Sterilization component and material storage device
By designing integrated sterilization components, the safety and convenience problems of existing xenon lamp sterilization equipment during installation and use are solved, and a more efficient and safe sterilization effect is achieved.
Patent Information
- Application Number
- CN202111446155.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-11-30
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2041-11-30
AI Technical Summary
Existing xenon lamp sterilization and disinfection equipment has safety and convenience problems during installation and use, especially the dangers caused by high-pressure triggering.
A sterilization component is designed, including a first housing, a xenon lamp module and an electrical component. Through the first housing, the xenon lamp module and the electrical component are integrated to form an integral module, which improves installation convenience and avoids leakage through a sealing structure.
It improves the installation convenience and use safety of sterilization components, ensures the stable operation of the xenon lamp module and the effective sterilization and disinfection effect.
Smart Images

Figure CN116196449B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of household appliances, and in particular, to a sterilization component and a material storage device. Background Art
[0002] In the related art, xenon lamps are used for sterilization and disinfection. However, due to the need for high-voltage triggering in the operation of xenon lamps, there are certain problems in the safety and convenience of the installation and use of xenon lamps. Summary of the Invention
[0003] The present invention aims to solve at least one of the technical problems existing in the prior art or related arts.
[0004] To this end, a first aspect of the present invention provides a sterilization component;
[0005] A second aspect of the present invention provides a material storage device.
[0006] In view of this, a first aspect of the present invention provides a sterilization component, including: a first housing, the first housing including a first mounting portion and a second mounting portion; a xenon lamp module disposed in the first mounting portion; and an electrical component disposed in the second mounting portion, the electrical component being electrically connected to the xenon lamp module.
[0007] The sterilization component provided by the present invention includes a first housing, a xenon lamp module, and an electrical component. The first housing is used to provide an installation space for the xenon lamp module and the electrical component. By providing the first housing, the xenon lamp module and the electrical component are integrated to form an integral module. On the one hand, the first housing protects the xenon lamp module and the electrical component, and on the other hand, both the xenon lamp module and the electrical component are integrated onto the first housing, facilitating the overall installation of the sterilization component and improving the installation convenience. Specifically, the first housing includes a first mounting portion and a second mounting portion. The first mounting portion is used to mount the xenon lamp module, and the second mounting portion is used to mount the electrical component.
[0008] Wherein, the xenon lamp module is mounted in the first mounting portion. The xenon lamp module is used to sterilize materials. The light provided by the xenon lamp module can sterilize microorganisms on the surface of articles, in gases, and in transparent beverages. Further, the electrical component connected to the xenon lamp module is disposed in the second mounting portion, thereby forming a pulsed intense light module.
[0009] The present invention divides the first housing into a first mounting portion and a second mounting portion, and the xenon lamp module is mounted in the first mounting portion, and the electrical component is mounted in the second mounting portion. The xenon lamp module and the electrical component are electrically connected therebetween. It forms a complete component module for sterilizing with pulsed intense light, facilitating the application on different platforms, and also facilitating production, installation, and use.
[0010] In addition, the sterilization component in the above technical solution provided by the present invention may further have the following additional technical features:
[0011] In the above technical solution, the xenon lamp module includes a glass tube, the glass tube includes a receiving cavity; a xenon lamp disposed in the receiving cavity; an elastic seal disposed at both ends of the glass tube for sealing the receiving cavity; the elastic seal includes a wire outlet hole; a wire electrically connected to the xenon lamp through the wire outlet hole.
[0012] In this technical solution, the xenon lamp module includes: a glass tube, a xenon lamp, an elastic seal, and a wire. The xenon lamp is disposed in the receiving cavity of the glass tube, and both ends of the glass tube are sealed by an elastic seal. In addition, a wire outlet hole is provided in the elastic seal, and the wire is connected to the electrodes at both ends of the xenon lamp through the wire outlet hole and is insulated and sealed. The pulsed xenon lamp module forms a sealed structure through a tubular quartz glass, achieving more reliable sealing, lower cost, and more convenient assembly;
[0013] Specifically, the inside of the xenon lamp tube is filled with xenon gas, the tube body has a positive extreme and a negative extreme, and the wires are respectively connected to the positive and negative poles of the tube body. Since the operation of the xenon lamp requires high-voltage triggering and there is a certain danger, the xenon lamp is placed in the receiving cavity of the glass tube with a transparent and smooth surface, and at the same time, an elastic seal is used to seal the glass tube to prevent external moisture and humidity from entering and causing electric leakage. By using the glass tube, the influence of the glass tube on the light of the xenon lamp is small, so that the light generated by the xenon lamp can be transmitted to the greatest extent, and thus the function of sterilization and disinfection can be achieved to the greatest extent. Further, one end face of the elastic seal can be sleeved on the glass tube by interference fit. At the same time, the elastic seal is provided with a wire outlet hole, and the wires connected to both ends of the xenon lamp can extend out of the glass tube through the wire outlet hole, and an insulating glue is used to seal the wire outlet hole, thereby further enhancing the sealing effect of the elastic seal.
[0014] In any of the above technical solutions, the first mounting portion includes: a mounting base, the xenon lamp module is disposed on the mounting base; a mounting bracket connected to the mounting base, and the xenon lamp module is located between the mounting base and the mounting bracket.
[0015] In this technical solution, the xenon lamp module is disposed on the mounting base of the first mounting portion, and the mounting bracket is connected to the mounting base, fixing the xenon lamp module on the mounting base, which is convenient for disassembly and installation and improves production efficiency.
[0016] In any of the above technical solutions, a buckle is provided on one of the mounting base and the mounting bracket, and a card slot cooperating with the buckle is provided on the other of the mounting base and the mounting bracket, and the mounting base and the mounting bracket are connected by the buckle and the card slot.
