Safety tool cabinet, stop device and application method of safety tool cabinet
By integrating a constant temperature and humidity box, a carrier, irradiation and gas-liquid sterilization components and a stop device into the safety tool cabinet, the problems of the return of insulating boots and sterilization dead corners are solved, and stable support, dead corner sterilization and status prompts of the insulating boots are achieved, thereby improving the safety and convenience of use.
Patent Information
- Application Number
- CN202510919587.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-04
- Publication Date
- 2025-10-10
AI Technical Summary
Existing labor protection product storage cabinets cannot effectively return insulating boots to their original positions, and have poor sterilization effects. In particular, the sterilization dead corner problem of wearable labor protection products such as insulating boots has not been solved.
A safety tool cabinet is designed, which includes a constant temperature and humidity box, a carrier, an irradiation sterilization component, and a gas-liquid sterilization component. The carrier is integrated with a support structure and a sterilization component, and a stop device is combined to achieve stable support for insulating boots, sterilization without dead angles, and status prompts.
The sterilization of insulating boots without dead angles is achieved, damage to the sterilization components is prevented, and the safe use of the tool cabinet and the sterilization status prompt are ensured through the stop device, thereby improving the convenience and safety of use.
Smart Images

Figure CN120755836A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of power engineering safety, and in particular to a safety tool cabinet, a stop device and an application method thereof. Background Art
[0002] During power engineering construction, insulating tools are essential, especially insulating boots. They insulate the body from the ground, preventing current from flowing between the body and the earth, effectively ensuring worker safety. Insulating tools must be stored in special cabinets, maintaining a constant temperature and humidity to ensure reliable operation.
[0003] The existing utility model patent with authorization announcement number CN216425226U discloses a storage device for labor protection products, including a cabinet body, wherein a first partition is fixedly connected to the top of both sides of the inner cavity of the cabinet body, a second partition is fixedly connected to the bottom of the first partition, a placement box is fixedly connected to the top of the right side of the second partition, a motor is fixedly connected to the right side of the top of the inner cavity of the placement box, and the output end of the motor is fixedly connected to a rotating shaft.
[0004] As in the above technical solution, a sterilization lamp is provided in the cabinet for sterilizing labor protection products. However, due to the limited illumination range, it cannot irradiate wearable labor protection equipment such as insulating boots. Therefore, there are sterilization blind spots and the sterilization effect is poor. At the same time, due to the lack of a carrier for placing and storing the insulating boots, it is inconvenient to put the insulating boots back in place. In view of this, it is urgently needed to be improved. Summary of the Invention
[0005] In view of this, the present invention proposes a safety tool cabinet, a stop device and an application method thereof that can store and return insulating boots and ensure a sterilization effect, so as to solve the problem that existing labor protection supplies storage cabinets are inconvenient for returning insulating boots and have poor sterilization effect.
[0006] The technical solution of the present invention is achieved as follows: In one aspect, the present invention provides a safety tool cabinet, comprising a box body, a box board, a carrier, a radiation sterilization component, and a gas-liquid sterilization component, wherein: The box body is a constant temperature and humidity box; The box plate is arranged in the box body; The carrier is arranged on the box board; The irradiation sterilization component is arranged on the carrier; The gas-liquid sterilization component is arranged on the carrier and is located on the side of the radiation sterilization component. The gas-liquid sterilization component is used to input gas-liquid sterilization medium and support tools to protect the radiation sterilization component.
[0007] On the basis of the above technical solution, preferably, the carrier includes a base, a vertical plate and a support plate, and the gas-liquid sterilization component includes a connecting pipeline and a support pipeline, wherein, The base is arranged on the box board; The vertical plate is arranged on the base; The support plate is arranged on the vertical plate; The connecting pipe is connected to the vertical plate and passes through the base; Two supporting pipes are arranged side by side on the supporting plate, the supporting pipes pass through the supporting plate and are connected with the connecting pipes, and air holes are opened on the supporting pipes; The irradiation sterilization components are arranged on both the vertical plate and the support plate.
[0008] On the basis of the above technical solution, preferably, the base includes a lower shell, an upper shell and a display element, the vertical plate includes a first shell, a second shell and a detection element, and the support plate includes a bottom plate and a top plate, wherein, The lower shell is arranged on the box plate; The upper shell is buckled onto the lower shell and is provided with a slot; The display element is arranged on the upper housing; The first shell and the second shell are buckled together and inserted into the slot; The detection element is located between the first shell and the second shell and is fixed to the first shell, and the detection element is electrically connected to the display element; The bottom plate is partially disposed on the first shell and partially disposed on the second shell; The top plate and the bottom plate are buckled together.
