Modular component sealing device for hospital box type logistics system

The modular component sealing device with modular design solves the flexibility and sealing problems of traditional logistics boxes, enabling rapid assembly, disassembly and multi-layer isolation, thus improving transportation efficiency and safety.

CN223606003UActive Publication Date: 2025-11-28CHINA THIRD METALLURGICAL GRP
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Patent Information

Application Number
CN202423024412.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-09
Publication Date
2025-11-28
Estimated Expiration
2034-12-09

AI Technical Summary

Technical Problem

Traditional logistics boxes lack flexibility, have poor sealing performance, are cumbersome to operate, have low transportation efficiency, and cannot effectively isolate different types of medical devices and supplies, leading to confusion or contamination risks.

Method used

It adopts a modular component design, including pressure plate, assembly sealing mechanism, module docking mechanism, stacking mechanism and quick anchoring mechanism. Through the splicing and stacking of modular sealing boxes, it can achieve rapid assembly and disassembly, enhance sealing performance and stability, and provide multi-layer space isolation.

Benefits of technology

It achieves the flexibility of modular design and efficient sealing, improves space utilization, reduces the risk of cross-contamination, and enhances transportation efficiency and ease of operation.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to the field of logistics transportation equipment, and discloses a modularized component sealing device for a hospital box-type logistics system, which comprises a module docking mechanism positioned on a bearing plate and an assembly sealing mechanism and matched with a conversion plate to form a stacking structure of a logistics box; the stacking forming mechanism is located on the bearing plate and used for forming a modular sealing structure of the side portion of the logistics box. The quick anchoring mechanism is located on the bearing plate and matched with the first riveting groove, the conversion plate and the second riveting groove to be used for quick anchoring and unlocking during sealing splicing of the material box. Through splicing and stacking of the modularized sealing box plates, the structure and the internal space of the logistics box can be flexibly configured according to the sizes of medical instruments, stable connection between modules is guaranteed, meanwhile, rapid assembly and disassembly are achieved through the sliding mechanisms, the requirements of large-scale transportation or special scenes are met, and the logistics box is convenient to use. Due to the portable design, the medical logistics equipment can be flexibly used in a narrow space or a complex site.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of logistics transportation equipment, specifically to a modular assembly sealing device for hospital box type logistics system. BACKGROUND

[0002] The logistics transmission system refers to a transmission system for transporting articles in a set area by means of information technology, photoelectric technology, mechanical transmission device and a series of technologies and facilities. The main function of the hospital logistics transmission system is to automatically and quickly transmit various daily medical articles in the hospital. The application value includes improving efficiency, saving time, reducing errors, controlling cost, optimizing process, improving management and improving the modernization level of the hospital.

[0003] The traditional logistics box is usually of fixed size and structure, which cannot be adjusted according to the size of the medical instruments or materials for transportation, resulting in low space utilization. Different types of instruments require different specifications of box bodies, and lack of flexible combination ability. At the same time, the sealing performance is poor, there is a risk of pollution and cross infection. The transportation of medical instruments requires high sealing performance, but the traditional logistics box has simple interface design and insufficient sealing performance. Loose connection or cracked interface can easily cause the instruments to be exposed to the external environment, increasing the risk of pollution and infection. In addition, tools are usually required for assembly and disassembly, which is complicated and time-consuming, affecting the transportation efficiency. The logistics box of a single space cannot effectively isolate different types of medical materials, resulting in confusion or pollution. UTILITY MODEL CONTENT

[0004] In view of the deficiencies of the prior art, the utility model provides a modular assembly sealing device for hospital box type logistics system, which solves the problems of lack of flexible adjustment ability, poor sealing performance, complicated operation, low transportation efficiency and inability to effectively isolate medical materials of the traditional logistics box, and easily causes space waste.

