Clinical examination A box integrated with biochemical detection equipment

Through the integrated clinical testing box A of biochemical detection equipment, the problem of poor rescue results in existing emergency rescue boxes under harsh conditions is solved, the convenient use and protection of the instrument is achieved, the impact resistance is enhanced, and the applicable scenarios are expanded.

CN120270656APending Publication Date: 2025-07-08CSSC HAISHEN MEDICAL TECH CO LTD

Patent Information

Application Number
CN202510418105.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2025-07-08

AI Technical Summary

Technical Problem

The existing emergency rescue boxes cannot meet the needs of emergency rescue under harsh conditions such as natural disasters, public health emergencies and production safety incidents, resulting in poor rescue results.

Method used

A clinical test box A with integrated biochemical detection equipment was designed, including the box body, box lid and support structure, and internally integrated dry blood cell analyzer, dry biochemical analyzer, dry immunobiochemical instrument, urine analyzer and thermal printer. The box cover is equipped with limit components and support structures, and fixed by locking structures to support the air column and limit column protection instruments. The box body is embedded with memory foam interlayer and shock absorption structure. The support foot is combined with damping shock absorbers and oblique support members to improve impact resistance.

Benefits of technology

It realizes the convenient use and protection of biochemical detection instruments, enhances the stability and impact resistance of the instruments in harsh environments, expands the applicable scenarios of emergency rescue, and improves the rescue effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a clinical examination A box integrated with biochemical detection equipment, and belongs to the technical field of emergency medical rescue, the clinical examination A box comprises a box body, a box cover and a support structure, the outer surface of the box body close to the upper end is provided with a locking structure; the box cover and the box body are limited through a locking structure; the supporting structure is installed on the lower end face of the box body. Wherein a detection instrument integrating a dry type blood cell analyzer, a dry type biochemical analyzer, a dry type immune biochemical analyzer, a urine analyzer and a thermal printer is placed in the box body, a limiting assembly is arranged in the middle of the upper end face of the box cover, and during clinical examination, the detection instrument is placed on the limiting assembly; besides, the biochemical detection instruments are integrated together and then placed in the box body, and the integrated biochemical detection instruments can be directly taken out and then placed on the box cover for direct use during use, so that the use is relatively convenient, and a good use prospect is achieved.
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Description

Technical Field

[0001] The present invention belongs to the technical field of emergency medical rescue, and specifically relates to a clinical inspection box A integrated with biochemical detection equipment. Background Art

[0002] An emergency rescue box is a special emergency equipment for dealing with various disaster risks, usually including first aid supplies, food, drinking water, simple tools, etc., used to provide preliminary self-help and mutual help measures during disasters and extend the waiting time for rescue.

[0003] The specific content of the emergency rescue box may vary depending on its use and configuration.

[0004] With the development of society, people's safety awareness has been continuously improved, and the requirements for emergency rescue boxes have also been continuously increased. Therefore, people have invented various emergency rescue boxes.

[0005] In the existing patent with the authorized announcement number CN113401156B and the invention patent titled "High-speed Railway Emergency Rescue Box", it is recorded that the box body has an opening structure on the right side, and symmetrically distributed fixed bumps are provided at the top of the box body near the right side. An L-shaped plate is rotatably connected between the two fixed bumps. A rectangular baffle is provided at the bottom of the vertical plate of the L-shaped plate. A U-shaped plate with an upward opening is movably connected in the box body. A support plate is provided between the two sides of the inner wall of the U-shaped plate at the middle and lower positions. Four identical storage grooves are arranged in a straight line on the surface of the support plate. A large storage box is movably connected in each storage groove. In this high-speed railway emergency rescue box, by placing human energy supplement supplies, first aid medical supplies, and anti-electricity supplies in three small storage boxes respectively, and placing equipment for organizing personnel to evacuate emergently, smoke and dust protection supplies, emergency general tools, and fire extinguishing equipment in four large storage boxes respectively, supplies for self-help of trapped people are provided, effectively improving the survival probability of trapped people;

[0006] The application scenario of the above-mentioned high-speed railway emergency rescue box is relatively single, and it is mainly suitable for people's self-help in dangerous situations. This kind of facility is mainly aimed at scenarios with very small medical incidents. However, in actual use, in the face of natural disaster emergency rescue (earthquakes, fires, tsunamis, floods, typhoons, mudslides, sandstorms, lightning strikes, and extreme cold and high temperature disasters, etc.), emergency rescue for public health emergencies (acute infectious diseases, poisoning, nuclear and radiation, major epidemics), emergency rescue for work safety incidents (mine disasters, collapses, etc.), emergency medical rescue drills, and international humanitarian assistance, etc., the conditions in such situations are harsh, and conventional emergency rescue boxes will not be able to meet such requirements, resulting in poor emergency rescue effects;