[0017] In this technical solution, the connection method between the mounting base and the mounting bracket is a snap-fit mounting method. The connection structure of the snap and the slot is simple, easy to operate, convenient for disassembly and installation, thereby improving the installation convenience of the xenon lamp module and having a low material cost.
[0018] Specifically, a snap is provided on either the mounting bracket or the mounting base, and a slot is provided on the corresponding other one. After placing the xenon lamp module on the mounting base, the mounting base and the mounting bracket are connected through the snap and the slot, so that the xenon lamp module is located in the space formed by the mounting base and the mounting bracket, and then the xenon lamp module is fixed on the first housing, thereby forming a complete module. Connecting the mounting base and the mounting bracket through the snap and the slot is simple to install on the one hand. On the other hand, it is convenient to disassemble. If the xenon lamp module fails, it can be directly disassembled. Thus, the user experience is improved.
[0019] In any of the above technical solutions, first grooves are provided on opposite sides of the mounting base, and second grooves are provided on opposite sides of the mounting bracket. The first grooves and the second grooves enclose a through hole, and both ends of the xenon lamp module pass through the through hole.
[0020] In this technical solution, first grooves are provided on opposite sides of the mounting base, and second grooves are provided on opposite sides of the mounting bracket. When the mounting base and the mounting bracket are connected, the first grooves and the second grooves can enclose a through hole, and the shape of the through hole is set to be adapted to the cross-sectional shape of the glass tube in the xenon lamp module, so as to better install and fix the xenon lamp module. That is, when the cross-section of the glass tube is circular, the shapes of the first grooves and the second grooves are semi-circular. When the cross-section of the glass tube is square, the shapes of the first grooves and the second grooves are rectangular, etc. The purpose is to enable the through hole to sleeve both ends of the xenon lamp module, thereby realizing the fixation of the xenon lamp module. This technical solution uses the corresponding grooves on the mounting base and the mounting bracket to fixedly install the xenon lamp module, which is simple and easy to operate, and improves the installation convenience and safety of the sterilization component.
[0021] In any of the above technical solutions, the mounting base further includes a light-transmitting part, which is correspondingly arranged with the xenon lamp module, and the light-transmitting part is used for transmitting the light of the xenon lamp module.
[0022] In this technical solution, a light-transmitting part is provided at a position corresponding to the xenon lamp module on the mounting base, and is used for transmitting the light emitted by the xenon lamp module to the article to be sterilized.
[0023] In any of the above technical solutions, the first mounting part further includes: a reflector, which covers the xenon lamp module, and the reflector is located between the xenon lamp module and the mounting bracket.
[0024] In this technical solution, a reflector is further provided on the first mounting portion. The reflector is mounted on the xenon lamp module by a mounting bracket. The reflector is used to reflect and focus the xenon lamp light onto the light-transmitting portion on the mounting base, and then most of the light emitted by the xenon lamp is transmitted through the light-transmitting portion onto the material to be sterilized, further enhancing the sterilization effect.
[0025] In any of the above technical solutions, the sterilization component further includes: a second housing, which is connected to the first housing to form a second mounting portion.
[0026] In this technical solution, the sterilization component further includes a second housing, which is connected to the first housing to form a second mounting portion. The second mounting portion is a sealed cavity. The electrical components are arranged in the second mounting portion to prevent moisture and dampness from the outside from entering and causing electric leakage, thus causing safety accidents, and further ensuring the use safety of users.
[0027] In any of the above technical solutions, the sterilization component further includes: a sealing ring, which is arranged between the first housing and the second housing and is used to seal the second mounting portion.
[0028] In this technical solution, the first housing and the second housing are sealed by a sealing ring. Further, the sealing performance of the second mounting portion is increased, thus avoiding the occurrence of safety accidents.
[0029] In any of the above technical solutions, the sterilization component further includes: a wire passing hole, which is arranged on the first housing; a wire harness, which passes through the wire passing hole, and the wire harness is used to connect the xenon lamp module and the electrical components.
[0030] In this technical solution, the sterilization component further includes: a wire passing hole and a wire harness. The wire passing hole is arranged in the second mounting portion of the first housing, and the electrical components are connected to the xenon lamp module through the wire harness via the wire passing hole. Specifically, the wire passing hole is used to provide an end hole for the communication and power supply wire harnesses of the electrical components in the second mounting portion and the xenon lamp module to the outside, thereby ensuring the normal power supply and communication of the electrical components and the xenon lamp module, and thus ensuring the normal operation of the sterilization component.
[0031] In any of the above technical solutions, a sealing member is arranged on the wire passing hole and is used to seal the wire passing hole.
[0032] In this technical solution, the wire passing hole for the external connection of the electrical components in the second mounting portion needs to be sealed by a sealing member. The sealing member is set to sleeve the wire harness and be plugged on the wire passing hole. Further, the sealing performance of the second mounting portion is improved, thereby further preventing moisture and dampness from the outside from entering the second mounting portion and causing electric leakage, and thus ensuring the stability of the operation of the sterilization component.
[0033] In any of the above technical solutions, the elastic sealing body is a silica gel sealing body.
[0034] In this technical solution, the elastic seal for sealing the glass tube in the xenon lamp module is a silicone seal. Specifically, the silicone seal has good sealing performance, high temperature and weather resistance, insulation, and good resistance to ultraviolet rays, etc.