[0009] On the basis of the above technical solution, preferably, the carrier further comprises a connecting frame, the connecting frame is connected to the first shell or the second shell, and the connecting pipeline and the irradiation sterilization component are connected to the connecting frame; The supporting pipeline is of U-shaped structure, with both ends of the supporting pipeline connected to the top plate, and one end of the supporting pipeline passes through the bottom plate and the top plate and is connected to the connecting pipeline; The connecting pipeline is a soft pipe and the supporting pipeline is a hard pipe.
[0010] On the basis of the above technical solution, preferably, it further includes a heating lamp, the irradiation sterilization component is an ultraviolet lamp, and two connecting pipes and two supporting pipes are provided, wherein, The bottom plate and the top plate are provided with through slots corresponding to the detection elements; The heating lamp and the irradiation sterilization component are arranged on both sides of the through slot relatively; The two supporting pipelines are relatively arranged on both sides of the heating lamp and the irradiation sterilization component, and are respectively connected to a connecting pipeline, one of which is used for inputting sterilization medium and the other is used for gas suction.
[0011] On the one hand, the present invention provides a stopper device, which is applied to the above-mentioned safety tool cabinet, and preferably further comprises a stopper, a driving mechanism and an identification component, wherein: The stopper is arranged on the box plate and corresponds to the carrier; The driving mechanism is arranged on the box plate and connected to the stopper to drive the stopper to move and realize the stopping and releasing of the tool; The identification component is arranged on the stopper to indicate the sterilization status of the tool.
[0012] On the basis of the above technical solution, preferably, two driving mechanisms are relatively arranged on the box plate, and the driving mechanism includes a carrier, a sleeve, a rotating shaft, a motor and a reel, wherein, The carrier is connected to the box board; One end of the sleeve is sleeved on one end of the rotating shaft; There are two motors, one of which is arranged on the box plate, and its main shaft is connected to the sleeve, and the other motor is arranged on the carrier, and its main shaft is connected to the rotating shaft; The reel is provided on both the sleeve and the shaft; The stopping member is a rope, and the end of the rope is connected to the reel.
[0013] On the basis of the above technical solution, preferably, it further includes a guide bracket, and the identification component is a hanging plate, wherein, Two hanging plates are provided on a single rope, and the shapes of the two hanging plates are different, and the shapes of the hanging plates are triangular, circular or rectangular; The guide bracket is arranged on one side of the rope, the guide bracket is provided with a U-shaped groove, and the guide bracket extends to the bottom of the rope, and the notch of the U-shaped groove corresponds to the rope.
[0014] On the basis of the above technical solution, preferably, the reel includes a fixed wheel and a reel, and the sleeve and the rotating shaft are each provided with a fixed wheel and a reel; One end of a single rope is connected to a fixed wheel, and the other end is connected to a reel. The reel rotates with a sleeve or a rotating shaft and is fixed relative to the carrier. The fixed wheel is wound around a rope, and the length of the rope wound around the fixed wheel is greater than the relative distance between the two driving mechanisms.
[0015] In another aspect, the present invention provides a method for applying the above-mentioned stop device, comprising the following steps: S1. Place the boots upside down on the carrier; S2, the driving mechanism drives the stopper to move to the front of the carrier to stop the boot; S3. Close the door of the box and selectively perform irradiation sterilization through the irradiation sterilization component, or input gaseous or liquid sterilization medium into the boots through the gas-liquid sterilization component for sterilization. At the same time, the identification component indicates that the boots are in the sterilization state; S4. After the sterilization is completed, the driving mechanism drives the stopper to move, and the marking component indicates that the boots have been sterilized and are in a usable state; S5. The box door is opened, and the driving mechanism drives the stopper to move again to release the stop, and the boots can be taken out.