[0007] In summary, the existing emergency rescue boxes have certain drawbacks during use and do not meet the usage requirements of personnel in this field. Therefore, we propose a clinical inspection A box integrated with biochemical detection equipment. Summary of the Invention

[0008] To overcome the deficiencies of the prior art, the embodiments of the present application provide a clinical inspection A box integrated with biochemical detection equipment. It integrates biochemical detection instruments together and then places them inside the box body. During use, the integrated biochemical detection instruments can be directly taken out and placed on the box cover for direct use, which is relatively convenient to use, has good application prospects, and can effectively solve the problems raised in the background technology section.

[0009] The technical solutions adopted by the embodiments of the present application to solve its technical problems are as follows:

[0010] A clinical inspection A box integrated with biochemical detection equipment for emergency medical rescue, including a box body, a box cover, and a support structure:

[0011] Locking structures are provided at positions near the upper end of the outer surface of the box body;

[0012] The box cover is limited with the box body through the locking structure;

[0013] The support structure is installed on the lower end surface of the box body;

[0014] Among them, a detection instrument integrating a dry blood cell analyzer, a dry biochemical analyzer, a dry immuno-biochemical analyzer, a urine analyzer, and a thermal printer is placed inside the box body. A limiting component is provided at the middle position of the upper end surface of the box cover. During clinical inspection, the detection instrument is placed on the limiting component.

[0015] Preferably, the locking structure includes a buckle lock fixedly installed on the box body, and a limiting hook piece is fixedly installed on the box cover corresponding to the position of the buckle lock. When the box body is in a certain state, the limiting hook piece is locked and limited with the buckle lock.

[0016] Preferably, the limiting component includes a support member and a limiting member;

[0017] The support member is installed in the installation groove on the upper end surface of the box cover;

[0018] The limiting member is installed on the support member;

[0019] Among them, when the detection instrument is placed on the support member, the limiting member limits the position of the detection instrument.

[0020] Preferably, the support member includes a support air column and a support plate;

[0021] The number of support air columns is several groups, and they are installed in the installation groove on the upper end surface of the box cover;

[0022] The support plate is arranged on the upper end surface of the support air column;

[0023] The limiting member includes a plurality of groups of limiting columns, which are installed at positions near the front end of the upper end surface of the support member and positions near the rear end of the upper end surface thereof;

[0024] Wherein, the support air column is connected to the limiting column through an air pipe, and the detection instrument is placed on the support plate.

[0025] Preferably, the support air column includes a main body portion, a columnar airbag and an elastic member;

[0026] The main body portion is fixedly installed in the installation groove on the upper end surface of the box cover;

[0027] The columnar airbag is fixedly installed on the main body portion;

[0028] The elastic member is installed inside the columnar airbag;

[0029] Wherein, when the detection instrument is placed on the support plate, the elastic member is in a compressed state, and the height of the support plate is lower than the height of the edge of the box cover.

[0030] Preferably, the limiting column includes a main cylinder, a guiding rod and a folding cover;

[0031] The main cylinder is installed on the box cover;

[0032] The guiding rod is slidably installed in the main cylinder;

[0033] The folding cover is installed on the main cylinder, and the inner surface of the top of the folding cover is fixedly connected to the upper end of the guiding rod;

[0034] Wherein, a plurality of groups of through holes communicating with the folding cover are arranged on the main cylinder, and when the detection instrument is placed on the support plate, the air in the columnar airbag pushes the folding cover to expand upward.

[0035] Preferably, a memory foam interlayer is arranged inside the box body, a protective frame is embedded inside the memory foam interlayer, and a shock-absorbing structure is installed on the protective frame.

[0036] Preferably, the protective frame includes a bottom plate and a support frame body, both the bottom plate and the support frame body adopt a honeycomb structure, a silica gel damping ball is arranged at the connection position between the bottom plate and the support frame body, and the shock-absorbing structure is installed on the lower end surface of the bottom plate.

[0037] Preferably, the shock-absorbing structure includes impact-resistant support feet arranged at positions near the four corners of the lower end surface of the bottom plate, and the impact-resistant support feet include damping shock absorbers and inclined support members;

[0038] The damping shock absorber is fixedly installed on the lower end surface of the bottom plate;

[0039] An inclined support member, which is installed outside the damping shock absorber.