[0035] The second aspect of the present invention provides a material storage device, including a main body, the main body includes a storage cavity; and a sterilization component provided in any of the technical solutions of the first aspect, the sterilization component is provided on the main body, and the xenon lamp module is used to sterilize the materials in the storage cavity. The material storage device provided by the present invention includes a main body and a sterilization component. The main body includes a storage cavity, and the sterilization component is provided on the main body and is used to sterilize the materials in the storage cavity. In this application, the provided sterilization component is set as an independent module. Thus, when the sterilization component is installed on the main body, an overall mounting base can be realized, the installation is convenient, and further, the safety during installation and use is improved. Specifically, the sterilization component includes a first housing, a xenon lamp module, and electrical components. The first housing is used to provide an installation space for the xenon lamp module and the electrical components. By setting the first housing, the xenon lamp module and the electrical components are integrated to form an integral module. On the one hand, the first housing plays a protective role for the xenon lamp module and the electrical components. On the other hand, both the xenon lamp module and the electrical components are integrated onto the first housing, which facilitates the overall installation of the sterilization component and improves the installation convenience. Specifically, the first housing includes a first installation part and a second installation part. The first installation part is used to install the xenon lamp module, and the second installation part is used to install the electrical components. Among them, the xenon lamp module is installed in the first installation part. The xenon lamp module is used to sterilize the materials, and the light provided by the xenon lamp module can sterilize the microorganisms on the surface of the articles, in the gas and in the transparent beverages. Further, the electrical components connected to the xenon lamp module are arranged in the second installation part, thus forming a pulsed intense light module.
[0036] In the above technical solution, the main body includes: a body, the body includes an installation cavity; a drawer, the drawer is slidably arranged in the installation cavity, and the drawer includes a storage cavity; wherein, the sterilization component is installed on the body.
[0037] In this technical solution, the main body of the material storage device includes a body and a drawer. The body includes an installation cavity, and the drawer is slidably arranged in the installation cavity. Further, the drawer includes a storage cavity for storing materials. The installation cavity is used to provide an installation position for other components in the material storage device. Among them, the sterilization component is installed in the installation cavity and is located at the top of the drawer, which is beneficial to protecting the xenon lamp component and avoiding damage to vulnerable parts such as quartz glass.
[0038] In any of the above technical solutions, the material storage device further includes a machine body, the machine body includes; a refrigerating chamber, and the main body is arranged in the refrigerating chamber.
[0039] In this technical solution, the machine body includes a refrigerating chamber, and the main body is disposed in the refrigerating chamber. That is, on the one hand, this material storage device can refrigerate the materials, and on the other hand, it can sterilize the materials.
[0040] The additional aspects and advantages of the present invention will become apparent in the following description section, or will be learned through the practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0041] The above and / or additional aspects and advantages of the present invention will become apparent and be readily understood from the description of the embodiments in conjunction with the following drawings, in which:
[0042] Figure 1 A schematic structural view of a sterilization component according to an embodiment of the present invention is shown;
[0043] Figure 2 Shown is Figure 1 A schematic structural view of a xenon lamp module in the shown embodiment;
[0044] Figure 3 Shown is Figure 1 A schematic cross-sectional view of the sterilization component in the shown embodiment;
[0045] Figure 4 Shown is Figure 1 A schematic view of the middle part of the sterilization component in the shown embodiment in a disassembled state;
[0046] Figure 5 Shown is Figure 1 A schematic structural view of the combined state of the first housing and the second housing of the sterilization component in the shown embodiment;
[0047] Figure 6 Shown is Figure 1 A partial schematic structural view of the combined state of the first housing and the second housing of the sterilization component in the shown embodiment;
[0048] Figure 7 A schematic structural view of a material storage device according to an embodiment of the present invention is shown.
[0049] Wherein, Figures 1 to 7 The corresponding relationship between the reference numerals in the drawings and the component names is as follows:
[0050] 1 Material storage device, 10 Sterilization component, 100 First housing, 102 First mounting part, 122 Mounting seat, 1222 Card slot, 1124 First groove, 124 Mounting bracket, 1242 Snap, 1244 Second groove, 126 Reflector, 104 Second mounting part, 106 Second housing, 108 Sealing ring, 110 Translucent part, 120 Wire passing hole, 130 Wiring harness, 200 Xenon lamp module, 202 Glass tube, 204 Xenon lamp, 206 Elastic seal, 208 Conducting wire, 300 Electrical component, 220 Main body, 2202 Body, 2204 Drawer, 222 Storage cavity. Detailed implementation manners
[0051] In order to more clearly understand the above objects, features and advantages of the present invention, the present invention will be further described in detail below with reference to the drawings and specific implementation manners. It should be noted that, without conflict, the embodiments of the present application and the features in the embodiments may be combined with each other.
[0052] In the following description, many specific details are set forth in order to fully understand the present invention. However, the present invention may be implemented in other ways different from those described herein. Therefore, the protection scope of the present invention is not limited by the specific embodiments disclosed below.
[0053] The following refers to Figures 1 to 7 Describe the sterilization component 10 and the material storage device 1 according to some embodiments of the present invention.
[0054] Embodiment 1:
[0055] As Figure 1 , Figure 2 , Figure 3 and Figure 4 shown, an embodiment of the first aspect of the present invention proposes a sterilization component 10. The sterilization component 10 includes: a first housing 100, a xenon lamp module 200, and an electrical component 300.
[0056] Specifically, the first housing 100 includes a first mounting part 102 and a second mounting part 104; the xenon lamp module 200 is disposed on the first mounting part 102; the electrical component 300 is disposed on the second mounting part 104, and the electrical component 300 is electrically connected to the xenon lamp module 200.