[0016] The safety tool cabinet, stop device and application method of the present invention have the following beneficial effects compared with the prior art: (1) By setting up a carrier, it is convenient to support the boots upside down so as to achieve storage and return to their original position; at the same time, the carrier is integrated with an irradiation sterilization component and a gas-liquid sterilization component, and the gas-liquid sterilization component is arranged on the side of the irradiation sterilization component. In this way, the sole can be supported to prevent the irradiation sterilization component from being damaged when the boots are taken and placed, and the irradiation sterilization component can also be used for sterilization with a gas-liquid sterilization medium, while the irradiation sterilization component can irradiate the inside of the boots, which is beneficial for sterilizing wearable devices to eliminate sterilization dead corners, and has the advantages of good application effect and not easy to be damaged; (2) The carrier structure consists of a base, a vertical plate and a support plate, wherein the support plate can be installed with a support pipe to support the sole, and the setting of the support pipe allows the boots to not contact the irradiation sterilization component, thereby achieving a protective function and avoiding damage to the irradiation sterilization component. Then, the gas-liquid sterilization medium is input through the connecting pipe to achieve the sterilization effect; (3) In the carrier structure, the base, vertical plate and support plate are all composed of two parts of the shell, thus realizing a spliced structure, which is convenient for integrating the display element on the base and setting the detection element in the vertical plate, so as to detect whether there are boots placed on the carrier, and then control the irradiation sterilization component and the gas-liquid sterilization component to perform sterilization; at the same time, this structure also facilitates the integration of the connecting pipes and support pipes of the gas-liquid sterilization component, thereby improving the convenience of grouping; (4) By setting a stop device, it can stop the boots on the carrier to serve as a warning to avoid random taking and placing. At the same time, the driving mechanism can drive the stop device to move to achieve stopping or releasing the stop, and the position of the identification component can be adjusted to indicate the sterilization status of the boots, thereby ensuring application safety; (5) The driving mechanism is provided with a motor, a rotating shaft, a sleeve and a reel, and the stopper is provided as a rope, so that the motor can drive the rotating shaft and the sleeve to rotate, and then cooperate with the reel to drive the rope to move, so as to change the position of the marking component, and at the same time, the rope can be loosened and dropped, thereby releasing the stopper and facilitating the removal and placement of the boots; at the same time, since a guide bracket is provided, the problem of confusion when the rope is lowered can be avoided, thereby preventing the rope from being entangled, which is conducive to ensuring the stability of operation; (6) The sleeve and the rotating shaft are both provided with a reel and a fixed wheel, so that the rope can be retracted and released in conjunction with the motor. At the same time, the reel is fixedly connected to the carrier to ensure the stability of the rotating shaft and the sleeve, and avoid the problem of structural damage caused by the radial force generated by the reel on the rotating shaft and the sleeve, so as to ensure the stability of operation. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0018] Figure 1 This is a front view of the safety tool cabinet of the present invention; Figure 2 For the present invention Figure 1 A magnified view of the structure at point A; Figure 3 For the present invention Figure 1 A magnified view of the structure at point B; Figure 4 This is a structural diagram of the carrier and the stopper device of the present invention; Figure 5 For the present invention Figure 4 A magnified view of the structure at point C; Figure 6 A perspective view of the exploded structure of the carrier of the safety tool cabinet of the present invention; Figure 7 This is a front view of the exploded structure of the carrier of the safety tool cabinet of the present invention; Figure 8 is a perspective view of the stop device of the present invention; Figure 9 This is a structural diagram of the fixed wheel and the winding wheel layout of the stop device of the present invention; In the figure: 1. Box body; 2. Box plate; 3. Carrier; 31. Base; 311. Lower shell; 312. Upper shell; 313. Display element; 32. Vertical plate; 321. First shell; 322. Second shell; 323. Detection element; 33. Support plate; 331. Bottom plate; 332. Top plate; 34. Connecting frame; 301. Slot; 302. Through groove; 4. Irradiation sterilization component; 5. Gas-liquid sterilization component; 51. Connecting pipeline; 52. Support pipeline; 6. Heating lamp; 7. Stopper; 8. Driving mechanism; 81. Carrier; 82. Sleeve; 83. Rotating shaft; 84. Motor; 85. Reel; 851. Fixed wheel; 852. Reel; 9. Identification component; 10. Guide bracket; 1001. U-shaped groove. DETAILED DESCRIPTION
[0019] The following will be combined with the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0020] like Figures 1 to 9 As shown, the safety tool cabinet of the present invention includes a box body 1, a box board 2, a carrier 3, a radiation sterilization component 4 and a gas-liquid sterilization component 5.
