collision-proof hollow plate logistics box, in order to improve the buffering effect of the logistics box when it is impacted and further protect the logistics box body 1 from damage, a detachable connection method is adopted to connect the rubber buffer pad 11 to the surface of one side of the bottom plate 2 and the cover plate 5 close to the logistics box body 1. The rubber buffer pad 11 is a material with good elasticity and buffering properties. When the logistics box is subjected to external impact, it can quickly deform and absorb the impact force, thereby greatly reducing the direct impact on the logistics box body 1. At the same time, One side surface of the rubber buffer pad 11 is in close contact with one side surface of the logistics box body 1. This contact method ensures that the impact force can be effectively dispersed and transmitted through the rubber buffer pad 11, thereby avoiding damage to the logistics box body 1 due to excessive local force. In addition, the rubber buffer pad 11 adopts a detachable connection method, so that the position and number of the buffer pad can be conveniently replaced or adjusted when necessary to adapt to logistics box bodies 1 of different sizes and shapes. This design not only improves the versatility and flexibility of the logistics box, but also extends the service life of the logistics box. In summary, by arranging a detachable rubber buffer pad 11 on the bottom plate 2 and the cover plate 5, the buffering effect of the logistics box when it is impacted is effectively improved, thereby further protecting the safety and integrity of the logistics box body 1.
[0051] In a preferred embodiment, the present invention can be further configured as follows: Figure 1 , Figure 4As shown; a double-sided adhesive layer is provided on the surface of one side of the bottom plate 2 and the cover plate 5 close to the logistics box body 1, wherein the double-sided adhesive layer is used to fix the rubber buffer pad 11 to the bottom plate 2 and the cover plate 5. In the design of the pressure-proof and collision-proof hollow plate logistics box, in order to install the rubber buffer pad 11 more stably and conveniently, a double-sided adhesive layer is provided on the surface of one side of the bottom plate 2 and the cover plate 5 close to the logistics box body 1. Such a double-sided adhesive layer is usually made of a highly sticky and durable material, and can provide reliable adhesion between different materials. By utilizing the double-sided adhesive layer, we can easily fix the rubber buffer pad 11 to the bottom plate 2 and the cover plate 5. During installation, it is only necessary to contact the corresponding surface of the rubber buffer pad 11 with the double-sided adhesive layer and apply appropriate pressure to achieve firm adhesion. This pasting method is not only simple and easy, but also can The rubber buffer pad 11 can be effectively prevented from shifting or falling off during the use of the logistics box. When the logistics box is impacted or collided, the rubber buffer pad 11 can be quickly deformed and absorb the impact force, thereby protecting the logistics box body 1 from damage. Since the rubber buffer pad 11 is firmly fixed to the bottom plate 2 and the cover plate 5 through the double-sided adhesive layer, it can ensure that it always maintains close contact with the logistics box body 1 when it is impacted, thereby maximizing its buffering effect. In addition, the detachability of the double-sided adhesive layer also provides convenience for the replacement and maintenance of the rubber buffer pad 11. When the rubber buffer pad 11 is worn or damaged due to long-term use, it can be easily removed from the bottom plate 2 and the cover plate 5, and replaced with a new rubber buffer pad 11. This design not only extends the service life of the logistics box, but also improves its flexibility and adaptability in use.
[0052] The specific working principle of the utility model of a pressure-proof and collision-proof hollow plate logistics box is as follows:
[0053] The pressure-proof and collision-proof hollow board logistics box provides comprehensive protection for the logistics box body 1 through its carefully designed structure. It is composed of key components such as the logistics box body 1, the bottom plate 2, the corner protection part 3, the buffer airbag part 4 and the cover plate 5. These components work together to form a stable protection system. Among them, the corner protection part 3 is designed with an L-shaped cross-section to fit closely to the corner of the logistics box body 1, and the foam protection pad 7 enhances the protection effect. The buffer airbag part 4 includes an anti-collision airbag 41, a connecting hose 42 and a telescopic pressure airbag part 43, which can quickly The logistics box body 1 is quickly deformed and absorbs impact force, and the impact force is dispersed to multiple airbags through the connecting hose 42, while the telescopic pressure airbag part 43 provides additional support force to prevent the logistics box body 1 from deforming. The cover plate 5 is firmly connected to the corner protection part 3 by the hand-tightened screw 10 to form a closed protective space to enhance the compression resistance of the logistics box body 1. In addition, the rubber buffer pad 11 connected by the double-sided adhesive layer on the bottom plate 2 and the cover plate 5 further enhances the buffering effect of the logistics box. These unique designs and working principles ensure the safety and stability of the logistics box during transportation and storage.
