Sterilization device
By introducing a combination structure of a drive component driving a rotating rod and a flipping plate into the konjac processing sterilization device, the problem of uneven heating of konjac blocks was solved, achieving uniform heating and efficient sterilization of konjac blocks.
Patent Information
- Application Number
- CN202423145524.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-19
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-12-19
AI Technical Summary
In existing konjac processing sterilization equipment, konjac blocks are prone to uneven heating during the sterilization process, resulting in poor sterilization effect.
A sterilization device was designed. The drive component drives the rotating rod to rotate, which in turn drives the flipping plate to flip the konjac blocks, ensuring that the konjac blocks are heated evenly. The device adopts a combination structure of flipping plate and rotating rod, combined with motor drive to achieve the flipping and positioning of konjac blocks.
This method ensures uniform heating of konjac blocks, improves sterilization efficiency, and avoids the problem of poor sterilization caused by uneven heating of konjac blocks.
Smart Images

Figure CN223515666U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of konjac sterilization, and in particular to a sterilization device. BACKGROUND
[0002] In the process of konjac product processing, steam sterilization is often used to remove bacteria inside; because the steam sterilization method can effectively kill bacteria, viruses and other microorganisms in food, thereby prolonging the shelf life of food and reducing the risk of consumers ingesting harmful microorganisms.
[0003] For example, the patent with the announcement number CN220799987U discloses a konjac processing sterilization device, which is used in cooperation with a sterilization box, a recovery box, a perforated tray, a heater, an electric heating pipe, a communication pipe and a straight pipe. The high-temperature steam after sterilization enters the recovery box through the communication pipe, and then is sprayed into the water in the recovery box through the straight pipe. The moisture in the steam is dissolved into the water, thereby reducing water resource waste. However, when the konjac in the perforated tray is placed in the sterilization box for high-temperature steam sterilization, the konjac stacked in the perforated tray lacks turning, so that the konjac in the perforated tray is easily unevenly heated, thereby reducing the sterilization effect of the high-temperature steam on the konjac, and thus needs to be improved. SUMMARY
[0004] The application provides a sterilization device to solve the problems in the background.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme:
[0006] A sterilization device comprises a sterilization box and a sterilization cavity arranged in the sterilization box. A slot is arranged on the side wall of the sterilization box and communicates with the sterilization cavity. A slidable placing box is arranged in the sterilization cavity. One end of the placing box penetrates through the slot and extends out of the sterilization box. An upward opening placing groove for placing konjac blocks is arranged in the placing box. A rotating rod is arranged at the center position of the placing groove. An inclined turning plate is arranged on the side wall of the rotating rod. A box body is arranged on the upper end face of the sterilization box. A driving assembly for driving the rotating rod to rotate is arranged on the upper end face of the box body.
[0007] Preferably, a rotating groove is arranged at the upper end of the rotating rod. A cavity is arranged in the box body.
[0008] The driving assembly comprises a first motor arranged on the box body, an output shaft of the first motor extends into the cavity, opposite clamping grooves are formed in the output shaft of the first motor, a lifting mounting ring is sleeved on the output shaft of the first motor, a rotatable connecting rod with a lower end extending into the sterilization cavity is arranged on a lower end surface of the mounting ring, a connecting groove for the output shaft of the first motor to extend into is formed in an upper end surface of the connecting rod, clamping blocks for being clamped into the corresponding inner clamping grooves are arranged on side walls of the connecting groove, and a connecting block for being clamped into a rotating groove is arranged on a lower end surface of the connecting rod.
[0009] Preferably, a rotatable driving plate is sleeved on the connecting rod, driving grooves are formed in both end portions of the driving plate, driving blocks for being clamped into the corresponding driving grooves are arranged on opposite side walls of the sterilization cavity, and a fixed plate is arranged on the opposite side walls of the sterilization cavity.
[0010] The moving piece comprises opposite slide plates arranged in the sterilization cavity and being slidable, a fixed groove for the corresponding fixed plate to be clamped into is formed in a side wall of each slide plate, and a pressing block is arranged on an upper end surface of each slide plate, a pressing inclined surface is formed in each pressing block, the slide plates are moved to drive the pressing inclined surfaces on the pressing blocks to press the driving plate, so that the driving plate drives the connecting rod to move upward.
[0011] Preferably, a horizontal plate is arranged between the two slide plates, a threaded rod with one end threadedly penetrating through the horizontal plate is arranged on a side wall of the sterilization cavity, and the threaded rod is rotated to move the horizontal plate.
[0012] Preferably, opposite protrusions are arranged in the sterilization cavity, and grooves for the corresponding protrusions to be clamped into are formed in opposite side walls of the placing box.
[0013] Preferably, a pull plate is arranged on the extending end of the placing box, and a pull handle for pulling the placing box to move is arranged on the pull plate.
[0014] Preferably, a screw with one end threadedly inserted into the sterilization box is arranged on the pull plate.
[0015] Compared with the prior art, the utility model has the advantages that:
[0016] 1、The utility model discloses a driving assembly drives the rotating rod to rotate and drives the turnover plate to overturn the accumulated konjak blocks in the placing groove, so that the konjak blocks in the placing groove can be evenly heated, thereby making the sterilization effect of the high-temperature steam on the konjak blocks better.
[0017] The utility model discloses, in order to avoid the deviation between connecting block and rotary groove when connecting block moves down, lead to connecting block when moving down, connecting block can not be inserted into rotary groove, and the bolt of one end threaded insertion in sterilization box is installed on the pull plate, when placing box slides into sterilization cavity, the lateral wall of pull plate abuts on the lateral wall of sterilization box, then, rotate bolt, and the bolt threaded insertion on pull plate is on sterilization box, and the position of placing box is positioned, at this time, the rotary groove on rotary rod just corresponds with connecting block, thereby can avoid the deviation between connecting block and rotary groove when connecting block moves down, influence actual use. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is structure schematic diagram of a sterilization device in the utility model.
[0019] Figure 2 It is structure schematic diagram of the section of sterilization box in the utility model.
[0020] Figure 3 It is structure schematic diagram of placing box in the utility model.
[0021] Figure 4 It is structure schematic diagram of the section of connecting rod and drive plate in the utility model.
[0022] Figure 5 It is structure schematic diagram of moving part in the utility model.
[0023] Figure 6 It is structure schematic diagram of box body in the utility model.
[0024] The meaning of each reference numeral in the drawing is as follows:
[0025] 100, sterilization box; 110, box body; 120, first motor; 130, pull plate; 140, handle; 150, bolt; 160, second motor;
[0026] 201, sterilization cavity; 210, placing box; 211, placing groove; 220, rotary rod; 230, spring; 231, cavity; 240, mounting ring; 250, connecting rod; 251, connecting groove; 252, connecting block; 260, sliding plate; 261, extrusion block; 270, horizontal plate; 280, threaded rod; 290, partition; 291, support; 299, air inlet pipe;
[0027] 300, turning plate; 311, rotary groove; 321, recess;
[0028] 400, clamping block; 410, drive plate; 411, drive groove;
[0029] 500, drive block; 510, fixed plate. DETAILED DESCRIPTION
[0030] To further understand the content of this utility model, a detailed description of this utility model will be provided in conjunction with the accompanying drawings and embodiments. It should be understood that the embodiments are merely illustrative of this utility model and are not intended to limit it.
[0031] The following is in conjunction with the appendix Figures 1-6 This embodiment will be described in further detail.
[0032] like Figure 1 As shown, a sterilization device in this embodiment includes a sterilization chamber 100 and a sterilization cavity 201 disposed within the sterilization chamber 100. The side wall of the sterilization chamber 100 is also provided with a slot communicating with the sterilization cavity 201. A slidable placement box 210 is provided inside the sterilization cavity 201. One end of the placement box 210 passes through the slot and extends out of the sterilization chamber 100. The placement box 210 has an upward-facing placement groove 211 for placing konjac blocks. A rotatable rotating rod 220 is provided at the center of the placement groove 211. An inclined flipping plate 300 is provided on the side wall of the rotating rod 220. A box body 110 is provided on the upper surface of the sterilization chamber 100. A driving component for driving the rotating rod 220 to rotate is provided on the upper surface of the box body 110.
[0033] In this embodiment, an air inlet pipe 299 communicating with the sterilization chamber 201 is fixedly installed at the lower end of the sterilization box 100. Multiple through holes are provided on the bottom wall of the placement slot 211. When sterilizing sliced konjac blocks, the konjac blocks are placed in the placement slot 211, and then the placement box 210 is inserted into the sterilization chamber 201 through the slot. At this time, high-temperature steam is introduced into the sterilization chamber 201 through the air inlet pipe 299. When the temperature and pressure inside the sterilization chamber 201 reach the set values, the introduction of steam into the sterilization chamber 201 is stopped. The high-temperature steam can pass through the through holes to sterilize the konjac blocks in the placement slot 211. High-temperature steam sterilization is performed. When the high-temperature steam sterilizes the konjac blocks, the rotating rod 220 is driven to rotate by the drive assembly. The rotation of the rotating rod 220 causes the flipping plate 300 to rotate around the circumference of the rotating rod 220. The rotation of the flipping plate 300 flips the konjac blocks piled in the placement tank 211, so that the konjac blocks in the placement tank 211 can be heated evenly. After the konjac blocks are sterilized, the placement box 210 is used to remove the konjac blocks from the sterilization chamber 201 through the slot. Then, the konjac blocks in the placement tank 211 are placed in the cooler for cooling. Thus, the sterilization of the konjac blocks is completed.
[0034] In this device, the rotating rod 220 is driven by the drive component to rotate and drive the flipping plate 300 to flip the konjac blocks piled in the placement tank 211, so that the konjac blocks in the placement tank 211 can be heated evenly, thus making the high-temperature steam sterilization effect of the konjac blocks better. Compared with the existing devices, this sterilization device can avoid the situation where the konjac blocks are heated unevenly, resulting in poor sterilization effect.
[0035] The lower end of the rotating rod 220 is rotatably installed on the bottom wall of the placing groove 211 through a bearing, and the turnover plate 300 is inclined, so that the turnover plate 300 can be turned to turn the konjak blocks in the placing groove 211 up and down. The box body 110 is fixedly installed on the sterilization box 100, so as to realize the installation of the driving assembly on the sterilization box 100.
[0036] The opposite protrusions are fixedly installed in the sterilization cavity 201, and the opposite side walls of the placing box 210 are provided with grooves 321 for clamping the corresponding protrusions. Through the cooperation of the protrusions and the grooves 321, the placing box 210 is slidably installed in the placing groove 211.
[0037] In actual use, in order to facilitate the sliding of the placing box 210 from the sterilization cavity 201 through the slot, a pull plate 130 is fixedly installed on the protruding end of the placing box 210. A handle 140 for pulling the placing box 210 is fixedly installed on the pull plate 130. By pulling the handle 140 outward, the handle 140 can drive the placing box 210 to move through the pull plate 130, so as to facilitate the sliding of the placing box 210 from the slot.
[0038] As shown in Figures 1-6 In this embodiment, the upper end of the rotating rod 220 is provided with a rotating groove 311, and the box body 110 is provided with a cavity 231.
[0039] The driving assembly comprises a first motor 120 arranged on the box body 110. The output shaft of the first motor 120 extends into the cavity 231. The output shaft of the first motor 120 is provided with opposite clamping grooves. The output shaft of the first motor 120 is provided with a lifting installation ring 240. The lower end surface of the installation ring 240 is provided with a rotatable connecting rod 250 extending into the sterilization cavity 201. The upper end surface of the connecting rod 250 is provided with a connecting groove 251 for the output shaft of the first motor 120 to extend into. The side wall of the connecting groove 251 is provided with a clamping block 400 clamped into the corresponding inner clamping groove. The lower end surface of the connecting rod 250 is provided with a connecting block 252 clamped into the rotating groove 311. The output shaft of the first motor 120 drives the connecting rod 250 to rotate, so as to drive the rotating rod 220 to rotate. The upper end of the sterilization cavity 201 is provided with a moving part for driving the connecting rod 250 to move upward.
[0040] In the embodiment, by rotating the groove 311, the cavity 231, the first motor 120, the clamping groove, the mounting ring 240, the connecting rod 250, the connecting groove 251, the clamping block 400, the connecting block 252 and the moving piece, the first motor 120 is fixedly installed on the box body 110, the connecting rod 250 is rotatably installed on the mounting plate through the bearing, the clamping block 400 is fixedly installed in the connecting groove 251, the connecting block 252 is fixedly installed on the connecting rod 250, when the output shaft of the first motor 120 rotates, the output shaft of the first motor 120 can drive the connecting rod 250 to rotate through the cooperation of the clamping groove and the clamping block 400, and the rotation of the connecting rod 250 can drive the rotating rod 220 to rotate through the cooperation of the connecting block 252 and the rotating groove 311;
[0041] The connecting block 252 and the rotating groove 311 are square, so that the connecting rod 250 rotates through the cooperation of the connecting block 252 and the rotating groove 311, the connecting rod 250 can drive the rotating rod 220 to rotate, and the clamping groove is arranged along the lifting direction of the connecting rod 250;
[0042] When the connecting block 252 is inserted into the rotating groove 311, the position of the placing box 210 can be fixed by the connecting block 252 through the rotating rod 220, so that the placing box 210 cannot slide in the sterilization cavity 201, when the konjak block is sterilized, the connecting rod 250 is driven upward by the moving piece, the connecting rod 250 drives the connecting block 252 to slide out of the rotating groove 311, and the positioning of the placing box 210 is released, at this time, the worker can drive the placing box 210 to slide and slide out of the sterilization cavity 201;
[0043] When the moving piece drives the connecting rod 250 to be in the upward state, the placing box 210 can slide into the sterilization cavity 201 through the slot, at this time, the driving of the connecting rod 250 by the moving piece is released, the connecting rod 250 drives the connecting block 252 to move downward under the influence of its own gravity, and the connecting block 252 is just inserted into the rotating groove 311, at this time, the first motor 120 can drive the rotating rod 220 to rotate through the connecting rod 250;
[0044] When the connecting rod 250 drives the connecting block 252 to move downward, the connecting block 252 may not be inserted into the rotating groove 311, at this time, the first motor 120 drives the connecting block 252 to rotate through the connecting rod 250, when the connecting block 252 is rotated to the appropriate angle, the connecting block 252 on the connecting rod 250 will automatically move downward and be clamped into the rotating groove 311, so that the connecting block 252 on the connecting rod 250 can be accurately inserted into the rotating groove 311 when the connecting rod 250 moves downward;
[0045] The output shaft of the first motor 120 is sleeved with a spring 230 for pushing the mounting ring 240 downward, and the downward movement of the mounting ring 240 can push the connecting rod 250 downward, so that the connecting block 252 below the connecting rod 250 can be better inserted into the rotating groove 311;
[0046] In actual use, in order to avoid the deviation between the connecting block 252 and the rotating groove 311 when the connecting block 252 moves downward, causing the connecting block 252 to be unable to be inserted into the rotating groove 311 when the connecting block 252 moves downward, a threaded bolt 150 is installed on the pull plate 130 and inserted into the sterilization box 100, when the placing box 210 slides into the sterilization cavity 201, the side wall of the pull plate 130 abuts against the side wall of the sterilization box 100, then the threaded bolt 150 on the pull plate 130 is screwed into the sterilization box 100 by rotating the bolt 150, and the position of the placing box 210 is positioned, at this time, the rotating groove 311 on the rotating rod 220 corresponds to the connecting block 252, so that the deviation between the connecting block 252 and the rotating groove 311 when the connecting block 252 moves downward can be avoided, and the actual use is affected.
[0047] As shown in Figures 1-5 In this embodiment, a rotatable driving plate 410 is sleeved on the connecting rod 250, driving grooves 411 are formed at both ends of the driving plate 410, driving blocks 500 are arranged on the opposite side walls of the sterilization cavity 201 and are clamped into the corresponding driving grooves 411, and fixed plates 510 are arranged on the opposite side walls of the sterilization cavity 201.
[0048] The moving member includes a slide plate 260 arranged opposite to the sterilization cavity 201 and being slidable, a fixed groove for clamping the corresponding fixed plate 510 is formed in one side wall of the slide plate 260, and extrusion blocks 261 are arranged on the upper end surfaces of the slide plate 260, extrusion inclined surfaces are formed in the extrusion blocks 261, the slide plate 260 is moved to drive the extrusion inclined surfaces on the extrusion blocks 261 to extrude the driving plate 410, so that the driving plate 410 drives the connecting rod 250 to move upward.
[0049] In the embodiment, the driving plate 410, the driving groove 411, the driving block 500, the fixed plate 510, the sliding plate 260, the fixed groove, the extrusion block 261 and the extrusion inclined surface are arranged, so that the driving plate 410 is arranged on the connecting rod 250 through the bearing, the driving block 500 is fixedly installed in the sterilization cavity 201 and limits the driving plate 410, the fixed plate 510 is fixedly installed on the side wall of the sterilization cavity 201, the sliding plate 260 is slidably installed in the sterilization cavity 201 through cooperation of the fixed groove and the fixed plate 510, and the extrusion block 261 is fixedly installed on the sliding plate 260. When the two sliding plates 260 move towards the connecting rod 250, the sliding plate 260 moves to drive the extrusion block 261 to move. The extrusion block 261 moves to extrude the driving plate 410 through the extrusion inclined surface, so that the driving plate 410 drives the connecting rod 250 to move upwards, thereby enabling the connecting block 252 on the connecting rod 250 to slide out of the rotating groove 311;
[0050] The driving block 500 is arranged along the lifting direction of the connecting rod 250, and the fixed plate 510 is arranged along the moving direction of the sliding plate 260.
[0051] The two sliding plates 260 are provided with a horizontal plate 270, the two ends of the horizontal plate 270 are fixedly connected with the two sliding plates 260, one end of a threaded rod 280 penetrating through the horizontal plate 270 is arranged on the side wall of the sterilization cavity 201, the threaded rod 280 is rotated to move the horizontal plate 270, the horizontal plate 270 moves to drive the two sliding plates 260 to move, so that the two sliding plates 260 move synchronously, and the extrusion blocks 261 on the two sliding plates 260 can better drive the driving plate 410 to move upwards, that is, the connecting rod 250 can better move upwards.
[0052] The second motor 160 is fixedly installed on the outer side wall of the sterilization box 100, and the output shaft of the second motor 160 is fixedly connected with one end of the threaded rod 280, so that the threaded rod 280 can be driven by the second motor 160.
[0053] The partition plate 290 is fixedly installed in the sterilization cavity 201 and above the placing box 210, the lower end of the connecting rod 250 slidably penetrates through the partition plate 290, and the partition plate 290 is used for dividing the sterilization cavity 201 to protect the driving plate 410, the driving block 500, the fixed plate 510, the sliding plate 260, the extrusion block 261, the threaded rod 280 and the horizontal plate 270, thereby avoiding damage of high-temperature steam in the sterilization cavity 201 to the driving plate 410, the driving block 500, the fixed plate 510, the sliding plate 260, the extrusion block 261, the threaded rod 280 and the horizontal plate 270, thereby affecting normal use. Specifically, the partition plate 290 is made of heat insulation material.
[0054] In actual use, the upper end surface of the partition plate 290 is fixedly provided with a support 291, and the other end of the threaded rod 280 is rotatably arranged on the support 291 through a bearing, so that the threaded rod 280 is more stable in rotation, and meanwhile, the support 291 can also limit the transverse plate 270, thereby avoiding that the transverse plate 270 drives the sliding plate 260 to move too much, and the extrusion inclined surface on the extrusion block 261 cannot extrude the driving plate 410.
[0055] In actual use, first, the extrusion block 261 on the two sliding plates 260 is driven by the second motor 160 to push the driving plate 410 upward, the connecting rod 250 on the driving plate 410 is driven to move upward, at this time, the konjak block is placed in the placing groove 211, then the placing box 210 is slid into the placing groove 211 through the slot, and after the placing box 210 is slid into position, the position of the placing box 210 is positioned by rotating the bolt 150, at this time, the extrusion of the driving plate 410 by the extrusion block 261 on the two sliding plates 260 is released, the connecting rod 250 starts to drive the connecting block 252 to move downward, and the connecting block 252 is inserted into the rotating groove 311, then high-temperature steam is added into the sterilization cavity 201 through the air inlet pipe 299, the high-temperature steam can pass through the through hole to sterilize the konjak block in the placing groove 211, and at the same time, the first motor 120 can drive the connecting block 252 to rotate through the connecting rod 250, the connecting block 252 drives the turnover plate 300 to turn the konjak block through the rotating rod 220, when the konjak block is sterilized, the first motor 120 stops working, and the addition of high-temperature steam into the sterilization cavity 201 is stopped, then the extrusion block 261 on the two sliding plates 260 is driven by the second motor 160 to push the driving plate 410 upward, the connecting block 252 on the connecting rod 250 on the driving plate 410 is slid out of the rotating groove 311, finally, the positioning of the placing box 210 by the bolt 150 is released, the placing box 210 is slid out of the sterilization cavity 201 through the handle 140, and the konjak block in the placing groove 211 is placed in a cooling machine to be cooled.