[0021] like Figures 1 to 5 As shown, the box body 1 is a constant temperature and humidity box; the box board 2 is arranged in the box body 1; the carrier 3 is arranged on the box board 2; the radiation sterilization component 4 is arranged on the carrier 3; the gas-liquid sterilization component 5 is arranged on the carrier 3 and is located on the side of the radiation sterilization component 4. The gas-liquid sterilization component 5 is used to input the gas-liquid sterilization medium and support tools to protect the radiation sterilization component 4; As shown in the above structure, the box body 1 is set as a constant temperature and humidity box, which can ensure that the insulating tools inside are in a stable environment, thereby slowing down the aging and damage of the tools; The carrier 3 is used to carry the boots so that the boots can be placed upside down. Since the irradiation sterilization component 4 and the gas-liquid sterilization component 5 are integrated on the carrier 3, after the boots are placed, the irradiation sterilization component 4 and the gas-liquid sterilization component 5 are located inside the boots. In this way, the boots can be irradiated and sterilized by the irradiation sterilization component, and the boots can also be sterilized by introducing a gaseous medium or a mist sterilization medium through the gas-liquid sterilization component. This is conducive to sterilizing wearable devices, thereby ensuring that there are no dead corners in the sterilization and ensuring the safe application of insulating boots. The gas-liquid sterilization component 5 is also used to support the boots, so as to avoid damage to the irradiation sterilization component 4 when the boots are taken or placed, thereby ensuring application stability.
[0022] like Figures 5 to 7 As shown, the carrier 3 includes a base 31, a vertical plate 32 and a support plate 33, and the gas-liquid sterilization component 5 includes a connecting pipe 51 and a support pipe 52, wherein the base 31 is arranged on the box plate 2; the vertical plate 32 is arranged on the base 31; the support plate 33 is arranged on the vertical plate 32; the connecting pipe 51 is connected to the vertical plate 32 and passes through the base 31; two support pipes 52 are arranged in parallel on the support plate 33, and the support pipes 52 pass through the support plate 33 and are connected to the connecting pipe 51, and air holes are opened on the support pipe 52; the irradiation sterilization component 4 is arranged on both the vertical plate 32 and the support plate 33; As shown in the above structure, the carrier 3 is composed of a base 31, a vertical plate 32 and a support plate 33, which facilitates the integration of the gas-liquid sterilization component 5; The gas-liquid sterilization assembly 5 is composed of a connecting pipe 51 and a supporting pipe 52. Two supporting pipes 52 are provided on the supporting plate 33. They can provide stable support for the boots and prevent the boots from shifting, thereby providing good protection for the irradiation sterilization assembly 4. The connecting pipe 51 is connected to the vertical plate 32 to ensure structural stability. At the same time, the connecting pipe 51 passes through the base 31 to achieve partially hidden integration. The end away from the supporting pipe 51 is led out through the base 31 to facilitate connection to the sterilization medium supply component. During use, the irradiation sterilization component 4 sterilizes the inside of the boots by irradiation, while the gas-liquid sterilization component 5 introduces a gaseous or mist sterilization medium through the connecting pipe 51 and outputs it through the air holes of the supporting pipe 52 to sterilize the inside of the boots. Among them, the air holes of the support pipe 52 are opened on the side or on the side corresponding to the support plate 33 to avoid clogging problems when supporting the boots; In specific applications, the boot shaft portion corresponds to the vertical plate 32 , so a radiation sterilization component 4 is also provided on the vertical plate 32 to ensure a good sterilization effect.
[0023] like Figure 6 and Figure 7 As shown, the base 31 includes a lower shell 311, an upper shell 312 and a display element 313, the vertical plate 32 includes a first shell 321, a second shell 322 and a detection element 323, and the support plate 33 includes a bottom plate 331 and a top plate 332, wherein the lower shell 311 is set on the box plate 2; the upper shell 312 is buckled on the lower shell 311 and has a slot 301; the display element 313 is set on the upper shell 312; the first shell 321 and the second shell 322 are buckled and inserted into the slot 301; the detection element 323 is located between the first shell 321 and the second shell 322 and is fixed to the first shell 321, and the detection element 323 is electrically connected to the display element 313; the bottom plate 331 is partially set on the first shell 321 and partially set on the second shell 322; the top plate 332 is buckled with the bottom plate 331; As described above, the base 31 is composed of a lower shell 311 and an upper shell 312, which are integrated with a display element 313; The vertical plate 32 is composed of a first shell 321 and a second shell 322, and a detection element 323 is integrated inside the vertical plate 32; The support plate 33 is composed of a bottom plate 331 and a top plate 332; The upper shell 312 of the base 31 is provided with a slot 301 for convenient insertion of the vertical plate 32. The first shell 321 and the second shell 322 of the vertical plate 32 are both provided with a partial bottom plate 331, which facilitates the buckling of the top plate 332, thereby realizing the integration of the vertical plate 32 and the support plate 33, which improves the convenience of component integration. At the same time, the detection element 323 can detect whether boots are placed on the carrier 3 and display it through the display element 313, which facilitates the operation control of the irradiation sterilization component 4 and the gas-liquid sterilization component 5 and improves the convenience of application.