[0057] The sterilization component 10 provided by the present invention includes a first housing 100, a xenon lamp module 200, and an electrical component 300. The first housing 100 is used to provide an installation space for the xenon lamp module 200 and the electrical component 300. By arranging the first housing 100, the xenon lamp module 200 and the electrical component 300 are integrated to form an integral module. On the one hand, the first housing 100 plays a protective role for the xenon lamp module 200 and the electrical component 300. On the other hand, both the xenon lamp module 200 and the electrical component 300 are integrated onto the first housing 100, which facilitates the overall installation of the sterilization component 10 and improves the installation convenience. Specifically, the first housing 100 includes a first installation portion 102 and a second installation portion 104. The first installation portion 102 is used to install the xenon lamp module 200, and the second installation portion 104 is used to install the electrical component 300.
[0058] Embodiment 2:
[0059] As Figure 1 、 Figure 2 、 Figure 3 and Figure 4 shown, an embodiment of the first aspect of the present invention provides a sterilization component 10. The sterilization component 10 includes: a first housing 100, a xenon lamp module 200, and an electrical component 300.
[0060] On the basis of the above embodiment, further, as Figure 2 shown, the xenon lamp module 200 includes a glass tube 202, a xenon lamp 204, an elastic seal 206, and a wire 208.
[0061] Specifically, as Figure 2 shown, the glass tube 202 includes a receiving cavity; the xenon lamp 204 is disposed in the receiving cavity; the elastic seal 206 is disposed at both ends of the glass tube 202 for sealing the receiving cavity. The elastic seal 206 includes an outlet hole, and the wire 208 is electrically connected to the xenon lamp 204 through the outlet hole.
[0062] In this embodiment, the xenon lamp module 200 includes: a glass tube 202, a xenon lamp 204, an elastic seal 206, and a wire 208. The xenon lamp 204 is disposed in the receiving cavity of the glass tube 202, and both ends of the glass tube 202 are sealed by the elastic seal 206. In addition, an outlet hole is formed in the elastic seal 206, and the wire 208 is connected to the electrodes at both ends of the xenon lamp 204 through the outlet hole and is insulated and sealed. The pulsed xenon lamp module 200 forms a sealed structure through a tubular quartz glass, achieving more reliable sealing, lower cost, and more convenient assembly.
[0063] Specifically, the glass tube 202 is a quartz glass tube. By using a quartz glass tube, the influence of the quartz glass tube on the light of the xenon lamp 204 is small, so that the light generated by the xenon lamp 204 can be transmitted out to the greatest extent, and thus the function of sterilization and disinfection can be achieved to the greatest extent.
[0064] Specifically, the interior of the tube of the xenon lamp 204 is filled with xenon gas. The tube body has a positive extreme and a negative extreme, and the wires 208 are respectively connected to the positive and negative poles of the tube body. Since the operation of the xenon lamp 204 requires high-voltage triggering and there is a certain danger, the xenon lamp 204 is placed in the accommodation cavity in the glass tube 202 with a transparent and smooth surface, and at the same time, the glass tube 202 is sealed with an elastic seal 206 to prevent moisture and humidity from the outside from entering and causing electric leakage. One end face of the elastic seal 206 can be sleeved on the glass tube 202 by interference fit. At the same time, the elastic seal 206 is provided with a wire outlet hole, and the wires 208 connected to both ends of the xenon lamp 204 can extend out of the glass tube 202 through the wire outlet hole, and an insulating glue is used to seal the wire outlet hole, so as to further enhance the sealing effect of the elastic seal 206.
[0065] Furthermore, the elastic seal 206 is a silica gel seal. The elastic seal 206 used for sealing the glass tube 202 in the xenon lamp module 200 is a silica gel seal. Specifically, the silica gel seal has good sealing performance, high temperature and weather resistance, insulation, and good resistance to ultraviolet rays and other characteristics.
[0066] Embodiment 3:
[0067] As Figure 1 、 Figure 2 、 Figure 3 and Figure 4 shown, an embodiment of the first aspect of the present invention provides a sterilization assembly 10. The sterilization assembly 10 includes: a first housing 100, a xenon lamp module 200, and an electrical component 300. In any of the above embodiments, further, as Figure 3 and Figure 4 、 Figure 5 shown, the first mounting portion 102 includes: a mounting base 122 and a mounting bracket 124.
[0068] Specifically, as Figure 4 shown, the xenon lamp module 200 is disposed on the mounting base 122; the mounting bracket 124 is connected to the mounting base 122, and the xenon lamp module 200 is located between the mounting base 122 and the mounting bracket 124.
[0069] In this embodiment, the xenon lamp module 200 is disposed on the mounting base 122 of the first mounting portion 102, and the mounting bracket 124 is connected to the mounting base 122, fixing the xenon lamp module 200 on the mounting base 122, which is convenient for disassembly and installation and improves production efficiency.
[0070] Further, as Figure 4 shown, a buckle 1242 is provided on one of the mounting base 122 and the mounting bracket 124, and a slot 1222 that cooperates with the buckle 1242 is provided on the other of the mounting base 122 and the mounting bracket 124. The mounting base 122 and the mounting bracket 124 are connected by the buckle 1242 and the slot 1222.
[0071] In this embodiment, the connection manner between the mounting base 122 and the mounting bracket 124 is the buckle 1242 mounting manner. The connection structure of the buckle 1242 and the slot 1222 is simple, easy to operate, convenient for disassembly and installation, thereby improving the installation convenience of the xenon lamp module 200 and having a low material cost.