[0054] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. In the absence of further restrictions, the elements defined by the sentence "comprise a ..." do not exclude the existence of other identical elements in the process, method, article or device including the elements.
[0055] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A pressure - resistant and collision - resistant hollow - panel logistics box, comprising a logistics box body (1), characterized in that, a bottom plate (2), disposed below the logistics box body (1) and in contact with the bottom of the logistics box body (1); corner protection members (3), fixedly installed on the bottom plate (2), and there are four of them, respectively distributed at the four corners of the logistics box body (1); buffer airbag members (4), disposed on the corner protection members (3), which are used to achieve buffer protection when impacted or shocked and provide additional support force to the logistics box body (1) to prevent the logistics box body (1) from being damaged when impacted; a cover plate (5), detachably connected to the corner protection members (3), which is used to limit the logistics box body (1) between the corner protection members (3) and the bottom plate (2), and the logistics box body (1) can be covered by the cover plate (5), corner protection members (3) and bottom plate (2) to avoid deformation when it is impacted externally.
2. The pressure-proof and collision-proof hollow plate logistics box according to claim 1 is characterized in that: A connecting plate (6) is fixedly installed between two adjacent corner protection members (3). The cross - section of the corner protection member (3) is in an L - shape. A foam protection pad (7) is pasted at the inner corner of the corner protection member (3). There are several foam protection pads (7), which are equally divided into four groups and are respectively disposed on the four corner protection members (3).
3. The pressure-proof and collision-proof hollow plate logistics box according to claim 2 is characterized in that: The buffer airbag member (4) includes: a collision - proof airbag (41), fixedly installed on the corner protection member (3) and integrally in a "day" - shaped setting, and its quantity and distribution position are adapted to the corner protection member (3); connecting hoses (42), disposed between two adjacent collision - proof airbags (41) and interconnected with two adjacent collision - proof airbags (41), and there are four of them; and a telescopic pressing airbag member (43), one end of which is interconnected with the collision - proof airbag (41), and the other end penetrates through the connecting plate (6), and it elongates and contacts the logistics box body (1) when impacted or shocked to provide additional support force to the logistics box body (1).
4. The pressure-proof and collision-proof hollow plate logistics box according to claim 3 is characterized in that: A wear - resistant layer (8) is disposed at one end of the telescopic pressing airbag member (43) close to the logistics box body (1). There are several telescopic pressing airbag members (43), which are equally divided into four groups and are symmetrically distributed according to the center of the bottom plate (2).
5. The pressure-proof and collision-proof hollow plate logistics box according to claim 1 is characterized in that: Four holes (9) are processed on the surface of the cover plate (5) far from the corner protection member (3). A hand - tightened screw (10) that penetrates through and extends to the inner side of the corner protection member (3) is disposed in each of the four holes (9). The cover plate (5) is fixed to the end of the corner protection member (3) through the four hand - tightened screws (10). The horizontal height of the end of the hand - tightened screw (10) far from the corner protection member (3) is lower than the horizontal height of the surface of the cover plate (5) far from the corner protection member (3).
6. The pressure-proof and collision-proof hollow plate logistics box according to claim 1, characterized in that: A rubber buffer pad (11) is detachably connected to the surfaces of the bottom plate (2) and the cover plate (5) close to the logistics box body (1), and one surface of the rubber buffer pad (11) is in contact with one surface of the logistics box body (1).
7. The pressure-proof and collision-proof hollow plate logistics box according to claim 6, characterized in that: A double-sided adhesive layer is provided on the surface of the bottom plate (2) and the cover plate (5) on one side close to the logistics box body (1), wherein the double-sided adhesive layer is used to fix the rubber buffer pad (11) to the bottom plate (2) and the cover plate (5).