[0024] like Figure 5 As shown, the carrier 3 also includes a connecting frame 34, which is connected to the first shell 321 or the second shell 322, and the connecting pipe 51 and the irradiation sterilization component 4 are connected to the connecting frame 34; the supporting pipe 52 has a U-shaped structure, and both ends of the supporting pipe 52 are connected to the top plate 332, and one end thereof passes through the bottom plate 331 and the top plate 332 and is connected to the connecting pipe 51; the connecting pipe 51 is a hose, and the supporting pipe 52 is a hard pipe; As in the above structure, the carrier 3 is further provided with a connecting frame 34, which is connected to the first shell 321 or the second shell 322 to facilitate the integration; The connecting frame 34 is used to install the connecting pipe 51 of the gas-liquid sterilization component 5 and the radiation sterilization component 4, thereby realizing the integration of the gas-liquid sterilization component 5 and the radiation sterilization component 4; The support pipe 52 of the gas-liquid sterilization component 5 is configured as a hard pipe, which can provide stable support for the boots. The gas-liquid sterilization component 5 is integrated with the top plate 332 of the support plate 33. When the top plate 332 and the bottom plate 331 are buckled together, the support pipe 52 can be passed through the bottom plate 331. This has the advantages of convenient integration and no structural interference. Among them, the connecting pipeline 51 is set as a hose, which makes it convenient to connect with the supporting pipeline 52 and achieve relative splitting, further improving the convenience of integration.
[0025] In some embodiments, the irradiation sterilization component 4 is an ultraviolet lamp, and two connecting pipes 51 and two supporting pipes 52 are provided. A through groove 302 corresponding to the detection element 323 is provided on the bottom plate 331 and the top plate 332; the heating lamp 6 and the irradiation sterilization component 4 are relatively arranged on both sides of the through groove 302; the two supporting pipes 52 are relatively arranged on both sides of the heating lamp 6 and the irradiation sterilization component 4, and each is connected to a connecting pipe 51, wherein one connecting pipe 51 is used to input the sterilization medium, and the other connecting pipe 51 is used for gas suction; As the above structure, in some embodiments, two support pipelines 52 are connected with one connecting pipeline 51, so that when in use, the gaseous or fog state sterilization medium is supplied into one of the support pipelines 52 through the connecting pipeline 51, and the sterilization is realized by outputting through the support pipeline 52; Another connecting pipeline 51 is connected with a negative pressure pump, so that the gas in the boot can be sucked through the other support pipeline 52 to discharge the sterilization medium, ensure that there is no residual in the boot, and remove the odor; The heating lamp 6 is integrated on the support plate 33 of the carrier 3, so that it can heat the inside of the boot, thereby baking the inside of the boot to keep it dry, and the wet hot gas is discharged through the support pipeline 52 and the connecting pipeline 51; When the assembly is integrated, the irradiation sterilization assembly 4 adopts an ultraviolet lamp, which is arranged opposite to the heating lamp 6 on both sides of the through slot 302 of the support plate 33, and the support pipeline 52 is arranged on both sides of the ultraviolet lamp and the heating lamp 6, so that the protection effect can be realized to avoid damage to the ultraviolet lamp and the heating lamp 6; The detection element 323 adopts a laser sensor and detects through the through slot 302 to determine whether the boot is placed on the carrier 3, and then the display element 313 displays, the display element 313 adopts a display screen, and the single-chip microcomputer, PCB board and line connection structure applied are conventional technologies, so they are not described here; It should be noted that long-time irradiation sterilization by ultraviolet light can accelerate the aging of rubber boots, so the irradiation time of ultraviolet light needs to be accurately controlled, and the boots made of ultraviolet light resistant material are required.
[0026] As shown in Figures 1 to 9 The stop device of the present application comprises a stop piece 7, a driving mechanism 8, an identification component 9 and a guide bracket 10.
[0027] As shown in Figures 1 to 8 The stop piece 7 is arranged on the box plate 2 and corresponds to the carrier 3; the driving mechanism 8 is arranged on the box plate 2 and connected with the stop piece 7 to drive the stop piece 7 to displace, realizing the stop and unstop of the tool; the identification component 9 is arranged on the stop piece 7 to prompt the sterilization state of the tool. As the above structure, the stop piece 7 is used to warn to avoid random taking and placing of the boots; the identification component 9 is arranged on the stop piece 7, so that it can prompt whether the boots are in the sterilization state or the sterilization is completed, The driving mechanism 8 is used to drive the stop piece 7 to move to realize the stop or unstop of the boots, and the position of the identification component 9 can be adjusted to change the prompt of the sterilization state of the boots, so as to ensure the safety of use.