[0005] To achieve the above purpose, the utility model realizes the following technical scheme: a modular assembly sealing device for hospital box type logistics system, comprising:

[0006] The pressure plate is used for fixing the modular assembly sealing structure of the hospital box type logistics;

[0007] The assembly sealing mechanism is located on the pressure plate and is used for forming the modular quick sealing structure of the logistics box;

[0008] The module docking mechanism is located on the pressure plate and the assembly sealing mechanism, and cooperates with the conversion plate to form the stacking structure of the logistics box;

[0009] The stacking mechanism is located on the pressure plate and is used for forming the modular sealing structure of the side of the logistics box;

[0010] Quick anchoring mechanism is located on the pressure plate, with riveting groove one, conversion plate and riveting groove two for quick anchoring and unlocking when material box is sealed and spliced.

[0011] Preferably, the assembly sealing mechanism is arranged on the pressure plate, the module docking mechanism is arranged on both sides of the pressure plate, the stacking forming mechanism is arranged on the side of the pressure plate and is docked with the assembly sealing mechanism, and the quick anchoring mechanism is multiple groups and is distributed on both sides of the pressure plate.

[0012] Preferably, the assembly sealing mechanism comprises parallel reinforcing ribs, a docking conical groove, a docking boss, a riveting groove one, a conversion plate, a longitudinal limiting sliding groove and a concave sliding table, the parallel reinforcing ribs are distributed on the side of the pressure plate, the docking conical groove is arranged on the top of the pressure plate, the docking boss is fixedly connected to the bottom of the pressure plate, the riveting groove one is arranged on both sides of the pressure plate in a distributed manner, the conversion plate is arranged in parallel on one side of the pressure plate, the conversion plate is provided with a transverse reinforcing rib on the side, and the longitudinal limiting sliding groove is arranged on both sides of the pressure plate.

[0013] Preferably, the module docking mechanism comprises a fixed hinge one and a fixed hinge two, the fixed hinge one is fixedly connected to one side of the pressure plate, a rotating part of the fixed hinge one is fixedly connected with an extension table one, an outer side wall of the extension table one is fixedly connected with an embedded taper block, and the fixed hinge two is fixedly connected to the side of the pressure plate away from the fixed hinge one.

[0014] Preferably, the stacking forming mechanism comprises a vertical beam and a horizontal beam, the vertical beam is fixedly connected to the pressure plate, the horizontal beam is fixedly connected to the conversion plate, the intersection of the vertical beam and the horizontal beam is rotatable through a positioning shaft, a linkage sliding rod is rotatably connected to the middle section of the vertical beam through a supporting shaft, and the horizontal beam is provided with an L-shaped limiting sliding groove on the side wall.

[0015] Preferably, the quick anchoring mechanism comprises a fixed T-shaped cylinder and an embedded T-shaped cylinder, the embedded T-shaped cylinder is embedded and fixed in the riveting groove one, the fixed T-shaped cylinder and the embedded T-shaped cylinder are both in a cylinder plus disc structure, a pull-down cylinder is slidably connected to the side wall of the fixed T-shaped cylinder, a snap spring is connected between the disc structure of the fixed T-shaped cylinder and the pull-down cylinder, a plurality of limiting conical holes are uniformly distributed on the position of the fixed T-shaped cylinder away from the disc structure, and a group of rolling balls are slidably connected in the limiting conical holes.

[0016] Preferably, the concave sliding table is slidably connected to the upper part of the pressure plate in a distributed manner through the longitudinal limiting sliding groove, and the riveting groove two is arranged on the concave sliding table in a distributed manner.

[0017] Preferably, a rotating part of the fixed hinge two is fixedly connected with an extension table two, and the outer side wall of the extension table two is provided with an embedded conical groove.

[0018] Preferably, one end of the linkage sliding rod is fixedly connected with a positioning clamping rod, and the positioning clamping rod is slidably connected in the L-shaped limiting sliding groove.

[0019] Preferably, the lower pull cylinder is provided with a release groove on the inner side wall of the upper part, the balls are fixedly penetrated through the T-shaped cylinder side wall and extended to the inside of the T-shaped cylinder through a group of limiting conical holes, and the side wall of the cylinder structure embedded in the T-shaped cylinder is fixedly connected with a chuck.