[0040] Preferably, the inclined support member includes a mounting bracket and inclined support feet:

[0041] The mounting bracket is fixedly installed on the damping shock absorber near the lower end position;

[0042] The number of the inclined support feet is several groups. One end of each inclined support foot is rotatably installed on the bottom plate, and the other end of each inclined support foot is fixedly connected to the mounting bracket. The several groups of inclined support feet are arranged in a circular array;

[0043] Wherein, each inclined support foot includes an elastic section arranged obliquely and a connecting section arranged parallel to the bottom plate, and the connecting section is connected to the bottom plate through a damping spring.

[0044] In summary, the present invention includes at least one of the following beneficial technical effects:

[0045] First, the present invention discloses a clinical inspection box A for an integrated biochemical detection device, which integrates biochemical detection instruments together and then places them inside the box body. When in use, the integrated biochemical detection instruments can be directly taken out and placed on the box cover for direct use, which is relatively convenient and has good application prospects.

[0046] Second, the present invention discloses a clinical inspection box A for an integrated biochemical detection device, which improves the structure of the box cover. During clinical inspection, the support member can relieve the impact force when the detection instrument is placed, effectively protecting the detection instrument. At the same time, the weight of the detection instrument will change the shape of the limiting member, so that the limiting member can limit the movement range of the detection instrument and prevent the detection instrument from falling. When the detection instrument leaves the box cover, the elastic member elastically supports the plate, making the plate flush with the box cover, which has the effect of protecting the support air column and the limiting member and prolonging the service life of the limiting assembly, and has good application prospects.

[0047] Third, the present invention discloses a clinical inspection box A for an integrated biochemical detection device. By changing the internal structure of the box body, a memory foam sandwich layer is provided inside the box body, and a protective frame is embedded in the memory foam sandwich layer. The protective frame adopts a honeycomb structure, which is relatively light and convenient for handling. In addition, silicone damping balls are provided at the connection between the bottom plate and the support frame body, which can absorb impact energy in multiple directions. Cooperating with the shock-absorbing structure, the impact resistance of the box body can be greatly improved, making the application scenarios of the box body wide and having good application prospects.

[0048] Fourth, the present invention describes a clinical inspection box A for an integrated biochemical detection device, which improves the support foot structure and changes it to a combination of a damping shock absorber and an inclined support member. When subjected to a falling impact, the inclined support member assists in consuming energy, and in combination with the effect of the damping shock absorber, it can quickly consume energy at the moment of impact, reduce the impact effect, greatly improve the applicability of the entire box body, and have good application prospects. BRIEF DESCRIPTION OF THE DRAWINGS

[0049] Figure 1 is the overall structural schematic diagram of the present invention in the use state;

[0050] Figure 2 is the partial structural schematic diagram of the present invention;

[0051] Figure 3 is the partial exploded structural schematic diagram of the box cover of the present invention;

[0052] Figure 4 is the partial structural schematic diagram of the limiting component in the present invention;

[0053] Figure 5 is the structural schematic diagram of the support air column in the present invention;

[0054] Figure 6 is the structural schematic diagram of the limiting column in the present invention;

[0055] Figure 7 is the partial sectional structural schematic diagram of the limiting column in the present invention;

[0056] Figure 8 is the partial structural diagram of the protection frame in the present invention;

[0057] Figure 9 is the partial structural diagram of the protection frame from other angles in the present invention;

[0058] Figure 10 is the partial structural diagram of the impact-resistant support foot in the present invention.

[0059] Reference numerals: 1, box body; 11, buckle lock; 2, box cover; 21, limiting hook piece; 3, support structure; 4, detection instrument; 5, limiting component; 51, support air column; 52, support plate; 53, limiting column; 54, columnar airbag; 55, elastic member; 56, guiding rod; 57, folding cover. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0060] Embodiments of the present application provide a clinical inspection A box for an integrated biochemical detection device, solving the problem that the application scenarios of the high-speed rail emergency rescue box in the prior art are relatively single, and it is mainly applicable to self-rescue of people in dangerous situations. This kind of facility is mainly for very small medical scenarios. However, in actual use, in the face of natural disaster emergency rescue (earthquakes, fires, tsunamis, floods, typhoons, mudslides, sandstorms, lightning strikes, and extreme cold and high temperature disasters, etc.), emergency rescue for public health emergencies (acute infectious diseases, poisoning, nuclear and radiation, major epidemics), emergency rescue for work safety incidents (mine disasters, collapses, etc.), emergency medical rescue drills, and international humanitarian assistance, etc. In such situations, the conditions are harsh, and conventional emergency rescue boxes will not be able to meet such requirements, resulting in poor emergency rescue effects.

[0061] Embodiment 1:

[0062] A clinical inspection A box for an integrated biochemical detection device, as Figure 1-2 shown, for emergency medical rescue, including a box body 1, a box cover 2, and a support structure 3;

[0063] Locking structures are provided at positions near the upper end of the outer surface of the box body 1; the box cover 2 is limited to the box body 1 through the locking structures; the support structure 3 is installed on the lower end surface of the box body 1;

[0064] Among them, a detection instrument 4 integrating a dry blood cell analyzer, a dry biochemical analyzer, a dry immuno-biochemical analyzer, a urine analyzer, and a thermal printer is placed inside the box body 1, and a limiting component 5 is provided at the middle position of the upper end surface of the box cover 2. During clinical inspection, the detection instrument 4 is placed on the limiting component 5.

[0065] The support structure 3 adopts a lifting roller structure, which can facilitate transportation.

[0066] As Figure 1 shown, directly take out the dry blood cell analyzer, the dry biochemical analyzer, the dry immuno-biochemical analyzer, the urine analyzer, and the thermal printer and place them on the box cover 2 for use. This is the detection state.

[0067] The dry blood cell analyzer, the dry biochemical analyzer, the dry immuno-biochemical analyzer, the urine analyzer, and the thermal printer can be directly connected to the mains power.

[0068] Alternatively, a power module can be installed inside the box body 1 to supply power to the dry blood cell analyzer, the dry biochemical analyzer, the dry immuno-biochemical analyzer, the urine analyzer, and the thermal printer.

[0069] When in use, the outer dimensions of box 1 shall meet the design requirements of 100 (length) * 600 (width) * 600 (height) mm in principle, the wall thickness of box 1 shall be between 2-5 mm, and the bare box weight of box 1 (including the parts of the box itself) shall not exceed 25 kg. The material of box 1 can be roto-molded material or carbon fiber material (lightweight) according to actual conditions, and the curb weight of the box group: the curb weight of the box group made of carbon fiber material is ≤75 kg, and the curb weight of the box group made of roto-molded material is ≤80 kg (including box 1, equipment, machined parts and interior decoration, etc.).

[0070] When used in the detection state, the storage, retrieval and protection of equipment, instruments, consumables and other items are achieved. The built-in equipment must be highly integrated with the box through structural design to achieve the goal of "ready to use out of the box and ready to go". The use height of the box-type built-in equipment must meet the height requirements of the equipment during medical treatment. The height of the center of gravity of the equipment is maintained at 700mm. Some equipment built into the box must be used in both fixed and immediate ways. For example, for portable first aid equipment, the box must have integrated storage space for power cables, etc., and no cables must leak out.

[0071] For example, a pulley may be added or implemented in other ways, so that the use effect of the box body 1 is better.

[0072] The locking structure includes a buckle lock 11 fixedly mounted on the box body 1 , and a limiting hook piece 21 is fixedly mounted on the box cover 2 at a position corresponding to the buckle lock 11 , and the limiting hook piece 21 is locked and limited with the buckle lock 11 .

[0073] When in use, the buckle lock 11 and the limiting hook piece 21 are engaged with each other (the hook-shaped structure on the buckle lock 11 and the limiting hook piece 21 are engaged with each other), which can limit the position of the box cover 2 so that the box cover 2 will not fall, thereby ensuring the stability of the box cover 2 and preventing the items inside the box body 1 from falling during transportation, which is more convenient to use.

[0074] When in use, the buckle 11 is pried to separate the hook structure on the buckle 11 from the limiting hook piece 21, so that the box cover 2 and the box body 1 are unlocked. At this time, the box cover 2 can be directly pried upward to separate the box cover 2 from the box body 1.

[0075] The present invention records that a clinical test box A with integrated biochemical detection equipment is provided, which integrates biochemical detection instruments together and then places them inside a box body 1. When in use, the integrated biochemical detection instruments can be directly taken out and placed on a box cover 2 for direct use. The use is relatively convenient and has good prospects for use.

[0076] In use, open the box cover 2, take out the detection instrument 4 which integrates a dry blood cell analyzer, a dry biochemical analyzer, a dry immuno-biochemical analyzer, a urine analyzer and a thermal printer, then cover the box cover 2, place the detection instrument 4 on the box cover 2, and then it can be used directly, which is quite convenient to use.

[0077] Embodiment 2

[0078] Based on Embodiment 1, as Figures 3-7 shown, this patent also records the following structure;

[0079] The limiting component 5 includes a support member and a limiting member:

[0080] The support member is installed in the installation groove on the upper end surface of the box cover 2; the limiting member is installed on the support member;

[0081] Among them, when the detection instrument 4 is placed on the support member, the limiting member limits the position of the detection instrument 4.

[0082] In use, the support member and the limiting member are interlocked. The detection instrument 4 presses the support member, thereby driving the limiting member to move, and the limiting member fixes the position of the detection instrument 4.

[0083] The support member includes a support air column 51 and a support plate 52:

[0084] The number of support air columns 51 is several groups. The support air columns 51 are installed in the installation groove on the upper end surface of the box cover 2; the support plate 52 is arranged on the upper end surface of the support air columns 51; the limiting member includes several groups of limiting columns 53, and the limiting columns 53 are installed at positions near the front end and the rear end of the upper end surface of the support member;

[0085] Among them, the support air column 51 and the limiting column 53 are connected by an air pipe, and the detection instrument 4 is placed on the support plate 52.

[0086] In use, when the detection instrument 4 is placed on the support plate 52, the support plate 52 moves downward, driving the support plate 52 to squeeze the support air column 51, so that the gas in the support air column 51 moves into the limiting column 53 through the air pipe, changing the shape of the limiting column 53, so that the limiting column 53 can limit the position of the detection instrument 4, thereby ensuring the stability of the detection instrument 4 and effectively avoiding damage to the detection instrument 4.

[0087] The support air column 51 includes a main body portion, a columnar airbag 54 and an elastic member 55:

[0088] The main body portion is fixedly installed in the installation groove on the upper end surface of the box cover 2; the columnar airbag 54 is fixedly installed on the main body portion; the elastic member 55 is installed inside the columnar airbag 54;

[0089] Among them, when the detection instrument 4 is placed on the support plate 52, the elastic member 55 is in a compressed state, and the height of the support plate 52 is lower than the height of the edge of the box cover 2.

[0090] The elastic member 55 is a spring, and an annular protrusion is provided on the main body portion, which can play a supporting effect, so as to effectively avoid damage to the elastic member 55 after being compressed to a certain extent, and thus ensure the service life of the elastic member 55.

[0091] After use, when the detection instrument 4 is removed from the support plate 52, the gas in the limiting column 53 moves to the support air column 51 through the air pipe, and cooperates with the elastic force of the elastic member 55, so that the support air column 51 can restore its deformation, and thus directly lift the support plate 52. The support plate 52 rises, the limiting column 53 descends, and the support plate 52 is flush with the box cover 2, so as to effectively protect the limiting column 53 and the support air column 51, and the use effect is good.

[0092] The limiting column 53 includes a main cylinder, a guiding rod 56 and a folding cover 57:

[0093] The main cylinder is installed on the box cover 2; the guiding rod 56 is slidably installed in the main cylinder; the folding cover 57 is installed on the main cylinder, and the inner surface of the top of the folding cover 57 is fixedly connected to the upper end of the guiding rod 56;

[0094] Among them, several groups of through holes communicating with the folding cover 57 are provided on the main cylinder. When the detection instrument 4 is placed on the support plate 52, the air in the columnar airbag 54 pushes the folding cover 57 to expand upward.

[0095] During use, when the detection instrument 4 is placed on the support plate 52, the support plate 52 moves downward, driving the support plate 52 to squeeze the support air column 51, so that the gas in the support air column 51 moves to the limiting column 53 through the air pipe. The air will push the folding cover 57 to expand upward. The folding cover 57 drives the guiding rod 56 to move upward, and the gas will also push the guiding rod 56 to move upward, so that the guiding rod 56 rises. When the detection instrument 4 moves forward and backward during use, it can block the detection instrument 4 to avoid damage to the detection instrument 4. As for the side, it is difficult for the detection instrument 4 to move. In addition, the position of the support plate 52 is low, and the installation groove can play a blocking effect to prevent the detection instrument 4 from falling and can also play a protective effect.