[0072] Specifically, the buckle 1242 is provided on either the mounting groove or the mounting base 122, and the slot 1222 is provided on the corresponding other one. After the xenon lamp module 200 is placed on the mounting base 122, the mounting base 122 and the mounting bracket 124 are connected by the buckle 1242 and the slot 1222, so that the xenon lamp module 200 is located in the space formed by the mounting base 122 and the mounting bracket 124, thereby fixing the xenon lamp module 200 on the first housing 100 to form a complete module. Connecting the mounting base 122 and the mounting bracket 124 by the buckle 1242 and the slot 1222 is simple to install on the one hand. On the other hand, it is convenient to disassemble. If the xenon lamp module 200 fails, it can be directly disassembled, thereby improving the user experience.
[0073] Further, as Figure 5 shown, first grooves 1124 are provided on opposite sides of the mounting base 122. As Figure 6 shown, second grooves 1244 are provided on opposite sides of the mounting bracket 124. The first grooves 1124 and the second grooves 1244 enclose a through hole, and both ends of the xenon lamp module 200 pass through the through hole.
[0074] In this embodiment, the first grooves 1124 are provided on opposite sides of the mounting base 122, and the second grooves 1244 are provided on opposite sides of the mounting bracket 124. When the mounting base 122 and the mounting bracket 124 are connected, the first grooves 1124 and the second grooves 1244 can enclose a through hole, and the shape of the through hole is set to be adapted to the cross-sectional shape of the glass tube 202 in the xenon lamp module 200, thereby better realizing the installation and fixation of the xenon lamp module 200.
[0075] Specifically, when the cross-section of the glass tube 202 is circular, the shapes of the first grooves 1124 and the second grooves 1244 are semi-circular, thereby enclosing a circular through hole through the first grooves 1124 and the second grooves 1244, and clamping and installing the xenon lamp module 200 through the through hole.
[0076] Specifically, when the cross-section of the glass tube 202 is square, the shapes of the first groove 1124 and the second groove 1244 are rectangular. A square through-hole is formed by the first groove 1124 and the second groove 1244, and the xenon lamp module 200 is clamped and fixed through the square through-hole. The purpose of the above setting is to enable the through-hole to sleeve both ends of the xenon lamp module 200, thereby realizing the fixation of the xenon lamp module 200. This technical solution uses the corresponding grooves on the mounting base 122 and the mounting frame 124 to fixedly install the xenon lamp module 200 simply and with low material cost.
[0077] Specifically, the shapes of the first groove 1124 and the second groove 1244 are not limited to the listed shapes, which will not be elaborated here.
[0078] Further, as Figure 4 and Figure 6 shown, the mounting base 122 further includes a light-transmitting portion 110.
[0079] Specifically, the light-transmitting portion 110 is correspondingly arranged with the xenon lamp module 200, and the light-transmitting portion 110 is used for transmitting the light of the xenon lamp module 200. A light-transmitting portion 110 is arranged at the position corresponding to the xenon lamp module 200 on the mounting base 122, and is used for transmitting the light emitted by the xenon lamp module 200 to the articles to be sterilized.
[0080] Specifically, a mounting opening is provided on the first housing 100. The mounting opening penetrates the first housing 100 along the thickness direction of the first housing 100. The mounting base 122 is arranged on the periphery of the mounting opening, and the light-transmitting portion 110 is arranged at the mounting opening. By providing the light-transmitting portion 110, on the one hand, it plays a protective role for the xenon lamp module 200 to prevent the xenon lamp module 200 from being damaged; on the other hand, the light of the xenon lamp module 200 is transmitted through the light-transmitting portion 110, thereby achieving the effect of sterilization and disinfection.
[0081] Specifically, the light-transmitting portion 110 includes quartz glass.
[0082] Further, as Figure 4 shown, the first mounting portion 102 further includes a reflector 126. The reflector 126 covers the xenon lamp module 200, and the reflector 126 is located between the xenon lamp module 200 and the mounting frame 124.
[0083] In this embodiment, the first mounting portion 102 further sets a reflector 126. The reflector 126 is fixed above the xenon lamp module 200 by the mounting frame 124. The reflector 126 is used for reflecting and focusing the light of the xenon lamp 204 onto the light-transmitting portion 110 on the mounting base 122, and then most of the light emitted by the xenon lamp 204 is transmitted through the light-transmitting portion 110 to the materials to be sterilized, further enhancing the sterilization effect.
[0084] Embodiment 4:
[0085] As shown in Figure 1 , Figure 2 , Figure 3 and Figure 4 shown, an embodiment of the first aspect of the present invention provides a sterilization component 10. The sterilization component 10 includes: a first housing 100, a xenon lamp module 200, and an electrical component 300.
[0086] In any of the above embodiments, as shown in Figure 1 , Figure 3 , Figure 4 and Figure 5 , Figure 6 shown, further, the sterilization component 10 further includes a second housing 106. The second housing 106 is connected to the first housing 100 to form a second mounting portion 104.
[0087] In this embodiment, the sterilization component 10 further includes a second housing 106, which is connected to the first housing 100 to form a second mounting portion 104. The second mounting portion 104 is a sealed cavity. The electrical component 300 is disposed in the second mounting portion 104 to prevent moisture and humidity from the outside from entering and causing electric leakage, thereby causing a safety accident, and further ensuring the safety of the user during use.
[0088] Specifically, the first housing 100 and the second housing 106 are connected by screws. Threaded holes are provided on the first housing 100, and connection holes corresponding to the threaded holes are provided on the second housing 106. The first housing 100 and the second housing 106 are connected by screws passing through the connection holes and the threaded holes. The screw connection method has a simple structure and is easy to operate.
[0089] Specifically, the first housing 100 and the second housing 106 can be connected by a snap-fit between a snap and a slot, which is convenient for installation and disassembly, has a simple structure, and is easy to operate.
[0090] Further, the sterilization component 10 further includes a sealing ring 108.