[0020] The utility model provides a modular assembly sealing device for hospital box type logistics system.

[0021] The utility model has the advantages of the following beneficial effects:

[0022] 1. The utility model has modular design to improve flexibility and adaptability: through the splicing and stacking of the modular sealing box plate, the structure and internal space of the logistics box can be flexibly configured according to the size of medical equipment, the pressure bearing plate of each sealing box plate can be seamlessly spliced, the stable connection between the modules is ensured, quick assembly and disassembly are realized through the sliding mechanism, the flexibility of use is significantly improved, the modular design allows the logistics box to be spliced and expanded in the horizontal or vertical direction as needed, the needs of large-scale transportation or special scenarios are met, and the portable design enables the medical logistics equipment to be flexibly used in narrow spaces or complex sites.

[0023] 2. The utility model has efficient sealing performance and safety: the butt joint between the modular sealing box plates uses conical groove and boss design, combined with the half-cladding structure of the sliding table, effectively prevents the interface from loosening, enhances the overall sealing performance, the ball and chuck structure embedded in the fixed T-shaped cylinder realize high-strength locking through multi-point limiting design, at the same time, the fixation of the explosion-proof box and the pressure bearing plate provides additional safety protection, the design of the quick anchoring mechanism (including the pull-down cylinder, the snap spring, the ball and other components) realizes one-key operation of assembly and disassembly, avoids the need for complex tools, shortens the operation time, when disassembly is needed, each component is unlocked through sliding and snap spring compression, the user can quickly adjust the configuration of the logistics box, and the working efficiency is improved.

[0024] 3. The utility model has the stability and bearing capacity between the modules: the close cooperation of the sliding table and the pressure bearing plate ensures the stable connection between the modular sealing box plates, avoids loosening during transportation, the vertical beam and the horizontal beam are linked through the positioning shaft and the sliding groove, forming a stable multi-layer support structure, enhancing the overall bearing capacity, at the same time, avoiding the deformation or uneven stress of the box body, through the conversion plate of the stacking structure, the layered layout inside the logistics box can be quickly adjusted, forming independent multi-layer space, this design not only increases the space utilization rate of the logistics box, but also enables different medical equipment to be transported in relatively isolated space, reducing the risk of cross contamination. BRIEF DESCRIPTION OF DRAWINGS

[0025] Figure 1 Sealing and assembling state of the utility model Figure 1 ;

[0026] Figure 2 Sealing and assembling state of the utility model Figure 2 ;

[0027] Figure 3 Sealing and assembling state of the utility model Figure 3 ;

[0028] Figure 4 Main body structure of the utility model Figure 1 ;

[0029] Figure 5 Main body structure of the utility model Figure 2 ;

[0030] Figure 6 Main body structure of the utility model Figure 3 ;

[0031] Figure 7 Stacking mechanism structure of the utility model

[0032] Figure 8 Quick anchoring mechanism structure of the utility model Figure 1 ;

[0033] Figure 9 Quick anchoring mechanism structure of the utility model Figure 2 ;

[0034] Figure 10 Quick anchoring mechanism half-section structure of the utility model Figure 1 ;

[0035] Figure 11 Quick anchoring mechanism half-section structure of the utility model Figure 2 .

[0036] Wherein, 1, pressure plate; 2, assembly sealing mechanism; 3, module docking mechanism; 4, stacking mechanism; 5, quick anchoring mechanism; 21, parallel reinforcing rib; 22, docking conical groove; 23, docking boss; 24, riveting groove one; 25, conversion plate; 26, transverse reinforcing rib; 27, longitudinal limiting sliding groove; 28, concave sliding table; 29, riveting groove two; 31, fixed hinge one; 32, extension table one; 33, embedded taper block; 34, fixed hinge two; 35, extension table two; 36, embedded conical groove; 41, longitudinally placed beam; 42, positioning shaft; 43, transversely placed beam; 44, support shaft; 45, linkage sliding rod; 46, L-shaped limiting sliding groove; 47, positioning clamping rod; 51, fixed T-shaped cylinder; 52, downward pulling cylinder; 53, clamping spring; 54, limiting conical hole; 55, ball; 56, release groove; 57, embedded T-shaped cylinder; 58, chuck. DETAILED DESCRIPTION

[0037] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the accompanying drawings of the utility model specification. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the utility model.

