Conductive assembly and cleaning apparatus
By designing conductive components that accommodate cavities and relative assembly holes in cleaning equipment, and utilizing the reset drive of elastic elements to make contact with the hand, the problem of complex assembly of conductive components is solved, achieving rapid assembly and cost reduction.
Patent Information
- Application Number
- PCT/CN2025/076627
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-04-25
- Filing Date
- 2025-02-10
- Publication Date
- 2025-10-30
AI Technical Summary
The assembly process of conductive components on cleaning equipment is relatively complex, affecting assembly efficiency and cost.
A conductive component is provided, including an assembly, a conductive element, and an elastic element. By providing a receiving cavity and a corresponding assembly hole, the guide end of the conductive element can be movably inserted through the first assembly hole. The elastic element is fitted onto the conductive element, and after compression, it resets and drives the contact end to extend out of the assembly hole to contact the user's hand, thereby achieving rapid assembly.
It simplifies the assembly process of conductive components, improves assembly efficiency, reduces manufacturing costs, and enhances the user experience.
Smart Images

Figure CN2025076627_30102025_PF_FP_ABST
Abstract
Description
Conductive components and cleaning equipment Cross-reference to related applications
[0001] This application claims priority to Chinese Patent Application No. 202420882970.8, filed on April 25, 2024, the entire contents of which are incorporated herein by reference. Technical Field
[0002] This disclosure belongs to the field of household appliance technology, specifically relating to a conductive component and a cleaning device. Background Technology
[0003] Handheld cleaning devices such as vacuum cleaners easily attract charged particles to their fans during operation. When these charged particles accumulate to a certain threshold, they can damage the fans and other electronic components. Therefore, a conductive structure is incorporated into cleaning devices. During use, this structure connects the user's skin to the grounding portion of the circuit board inside the device, thus transferring charged particles and preventing long-term accumulation that could lead to malfunction.
[0004] In related technologies, the process of assembling conductive components into cleaning equipment such as vacuum cleaners is a relatively complex technical problem with room for improvement. Summary of the Invention
[0005] This disclosure provides a conductive component and a cleaning device, which aims to at least partially solve the technical problem of the relatively complex assembly process of the conductive component into cleaning devices such as vacuum cleaners, so as to improve assembly efficiency.
[0006] In a first aspect of this disclosure, a conductive component is provided for use in a cleaning device. The conductive component includes: an assembly having a receiving cavity, the receiving cavity having opposing first and second mounting holes; a conductive element having a guide end and a contact end, the guide end being movably inserted through the first mounting hole and the head of the contact end extending out of the second mounting hole; and an elastic element disposed within the receiving cavity and fitted onto the conductive element.
[0007] In a second aspect of this disclosure, a cleaning device is also provided, the cleaning device comprising: a housing having a grip portion; the aforementioned conductive component disposed within the housing, wherein the head of the contact end of the conductive element of the conductive component extends out of the housing, and when a user grips the grip portion, the user's hand can contact the contact end of the conductive element; and a circuit board disposed within the housing, the circuit board having a ground portion and an elastic element of the conductive component. Attached Figure Description
[0008] To more clearly illustrate the technical solutions in the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0009] Figure 1 shows a schematic diagram of the structure of a conductive component according to one or more embodiments of the present disclosure;
[0010] Figure 2 shows a structural schematic diagram of the conductive component in Figure 1 from another perspective;
[0011] Figure 3 shows an enlarged schematic diagram of point A in Figure 1;
[0012] Figure 4 shows an enlarged schematic diagram of point B in Figure 2;
[0013] Figure 5 shows a structural schematic diagram of an assembly of a conductive component according to one or more embodiments of the present disclosure;
[0014] Figure 6 shows a schematic diagram of the structure of a conductive element of a conductive component according to one or more embodiments of the present disclosure;
[0015] Figure 7 shows a schematic diagram of the structure of the elastic element of a conductive component according to one or more embodiments of the present disclosure;
[0016] Figure 8 shows a schematic diagram of the layout structure of a cleaning device according to one or more embodiments of the present disclosure; and
[0017] Figure 9 shows a schematic diagram of the structure of the cleaning equipment in Figure 8 for removing the housing.
[0018] The correspondence between the reference numerals and component names is as follows:
[0019] 1. Conductive component; 11. Assembly part; 111. Assembly port; 112. First assembly hole; 113. Second assembly hole; 114. Receiving cavity; 115. First side; 116. Second side; 117. Positioning part; 118. