Multi-layer disinfection cabinet

By designing a multi-layer disinfection cabinet, combining the frame, thermal insulation and sealing, hot air circulation, tableware trolley lifting and door lifting systems, the problem of low land utilization rate of single-layer disinfection cabinets is solved, and efficient disinfection and stable operation of the equipment are achieved.

CN117205338BActive Publication Date: 2025-10-17NANJING LEYING PROFESSIONAL KITCHEN EQUIP CO LTD
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Patent Information

Application Number
CN202311409394.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-10-27
Publication Date
2025-10-17
Estimated Expiration
2043-10-27

AI Technical Summary

Technical Problem

The existing disinfection cabinet adopts a single-layer structure, which has a low land utilization rate. In the case of the same area, the number of disinfected tableware is small and the disinfection efficiency is low.

Method used

A multi-layer disinfection cabinet was designed, which includes a frame, a heat insulation and sealing system, a hot air circulation system, a tableware trolley lifting system and a door lifting system. Through the combined use of these systems, the multi-layer placement of the disinfection cabinet is achieved, which improves the disinfection efficiency and reduces the floor space.

Benefits of technology

It can increase the number of sterilized tableware in the same area, improve the sterilization efficiency, save energy, have a high degree of automation, and be easy to operate. The anti-shake module can reduce the shaking of the equipment and ensure the stable operation of the equipment.

✦ Generated by Eureka AI based on patent content.

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    Figure CN117205338B_ABST
Patent Text Reader

Abstract

The application provides a multi-layer sterilization cabinet, and belongs to the technical field of food and tableware sterilization equipment. The cabinet comprises a frame body, a cabinet door movably installed at the mouth of the lower end of the frame body, a heat insulation sealing system installed outside the frame body, a hot air circulation system and a tableware trolley lifting system installed inside the frame body, a door lifting system installed on the hot air circulation system, a connecting table installed between the door lifting system, the tableware trolley lifting system and the frame body, and a control panel installed outside the heat insulation sealing system and at one side of the mouth of the frame body. The application solves the problems of the existing sterilization cabinet, such as single-layer structure, low land utilization, small number of sterilized tableware and low sterilization efficiency under the condition of the same area.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field of food and tableware disinfection equipment, and particularly relates to a multi-layer disinfection cabinet. BACKGROUND

[0002] The disinfection cabinet refers to a tool for drying, sterilizing, and storing and dehumidifying articles such as tableware, utensils, towels, clothes, beauty and hairdressing utensils, and medical devices through ultraviolet rays, far infrared rays, high temperature, ozone, etc. The cabinet is generally in the shape of a cabinet box, and most of the cabinet body is made of stainless steel. The panel is made of tempered glass or stainless steel. The current disinfection cabinet in the catering industry is of a single-layer structure type, uses a circulating hot air dry disinfection method, uses electricity to provide energy, heats the heating pipe, and uses a fan to deliver hot air to each tableware to achieve the purpose of disinfection.

[0003] The existing disinfection cabinet adopts a single-layer structure, has low land utilization, and has a small number of tableware to be disinfected and low disinfection efficiency under the same area. SUMMARY

[0004] The present application provides a multi-layer disinfection cabinet, which solves the problems of low land utilization, small number of tableware to be disinfected, and low disinfection efficiency of the existing disinfection cabinet with a single-layer structure.

[0005] The present application provides a multi-layer disinfection cabinet, which solves the problems of low land utilization, small number of tableware to be disinfected, and low disinfection efficiency of the existing disinfection cabinet with a single-layer structure.

[0006] Further, the heat insulation sealing system comprises a plurality of heat insulation boards, and the heat insulation boards are tightly welded on the cabinet body.

[0007] Further, the hot air circulation system comprises a hot air circulation fan installed on the upper end of the cabinet body, an upper air guide plate is installed on the side of the hot air circulation fan, an air outlet connecting plate is installed on the inner side of the upper air guide plate, an inner lining plate is installed on the lower end of the air outlet connecting plate, a viewing door is installed on the inner lining plate, a pipe rack is also installed on the inner lining plate, a plurality of heating pipes are installed on the pipe rack, the heating pipes are arranged side by side, an air outlet baffle is installed on the outer side of the lower end of the inner lining plate, and the side of the upper air guide plate, the air outlet connecting plate, the inner lining plate, and the air outlet baffle are fixed on the cabinet body.

[0008] Further, the door lifting system comprises a sealing cover fixed on the thermal cycle fan bottom plate, a pair of bearing seats three fixed on both sides of the lower end of the frame body, a driven shaft two, a speed reducer two fixed on the upper end of the frame body and a mounting plate, the speed reducer two is installed with a motor two, the output end of the motor two is connected with the input end of the speed reducer two, the output end of the speed reducer two is installed with a transmission shaft one through the sealing cover, the transmission shaft one is connected with the output end of the speed reducer two through a connecting sleeve, the lower end of the transmission shaft one is installed with a transmission shaft two, the transmission shaft one and the transmission shaft two are connected through another connecting sleeve, the outer wall surface of the transmission shaft one and the transmission shaft two is installed with a bearing seat two, the bearing seat two is connected with the frame body, the driven shaft two is below the bearing seat three, the mounting plate is above the bearing seat three, the mounting plate is installed with a transmission device, the input end of the transmission device is connected with the bottom of the transmission shaft two, the bearing seat three is installed with a driving shaft two, the driving shaft two penetrates the transmission device and is connected with the output end of the transmission device in transmission, the left and right ends of the driving shaft two are respectively installed with a driving wheel two, the driven shaft two is installed with a driven wheel two, the driving wheel two and the driven wheel two are connected through a chain two in transmission, the chain two is installed with a shaft sleeve, the opposite shaft sleeves are installed with a lifting shaft, the lifting shaft is connected with the cabinet door.

[0009] Further, the tableware trolley lifting system comprises a bearing seat one fixed on the upper end of the left and right sides of the frame body, a speed reducer one fixed on the upper end of the frame body, a supporting rail fixed on the left and right sides of the frame body and a driven shaft one fixed on the left and right sides of the lower end of the frame body, the speed reducer one is installed with a motor one and an encoder, the input end of the speed reducer one is connected with the output end of the motor one in transmission, the bearing seat one is rotated with a driving shaft one, the driving shaft one penetrates the speed reducer one and is connected with the output end of the speed reducer one in transmission, the left and right ends of the driving shaft one are fixed with a driving wheel one, the driven shaft one is rotated with a driven wheel one, the driving wheel one and the driven wheel one are connected through a chain one, the chain one is installed with a limiting baffle and a plurality of chain hooks.

[0010] Further, the adapter table comprises an upper support fixed on the motor one or the motor two and a lower support fixed on the frame body, the upper support is provided with a shell one, the lower support is provided with a shell two, and an anti-shaking module is arranged between the shell one and the shell two.

[0011] The anti-shaking module comprises a silica gel table, an anti-shaking unit one and an anti-shaking unit two, the silica gel table is a prism perpendicular to the shell one and the shell two, the two ends of the Z-axis of the silica gel table are respectively connected with the shell one and the shell two, and when the upper support is shaken, the silica gel table can move between the shell one and the shell two.

[0012] The anti-shaking unit one comprises a pair of variable tables one and a pair of spiral beryllium copper wires one, each of the pair of variable tables one is connected through the two side walls of the spiral beryllium copper wires one and the silica gel table, and the pair of variable tables one can move in the X-axis direction of the shell two. The anti-shaking unit two comprises a pair of variable tables two and a pair of spiral beryllium copper wires two, each of the pair of variable tables two is connected through the two side walls of the spiral beryllium copper wires two and the silica gel table, and the pair of variable tables two can move in the Y-axis direction of the shell two. Each of the pair of variable tables one and the silica gel table is provided with a pressing unit one, and each of the pair of variable tables two and the silica gel table is provided with a pressing unit two.

[0013] When the upper support is shaken, the silica gel table moves between the shell one and the shell two, so that the spiral beryllium copper wire one or the spiral beryllium copper wire two changes in shape, and when the spiral beryllium copper wire one changes in shape, the variable table two is pulled to move, and when the spiral beryllium copper wire two changes in shape, the variable table one is pulled to move. The movement of the variable table one or the variable table two in the shell two generates corresponding movement distance one and movement distance two.

[0014] When the movement distance one is reached, only the variable table one or the variable table two moves in the shell two, and when the movement distance two is reached, the movement of the variable table one can drive the pressing unit one to work, and the movement of the variable table two can drive the pressing unit two to work. The functions of the pressing unit one or the pressing unit two can increase the pressing force on the silica gel table.

[0015] The pressing unit two and the pressing unit one have the same structure. The pressing unit one comprises a movable pipe, a linkage unit and a fluid pressing action unit. The fluid pressing action unit comprises a shell, a movable strip one and a movable strip two. A wall surface of the movable strip one and the movable strip two is provided with a plurality of tooth gaps at equal intervals. The shell is fixedly connected to the variable table one, and the shell is arranged on a wall surface of the variable table one close to the silica gel table.

[0016] The shell is provided with a movable space one, a movable space two and a movable space three. The movable space one, the movable space two and the movable space three are all provided with fluid. The movable strip one is vertically downward. A wear-resistant silica gel piece one is arranged on the top of the movable strip one. The wear-resistant silica gel piece one is movably arranged in the movable space one. The wear-resistant silica gel piece one separates the movable space one into an upper area one and a lower area one. The lower area one is below the upper area one. Fluid can only flow from the lower area one to the upper area one. The upper area one is connected with the movable space two, and fluid can only flow from the upper area one to the movable space two. The movable space two is connected with the lower area one, and fluid can only flow from the movable space two to the lower area one.

[0017] The movable strip two is vertically downwardly arranged, the top of the movable strip two is arranged with a wear-resistant silica gel sheet two, the wear-resistant silica gel sheet two is movably arranged in the movable space three, the wear-resistant silica gel sheet two separates the movable space three into an upper area two and a lower area two, the lower area two is below the upper area two, and fluid can only flow from the lower area two to the upper area two, the upper area two is connected with the movable space two, and fluid can only flow from the upper area two to the movable space two, the movable space two is connected with the lower area two, and fluid can only flow from the movable space two to the lower area two;

[0018] One end of the movable tube is arranged with a spiral beryllium copper wire four between the silica gel table, the spiral beryllium copper wire four is arranged along the length of the silica gel table, the other end of the movable tube is arranged with a wear-resistant silica gel sheet three, the wear-resistant silica gel sheet three is movably arranged in the movable space two, and a plurality of through circular holes are reserved on the wear-resistant silica gel sheet three;

[0019] The movable tube is in the shape of a right-angle folding ruler, the movable tube comprises a movable end one and a movable end two, the movable end one is vertically downwardly arranged, the movable end two is arranged vertically to the silica gel table, the bottom of the movable end one is fixedly connected with the upper wall of the wear-resistant silica gel sheet three, and the top of the movable end one is fixedly connected with the movable end two, when the moving table one moves a moving distance two on the upper wall of the shell two, the moving table one drives the linkage unit to work, the linkage unit works to make the movable strip one and the movable strip two alternately move upward, and the movable strip one and the movable strip two alternately moving upward can drive the movable tube to press the spiral beryllium copper wire four towards the bottom;

[0020] The linkage unit comprises a rotating disc one, a rotating disc two and a rotating disc three, a plurality of teeth are equidistantly reserved on the outer circumferential surface of the rotating disc one, the rotating disc two and the rotating disc three, the rotating disc one is rotatably connected in the moving table one, a rectangular sheet is arranged on the bottom wall of the track one, a plurality of teeth are equidistantly reserved on the upper wall of the rectangular sheet, and the rectangular sheet is arranged along the length of the track one, when not working, the rectangular sheet is located on both sides of the rotating disc one, the rotating disc one and the rectangular sheet are not engaged, the rotating disc two is rotatably connected in the moving table one, the rotating disc one is below the rotating disc two and engages with the rotating disc one through the teeth, the rotating disc three is rotatably connected in the shell, the rotating disc three and the rotating disc two are connected through a rotating rod, the rotating disc three and the rotating disc two rotate together, the movable strip one and the movable strip two engage with the rotating disc three through the teeth, when the moving table one moves a moving distance two on the upper wall of the shell two, the silica gel table moves on the upper wall of the shell two, when the silica gel table drives the moving table one to move to the position where the rotating disc one can engage with the rectangular sheet, the movable strip one and the movable strip two alternately move upward.

[0021] Further, a check valve one is arranged at the joint between the upper area one and the lower area one, and the check valve one can only allow fluid to flow from the lower area one to the upper area one.

[0022] A check valve two is arranged at the joint between the upper area one and the active space two, and the check valve two can only allow fluid to flow from the upper area one to the active space two.

[0023] A check valve three is arranged at the joint between the lower area one and the active space two, and the check valve three can only allow fluid to flow from the active space two to the lower area one.

[0024] A check valve four is arranged at the joint between the upper area two and the lower area two, and the check valve four can only allow fluid to flow from the lower area two to the upper area two.

[0025] A check valve five is arranged at the joint between the upper area two and the active space two, and the check valve five can only allow fluid to flow from the upper area two to the active space two.

[0026] A check valve six is arranged at the joint between the lower area two and the active space two, and the check valve six can only allow fluid to flow from the active space two to the lower area two.

[0027] Further, an assembly opening three is reserved in the shell, the active space two is above the assembly opening three, an active opening one is reserved on the upper wall surface of the assembly opening three, an active opening two is reserved on the lower wall surface of the active space one, the active strip one sequentially penetrates the active opening two and the active opening one, a leakage prevention strip is arranged between the active strip one and the active opening one, and the active strip one can change along the Z-axis direction in the active opening two.

[0028] Another side of the upper wall surface of the assembly opening three reserves an active opening three, an active opening four is reserved on the lower wall surface of the active space three, the active strip two sequentially penetrates the active opening four and the active opening three, a leakage prevention strip is arranged between the active strip two and the active opening three, and the active strip two can change along the Z-axis direction in the active opening four.

[0029] The present application has the following advantages:

[0030] 1. The present application realizes multi-layer placement of the disinfection cabinet through the arrangement of the frame, the cabinet door, the heat-sealing system, the door lifting system, the hot air circulation system and the tableware vehicle lifting system, has small overall occupied area, large volume, high efficiency, energy saving, high automation degree and simple operation.

[0031] 2, The application is installed through the adapter table, when motor one or motor two runs and shakes, the shaking is transmitted to the adapter table, when the shaking degree is small, the shaking generates Y-axis upward force, which makes the silica gel table move in Y-axis direction of the shell two and changes the shape of the pair of spiral beryllium copper wires one, and the movement of the silica gel table in Y-axis direction makes the moving table two move in Y-axis direction, the shaking generates X-axis upward force, which makes the silica gel table move in X-axis direction of the shell two and changes the shape of the pair of spiral beryllium copper wires two, and the movement of the silica gel table in X-axis direction makes the moving table one move in X-axis direction, at this moment, the moving distance of the moving table one or the moving table two on the shell two is on the moving distance one, with the movement of the silica gel table between the shell one and the shell two, the pair of spiral beryllium copper wires one or the pair of spiral beryllium copper wires two can reduce the shaking force from the corresponding direction, the X-axis and Y-axis shaking force formed by the shaking is reduced, at this moment, only the spiral beryllium copper wire one or the spiral beryllium copper wire two can reduce the shaking of the upper support; when the shaking degree becomes large, the distance between the silica gel table and the shell two becomes large, the moving distance of the moving table one or the moving table two on the shell two is on the moving distance two, when the moving distance of the moving table one on the shell two is on the moving distance two, the movement of the moving table one in the track one makes the rotating disc three and the rectangular piece engage, then drags the rotating disc three to rotate, the rotating disc three and the movable strip one and the movable strip two engage, and under the cooperation of the fluid pressing action unit, the rotating disc three can drag the movable tube to move downward, because the spiral beryllium copper wire four is installed between the movable tube and the silica gel table, when the movable tube moves downward, the downward pressing action of the movable tube is transmitted to the silica gel table through the spiral beryllium copper wire four, the pressing action of the silica gel table is increased, then the resistance of the silica gel table to move between the shell one and the shell two is increased, which ensures that when a large degree of shaking occurs, the resistance can be increased to reduce the shaking force formed by the shaking, and the shaking degree and the shaking time of the upper support are reduced, with the continuous movement of the silica gel table between the shell one and the shell two, the movable tube continuously moves downward to the bottom, and then contacts with the lower wall in the active space two; after the shaking stops, the shortened spiral beryllium copper wire one or the spiral beryllium copper wire two returns to the original position under the action of its own force, the silica gel table returns to the original position, the rotating disc one and the rectangular piece do not engage, then under the reverse pressing of the spiral beryllium copper wire four, the spiral beryllium copper wire four assists the movable tube to move upward, the fluid on the upper wall of the wear-resistant silica gel piece three can flow downward from the circular hole, then the movable tube moves upward to return to the original position, so as to reduce the shaking of motor one or motor two during operation, and ensure the stable operation of the disinfection cabinet.

[0032] Other features and advantages of the present application will be set forth in the following description, and in part will become apparent to those skilled in the art upon examination of the following or can be learned by practice of the present application. The objects and other advantages of the present application can be realized and attained by the structure particularly pointed out in the written description and claims hereof. BRIEF DESCRIPTION OF DRAWINGS

[0033] The accompanying drawings are included to provide a further understanding of the application and are incorporated in and constitute a part of this specification, illustrate embodiments of the application and are meant to explain the present application and are not intended to limit the application. In the drawings:

[0034] Figure 1 is a top open perspective view of an embodiment of the present application;

[0035] Figure 2 is a perspective view of an embodiment of the present application;

[0036] Figure 3 is a perspective view of an embodiment of the present application;

[0037] Figure 4 is a front view of an embodiment of the present application;

[0038] Figure 5 is a side view of an embodiment of the present application;

[0039] Figure 6 is a front view of an embodiment of the present application;

[0040] Figure 7 is a side view of an embodiment of the present application;

[0041] Figure 8 is a top view of an embodiment of the present application;

[0042] Figure 9 is a perspective view of an embodiment of the present application;

[0043] Figure 10 is a perspective view of an embodiment of the present application;

[0044] Figure 11 is a perspective view of an embodiment of the present application;

[0045] Figure 12 is a perspective view of an embodiment of the present application;

[0046] Figure 13 is a perspective view of an embodiment of the present application; Figure 11

[0047] Figure 14 is a perspective view of an embodiment of the present application; Figure 1

[0048] ​​Figure 15 A disassembled top view of a housing of an embodiment of the present application Figure 2 ;

[0049] Figure 16 A schematic view of an assembly of a compression unit and a fluid compression action unit of an embodiment of the present application;

[0050] Figure 17 A schematic view of a cross-sectional structure at M-M of an embodiment of the present application Figure 16 ;

[0051] Figure 18 A schematic view of a cross-sectional structure at N-N of an embodiment of the present application Figure 16 ;

[0052] Mark No. : 1, frame; 2, cabinet door; 3, heat insulation and sealing system; 4, door lifting system; 5, hot air circulation system; 6, tableware trolley lifting system; 7, connecting platform; 41, speed reducer 2; 42, sealing cover; 43, connecting sleeve; 44, transmission shaft 1; 45, bearing seat 2; 46, transmission shaft 2; 47, mounting plate; 48, transmission; 49, bearing seat 3; 410, driving wheel 2; 411, driving shaft 2; 412, lifting shaft; 413, shaft sleeve; 414, driven shaft 2; 415, driven wheel 2; 416, chain 2; 417, motor 2; 51, hot air circulation fan; 52, upper air guide plate; 53, air port connecting plate; 54, inner lining plate; 55, inspection door; 56, pipe rack; 57, heating pipe; 58, air outlet baffle; 61, driving shaft 1; 62, encoder; 63, speed reducer 1; 64, driving wheel 1; 65, bearing seat 1; 66, rail support; 67, limit stopper; 68, driven shaft 1; 69, driven wheel 1; 610, chain hook; 611, motor 1; 612, chain 1; 71, upper support; 72, housing 1; 73, anti-shaking module; 731, silica gel platform; 7311, assembly opening 1; 7312, assembly opening 2; 732, variable platform 1; 733, helical beryllium copper wire 1; 734, variable platform 2; 735, helical beryllium copper wire 2; 736, compression unit 1; 7361, movable pipe; 7362, helical beryllium copper wire 3; 7363, movable column; 7364, helical beryllium copper wire 4; 7365, compression unit 2; 737, fluid compression action unit; 7371, movable strip 1; 7372, movable strip 2; 7373, outer shell; 7374, movable space 1; 7375, movable space 2; 7376, movable space 3; 7377, non-return switch 1; 7378, non-return switch 2; 7379, non-return switch 3; 738, non-return switch 4; 7381, non-return switch 5; 7382, non-return switch 6; 7383, round hole; 7391, rotating disc 1; 7392, rotating disc 2; 7393, rotating disc 3; 74, housing 2; 742, track 1; 743, track 2; 744, rectangular piece; 75, lower support. DETAILED DESCRIPTION

[0053] In order to make the purpose, technical scheme and advantages of the technical scheme of the present application clearer, the technical scheme of the embodiments of the present application will be described clearly and completely below with reference to the drawings of the embodiments of the present application. The same reference signs in the drawings represent the same parts. It should be noted that the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the described embodiments of the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor fall within the scope of protection of the present application.

[0054] REFERENCE Figures 1-18The embodiment of the present application provides a multi-layer sterilization cabinet, which comprises a frame body 1, a cabinet door 2 movably arranged at the lower end of the frame body 1, a heat insulation sealing system 3 arranged outside the frame body 1, a hot air circulation system 5 and a tableware trolley lifting system 6 arranged inside the frame body 1, a door lifting system 4 arranged on the hot air circulation system 5, and a connecting table 7 arranged between the door lifting system 4 and the tableware trolley lifting system 6 and the frame body 1, and a control panel arranged outside the heat insulation sealing system 3 and at one side of the frame body 1, and the control panel is electrically connected with the door lifting system 4, the hot air circulation system 5 and the tableware trolley lifting system 6.

[0055] With reference to Figure 1 , the heat insulation sealing system 3 comprises a plurality of heat insulation boards which are tightly welded on the frame body 1, so that the heat insulation function of the sterilization cabinet is ensured.

[0056] With reference to Figure 1 , Figure 2 , Figure 4 and Figure 5 , the tableware trolley lifting system 6 comprises bearing seats one 65 fixed on the left and right sides of the upper end of the frame body 1, a speed reducer one 63 fixed on the upper end of the frame body 1, supporting rails 66 fixed on the left and right sides of the frame body 1 and driven shafts one 68 fixed on the left and right sides of the lower end of the frame body 1, a motor one 611 and an encoder 62 are arranged on the speed reducer one 63, the input end of the speed reducer one 63 is in transmission connection with the output end of the motor one 611, a driving shaft one 61 is rotatably arranged on the bearing seat one 65, the driving shaft one 61 penetrates through the speed reducer one 63 and is in transmission connection with the output end of the speed reducer one 63, driving wheels one 64 are fixed on the left and right ends of the driving shaft one 61, driven wheels one 69 are rotatably arranged on the driven shafts one 68, the driving wheels one 64 and the driven wheels one 69 are connected through a chain one 612, and a limiting baffle 67 and a plurality of chain hooks 610 are arranged on the chain one 612. During work, the tableware trolley is hung on the chain hooks 610, the motor one 611 drives the driving shaft one 61 to rotate through the speed reducer one 63, the chain one 612 is moved through the cooperation of the driving wheels one 64, the driven shafts one 68 and the driven wheels one 69, and then the chain hooks 610 are driven to work, so that the tableware trolley is lifted by the chain hooks 610, the height direction of the tableware trolley is stacked from one layer to multiple layers, the number of tableware to be sterilized is increased, the sterilization efficiency is improved, the occupied area is reduced, the shaking of the chain one 612 is reduced through the supporting rails 66, the shaking of the tableware trolley is further reduced, and the chain hooks 610 on the chain one 612 are stopped at the accurate height position through the limiting baffle 67, that is, the tableware trolley is lifted to the required height.

[0057] With reference to Figure 1 , Figure 2 and Figure 9The hot air circulation system 5 comprises a hot air circulation fan 51 installed on the upper end of the frame body 1, side edges of the hot air circulation fan 51 are provided with upper air guide plates 52, inner sides of the upper air guide plates 52 are provided with air outlet connecting plates 53, lower ends of the air outlet connecting plates 53 are provided with inner lining plates 54, the inner lining plates 54 are provided with inspection doors 55, the inner lining plates 54 are further provided with pipe racks 56, the pipe racks 56 are provided with a plurality of heating pipes 57, the heating pipes 57 are arranged side by side, outer sides of the lower ends of the inner lining plates 54 are provided with air outlet baffles 58, and side edges of the upper air guide plates 52, the air outlet connecting plates 53, the inner lining plates 54 and the air outlet baffles 58 are fixed on the frame body 1. In working, the hot air in the sterilizing cabinet is circulated to ensure the uniformity and comprehensiveness of the high-temperature sterilization, ensure the sterilization effect, and facilitate daily maintenance and repair.

[0058] Referring to Figure 1 , Figure 2 , Figure 3 , Figure 6 , Figure 7 and Figure 8, the door lifting system 4 comprises a sealing cover 42 fixed on the bottom plate of the thermal cycle fan 51, a pair of bearing seats three 49 and a driven shaft two 414 fixed on the lower end of the frame body 1, a speed reducer two 41 and a mounting plate 47 fixed on the upper end of the frame body 1, the speed reducer two 41 is installed with a motor two 417, the output end of the motor two 417 is connected with the input end of the speed reducer two 41, the output end of the speed reducer two 41 is installed with a transmission shaft one 44 penetrating through the sealing cover 42, the transmission shaft one 44 is connected with the output end of the speed reducer two 41 through a connecting sleeve 43, the lower end of the transmission shaft one 44 is installed with a transmission shaft two 46, the transmission shaft one 44 and the transmission shaft two 46 are connected through another connecting sleeve 43, the outer wall surface of the transmission shaft one 44 and the transmission shaft two 46 are both installed with a bearing seat two 45, the bearing seat two 45 is connected with the frame body 1, the driven shaft two 414 is below the bearing seat three 49, the mounting plate 47 is above the bearing seat three 49, the mounting plate 47 is installed with a transmission device 48, the input end of the transmission device 48 is connected with the bottom of the transmission shaft two 46, the bearing seat three 49 is installed with a driving shaft two 411 penetrating through the transmission device 48 and connected with the output end of the transmission device 48 in transmission, the left and right ends of the driving shaft two 411 are respectively installed with a driving wheel two 410, the driven shaft two 414 is installed with a driven wheel two 415, the driving wheel two 410 and the driven wheel two 415 are connected in transmission through a chain two 416, the chain two 416 is installed with an axle sleeve 413, the opposite two axle sleeves 413 are installed with a lifting shaft 412, the lifting shaft 412 is connected with the cabinet door 2. When working, the motor two 417 drives the speed reducer two 41 to act, the speed reducer two 41 transmits the movement to the transmission device 48, the transmission device 48 transmits the movement to the driving wheel two 410, the driving wheel two 410 drives the lifting shaft 412 to act up and down under the cooperation of the driven wheel two 415 and the chain two 416, and then the lifting shaft 412 drives the cabinet door 2 to act up and down, when the contact piece on the cabinet door 2 touches the limit switch on the frame body 1, the motor two 417 on the speed reducer two 41 stops running, so as to realize the opening and closing actions of the door.

[0059] Referring to Figures 10-18 , the adapter table 7 comprises an upper support 71 fixed on the motor one 611 or the motor two 417 and a lower support 75 fixed on the frame body 1, the upper support 71 is provided with a shell one 72, the lower support 75 is provided with a shell two 74, and the anti-shaking module 73 is arranged between the shell one 72 and the shell two 74.

[0060] The anti-shaking module 73 comprises a silica gel platform 731, an anti-shaking unit one and an anti-shaking unit two. The shell one 72 and the shell two 74 are both prismatic structures, the shell one 72 and the shell two 74 are both concave structures, the silica gel platform 731 is a prism perpendicular to the shell one 72 and the shell two 74, the two ends of the Z-axis of the silica gel platform 731 are respectively connected with the shell one 72 and the shell two 74, and the silica gel platform 731 can move between the shell one 72 and the shell two 74 when the upper support 71 is shaken. The silica gel platform 731 is located at the center of the shell two 74 when not in action. The top of the silica gel platform 731, the bottom of the silica gel platform 731, the bottom wall of the shell one 72 and the top wall of the shell two 74 are all blocking surfaces.

[0061] The anti-shaking unit one comprises a pair of moving platforms one 732 and a pair of spiral beryllium copper wires one 733, the pair of moving platforms one 732 are mirror image arranged on the two sides of the silica gel platform 731, the spiral beryllium copper wires one 733 are arranged towards the length direction perpendicular to the silica gel platform 731, the pair of moving platforms one 732 are respectively connected through the spiral beryllium copper wires one 733 and the two opposite side walls of the silica gel platform 731, and the pair of moving platforms one 732 can move in the X-axis direction of the shell two 74. The anti-shaking unit two comprises a pair of moving platforms two 734 and a pair of spiral beryllium copper wires two 735, the pair of moving platforms two 734 are mirror image arranged on the other two sides of the silica gel platform 731, the spiral beryllium copper wires two 735 are arranged towards the length direction perpendicular to the silica gel platform 731, the pair of moving platforms two 734 are respectively connected through the spiral beryllium copper wires two 735 and the two opposite side walls of the silica gel platform 731, and the pair of moving platforms two 734 can move in the Y-axis direction of the shell two 74.

[0062] A pair of tracks one 742 are reserved on the upper wall of the shell two 74, the tracks one 742 are on the same side as the corresponding moving platforms one 732, and the moving platforms one 732 are movably arranged in the tracks one 742. A pair of tracks two 743 are also reserved on the upper wall of the shell two 74, the tracks two 743 are on the same side as the corresponding moving platforms two 734, and the moving platforms two 734 are movably arranged in the tracks two 743. The outer wall of the silica gel platform 731 towards the length direction thereof is provided with a mounting hole one 7311, and the pair of spiral beryllium copper wires one 733 and the pair of spiral beryllium copper wires two 735 are arranged in the corresponding mounting hole one 7311.

[0063] A pair of variable platforms one 732 and silica gel platform 731 are respectively provided with pressing units one 736, and a pair of variable platforms two 734 and silica gel platform 731 are respectively provided with pressing units two 7365; when the upper support 71 is shaken, the silica gel platform 731 is changed between the shell one 72 and the shell two 74, so that the shape of the helical beryllium copper wire one 733 or the helical beryllium copper wire two 735 changes, and when the shape of the helical beryllium copper wire one 733 changes, the variable platform two 734 is pulled together to change, and when the shape of the helical beryllium copper wire two 735 changes, the variable platform one 732 is pulled together to change, and the change of the variable platform one 732 or the variable platform two 734 on the shell two 74 generates corresponding movement distance one and movement distance two: when the movement distance one, the variable platform one 732 or the variable platform two 734 only changes on the shell two 74, when the movement distance two, the variable platform one 732 changes can drive the pressing unit one 736 to work, and the variable platform two 734 changes can drive the pressing unit two 7365 to work. The functions of the pressing unit one 736 or the pressing unit two 7365 can increase the pressure on the silica gel platform 731.

[0064] Through the cooperation between the installed silica gel platform 731, anti-shaking unit one and anti-shaking unit two, the resistance between the silica gel platform 731 and the shell one 72 and the shell two 74 is set to be a horizontal resistance. When the upper support 71 is shaken, the horizontal force formed causes the upper support 71 to shake in the horizontal direction.

[0065] When the shaking degree is small, the distance of the variable platform one 732 or the variable platform two 734 changing on the shell two 74 at this moment is the movement distance one. At this moment, when the shaking forms a Y-axis force, the upper support 71 is shaken in the Y-axis direction, the silica gel platform 731 is changed in the Y-axis direction of the shell two 74 and the shape of a pair of helical beryllium copper wire one 733 is changed, and the silica gel platform 731 is changed on the upper wall of the shell two 74, then the variable platform two 734 is changed along the track two 743, when the shaking forms an X-axis force, the upper support 71 is shaken in the X-axis direction, the silica gel platform 731 is changed in the X-axis direction of the shell two 74 and the shape of a pair of helical beryllium copper wire two 735 is changed, and the silica gel platform 731 is changed in the X-axis direction, then the variable platform one 732 is changed along the track one 742.

[0066] With the change of the silica gel platform 731 between the shell one 72 and the shell two 74, the pair of spiral beryllium copper wires one 733 or the pair of spiral beryllium copper wires two 735 can each reduce the shaking effect in the corresponding direction, thereby reducing the shaking effect in the X-axis and Y-axis directions, and at this moment, only the spiral beryllium copper wire one 733 or the spiral beryllium copper wire two 735 can reduce the shaking of the upper support 71, and during the reduction of the shaking by the pair of spiral beryllium copper wires one 733 and the pair of spiral beryllium copper wires two 735, the constraint of the silica gel platform 731 in the X-axis and Y-axis directions can prevent the silica gel platform 731 from being separated from the shell one 72 and the shell two 74.

[0067] When the shaking degree is large, that is, the distance of the change of the silica gel platform 731 between the shell one 72 and the shell two 74 is large, the distance of the change of the moving platform one 732 or the moving platform two 734 on the shell two 74 is the moving distance two, at this moment, the moving platform two 734 moves in the Y-axis direction, drives the compression unit one 736 to work, and the working of the compression unit one 736 can increase the resistance of the silica gel platform 731. When the shaking force in the X-axis direction is generated, the moving platform one 732 moves in the X-axis direction, drives the compression unit two 7365 to work, and the working of the compression unit two 7365 can increase the resistance of the silica gel platform 731. When the shaking degree is large, the working of the compression unit one 736 or the compression unit two 7365 can increase the resistance of the silica gel platform 731, thereby increasing the resistance of the silica gel platform 731 between the shell one 72 and the shell two 74, so that during the reduction of the shaking by the pair of spiral beryllium copper wires one 733 and the pair of spiral beryllium copper wires two 735 when a stronger shaking is borne, the shaking formed is reduced by additionally applying the resistance of the silica gel platform 731 between the shell one 72 and the shell two 74, thereby reducing the shaking degree of the upper support 71 and reducing the duration of the shaking, and the way of reducing the shaking of the upper support 71 can be automatically selected according to the intensity of the shaking degree, and the function of reducing the shaking is improved according to the intensity of the shaking degree, and the purpose of resisting the shaking is achieved to prevent the instability of the equipment caused by the working of the upper support 71.

[0068] The structure of the compression unit two 7365 is identical to that of the compression unit one 736. The compression unit one 736 comprises a movable tube 7361, a linkage unit, and a fluid compression action unit 737. The fluid compression action unit 737 comprises a housing 7373, a movable strip one 7371, and a movable strip two 7372. The movable strip one 7371 and the movable strip two 7372 are provided with a plurality of notches on a wall surface opposite to each other at equal intervals. The housing 7373 is fixedly connected to the movable platform one 732, and the housing 7373 is arranged on a wall surface of the movable platform one 732 close to the silica gel platform 731. The housing 7373 is provided with a movable space one 7374, a movable space two 7375, and a movable space three 7376. The movable space one 7374, the movable space two 7375, and the movable space three 7376 are all provided with fluid, and the fluid is hydraulic transmission oil.

[0069] The movable strip one 7371 is vertically downwardly arranged. A wear-resistant silica gel sheet one is arranged on the top of the movable strip one 7371. The wear-resistant silica gel sheet one is movably arranged in the movable space one 7374. The wear-resistant silica gel sheet one separates the movable space one 7374 into an upper area one and a lower area one. The lower area one is below the upper area one. Fluid can only flow from the lower area one to the upper area one. The upper area one is connected to the movable space two 7375, and fluid can only flow from the upper area one to the movable space two 7375. The movable space two 7375 is connected to the lower area one, and fluid can only flow from the movable space two 7375 to the lower area one.

[0070] A check valve one 7377 is arranged at the connection between the upper area one and the lower area one. The check valve one 7377 can only allow fluid to flow from the lower area one to the upper area one. A check valve two 7378 is arranged at the connection between the upper area one and the movable space two 7375. The check valve two 7378 can only allow fluid to flow from the upper area one to the movable space two 7375. A check valve three 7379 is arranged at the connection between the lower area one and the movable space two 7375. The check valve three 7379 can only allow fluid to flow from the movable space two 7375 to the lower area one.

[0071] The movable strip two 7372 is vertically downwardly arranged. A wear-resistant silica gel sheet two is arranged on the top of the movable strip two 7372. The wear-resistant silica gel sheet two is movably arranged in the movable space three 7376. The wear-resistant silica gel sheet two separates the movable space three 7376 into an upper area two and a lower area two. The lower area two is below the upper area two. Fluid can only flow from the lower area two to the upper area two. The upper area two is connected to the movable space two 7375, and fluid can only flow from the upper area two to the movable space two 7375. The movable space two 7375 is connected to the lower area two, and fluid can only flow from the movable space two 7375 to the lower area two.

[0072] The connection between the upper region two and the lower region two is provided with a check valve four 738, which only allows fluid to flow from the lower region two to the upper region two. The connection between the upper region two and the active space two 7375 is provided with a check valve five 7381, which only allows fluid to flow from the upper region two to the active space two 7375. The connection between the lower region two and the active space two 7375 is provided with a check valve six 7382, which only allows fluid to flow from the active space two 7375 to the lower region two.

[0073] The shell 7373 is provided with an assembly opening three, and the active space two 7375 is above the assembly opening three. The upper wall surface of the assembly opening three is provided with an active opening one, and the lower wall surface of the active space one 7374 is provided with an active opening two. The active strip one 7371 sequentially penetrates the active opening two and the active opening one, and a leakage prevention strip is arranged between the active strip one 7371 and the active opening one. The active strip one 7371 can move along the Z-axis in the active opening two. The other side of the upper wall surface of the assembly opening three is provided with an active opening three, and the lower wall surface of the active space three 7376 is provided with an active opening four. The active strip two 7372 sequentially penetrates the active opening four and the active opening three, and a leakage prevention strip is arranged between the active strip two 7372 and the active opening three. The active strip two 7372 can move along the Z-axis in the active opening four.

[0074] One end of the active tube 7361 and the silica gel table 731 are provided with a spiral beryllium copper wire four 7364, which is arranged along the length of the silica gel table 731. The vertical outer wall of the silica gel table 731 is respectively provided with an assembly opening two 7312. The active tube 7361 can only move along the length of the silica gel table 731 in the assembly opening two 7312. The spiral beryllium copper wire four 7364 is arranged between the active tube 7361 and the lower wall surface of the assembly opening two 7312. The other end of the active tube 7361 is provided with a wear-resistant silica gel sheet three, which is movably arranged in the active space two 7375. The wear-resistant silica gel sheet three is provided with a plurality of circular holes 7383 penetrating through both ends.

[0075] The active tube 7361 is in the shape of a right-angle folding ruler. The active tube 7361 includes an active end one and an active end two. The active end one is vertically downward. The active end two is perpendicular to the silica gel table 731. The bottom of the active end one is fixedly connected to the upper wall surface of the wear-resistant silica gel sheet three. The top of the active end one is fixedly connected to the active end two. The active end one and the active end two are an integral structure. The active end two includes an outer tube and an active column 7363. The outer tube and the active column 7363 are connected to each other through a spiral beryllium copper wire three 7362. When the silica gel table 731 moves between the shell one 72 and the shell two 74, the spiral beryllium copper wire three 7362 is pulled to move the outer tube and the active column 7363 away from each other.

[0076] When the moving table 732 moves on the shell 2 74 by the moving distance 2, the moving table 732 moves the driving linkage unit to work, the linkage unit works to make the movable strip 1 7371 and the movable strip 2 7372 rotate alternately upward, the movable strip 1 7371 and the movable strip 2 7372 rotate alternately upward to pull the movable tube 7361 to the bottom to press the spiral beryllium copper wire 4 7364.

[0077] The linkage unit comprises a rotating disc 1 7391, a rotating disc 2 7392 and a rotating disc 3 7393, the outer circumferential surface of the rotating disc 1 7391, the rotating disc 2 7392 and the rotating disc 3 7393 is reserved with several teeth at equal intervals, the rotating disc 1 7391 is screwed in the moving table 732, the bottom wall of the track 1 742 is provided with a rectangular piece 744, the upper wall surface of the rectangular piece 744 is reserved with several teeth at equal intervals, the rectangular piece 744 is arranged along the length of the track 1 742, when not working, the rectangular piece 744 is located on both sides of the rotating disc 1 7391, the rotating disc 1 7391 and the rectangular piece 744 are not engaged, the rotating disc 2 7392 is screwed in the moving table 732, the rotating disc 1 7391 is located below the rotating disc 2 7392 and engages with the rotating disc 1 7391 through the teeth, the rotating disc 3 7393 is screwed in the shell 7373, the rotating disc 3 7393 and the rotating disc 2 7392 are connected through the rotating rod, the rotating disc 3 7393 and the rotating disc 2 7392 rotate together.

[0078] The movable strip one 7371 and the movable strip two 7372 are engaged with the rotating disc three 7393 via the toothed opening, the distance of the movable strip one 732 on the upper wall of the shell two 74 is the moving distance two, accompanied by the change of the silica gel strip 731 on the upper wall of the shell two 74, when the silica gel strip 731 drives the movable strip one 732 to change to engage with the rectangular piece 744, the movable strip one 7371 and the movable strip two 7372 change alternately upward. When the rotating disc one 7391 engages with the rectangular piece 744 to make the rotating disc one 7391 rotate reversely, the rotating disc one 7391 and the rotating disc two 7392 engage to make the rotating disc two 7392 pull the rotating disc three 7393 to rotate, when the rotating disc three 7393 rotates, the movable strip one 7371 moves upward, the movable strip two 7372 moves downward, the movable strip one 7371 moves upward, then the fluid in the movable space one 7374 flows into the movable space two 7375 through the check valve two 7378, then the movable tube 7361 moves downward, at this moment, the compression strength of the wall of the movable space two 7375 is greater than that of the upper area one, the compression strength of the wall of the movable space two 7375 is less than that of the lower area two, so the movable tube 7361 moves downward to make the fluid in the movable space two 7375 flow back into the movable space one 7374 through the check valve three 7379. The movable strip two 7372 moves downward to make the fluid in the lower area two flow into the upper area two through the check valve four 738, at this moment, the movable strip two 7372 moving downward does not affect the movable tube 7361 moving downward.

[0079] If the silica gel strip 731 moves reversely to make the rotating disc one 7391 rotate, the rotating disc one 7391 and the rotating disc two 7392 engage to make the rotating disc two 7392 drive the rotating disc three 7393 to rotate reversely, when the rotating disc three 7393 rotates reversely, the movable strip one 7371 moves downward, the movable strip two 7372 moves upward, the movable strip two 7372 moves upward to make the fluid in the movable space three 7376 flow into the movable space two 7375 through the check valve five 7381, then the movable tube 7361 moves downward, at this moment, the compression strength of the wall of the movable space two 7375 is less than that of the lower area one, the compression strength of the wall of the movable space two 7375 is greater than that of the lower area two, the movable tube 7361 moves downward to make the fluid in the movable space two 7375 flow back into the movable space three 7376 through the check valve six 7382. The movable strip one 7371 moves downward to make the fluid in the lower area one flow into the upper area one through the check valve one 7377, at this moment, the movable strip one 7371 moving downward does not affect the movable tube 7361 moving downward.

[0080] When the distance of the moving table 1 732 moving on the shell 2 74 is changed to the moving distance 2, the moving of the moving table 1 732 in the track 1 742 will make the rotating disc 3 393 and the rectangular piece 744 engage, and then drive the rotating disc 3 393 to rotate, the rotating disc 3 393 also engages with the movable strip 1 7371 and the movable strip 2 7372, so that the rotating disc 3 393 can drive the movable tube 7361 to move downward, because the movable tube 7361 and the silica gel table 731 are provided with the spiral beryllium copper wire 4 7364, when the movable tube 7361 moves downward, the downward pressure of the movable tube 7361 is transmitted to the silica gel table 731 through the spiral beryllium copper wire 4 7364, which increases the pressure of the silica gel table 731, and then increases the resistance of the silica gel table 731 moving between the shell 1 72 and the shell 2 74, and the distance of the movable tube 7361 moving downward increases, which will make the silica gel table 731 pull the moving table 1 732 or the moving table 2 734 to move a larger distance, when the shaking degree increases, the distance of the silica gel table 731 moving between the shell 1 72 and the shell 2 74 increases, and then the silica gel table 731 drives the moving table 1 732 or the moving table 2 734 to move a larger distance, which increases the downward pressure of the movable tube 7361 on the spiral beryllium copper wire 4 7364, so that the upper support 71 can increase the resistance of the silica gel table 731 between the shell 1 72 and the shell 2 74 to reduce the shaking force of the upper support 71 according to the increase of the shaking degree, and then reduce the shaking degree and the shaking time of the upper support 71.

[0081] The embodiment is specific: during operation, the operation of the whole sterilization cabinet is controlled through the control panel, the motor 2 417 drives the speed reducer 2 41 to act, the speed reducer 2 41 transmits the movement to the transmission 48, the transmission 48 transmits the movement to the driving wheel 2 410, the driving wheel 2 410 drives the lifting shaft 412 to act upwards under the cooperation of the driven wheel 2 415 and the chain 2 416, then the lifting shaft 412 drives the cabinet door 2 to act upwards, opens the cabinet door 2, when the contact piece on the cabinet door 2 touches the limit switch on the frame 1, the motor 2 417 on the speed reducer 2 41 stops running, and the cabinet door 2 moves to the specified position, the cutlery trolley is hung on the chain hook 610, the motor 1 611 drives the driving shaft 1 61 to rotate through the speed reducer 1 63, and the chain 1 612 is moved through the cooperation of the driving wheel 1 64, the driven shaft 1 68 and the driven wheel 1 69, then the chain hook 610 is driven to work, and the chain hook 610 lifts the placed cutlery trolley, when one cutlery trolley is lifted to a certain position, another cutlery trolley is placed on another set of chain hooks 610, the motor 1 611 continues to act, and another cutlery trolley is lifted, so that the three cutlery trolleys are placed in the sterilization cabinet, the motor 2 417 reversely rotates, then the cabinet door 2 is lowered, the hot air circulation system 5 works, the heating pipe 57 is warmed up, and the hot circulating fan 51 drives the gas in the sterilization cabinet to circulate and flow, so that the uniformity and comprehensiveness of high-temperature disinfection are ensured, and the disinfection effect is ensured, the motor 2 417 drives the speed reducer 2 41 to act, the speed reducer 2 41 transmits the movement to the transmission 48, the transmission 48 transmits the movement to the driving wheel 2 410, the driving wheel 2 410 drives the lifting shaft 412 to act upwards under the cooperation of the driven wheel 2 415 and the chain 2 416, then the lifting shaft 412 drives the cabinet door 2 to act upwards, opens the cabinet door 2, the motor 1 611 reversely rotates, and then the cutlery trolleys can be taken off from the chain hooks 610 one by one, and the use is very convenient;

[0082] When the motor one 611 or the motor two 417 runs and shakes, the shaking is transmitted to the connecting table 7. When the shaking is small, the shaking generates a force in the Y-axis direction, which makes the silica gel table 731 move in the Y-axis direction of the shell two 74 and changes the shape of the pair of spiral beryllium copper wires one 733. The movement of the silica gel table 731 in the Y-axis direction makes the moving table two 734 move in the Y-axis direction. The shaking generates a force in the X-axis direction, which makes the silica gel table 731 move in the X-axis direction of the shell two 74 and changes the shape of the pair of spiral beryllium copper wires two 735. The movement of the silica gel table 731 in the X-axis direction makes the moving table one 732 move in the X-axis direction. At this moment, the distance of the movement of the moving table one 732 or the moving table two 734 on the shell two 74 is on the moving distance one. With the movement of the silica gel table 731 between the shell one 72 and the shell two 74, the pair of spiral beryllium copper wires one 733 or the pair of spiral beryllium copper wires two 735 can reduce the shaking force from the corresponding direction, and the shaking force in the X-axis and Y-axis directions generated by the shaking is reduced. At this moment, only the spiral beryllium copper wires one 733 or the spiral beryllium copper wires two 735 can reduce the shaking of the upper support 71; when the shaking becomes larger, the distance between the shell one 72 and the shell two 74 where the silica gel table 731 moves becomes larger, and the distance of the movement of the moving table one 732 or the moving table two 734 on the shell two 74 is on the moving distance two. When the distance of the movement of the moving table one 732 on the shell two 74 is on the moving distance two, the movement of the moving table one 732 in the track one 742 makes the rotating disc three 7393 and the rectangular piece 744 engage, thereby dragging the rotating disc three 7393 to rotate. The rotating disc three 7393 and the movable strip one 7371 and the movable strip two 7372 engage, and under the cooperation of the fluid pressing action unit 737, the rotating disc three 7393 can drag the movable tube 7361 to move downward. Since the spiral beryllium copper wire four 7364 is arranged between the movable tube 7361 and the silica gel table 731, when the movable tube 7361 moves downward, the downward pressing force of the movable tube 7361 is transmitted to the silica gel table 731 through the spiral beryllium copper wire four 7364, which increases the pressing force of the silica gel table 731, thereby increasing the resistance of the movement of the silica gel table 731 between the shell one 72 and the shell two 74. When a larger shaking occurs, the resistance can be increased to reduce the shaking force generated by the shaking, thereby reducing the shaking degree and the shaking time of the upper support 71. With the continuous movement of the silica gel table 731 between the shell one 72 and the shell two 74, the movable tube 7361 continuously moves downward to the bottom and contacts the lower wall in the active space two 7375.When the shaking stops, the shortened helical beryllium copper wire 733 or the helical beryllium copper wire 735 returns to the original position under its own force, the silica gel table 731 returns to the original position, the rotating disc 7391 and the rectangular piece 744 are not engaged, and then under the reverse pressure of the helical beryllium copper wire 7364, the helical beryllium copper wire 7364 helps the movable tube 7361 to move upwards, so that the fluid on the wall surface of the wear-resistant silica gel piece 3 can flow downwards from the circular hole 7383, and then the movable tube 7361 moves upwards to return to the original position, thereby reducing the shaking of the motor 611 or the motor 417 during operation, and ensuring the stable operation of the disinfection cabinet.