[0038] Please refer to the accompanying drawings of the utility model Figure 1 - the accompanying drawings of the utility model Figure 3 The embodiment of the utility model provides a modular assembly sealing device for hospital box logistics system, including pressure plate 1, the fixed modular assembly sealing structure for hospital box logistics, assembly sealing mechanism 2 is arranged in pressure plate 1, module docking mechanism 3 is arranged in both sides of pressure plate 1, stacking mechanism 4 is arranged in the side portion of pressure plate 1 and is docked with assembly sealing mechanism 2, and quick anchoring mechanism 5 is multiple groups and is distributed in both sides of pressure plate 1.

[0039] Please refer to the accompanying drawings of the utility model Figure 1 - the accompanying drawings of the utility model Figure 6, the assembly sealing mechanism 2 is located on the pressure bearing plate 1, used for forming the modular quick sealing structure of the logistics box, the assembly sealing mechanism 2 comprises parallel reinforcing ribs 21, butt joint conical grooves 22, butt joint bosses 23, riveting grooves 24, conversion plates 25, longitudinal limiting sliding grooves 27, concave sliding platforms 28 and riveting grooves 29, the parallel reinforcing ribs 21 are distributed on the side of the pressure bearing plate 1, the butt joint conical grooves 22 are arranged on the top of the pressure bearing plate 1, the butt joint bosses 23 are fixedly connected to the bottom of the pressure bearing plate 1, the riveting grooves 24 are arranged on the two sides of the pressure bearing plate 1 in the form of distribution on both sides, the conversion plate 25 is parallel to one side of the pressure bearing plate 1, the conversion plate 25 is provided with a transverse reinforcing rib 26 on the side, the longitudinal limiting sliding grooves 27 are arranged on the two sides of the pressure bearing plate 1, the concave sliding platform 28 is slidably connected to the upper part of the pressure bearing plate 1 in the form of distribution on both sides of the longitudinal limiting sliding groove 27, and the riveting grooves 29 are arranged on the concave sliding platform 28, according to the first equipment structure, the modular sealing assembly capacity is provided for the medical logistics box, according to the size of the medical equipment to be transported, the corresponding number is prepared, the corresponding stacked layer of the modular box body is selected, the corresponding pressure bearing plate 1 of a group of modular sealing box plates is butt jointed with the pressure bearing plate 1 of another group of modular sealing box plates, the butt joint bosses 23 at the bottom of the first group of pressure bearing plates 1 can be seamlessly inserted into the butt joint conical grooves 22 at the top of the other group of pressure bearing plates 1, and then the concave sliding platform 28 of the second group of modular sealing box plates is slid, so that the concave sliding platform 28 is half covered on the first group of pressure bearing plates 1 and the second group of pressure bearing plates 1.

[0040] Please refer to the attached drawings Figure 1 -attached drawings Figure 6 , the module butt joint mechanism 3 is located on the pressure bearing plate 1 and the assembly sealing mechanism 2, used for forming the stacked structure of the logistics box in cooperation with the conversion plate 25, the module butt joint mechanism 3 comprises fixed hinges 31 and fixed hinges 34, the fixed hinge 31 is fixedly connected to one side of the pressure bearing plate 1, the rotating part of the fixed hinge 31 is fixedly connected with an extension platform 32, the outer side wall of the extension platform 32 is fixedly connected with an embedded taper block 33, the fixed hinge 34 is fixedly connected to the side of the pressure bearing plate 1 away from the fixed hinge 31, the rotating part of the fixed hinge 34 is fixedly connected with an extension platform 35, the outer side wall of the extension platform 35 is provided with an embedded conical groove 36, a group of module butt joint mechanisms 3 belonging to the logistics sealing box plates are butt jointed with another group of module butt joint mechanisms 3 belonging to the logistics sealing box plates, the embedded taper block 33 added on the first group of extension platforms 32 is seamlessly inserted into the embedded conical groove 36 added on the second group of extension platforms 35, so that the two groups of logistics sealing box plates are realized two-side sealing assembly, and then according to the size of the medical logistics equipment, the two groups of logistics sealing box plates are rotated along the fixed hinge 31 and the fixed hinge 34, and other logistics sealing box plates are sequentially rotated in the same way, so as to form the sealing logistics box required by the medical box type material in the form of modularization.