[0096] The present invention describes a clinical inspection box A of an integrated biochemical detection device, which improves the structure of the box cover 2. During clinical inspection, the support member can relieve the impact force when the detection instrument 4 is placed, effectively protecting the detection instrument 4. At the same time, the weight of the detection instrument 4 will change the shape of the limiting member, so that the limiting member can limit the movement range of the detection instrument 4 and prevent the detection instrument 4 from falling. At the same time, after the detection instrument 4 leaves the box cover 2, the elastic member 55 elastically supports the support plate 52, so that the support plate 52 is flush with the box cover 2, which has the effect of protecting the support air column 51 and the limiting member, prolongs the service life of the limiting assembly 5, and has a relatively good use effect and good application prospects.

[0097] Embodiment 3

[0098] On the basis of Embodiment 3, as Figures 8-10 shown, this embodiment also describes the following structure;

[0099] A memory foam sandwich is arranged inside the box body 1, and a protective frame 12 is embedded inside the memory foam sandwich, and a shock-absorbing structure is installed on the protective frame 12.

[0100] The memory polymer foam sandwich composite laminate not only has good mechanical properties, but also has a shape memory effect. The memory foam sandwich can absorb high impact forces. In addition, with its self-healing ability, it can be used for a long time and has a good use effect.

[0101] The protective frame 12 includes a bottom plate and a support frame body. Both the bottom plate and the support frame body adopt a honeycomb structure. A silica gel damping ball is arranged at the connection between the bottom plate and the support frame body, and the shock-absorbing structure is installed on the lower end surface of the bottom plate.

[0102] The bottom plate and the support frame body as a whole include two panels and a honeycomb structure arranged between the two panels. During use, the honeycomb shape makes the whole structure relatively light and easy to carry. In addition, it has a certain strength and can completely play a supporting role, improving the strength of the box body 1 and making the load-bearing capacity of the box body 1 stronger, with a good overall use effect.

[0103] The honeycomb structure has excellent mechanical properties. The honeycomb structure has mechanical property advantages such as firmness, light weight, and strong resistance to deformation. Its hexagonal geometry makes the honeycomb structure outstanding in terms of light weight, high specific strength, high specific stiffness, good heat insulation and sound insulation effects, and strong energy absorption;

[0104] The honeycomb structure forms the largest space with the least amount of material through the way of hexagonal close packing. The bottom surfaces of both sides of each cell share the side bottom with other cells, and this design effectively saves materials.

[0105] The silicone damping ball is a product with high wear resistance, high temperature resistance, and high elasticity. Compared with rubber balls, it has the characteristics of non-toxic, pollution-free, odorless, non-migrating, and no side effects. When in use, it can consume mechanical vibration energy through viscoelasticity and viscosity, thereby reducing vibration and noise. Therefore, silicone damping balls are provided at the connection between the bottom plate and the support frame, which can effectively prevent the impact force from being transmitted to the support frame, thereby extending the service life of the box body 1 and improving the use effect of the box body 1.

[0106] Embodiment 4

[0107] On the basis of Embodiment 3, as Figures 8-10 shown, this embodiment also records the following structure;

[0108] The shock absorption structure includes impact-resistant support feet provided at positions near the four corners of the lower end surface of the bottom plate. The impact-resistant support feet include a damping shock absorber 13 and an inclined support member 14:

[0109] The damping shock absorber 13 and the inclined support member 14 cooperate with each other. The damping shock absorber 13 has a certain shock absorption effect, and its damping effect can effectively reduce the up and down swinging effect of the spring, reduce the swing during impact, improve stability, and can effectively reduce the impact force between the items inside the box body 1 and the box body 1, thereby better protecting the box body 1 and the items, and having a good anti-impact effect.

[0110] A lifting pulley is installed at the lower end of the box body 1. In the daily standing state, the lifting pulley shrinks, and the bottom feet at the lower end of the damping shock absorber 13 contact the ground. During transportation, the lifting pulley descends, and at this time, the pulley contacts the ground.

[0111] When in use, the damping shock absorber 13 suppresses vibration and reduces energy transmission, thereby protecting the equipment and structure from damage. The damping shock absorber disperses energy and restricts the propagation of sound waves through friction and heat generation. When an object is subjected to an external force and vibrates, the damping shock absorber will apply a force opposite to the vibration direction, that is, a damping force. This damping force will consume the energy of the vibration, causing the vibration amplitude of the object to gradually decrease until the vibration stops.

[0112] The damping shock absorber 13 is fixedly installed on the lower end surface of the bottom plate;

[0113] The inclined support member 14 is installed outside the damping shock absorber 13.