[0091] Specifically, as shown in Figure 3 shown, the sealing ring 108 is disposed between the first housing 100 and the second housing 106 for sealing the second mounting portion 104.
[0092] In this modified embodiment, by providing the sealing ring 108 between the first housing 100 and the second housing 106, the connection between the first housing 100 and the second housing 106 is sealed. Furthermore, the sealing performance of the second mounting portion 104 is further enhanced, so that there is no water vapor in the second mounting portion 104 to protect the electrical component 300 located in the second mounting portion 104, thereby avoiding the occurrence of safety accidents and improving the safety of the sterilization component 10 during use.
[0093] In some embodiments of the present invention, as Figure 1 shown, the sterilization component 10 further includes: a wire passing hole 120 and a wire harness 130.
[0094] Specifically, the wire passing hole 120 is provided in the first housing 100; the wire harness 130 is threaded through the wire passing hole 120, and the wire harness 130 is used to connect the xenon lamp module 200 and the electrical component 300.
[0095] In this embodiment, the sterilization component 10 further includes: a wire passing hole 120 and a wire harness 130. The wire passing hole 120 is provided in the first housing 100. The wire passing hole 120 is used to communicate the second mounting portion 104 and the xenon lamp module 200 located outside the second mounting portion 104. The electrical component 300 is connected to the xenon lamp module 200 through the wire passing hole 120 by using the wire harness 130. Specifically, the wire passing hole 120 is used to provide an end hole for the communication and power supply wire harness 130 of the electrical component 300 in the second mounting portion 104 and the xenon lamp module 200 to the outside, thereby ensuring the normal power supply and communication of the electrical component 300 and the xenon lamp module 200, and thus ensuring the normal operation of the sterilization component 10.
[0096] In some embodiments of the present invention, the sterilization component 10 further includes a sealing member.
[0097] Specifically, the sealing member is provided in the wire passing hole 120 for sealing the wire passing hole 120.
[0098] In this embodiment, the wire passing hole 120 for the external connection of the electrical component 300 in the second mounting portion 104 needs to be sealed by the sealing member. The sealing member is set to be sleeved on the wire harness 130 and installed on the wire passing hole 120. The sealing member is located between the wire harness 130 and the wire passing hole 120. Further, the sealing performance of the second mounting portion 104 is improved, and thus further, the entry of external moisture and dampness into the second mounting portion 104 is avoided, which may cause electric leakage and lead to safety accidents.
[0099] Specifically, the electrical component 300 includes a circuit board. The circuit board is provided in the second mounting portion 104 and is electrically connected to the xenon lamp module 200 to supply power to the xenon lamp module 200 and communicate with it.
[0100] Embodiment 5:
[0101] The second aspect embodiment of the present invention provides a material storage device 1, as Figure 7 shown, including a main body 220 and the sterilization component 10 of any of the above embodiments.
[0102] Specifically, as Figure 7As shown, the main body 220 includes a storage cavity 222; the sterilization component 10 is disposed on the main body 220, and the xenon lamp module 200 is used to sterilize the materials in the storage cavity 222.
[0103] The material storage device 1 provided by the present invention includes a main body 220 and a sterilization component 10. The main body 220 includes a storage cavity 222. The sterilization component 10 is disposed on the main body 220 and is used to sterilize the materials in the storage cavity 222. In this application, the provided sterilization component 10 is set as an independent module. Thus, when the sterilization component 10 is installed on the main body 220, the overall mounting base 122 can be realized, the installation is convenient, and the safety during installation and use is further improved.
[0104] Specifically, the sterilization component 10 includes a first housing 100, a xenon lamp module 200, and an electrical component 300. The first housing 100 is used to provide an installation space for the xenon lamp module 200 and the electrical component 300. By setting the first housing 100, the xenon lamp module 200 and the electrical component 300 are integrated to form an integral module. On the one hand, the first housing 100 protects the xenon lamp module 200 and the electrical component 300. On the other hand, both the xenon lamp module 200 and the electrical component 300 are integrated onto the first housing 100, which facilitates the overall installation of the sterilization component 10 and improves the installation convenience. Specifically, the first housing 100 includes a first installation portion 102 and a second installation portion 104. The first installation portion 102 is used to install the xenon lamp module 200, and the second installation portion 104 is used to install the electrical component 300. Among them, the xenon lamp module 200 is installed in the first installation portion 102. The xenon lamp module 200 is used to sterilize the materials. The light provided by the xenon lamp module 200 can sterilize the microorganisms on the surface of the articles, in the gas, and in the transparent beverage. Further, the electrical component 300 connected to the xenon lamp module 200 is disposed in the second installation portion 104, thereby forming a pulsed intense light module, which greatly improves the use safety and installation convenience of the xenon lamp module 200.
[0105] Embodiment 6:
[0106] The second aspect embodiment of the present invention provides a material storage device 1, including a main body 220 and the sterilization component 10 of any of the above embodiments. The main body 220 includes a storage cavity 222; the sterilization component 10 is disposed on the main body 220, and the xenon lamp module 200 is used to sterilize the materials in the storage cavity 222.
[0107] In the above embodiment, further, as Figure 7 shown, the main body 220 includes a main body 2202 and a drawer 2204. The main body 2202 includes an installation cavity. The drawer 2204 is slidably disposed in the installation cavity. The drawer 2204 includes a storage cavity 222; wherein, the sterilization component 10 is installed on the main body 2202.
[0108] In this embodiment, the main body 220 of the material storage device 1 includes a body 2202 and a drawer 2204. The body 2202 includes an installation cavity, and the drawer 2204 is slidably disposed in the installation cavity. Further, the drawer 2204 includes a storage cavity 222 for storing materials. The installation cavity is used to provide an installation position for other components in the material storage device 1. Among them, the sterilization component 10 is installed in the installation cavity and located at the top of the drawer 2204. On the one hand, it is beneficial to protect the sterilization component 10 to avoid damage to objects including quartz glass. On the other hand, it is convenient for the installation of the sterilization component 10.