[0041] Please refer to the attached drawings Figure 1 -attached drawings Figure 7, the stacking forming mechanism 4 is located on the pressure plate 1, used for forming the modular sealing structure of the side of the logistics box, the stacking forming mechanism 4 includes the longitudinal beam 41 fixedly connected on the pressure plate 1 and the transverse beam 43 fixedly connected on the conversion plate 25, the intersection end of the longitudinal beam 41 and the transverse beam 43 rotates through the positioning shaft 42, the middle section of the longitudinal beam 41 is rotationally connected with the linkage sliding rod 45 through the supporting shaft 44, the side wall of the transverse beam 43 is provided with the L-shaped limiting sliding groove 46, the end of the linkage sliding rod 45 away from the supporting shaft 44 is fixedly connected with the positioning clamping rod 47, the positioning clamping rod 47 is slidingly connected in the L-shaped limiting sliding groove 46, the stacking forming mechanism 4 of each group of modular sealing box plates is activated, the conversion plate 25 of each group of modular sealing box plates is pushed, the conversion plate 25 drives the corresponding transverse beam 43 to rotate on the corresponding longitudinal beam 41 of the transverse beam 43 along the positioning shaft 42, and the linkage sliding rod 45 on the longitudinal beam 41 rotates through the supporting shaft 44 and also rotates with the rotation of the transverse beam 43, the positioning clamping rod 47 added to the linkage sliding rod 45 is guided to slide in the L-shaped limiting sliding groove 46 added to the transverse beam 43, until the positioning clamping rod 47 slides to the vertically extended part of the L-shaped limiting sliding groove 46, the positioning clamping rod 47 slides upward, the linkage sliding rod 45 as a whole supports the transverse beam 43 and the conversion plate 25 fixed on the upper part of the transverse beam 43, so that the conversion plate 25 and the pressure plate 1 change into a vertical relationship, and so on, the conversion plate 25 of the plurality of groups of modular sealing box plates forms a vertical relationship with the pressure plate 1 through the corresponding stacking forming mechanism 4, and the plurality of groups of conversion plates 25 isolate the inside of the logistics box into multiple layers of space, thereby realizing the rapid layered assembly capability of the modular sealing box plates.