[0114] The inclined support member 14 includes a mounting bracket 141 and an inclined support foot 142:

[0115] The mounting bracket 141 is fixedly installed on the damping shock absorber 13 near the lower end position;

[0116] The number of the inclined support feet 142 is several groups. One end of the inclined support feet 142 is rotatably installed on the bottom plate, and the other end of the inclined support feet 142 is fixedly connected to the mounting bracket 141. The several groups of inclined support feet 142 are arranged in a circular array.

[0117] Among them, the inclined support foot 142 includes an elastic section arranged obliquely and a connecting section arranged parallel to the bottom plate. The connecting section is connected to the bottom plate through a shock-absorbing spring 143.

[0118] The elastic section is made of a metal elastic plate, which can be bent to a certain extent. Cooperating with the shock-absorbing spring 143, it can achieve rapid energy consumption.

[0119] The shock-absorbing spring 143 utilizes the elasticity of the spring to convert the vibration energy generated during the falling process of the box body 1 into elastic potential energy, thereby achieving the effects of shock absorption, noise reduction and impact force reduction.

[0120] During use, when the damping shock absorber 13 is compressed by force, at this time, the elastic section of the inclined support foot 142 and the shock-absorbing spring 143 are deformed, and most of the energy can be consumed at this time, so as to effectively reduce the collision between the items inside the box body 1 and the box body 1 during impact. The overall use effect is relatively good.

[0121] The present invention describes a clinical test A box of an integrated biochemical detection device, which improves the support foot structure and changes the support foot structure into a cooperation mode of a damping shock absorber 13 and an inclined support member 14. When subjected to a falling impact, the inclined support member 14 assists in energy consumption, and cooperating with the effect of the damping shock absorber 13, it can achieve rapid energy consumption at the moment of impact, reduce the impact influence, greatly improve the applicability of the entire box body 1, and has a good application prospect.

[0122] After testing, when the structure lossless standard of the falling test set in this scheme is met, the test result is 2.0 m, and the use effect is good, having a good application prospect.

[0123] Working principle, detection state, during use, open the box cover 2, take out the dry blood cell analyzer, dry biochemical analyzer, dry immuno-biochemical analyzer, urine analyzer and thermal printer, cover the box cover 2, and place the dry blood cell analyzer, dry biochemical analyzer, dry immuno-biochemical analyzer, urine analyzer and thermal printer on the box cover 2 for use;

[0124] Expansion state, open the box cover 2, take out the detection instrument 4 integrating the dry blood cell analyzer, dry biochemical analyzer, dry immuno-biochemical analyzer, urine analyzer and thermal printer, then cover the box cover 2, and place the detection instrument 4 on the box cover 2;

[0125] When the detection instrument 4 is placed on the support plate 52, the support plate 52 moves downward, driving the support plate 52 to squeeze the support air column 51, so that the gas in the support air column 51 moves through the air pipe to the limit column 53. The air will push the folding cover 57 to expand upward. The folding cover 57 drives the guide rod 56 upward, and the gas will also push the guide rod 56 upward, causing the guide rod 56 to rise. When the detection instrument 4 moves forward and backward during use, it can block the detection instrument 4 to avoid damage to the detection instrument 4. As for the side, it is difficult for the detection instrument 4 to move. In addition, the position of the support plate 52 is low, and the installation groove can play a blocking role to prevent the detection instrument 4 from falling and can also play a protective role;

[0126] At this time, it can be directly used, and the use is relatively convenient.

[0127] After use, when the detection instrument 4 is removed from the support plate 52, the gas in the limit column 53 moves through the air pipe to the support air column 51, and together with the elastic force of the elastic member 55, the support air column 51 can recover its deformation, so that the support plate 52 can be directly lifted. The support plate 52 rises, the limit column 53 descends, and the support plate 52 is flush with the box cover 2, so that the limit column 53 and the support air column 51 can be effectively protected. Then the detection instrument 4 is placed inside the box body 1, the box cover 2 is covered, and the buckle 11 is toggled, so that the hook-shaped structure on the buckle 11 can be hooked with the limit hook piece 21, so that the box cover 2 and the box body 1 are locked. The use effect is good and it has a good application prospect.

[0128] Finally, it should be noted that: Obviously, the above embodiments are only examples for clearly explaining the present invention, and are not limitations on the implementation manners. For those of ordinary skill in the art, other different forms of changes or modifications can be made based on the above description. It is not necessary and impossible to list all the implementation manners here. And the obvious changes or modifications derived therefrom are still within the protection scope of the present invention.