[0083] The above shows and describes the basic principles and main features of the present application and the advantages of the present application. Those skilled in the art should understand that the present application is not limited to the above-mentioned embodiments, and the above-mentioned embodiments and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. A multi-layer disinfection cabinet, comprising a frame, characterized in that: The lower end of the frame is provided with a movably mounted cabinet door, the outside of the frame is provided with a heat-insulating sealing system, the inside of the frame is provided with a hot air circulation system and a tableware trolley lifting system, the hot air circulation system is provided with a door lifting system, and a docking station is provided between the door lifting system and the tableware trolley lifting system and the frame, and a control panel is provided on the outside of the heat-insulating sealing system and on one side of the frame opening; The docking station includes an upper bracket and a lower bracket fixed to the frame, the upper bracket is mounted on a shell 1, the lower bracket is mounted on a shell 2, and an anti-shake module is mounted between the shells 1 and 2; The anti-sway module includes a silicone base, anti-sway unit 1, and anti-sway unit 2. The silicone base is a prism perpendicular to shells 1 and 2. Its two ends in the Z axis are connected to shells 1 and 2, respectively. When the upper bracket is shaken, the silicone base can move between shells 1 and 2. The anti-shake unit 1 includes a pair of adjustable platforms 1 and a pair of spiral beryllium copper wires 1. The adjustable platforms 1 are connected to the two side walls of the silicone platform via the spiral beryllium copper wires 1, and the adjustable platforms 1 can move in the X-axis direction of the second shell. The anti-shake unit 2 includes a pair of adjustable platforms 2 and a pair of spiral beryllium copper wires 2. The adjustable platforms 2 are connected to the two side walls of the silicone platform via the spiral beryllium copper wires 2, and the adjustable platforms 2 can move in the Y-axis direction of the second shell. A compression unit 1 is respectively installed between the adjustable platforms 1 and the silicone platform, and a compression unit 2 is respectively installed between the adjustable platforms 2 and the silicone platform. When the upper bracket is shaken, the silicone platform moves between the shell 1 and the shell 2, causing the shape of the spiral beryllium copper wire 1 or the spiral beryllium copper wire 2 to change. When the shape of the spiral beryllium copper wire 1 changes, the movable platform 2 is pulled to move together. When the shape of the spiral beryllium copper wire 2 changes, the movable platform 1 is pulled to move together. The movement of the movable platform 1 or the movable platform 2 on the shell 2 produces a corresponding movement distance 1 and movement distance 2. When the moving distance is 1, the variable platform 1 or the variable platform 2 only moves on the shell 2. When the moving distance is 2, the movement of the variable platform 1 can drive the pressing unit 1 to work, and the movement of the variable platform 2 can drive the pressing unit 2 to work. The functions of the pressing unit 1 or the pressing unit 2 can increase the pressing effect on the silicone platform. Compression unit 2 has the same structure as compression unit 1. Compression unit 1 includes a movable tube, a linkage unit, and a fluid compression action unit. The fluid compression action unit includes a housing, movable bars 1 and 2. A plurality of teeth are reserved at equal intervals on the wall opposite movable bars 1 and 2. The housing is fixedly connected to the variable platform 1 and is installed on the wall of the variable platform 1 close to the silicone platform. Active Space 1, Active Space 2, and Active Space 3 are reserved in the shell, and fluid is reserved in each of Active Space 1, Active Space 2, and Active Space 3. Active Strip 1 is vertically downwardly arranged, and a wear-resistant silicone sheet 1 is installed on the top of Active Strip 1. The wear-resistant silicone sheet 1 is movably installed in Active Space 1. The wear-resistant silicone sheet 1 separates Active Space 1 into an upper area 1 and a lower area 1. The lower area 1 is below the upper area 1, and fluid can only flow from the lower area 1 to the upper area 1. The upper area 1 is connected to Active Space 2, and fluid can only flow from the upper area 1 to the active space 2. The active space 2 is connected to the lower area 1, and fluid can only flow from the active space 2 to the lower area 1. The movable bar 2 is arranged vertically downward, and a wear-resistant silicone sheet 2 is arranged on the top of the movable bar 2. The wear-resistant silicone sheet 2 is movably arranged in the movable space 3. The wear-resistant silicone sheet 2 separates the movable space 3 into an upper area 2 and a lower area 2. The lower area 2 is below the upper area 2. Fluid can only flow from the lower area 2 to the upper area 2. The upper area 2 is connected to the movable space 2, and fluid can only flow from the upper area 2 to the movable space 2. The movable space 2 is connected to the lower area 2, and fluid can only flow from the movable space 2 to the lower area 2. A spiral beryllium copper wire (fourth) is installed between one end of the movable tube and the silicone platform. The spiral beryllium copper wire (fourth) runs along the length of the silicone platform. A wear-resistant silicone sheet (three) is installed at the other end of the movable tube. The wear-resistant silicone sheet (three) is movably installed in the movable space (two). The wear-resistant silicone sheet (three) is reserved with multiple circular holes that pass through at both ends. The movable tube is in the shape of a right-angled ruler and includes a movable end 1 and a movable end 2. The movable end 1 is vertically downwardly arranged, and the movable end 2 is perpendicular to the silicone platform. The bottom of the movable end 1 is fixedly connected to the upper wall surface of the wear-resistant silicone sheet 3, and the top of the movable end 1 is fixedly connected to the movable end 2. When the movable platform 1 moves on the shell 2 by a moving distance of moving distance 2, the movable platform 1 moves to drive the linkage unit to operate. The operation of the linkage unit causes the movable bar 1 and the movable bar 2 to move upward in turn. The movable bar 1 and the movable bar 2 move upward in turn, which can pull the movable tube toward the bottom to compress the spiral beryllium copper wire 4. The linkage unit includes a rotating disk 1, a rotating disk 2 and a rotating disk 3. A number of teeth are reserved at equal intervals on the outer circumference of the rotating disk 1, the rotating disk 2 and the rotating disk 3. The rotating disk 1 is screwed into the variable platform 1. A rectangular piece is installed on the bottom wall of the track 1. A number of teeth are reserved at equal intervals on the upper wall of the rectangular piece. The rectangular piece is arranged along the length of the track 1. When not working, the rectangular piece is on both sides of the rotating disk 1. The rotating disk 1 and the rectangular piece do not bite each other. The rotating disk 2 is screwed into the variable platform 1. The rotating disk 1 is between the rotating disk 2. The lower and rotating disks 1 are engaged with each other via teeth, the rotating disk 3 is screwed into the housing, the rotating disk 3 is connected to the rotating disk 2 via a rotating rod, the rotating disk 3 and the rotating disk 2 rotate together, the movable bars 1 and the movable bars 2 are engaged with the rotating disk 3 via teeth, when the movable platform 1 moves on the upper wall of the housing 2 by a moving distance of 2, accompanied by the movement of the silicone platform on the upper wall of the housing 2, when the silicone platform drives the movable platform 1 to move until the rotating disk 1 can engage with the rectangular piece, the movable bars 1 and the movable bars 2 move upward in turn; A check switch 1 is installed at the connection between the upper area 1 and the lower area. The check switch can only allow the fluid to flow from the lower area 1 to the upper area 1. A check switch 2 is installed at the connection between the upper area 1 and the activity space 2. The check switch 2 can only allow the fluid to flow from the upper area 1 to the activity space 2. A check switch 3 is installed at the connection between the lower area 1 and the activity space 2. The check switch 3 can only allow the fluid to flow from the lower area 1 of the activity space 2; A check switch 4 is installed at the connection between the upper area 2 and the lower area 2. The check switch 4 can only allow the fluid to flow from the lower area 2 to the upper area 2. A check switch 5 is installed at the connection between the upper area 2 and the activity space 2. The check switch 5 can only allow the fluid to flow from the upper area 2 to the activity space 2. A check switch 6 is installed at the connection between the lower area 2 and the activity space 2. The check switch 6 can only allow the fluid to flow from the activity space 2 to the lower area 2. An assembly opening 3 is reserved in the housing, and movable space 2 is located above assembly opening 3. A movable opening 1 is reserved on the upper wall of assembly opening 3, and movable opening 2 is reserved on the lower wall of movable space 1. A movable strip 1 sequentially passes through movable opening 2 and movable opening 1. A leak-proof strip is installed between movable strip 1 and the movable opening. The movable strip 1 can move upward along the Z axis in movable opening 2. The other side of the upper wall of the assembly opening three is reserved for movable opening three, and the lower wall of the movable space three is reserved for movable opening four. The movable strip two passes through the movable opening four and the movable opening three in sequence. A leakage-proof strip is installed between the movable strip two and the movable opening three. The movable strip two can move along the Z axis in the movable opening four.

2. A multi-layer disinfection cabinet according to claim 1, characterized in that: The heat insulation sealing system comprises a plurality of heat insulation panels, and the plurality of heat insulation panels are tightly welded to the frame.

3. A multi-layer disinfection cabinet according to claim 1, characterized in that: The hot air circulation system includes a heat circulation fan installed on the upper end of the frame, an upper air guide plate is installed on the side of the heat circulation fan, an air outlet connecting plate is installed on the inner side of the upper air guide plate, an inner lining plate is installed at the lower end of the air outlet connecting plate, an inspection door is installed on the inner lining plate, a pipe rack is also installed on the inner lining plate, a plurality of heating pipes are installed on the pipe rack, and the heating pipes are arranged side by side. An air outlet baffle is installed on the outer side of the lower end of the inner lining plate, and the sides of the upper air guide plate, the air outlet connecting plate, the inner lining plate and the air outlet baffle are all fixed on the frame.

4. A multi-layer disinfection cabinet according to claim 3, characterized in that: The door lifting system includes a sealing cover fixed on the bottom plate of the heat circulation fan, a pair of bearing seats 3 and driven shaft 2 fixed on both sides of the lower end of the frame, and a reducer 2 and a mounting plate fixed on the upper end of the frame. The reducer 2 is installed with a motor 2, and the output end of the motor 2 is connected to the input end of the reducer 2. The output end of the reducer 2 is installed with a transmission shaft 1 through the sealing cover. The transmission shaft 1 is connected to the output end of the reducer 2 via a connecting sleeve. The lower end of the transmission shaft 1 is installed with a transmission shaft 2. The transmission shaft 1 and the transmission shaft 2 are connected via another connecting sleeve. The outer wall surfaces of the transmission shaft 1 and the transmission shaft 2 are both installed with bearing seat 2. , bearing seat 2 is connected to the frame, driven shaft 2 is located below bearing seat 3, the mounting plate is located above bearing seat 3, a transmission is installed on the mounting plate, the input end of the transmission is connected to the bottom of the transmission shaft 2, and a driving shaft 2 is installed between bearing seat 3. The driving shaft 2 passes through the transmission and is connected to the output end of the transmission. A driving wheel 2 is installed at each end of the driving shaft 2, and a driven wheel 2 is installed on the driven shaft 2. The driving wheel 2 and the driven wheel 2 are connected via a chain 2. Both chains 2 are installed with shaft sleeves. A lifting shaft is installed between the two opposite shaft sleeves, and the lifting shaft is connected to the cabinet door.

5. The multi-layer disinfection cabinet according to claim 1, characterized in that: The tableware trolley lifting system includes a bearing seat fixedly connected to the left and right sides of the upper end of the frame, a reducer fixedly connected to the upper end of the frame, support rails fixed on the left and right sides of the frame and a driven shaft fixed on the left and right sides of the lower end of the frame. The reducer is equipped with a motor and an encoder. The input end of the reducer is transmission-connected to the output end of the motor. The bearing seat is screwed onto a driving shaft, which passes through the reducer and is transmission-connected to the output end of the reducer. The left and right ends of the driving shaft are fixedly connected to a driving wheel, and the driven shaft is screwed onto a driven wheel. The driving wheel and the driven wheel are connected via a chain. A limit block and multiple sets of chain hooks are installed on the chain.

Citation Information

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