[0028] As shown in Figure 1 and Figure 2 As shown, two driving mechanisms 8 are relatively arranged on the box plate 2, and the driving mechanism 8 includes a carrier 81, a sleeve 82, a rotating shaft 83, a motor 84 and a reel 85, wherein the carrier 81 is connected to the box plate 2; one end of the sleeve 82 is sleeved on one end of the rotating shaft 83; there are two motors 84, one of which is arranged on the box plate 2, and its main shaft is connected to the sleeve 82, and the other motor 84 is arranged on the carrier 81, and its main shaft is connected to the rotating shaft 83; multiple reels 85 are arranged on both the sleeve 82 and the rotating shaft 83, and some of the reels 85 are fixed to the carrier 81; the stopper 7 is a rope, and the end of the rope is connected to the reel 85; As in the above structure, the stopper 7 is provided as a rope, and the driving mechanism 8 is provided with a sleeve 82, a rotating shaft 83, a motor 84 and a reel 85, wherein the reel 85 is used to reel in the rope; When in use, the motor 84 drives the sleeve 82 and the rotating shaft 83 to rotate, which can cause the reel 85 to rotate, thereby winding or releasing the rope. When the rope is wound up and made taut, the two motors 84 rotate in the same direction, which can drive the rope and the marking component 9 to move, thereby marking the boots. When it is used, if the two motors 84 rotate in opposite directions, the rope can be tightened or prevented from loosening, thereby stopping or releasing the boots; In this way, the driving mechanism 8 can not only indicate the sterilization status of the boots, but also adjust the rope to stop or release the stop, and has the advantage of multifunctionality.
[0029] like Figure 8 As shown, the identification component 9 is a hanging plate, wherein two hanging plates are provided on a single rope, and the two hanging plates have different shapes, such as triangular, circular, or rectangular. The guide bracket 10 is provided on one side of the rope, and the guide bracket 10 is provided with a U-shaped groove 1001, and the guide bracket 10 extends to the bottom of the rope, and the notch of the U-shaped groove 1001 corresponds to the rope. As in the above structure, the identification component 9 is set as a hanging plate, and multiple carriers 3 are placed on the box plate 2. Each rope corresponds to one carrier 3. At least two hanging plates are set on each rope, and the hanging plates are divided into several shapes such as triangle, circle, rectangle, etc. When used, the shapes of the two hanging plates are different. When the motor 84 drives the rope to move, when the hanging plates of different shapes correspond to the boots, it can be prompted that the boots are in different states; For example, one of the two hanging plates is triangular and the other is rectangular. When the triangular hanging plate corresponds to the boots, it means that the boots are in the sterilization state, and when the rectangular hanging plate corresponds to the boots, it means that the boots are sterilized. This can play a prompting effect. Specifically, the detection element 323 is used to detect whether the boots are placed on the carrier, and then the irradiation sterilization component 4 and the gas-liquid sterilization component are controlled to sterilize. After the sterilization is completed, the motor 84 is controlled to adjust different hanging plates to correspond to the boots to indicate that the sterilization is in progress or the sterilization is completed. Wherein, according to the structural design of using a rope as the stopper 7, a guide bracket 10 is provided; When the stop device is used, the rope needs to be lowered to release the stop. Since multiple ropes are provided, a U-shaped groove 1001 is provided on the guide bracket 10 to avoid tangling and confusion, and the notch of the U-shaped groove 1001 corresponds to the rope. In this way, when the rope is lowered, the rope can be guided to the side to avoid tangling of multiple ropes. Specifically, in the illustrated structure, four ropes are provided. When two ropes are lowered, they will not interfere with the taking and placing of the boots. Therefore, two guide brackets 10 are provided, corresponding to the two ropes on the upper side. Specifically, three guide brackets can be set up for the three ropes on the upper side, and the ropes at the bottom do not need to be guided.