[0109] Embodiment 7:
[0110] The second aspect embodiment of the present invention provides a material storage device 1, including a main body 220 and the sterilization component 10 of any of the above embodiments. The main body 220 includes a storage cavity 222; the sterilization component 10 is disposed on the main body 220, and the xenon lamp module 200 is used to sterilize the materials in the storage cavity 222.
[0111] On the basis of any of the above embodiments, further, the material storage device 1 further includes a machine body.
[0112] Specifically, the machine body includes a refrigerating chamber, and the main body 220 is disposed in the refrigerating chamber.
[0113] In this embodiment, the machine body includes a refrigerating chamber, and the main body 220 is disposed in the refrigerating chamber. That is, on the one hand, the material storage device 1 can refrigerate the materials, and on the other hand, it can sterilize the materials stored in the storage cavity 222.
[0114] Further, the sterilization component 10 is disposed on the top of the main body 220, and the sterilization component 10 is set as an independent module, which is convenient for the installation of the sterilization component 10. At the same time, when applied to the refrigerating chamber, both the electrical component 300 and the xenon lamp module 200 are effectively sealed, further avoiding the influence of the cold air in the refrigerating chamber on the sterilization component 10, further improving the safety of the use of the sterilization component 10, and being more convenient for assembly.
[0115] Embodiment 8:
[0116] As Figure 1 、 Figure 2 、 Figure 3 and Figure 4 shown, the embodiment of the first aspect of the present invention proposes a sterilization component 10. The sterilization component 10 includes: a first housing 100, a xenon lamp module 200 and an electrical component 300.
[0117] Specifically, as Figure 5As shown, the first housing 100 includes a first mounting portion 102 and a second mounting portion 104; the xenon lamp module 200 is disposed on the first mounting portion 102; the electrical component 300 is disposed on the second mounting portion 104, and the electrical component 300 is electrically connected to the xenon lamp module 200.
[0118] Further, as Figure 4 and Figure 5 shown, the first mounting portion 102 includes: a mounting base 122 and a mounting bracket 124. The xenon lamp module 200 is disposed on the mounting base 122; the mounting bracket 124 is connected to the mounting base 122, and the xenon lamp module 200 is located between the mounting base 122 and the mounting bracket 124.
[0119] Specifically, the connection manner between the mounting base 122 and the mounting bracket 124 is a snap 1242 mounting manner.
[0120] Further, as Figure 5 shown, first grooves 1124 are provided on opposite sides of the mounting base 122, second grooves 1244 are provided on opposite sides of the mounting bracket 124, and the first grooves 1124 and the second grooves 1244 enclose a through hole, and both ends of the xenon lamp module 200 are inserted through the through hole.
[0121] Further, as Figure 4 shown, the first mounting portion 102 further includes a reflector 126. The reflector 126 covers the xenon lamp module 200, and the reflector 126 is located between the xenon lamp module 200 and the mounting bracket 124.
[0122] Further, as Figure 1 、 Figures 3 to 6 shown, the sterilization component 10 further includes a second housing 106. The second housing 106 is connected to the first housing 100 to form the second mounting portion 104. A sealing ring 108 is disposed between the first housing 100 and the second housing 106.
[0123] Specifically, as Figure 1 shown, the sterilization component 10 further includes: a wire passing hole 120 and a wire harness 130. The wire passing hole 120 is provided on the first housing 100; the wire harness 130 passes through the wire passing hole 120, and the wire harness 130 is used to connect the xenon lamp module 200 and the electrical component 300. A sealing member is disposed in the wire passing hole 120 for sealing the wire passing hole 120.
[0124] Further, as Figure 2 shown, the xenon lamp module 200 includes a glass tube 202, a xenon lamp 204, a silicone sealing plug, and a wire 208. The glass tube 202 includes a receiving cavity; the xenon lamp 204 is disposed in the receiving cavity; elastic sealing bodies 206 are disposed at both ends of the glass tube 202 for sealing the receiving cavity. The silicone sealing plug includes a wire outlet hole, and the wire 208 is electrically connected to the xenon lamp 204 through the wire outlet hole.
[0125] In this embodiment, the wire 208 of the xenon lamp module 200 is connected to and insulated and sealed with the electrode of the xenon lamp 204. The wire 208 can be insulated and sealed by sleeving it with a heat-shrinkable tube. The glass tube 202 is tubular, and the surface of the glass tube 202 is transparent and smooth. The inside is used to accommodate the xenon lamp 204. The silicone seal plug is provided with a wire outlet hole. The wire 208 and the wire outlet hole are sealed by interference fit. To further strengthen the seal, insulating glue can also be used to assist in sealing at the wire outlet hole. The other end of the silicone seal plug sleeves the glass tube 202 by interference fit. Both ends of the glass tube 202 are sealed by the silicone seal plug, and the xenon lamp 204 is sealed in the glass tube 202 to prevent moisture and humidity from the outside from entering and causing electric leakage.
[0126] Further, the xenon lamp module 200 and the circuit board for driving it form a pulse module. The circuit board is installed in the sealed second installation part 104 composed of the first housing 100 and the second housing 106. The first housing 100 and the second housing 106 are sealed by a sealing ring 108. The wire harness 130 externally connected to the circuit board passes through the through-hole 120 after being sealed by a seal. The seal sleeves the wire harness 130 and then passes through the through-hole 120 to achieve the sealing of the second installation cavity.