[0042] Please refer to the accompanying drawings Figure 1 - the accompanying drawings Figure 11The quick anchoring mechanism 5 is located on the pressure bearing plate 1, cooperates with the riveting groove one 24, the conversion plate 25 and the riveting groove two 29 for quick anchoring and unlocking when the material box is sealed and spliced, the quick anchoring mechanism 5 includes a fixed T-shaped barrel 51 and an embedded T-shaped barrel 57, the embedded T-shaped barrel 57 is embedded in the inside of the riveting groove one 24, the fixed T-shaped barrel 51 and the embedded T-shaped barrel 57 are both cylinder plus disc structure, the fixed T-shaped barrel 51 is slidably connected with a pull-down barrel 52 on the side wall, the disc structure of the fixed T-shaped barrel 51 is connected with a circlip 53 between the fixed T-shaped barrel 51 and the pull-down barrel 52, a plurality of limiting conical holes 54 are uniformly distributed on the position away from the disc structure of the fixed T-shaped barrel 51, a group of balls 55 are slidably connected in the limiting conical holes 54, a release groove 56 is arranged on the inner side wall of the pull-down barrel 52, the balls 55 extend through the side wall of the fixed T-shaped barrel 51 and extend into the inside of the fixed T-shaped barrel 51 through a group of limiting conical holes 54, the cylinder structure side wall of the embedded T-shaped barrel 57 is fixedly connected with a chuck 58, and the two groups of sealing box plate structures are anchored by the quick anchoring mechanism 5, the corresponding embedded T-shaped barrel 57 is inserted into the fixed T-shaped barrel 51, the lower end protruding part of the embedded T-shaped barrel 57 extends below the balls 55, and at the same time, the pull-down barrel 52 held is loosened, the deformed and compressed circlip 53 makes the pull-down barrel 52 slide upward along the fixed T-shaped barrel 51, the release groove 56 is immediately separated from each group of limiting conical holes 54, and then the pull-down barrel 52 compacts and clamps each group of balls 55 in the limiting conical holes 54, the protruding part of the balls 55 extending into the fixed T-shaped barrel 51 through the limiting conical holes 54 also limits the chuck 58 installed on the embedded T-shaped barrel 57 in the fixed T-shaped barrel 51, the corresponding explosion-proof box of the fixed T-shaped barrel 51 is also fixed with the pressure bearing plate, and then the two groups of pressure bearing plates 1 can be fixed, and at the same time, the access port 59 for providing current transmission for the explosion-proof box is buckled and docked with the insertion end pipe 510 installed in the fixed T-shaped barrel 51, and when disassembly is needed, the corresponding pull-down barrel 52 of the quick anchoring mechanism 5 is actuated, so that the pull-down barrel 52 slides to the end of the fixed T-shaped barrel 51, and the sliding of the pull-down barrel 52 also drives the compression deformation of the installed circlip 53, when the pull-down barrel 52 slides, the release groove 56 installed on the pull-down barrel 52 is docked with the plurality of limiting conical holes 54 installed on the fixed T-shaped barrel 51, the pull-down barrel 52 is also separated from the compact contact with the balls 55 sliding in the limiting conical holes 54, so that each group of balls 55 can slide in the corresponding limiting conical hole 54, at this time, the protruding part of the embedded T-shaped barrel 57 inserted into the fixed T-shaped barrel 51 is also released from the limitation of the protruding part of the balls 55, so that the embedded T-shaped barrel 57 can slide freely in the fixed T-shaped barrel 51, so that the upper connecting piece and the embedded T-shaped barrel 57 are unlocked and separated.