[0030] like Figure 9 As shown, the reel 85 includes a fixed wheel 851 and a reel 852. The sleeve 82 and the rotating shaft 83 are each provided with a fixed wheel 851 and a reel 852. One end of a single rope is connected to the fixed wheel 851, and the other end is connected to the reel 852. The reel 852 rotates in conjunction with the sleeve 82 or the rotating shaft 83 and is fixed relative to the carrier 81. The fixed wheel 851 winds the rope, and the length of the rope wound by the fixed wheel 851 is greater than the relative distance between the two driving mechanisms 8. As in the above structure, a fixed wheel 851 and a reel 852 are provided on a single sleeve 82 or a rotating shaft 83, wherein the fixed wheel 851 cooperates with a reel 852 of another driving mechanism 8, and the reel 852 cooperates with the fixed wheel 851 of another driving mechanism 8; The reel 852 is a reel spring or other reeling mechanism, and is connected to the carrier 81. When the motor 84 drives the sleeve 82 or the rotating shaft 83 to rotate, the rope reeled by the reel 852 is pulled out, thereby adjusting the position of the identification component 9. When the rope is pulled out, since the reel 852 is connected to the carrier 81, stable release can be achieved; Specifically, the reel 852 rotates in conjunction with the sleeve 82 or the shaft 83 to avoid interference during rotation; In this structure, the sleeve 82 is plugged into one end of the rotating shaft 83, which realizes mutual positioning and reduces the number of integrated components. Since the sleeve 82 and the rotating shaft 83 each pass through a reel 852, the connection between the reel 852 and the carrier 81 can ensure the stable position of the sleeve 82 and the rotating shaft 83. The reel 852 acts as a bearing seat, realizing functional integration. Specifically, a rope of a certain length is wound around the fixed wheel 851, and the length of the rope wound around the fixed wheel 851 is greater than the relative distance between the two driving mechanisms 8; As described above, the fixed wheel 851 pre-winds the rope in order to enable the reel 852 to reach the winding limit so that the excess rope can be put down, thereby releasing the stop.
[0031] The application method of the stop device of the present invention comprises the following steps: S1, placing the boots upside down on the carrier 3; S2, the driving mechanism 8 drives the stopper 7 to move to the front of the carrier 3 to stop the boot; S3. Close the door of the box body 1 and selectively perform irradiation sterilization through the irradiation sterilization component 4, or input gaseous or liquid sterilization medium into the boots through the gas-liquid sterilization component 5 for sterilization. At the same time, the identification component 9 indicates that the boots are in the sterilization state; S4. After the sterilization is completed, the driving mechanism 8 drives the stopper 7 to move, and the marking component 9 marks that the boots have been sterilized and are in a usable state; S5. The door of the box body 1 is opened, and the driving mechanism 8 drives the stopper 7 to move again to release the stop, and the boots can be taken out.
[0032] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A safety tool cabinet, characterized by: It comprises a box body (1), a box plate (2), a carrier (3), an irradiation sterilization component (4) and a gas-liquid sterilization component (5), wherein: The box (1) is a constant temperature and humidity box; The box plate (2) is arranged in the box body (1); The carrier (3) is arranged on the box plate (2); The radiation sterilization component (4) is arranged on the carrier (3); The gas-liquid sterilization component (5) is arranged on the carrier (3) and is located on the side of the radiation sterilization component (4). The gas-liquid sterilization component (5) is used to input gas-liquid sterilization medium and support tools to protect the radiation sterilization component (4).
2. The safety tool cabinet according to claim 1, wherein: The carrier (3) includes a base (31), a vertical plate (32) and a support plate (33), and the gas-liquid sterilization component (5) includes a connecting pipeline (51) and a support pipeline (52), wherein: The base (31) is arranged on the box plate (2); The vertical plate (32) is arranged on the base (31); The support plate (33) is arranged on the vertical plate (32); The connecting pipe (51) is connected to the vertical plate (32) and passes through the base (31); Two support pipes (52) are arranged in parallel on the support plate (33), the support pipes (52) pass through the support plate (33) and are connected to the connecting pipe (51), and air holes are opened on the support pipes (52); The radiation sterilization component (4) is provided on both the vertical plate (32) and the support plate (33).
3. The safety tool cabinet according to claim 2, wherein: The base (31) includes a lower shell (311), an upper shell (312) and a display element (313); the vertical plate (32) includes a first shell (321), a second shell (322) and a detection element (323); the support plate (33) includes a bottom plate (331) and a top plate (332), wherein: The lower shell (311) is arranged on the box plate (2); The upper shell (312) is buckled onto the lower shell (311) and is provided with a slot (301); The display element (313) is arranged on the upper housing (312); The first shell (321) and the second shell (322) are buckled together and inserted into the slot (301); The detection element (323) is located between the first shell (321) and the second shell (322), and is fixed to the first shell (321), and the detection element (323) is electrically connected to the display element (313); The bottom plate (331) is partially disposed on the first shell (321) and partially disposed on the second shell (322); The top plate (332) is buckled with the bottom plate (331).