Claims

1. A clinical test box A of an integrated biochemical detection device for emergency medical rescue, characterized in that, Including: A box body (1), on the outer surface of which locking structures are arranged near the upper end; A box cover (2), which is limited by the locking structure with the box body (1); A support structure (3), which is installed on the lower end surface of the box body (1); Among them, a detection instrument (4) integrating a dry blood cell analyzer, a dry biochemical analyzer, a dry immuno-biochemical analyzer, a urine analyzer and a thermal printer is placed inside the box body (1), and a limiting component (5) is arranged at the middle position of the upper end surface of the box cover (2). During clinical inspection, the detection instrument (4) is placed on the limiting component (5).

2. The clinical test A box of an integrated biochemical detection device according to claim 1, characterized in that: The locking structure includes a buckle lock (11) fixedly installed on the box body (1), and a limiting hook piece (21) is fixedly installed at the position corresponding to the buckle lock (11) on the box cover (2), and the limiting hook piece (21) is locked and limited with the buckle lock (11).

3. The clinical test A box of an integrated biochemical detection device according to claim 2, characterized in that: The limiting component (5) includes: A support member, which is installed in the installation groove on the upper end surface of the box cover (2); A limiting member, which is installed on the support member; Among them, when the detection instrument (4) is placed on the support member, the limiting member limits the position of the detection instrument (4).

4. The clinical test box A of an integrated biochemical detection device according to claim 3, characterized in that: The support member includes: Support air columns (51), the number of which is several groups, and they are installed in the installation groove on the upper end surface of the box cover (2); A support plate (52), which is arranged on the upper end surface of the support air columns (51); The limiting member includes several groups of limiting columns (53), which are installed at the position near the front end of the upper end surface of the support member and the position near the rear end of the upper end surface of the support member; Among them, the support air columns (51) are connected by air pipes with the limiting columns (53), and the detection instrument (4) is placed on the support plate (52).

5. The clinical test A box of an integrated biochemical detection device according to claim 4, characterized in that: The support air column (51) includes: A main body part, which is fixedly installed in the installation groove on the upper end surface of the box cover (2); A columnar airbag (54), which is fixedly installed on the main body part; An elastic member (55), which is installed inside the columnar airbag (54); Among them, when the detection instrument (4) is placed on the support plate (52), the elastic member (55) is in a compressed state, and the height of the support plate (52) is lower than the height of the edge of the box cover (2).

6. The clinical test box A of an integrated biochemical detection device according to claim 5, characterized in that: The limiting column (53) includes: A main cylinder, which is installed on the box cover (2); A guiding rod (56), which is slidably installed in the main cylinder; A folding cover (57), which is installed on the main cylinder, and the inner surface of the top of which is fixedly connected with the upper end of the guiding rod (56); Among them, several groups of through holes communicating with the folding cover (57) are arranged on the main cylinder. When the detection instrument (4) is placed on the support plate (52), the air in the columnar airbag (54) pushes the folding cover (57) to expand upward.

7. The clinical test box A of an integrated biochemical detection device according to claim 6, characterized in that: A memory foam interlayer is arranged inside the box body (1), and a protective frame (12) is embedded inside the memory foam interlayer, and a shock-absorbing structure is installed on the protective frame (12).

8. The clinical test box A of an integrated biochemical detection device according to claim 7, characterized in that: The protective frame (12) includes a bottom plate and a support frame body. Both the bottom plate and the support frame body adopt a honeycomb structure, and a silica gel damping ball is arranged at the connection position between the bottom plate and the support frame body, and the shock-absorbing structure is installed on the lower end surface of the bottom plate.

9. The clinical test A box of an integrated biochemical detection device according to claim 8, characterized in that: The shock-absorbing structure includes impact-resistant support feet arranged at the positions near the four corners of the lower end surface of the bottom plate. The impact-resistant support feet include: The damping shock absorber (13) is fixedly installed on the lower end surface of the bottom plate; The inclined support member (14) is installed outside the damping shock absorber (13).

10. The clinical test A box of an integrated biochemical detection device according to claim 9, characterized in that: The inclined support member (14) includes: The mounting bracket (141) is fixedly installed on the damping shock absorber (13) near the lower end position; The inclined support feet (142) are provided in several groups. One end of each inclined support foot is rotatably installed on the bottom plate, and the other end is fixedly connected to the mounting bracket (141). The several groups of inclined support feet (142) are arranged in an annular array; Wherein, the inclined support foot (142) includes an inclined elastic section and a connecting section arranged parallel to the bottom plate, and the connecting section is connected to the bottom plate through a shock-absorbing spring (143).

Citation Information

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