[0043] Working principle: according to the first device structure mainly provides modular sealing assembly capacity for medical logistics box, and according to the size of the medical equipment to be transported, the corresponding number is prepared, the corresponding stack of modular box is placed, the corresponding pressure plate 1 of a group of modular sealing box plate is spliced with the pressure plate 1 of another group of modular sealing box plate, the butt joint boss 23 at the bottom of the first group of pressure plate 1 can be inserted into the butt joint conical groove 22 at the top of the second group of pressure plate 1, and then the recessed sliding table 28 of the second group of modular sealing box plate is slid, the recessed sliding table 28 is half covered with the first group of pressure plate 1 and the second group of pressure plate 1, and the quick anchoring mechanism 5 is used to anchor the two groups of vertical and parallel sealing box plate structure, the corresponding embedded T-shaped cylinder 57 is inserted into the fixed T-shaped cylinder 51, the lower end of the embedded T-shaped cylinder 57 extends below the ball 55, and the lower pull cylinder 52 is released, the compression spring 53 is deformed, the lower pull cylinder 52 slides upward along the fixed T-shaped cylinder 51, the release slot 56 is separated from each group of limiting conical hole 54, the lower pull cylinder 52 then compacts each group of ball 55 and clamps it in the limiting conical hole 54, the protruding part of the ball 55 extending into the fixed T-shaped cylinder 51 also limits the chuck 58 installed in the embedded T-shaped cylinder 57 in the fixed T-shaped cylinder 51, the corresponding explosion-proof box of the fixed T-shaped cylinder 51 is also fixed with the pressure plate, and then the two groups of pressure plate 1 can be fixed, and the access port 59 for providing current transmission for the explosion-proof box is buckled with the inserted end pipe 510 installed in the fixed T-shaped cylinder 51, and when disassembly is needed, the corresponding lower pull cylinder 52 of the quick anchoring mechanism 5 is actuated, the lower pull cylinder 52 slides to the end of the fixed T-shaped cylinder 51, the sliding of the lower pull cylinder 52 also drives the compression of the installed compression spring 53, when the lower pull cylinder 52 slides, the release slot 56 installed on the lower pull cylinder 52 is in contact with the multiple groups of limiting conical hole 54 installed on the fixed T-shaped cylinder 51, the lower pull cylinder 52 is separated from the compacted contact with the ball 55 sliding in the limiting conical hole 54, so that each group of ball 55 can slide in the corresponding limiting conical hole 54, at this time, the protruding part of the embedded T-shaped cylinder 57 inserted into the fixed T-shaped cylinder 51 is also released from the limitation of the protruding part of the ball 55, so that the embedded T-shaped cylinder 57 can slide freely in the fixed T-shaped cylinder 51, that is, the upper connecting piece and the embedded T-shaped cylinder 57 are unlocked and separated, and then a group of logistics sealing box plate belongs to the module docking mechanism 3 is spliced with another group of logistics sealing box plate belongs to the module docking mechanism 3, the embedded conical block 33 installed on the first group of extension table one 32 is inserted into the embedded conical groove 36 installed on the second group of extension table two 35, so that the two groups of logistics sealing box plate are sealed and assembled on both sides, and then according to the size of the medical logistics device, the two groups of logistics sealing box plate are rotated along the fixed hinge one 31 and the fixed hinge two 34, and other logistics sealing box plates are sequentially spliced in the same way, so as to form the sealing logistics box required by the medical box type material in the form of modularization.The conversion plate 25 drives its corresponding transverse beam 43 to rotate along the positioning shaft 42 on the corresponding longitudinal beam 41 of the transverse beam 43, and the linkage slide rod 45 on the longitudinal beam 41 rotates through the support shaft 44, and the linkage slide rod 45 rotates with the rotation of the transverse beam 43, and the positioning clamping rod 47 added to the linkage slide rod 45 guides and slides in the L-shaped limiting sliding groove 46 added to the transverse beam 43, until the positioning clamping rod 47 slides to the vertical extension part of the L-shaped limiting sliding groove 46, the positioning clamping rod 47 slides upward, cooperates with the linkage slide rod 45 to support the transverse beam 43 and the conversion plate 25 fixed on the upper part of the transverse beam 43, changes the vertical relationship between the conversion plate 25 and the pressure bearing plate 1, and so on, the conversion plate 25 of the plurality of modular sealing box plates forms a vertical relationship with the pressure bearing plate 1 through the corresponding stacking forming mechanism 4, and the plurality of conversion plates 25 isolate the inside of the logistics box into multiple layers of space, thereby realizing the rapid layered assembly capability of the modular sealing box plate.