4. The safety tool cabinet according to claim 3, wherein: The carrier (3) further includes a connecting frame (34), the connecting frame (34) being connected to the first shell (321) or the second shell (322), and the connecting pipeline (51) and the radiation sterilization component (4) being connected to the connecting frame (34); The supporting pipeline (52) has a U-shaped structure, with both ends of the supporting pipeline (52) connected to the top plate (332), and one end thereof passing through the bottom plate (331) and the top plate (332) and connected to the connecting pipeline (51); The connecting pipeline (51) is a flexible pipe, and the supporting pipeline (52) is a hard pipe.
5. The safety tool cabinet according to claim 3 or 4, characterized in that: It also includes a heating lamp (6), the irradiation sterilization component (4) is an ultraviolet lamp, and two connecting pipes (51) and two supporting pipes (52) are provided, wherein: The bottom plate (331) and the top plate (332) are provided with through slots (302) corresponding to the detection elements (323); The heating lamp (6) and the irradiation sterilization component (4) are arranged oppositely on both sides of the through slot (302); The two supporting pipes (52) are arranged on both sides of the heating lamp (6) and the irradiation sterilization component (4) and are respectively connected to one connecting pipe (51), wherein one connecting pipe (51) is used for inputting sterilization medium, and the other connecting pipe (51) is used for gas suction.
6. A stopper device, applied to the safety tool cabinet according to any one of claims 1 to 5, characterized in that: It also includes a stopper (7), a driving mechanism (8) and an identification component (9), wherein: The stopper (7) is arranged on the box plate (2) and corresponds to the carrier (3); The driving mechanism (8) is arranged on the box plate (2) and is connected to the stopper (7) to drive the stopper (7) to move, thereby realizing the stopping and releasing of the tool; The identification component (9) is arranged on the stopper (7) and is used to indicate the sterilization status of the tool.
7. The stopper device according to claim 6, wherein: Two driving mechanisms (8) are arranged opposite to each other on the box plate (2), and the driving mechanism (8) includes a carrier (81), a sleeve (82), a rotating shaft (83), a motor (84) and a reel (85), wherein: The carrier (81) is connected to the box plate (2); One end of the sleeve (82) is sleeved on one end of the rotating shaft (83); Two motors (84) are provided, one of which is provided on the box plate (2) and has its main shaft connected to the sleeve (82), and the other motor (84) is provided on the carrier (81) and has its main shaft connected to the rotating shaft (83); A plurality of the reels (85) are provided on the sleeve (82) and the rotating shaft (83), and some of the reels (85) are fixed to the carrier (81); The stopper (7) is a rope, and the end of the rope is connected to the reel (85).
8. The stopper device according to claim 7, wherein: It also includes a guide bracket (10), and the identification component (9) is a hanging plate, wherein: Two hanging plates are provided on a single rope, and the two hanging plates have different shapes, and the shape of the hanging plates is triangular, circular or rectangular; The guide bracket (10) is arranged on one side of the rope, the guide bracket (10) is provided with a U-shaped groove (1001), and the guide bracket (10) extends to the bottom of the rope, and the notch of the U-shaped groove (1001) corresponds to the rope.
9. The stopper device according to claim 8, wherein: The reel (85) comprises a fixed wheel (851) and a reel (852), and one fixed wheel (851) and one reel (852) are respectively provided on the sleeve (82) and the rotating shaft (83); One end of the single rope is connected to the fixed wheel (851), and the other end is connected to the reel (852); the reel (852) is rotatably engaged with the sleeve (82) or the rotating shaft (83), and is relatively fixed to the carrier (81); The fixed wheel (851) winds the rope, and the length of the rope wound by the fixed wheel (851) is greater than the relative distance between the two driving mechanisms (8).
10. An application method of the stopper device according to any one of claims 6 to 9, characterized in that: The following steps are involved: S1, placing the boots upside down on the carrier (3); S2, the driving mechanism (8) drives the stopper (7) to move to the front of the carrier (3) to stop the boot; S3, closing the door of the box body (1), selectively performing irradiation sterilization through the irradiation sterilization component (4), or inputting gaseous or liquid sterilization medium into the boots through the gas-liquid sterilization component (5) for sterilization, and at the same time, the identification component (9) indicates that the boots are in the sterilization state; S4, after the sterilization is completed, the driving mechanism (8) drives the stopper (7) to move, and the marking component (9) marks that the boots have been sterilized and are in a usable state; S5. The door of the box body (1) is opened, and the driving mechanism (8) drives the stopper (7) to move again to release the stop, and the boots can be taken out.
Citation Information
Patent Citations
Storage device for labor protection supplies
CN216425226U