[0127] By sealing between the first housing 100 and the second housing 106 and further sealing the through-hole 120, a reliable module sealing structure is formed by the combined sealing method, which further improves the use safety of the sterilization component 10.
[0128] Further, the first installation part 102 includes an installation seat 122 and an installation frame 124. A through-hole is formed after the installation seat 122 and the installation frame 124 are combined. The connection method between the installation seat 122 and the installation frame 124 is the snap 1242 installation method. The through-hole sleeves the silicone seal plug of the xenon lamp module 200 to achieve the fixation of the xenon lamp module 200.
[0129] Further, the installation frame 124 presses on the reflector 126, and the light is reflected and focused on the material to be processed through the reflector 126.
[0130] In summary, through the convenient installation method of the snap 1242, the xenon lamp module 200 is clamped, the installation is simple, and the production cost is low.
[0131] The sterilization component 10 provided by this application emits pulsed light in a limited frame-shaped space, and sterilizes the food materials in the space by high-energy release.
[0132] Specifically, when the sterilization component 10 provided in the present application is applied to a refrigerator, it is installed on the top plate of the space of the drawer 2204 in the refrigerating chamber. The moderately sized frame-shaped space formed by the peripheral side wall and the top plate of the drawer 2204, and the sterilization component 10 provides strong light output to sterilize the food materials in the drawer 2204; further, by installing the sterilization component 10 on the top of the drawer 2204, it is more conducive to protecting vulnerable components such as the glass tube 202 from being damaged by the pressure of heavy objects, and it is not easily covered by the loaded objects to affect the sterilization effect due to the strong light output being blocked.
[0133] In the present invention, the term "a plurality of" refers to two or more, unless otherwise clearly defined. Terms such as "installed", "connected", "joined", "fixed", etc. should be understood in a broad sense. For example, "connected" can be a fixed connection, a detachable connection, or an integral connection; "joined" can be a direct connection or an indirect connection through an intermediate medium. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0134] In the description of this specification, the descriptions of terms such as "one embodiment", "some embodiments", "specific embodiments", etc. mean that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or instance. Moreover, the specific features, structures, materials, or characteristics described can be combined in a suitable manner in any one or more embodiments or examples.
[0135] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. For those skilled in the art, the present invention can have various changes and modifications. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. A sterilization component, characterized in that, it includes: A first housing, the first housing includes a first mounting portion and a second mounting portion; A xenon lamp module, arranged on the first mounting portion; An electrical component, arranged on the second mounting portion, the electrical component is electrically connected to the xenon lamp module; Wherein, the first housing is used to provide an installation space for the xenon lamp module and the electrical component, and by arranging the first housing, the xenon lamp module and the electrical component are integrated to form an integral module; The xenon lamp module includes: A quartz glass tube, the glass tube includes a receiving cavity; A xenon lamp, the xenon lamp is arranged in the receiving cavity; An elastic seal, the elastic seal is arranged at both ends of the glass tube for sealing the receiving cavity, and the elastic seal includes a wire outlet hole; A wire, the wire is electrically connected to the xenon lamp through the wire outlet hole; The sterilization component further includes: a second housing, the second housing is connected to the first housing to form the second mounting portion.
2. The sterilization component according to claim 1, characterized in that, The first mounting portion includes: A mounting seat, the xenon lamp module is arranged on the mounting seat; A mounting frame, the mounting frame is connected to the mounting seat, and the xenon lamp module is located between the mounting seat and the mounting frame.
3. The sterilization component according to claim 2, characterized in that, One of the mounting seat and the mounting frame is provided with a buckle, and the other of the mounting seat and the mounting frame is provided with a slot matching the buckle, and the mounting seat and the mounting frame are connected through the buckle and the slot.
4. The sterilization component according to claim 2, characterized in that, First grooves are arranged on opposite sides of the mounting seat; Second grooves are arranged on opposite sides of the mounting frame, the first grooves and the second grooves enclose a through hole, and both ends of the xenon lamp module pass through the through hole.
5. The sterilization component according to claim 2, characterized in that, The mounting seat includes: a light-transmitting portion, the light-transmitting portion is arranged corresponding to the xenon lamp module, and the light-transmitting portion is used for transmitting the light of the xenon lamp module.
6. The sterilization component according to claim 2, characterized in that, The first mounting portion further includes: A reflector, the reflector covers the xenon lamp module, and the reflector is located between the xenon lamp module and the mounting frame.
7. The sterilization component according to claim 1, characterized in that, It further includes: A sealing ring, arranged between the first housing and the second housing for sealing the second mounting portion.
8. The sterilization component according to any one of claims 1 to 6, characterized in that, It further includes: A wire passing hole, arranged on the first housing; A wire harness, passing through the wire passing hole, and the wire harness is used for connecting the xenon lamp module and the electrical component.
9. The sterilization component according to claim 8, characterized in that, A seal, arranged on the wire passing hole for sealing the wire passing hole.
10. The sterilization component according to claim 1, characterized in that, The elastic seal is a silicone seal.
11. A material storage device, characterized in that, it includes: A main body, the main body including a storage cavity; and The sterilization component according to any one of claims 1 to 10, the sterilization component is disposed on the main body, and the xenon lamp module is used for sterilizing the materials in the storage cavity.
12. The material storage device according to claim 11,[ wherein,[ the main body includes:[ a body, the body including an installation cavity; a drawer, the drawer is slidably disposed in the installation cavity, and the drawer includes the storage cavity; wherein, the sterilization component is installed on the body.
Citation Information
Patent Citations
Pulse xenon lamp
CN213242490U
Sterilizing lamp module and intelligent household appliance
CN214181177U