[0056] In summary, the above only describes preferred embodiments of the present application, and any changes and modifications made within the scope of the present application should be included in the scope of the present application.
Claims
1. A sterilization device, comprising a sterilization box (100) and a sterilization cavity (201) arranged in the sterilization box (100), and a slot opening communicating with the sterilization cavity (201) arranged on the side wall of the sterilization box (100), characterized in that: The sterilization cavity (201) is provided with a slidable placing box (210), one end of the placing box (210) penetrates through the slot and extends out of the sterilization box (100), the placing box (210) is provided with a placing groove (211) opening upward and used for placing the konjak blocks, the center position of the placing groove (211) is provided with a rotatable rotating rod (220), the side wall of the rotating rod (220) is provided with an inclined turnover plate (300), the upper end surface of the sterilization box (100) is provided with a box body (110), and the upper end surface of the box body (110) is provided with a driving assembly used for driving the rotating rod (220) to rotate.
2. A sterilization apparatus as defined in claim 1, wherein: The upper end of the rotating rod (220) is provided with a rotating groove (311), and the box body (110) is provided with a cavity (231); The driving assembly comprises a first motor (120) arranged on the box body (110), the output shaft of the first motor (120) extends into the cavity (231) and is provided with opposite clamping grooves, the output shaft of the first motor (120) is provided with a liftable mounting ring (240), the lower end surface of the mounting ring (240) is provided with a rotatable connecting rod (250) extending into the sterilization cavity (201), the upper end surface of the connecting rod (250) is provided with a connecting groove (251) for the output shaft of the first motor (120) to extend into, the side wall of the connecting groove (251) is provided with a clamping block (400) clamped into the corresponding inner clamping groove, the lower end surface of the connecting rod (250) is provided with a connecting block (252) clamped into the rotating groove (311), the output shaft of the first motor (120) drives the connecting rod (250) to rotate, so that the connecting rod (250) drives the rotating rod (220) to rotate, and the upper end of the sterilization cavity (201) is provided with a moving piece used for driving the connecting rod (250) to move upward.
3. A sterilization apparatus as defined in claim 2, wherein: The connecting rod (250) is provided with a rotatable driving plate (410), the two end portions of the driving plate (410) are provided with driving grooves (411), the opposite side walls of the sterilization cavity (201) are provided with driving blocks (500) clamped into the corresponding driving grooves (411), and the opposite side walls of the sterilization cavity (201) are provided with fixed plates (510); The moving piece comprises a slide plate (260) oppositely arranged in the sterilization cavity (201) and slidable, one side wall of the slide plate (260) is provided with a fixed groove for clamping the corresponding fixed plate (510), the upper end surfaces of the slide plates (260) are provided with extrusion blocks (261), the extrusion blocks (261) are provided with extrusion inclined surfaces, the slide plates (260) are moved to drive the extrusion inclined surfaces on the extrusion blocks (261) to extrude the driving plate (410), so that the driving plate (410) drives the connecting rod (250) to move upward.
4. A sterilization apparatus as defined in claim 3, wherein: Two slide plates (260) are provided with a horizontal plate (270), the side wall of the sterilization cavity (201) is provided with a threaded rod (280) with one end threaded penetrating through the horizontal plate (270), and the threaded rod (280) is rotated to move the horizontal plate (270).
5. A sterilization apparatus as defined in claim 4, wherein: The sterilization cavity (201) is provided with opposite protrusions, and the opposite side walls of the placing box (210) are provided with grooves (321) for clamping the corresponding protrusions.
6. A sterilization apparatus as defined in claim 5, wherein: The extending end of the placing box (210) is provided with a pull plate (130), and the pull plate (130) is provided with a handle (140) for pulling the placing box (210) to move.
7. A sterilization apparatus as defined in claim 6, wherein: The pull plate (130) is provided with a bolt (150) screwed into the sterilization box (100) at one end.
Citation Information
Patent Citations
Konjak processing sterilization device
CN220799987U