[0044] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A modular assembly seal for a hospital chest logistics system, characterized in that, Include: Pressure plate (1) for the sealing structure of the modular assembly of the hospital box logistics; The assembly sealing mechanism (2) is located on the pressure plate (1), which is used to form the modular quick sealing structure of the logistics box; The module docking mechanism (3) is located on the pressure plate (1) and the assembly sealing mechanism (2), which cooperates with the conversion plate (25) to form the stacking structure of the logistics box; The stacking mechanism (4) is located on the pressure plate (1), which is used to form the modular sealing structure of the side of the logistics box; The quick anchoring mechanism (5) is located on the pressure plate (1), which cooperates with the riveting groove one (24), the conversion plate (25) and the riveting groove two (29) to quickly anchor and unlock when the material box is sealed and spliced; The assembly sealing mechanism (2) includes parallel reinforcing ribs (21), docking conical grooves (22), docking bosses (23), riveting grooves one (24), conversion plates (25), longitudinal limiting sliding grooves (27), concave sliding platforms (28) and riveting grooves two (29). The parallel reinforcing ribs (21) are distributed on the side of the pressure plate (1), the docking conical grooves (22) are arranged on the top of the pressure plate (1), the docking bosses (23) are fixedly connected to the bottom of the pressure plate (1), the riveting grooves one (24) are arranged on both sides of the pressure plate (1), the conversion plates (25) are arranged on one side of the pressure plate (1), the conversion plates (25) are provided with transverse reinforcing ribs (26) on the side, and the longitudinal limiting sliding grooves (27) are arranged on both sides of the pressure plate (1); The quick anchoring mechanism (5) includes a fixed T-shaped cylinder (51) and an embedded T-shaped cylinder (57). The embedded T-shaped cylinder (57) is embedded and fixed in the riveting groove one (24). The fixed T-shaped cylinder (51) and the embedded T-shaped cylinder (57) are both cylinder and disc structures. The fixed T-shaped cylinder (51) is slidably connected with a pull-down cylinder (52) on the side wall. The disc structure of the fixed T-shaped cylinder (51) is connected with the pull-down cylinder (52) through a snap spring (53). The position away from the disc structure of the fixed T-shaped cylinder (51) is provided with uniformly circumferentially distributed limiting conical holes (54). A group of balls (55) are slidably connected in the limiting conical holes (54); The release groove (56) is arranged on the inner side wall of the pull-down cylinder (52). The balls (55) pass through a group of limiting conical holes (54) and extend into the fixed T-shaped cylinder (51) through the side wall of the fixed T-shaped cylinder (51). The cylinder structure side wall of the embedded T-shaped cylinder (57) is fixedly connected with a chuck (58).

2. A modular assembly seal for a hospital chest logistics system according to claim 1, wherein, The assembly sealing mechanism (2) is arranged on the pressure plate (1). The module docking mechanism (3) is arranged on both sides of the pressure plate (1). The stacking mechanism (4) is arranged on the side of the pressure plate (1) and is in abutment with the assembly sealing mechanism (2). The quick anchoring mechanism (5) is a plurality of groups and is arranged on both sides of the pressure plate (1).

3. A modular assembly seal for a hospital chest logistics system according to claim 1, wherein, The module docking mechanism (3) comprises a fixed hinge one (31) and a fixed hinge two (34), the fixed hinge one (31) is fixedly connected on one side of the pressure bearing plate (1), the rotating part of the fixed hinge one (31) is fixedly connected with an extension platform one (32), the outer side wall of the extension platform one (32) is fixedly connected with an embedded taper block (33), and the fixed hinge two (34) is fixedly connected on the side of the pressure bearing plate (1) away from the fixed hinge one (31).

4. A modular assembly containment device for a hospital chest logistics system according to claim 1, wherein, The stacking mechanism (4) comprises a vertical beam (41) and a horizontal beam (43), the vertical beam (41) is fixedly connected on the pressure bearing plate (1), the horizontal beam (43) is fixedly connected on the conversion plate (25), the intersection end of the vertical beam (41) and the horizontal beam (43) is rotatable through a positioning shaft (42), the middle section of the vertical beam (41) is rotatably connected with a linkage sliding rod (45) through a supporting shaft (44), and the side wall of the horizontal beam (43) is provided with an L-shaped limiting sliding groove (46).

5. A modular assembly seal for a hospital chest logistics system according to claim 1, wherein, The concave sliding table (28) is slidably connected on the upper part of the pressure bearing plate (1) in the form that the longitudinal limiting sliding grooves (27) are distributed on both sides, and the riveting grooves two (29) are distributed on the concave sliding table (28).

6. A modular assembly seal for a hospital chest logistics system according to claim 3, wherein, The rotating part of the fixed hinge two (34) is fixedly connected with an extension platform two (35), and the outer side wall of the extension platform two (35) is provided with an embedded taper groove (36).

7. A modular assembly seal for a hospital chest logistics system according to claim 4, wherein, One end of the linkage sliding rod (45) away from the supporting shaft (44) is fixedly connected with a positioning clamping rod (47), and the positioning clamping rod (47) is slidably connected in the L-shaped limiting sliding groove (46).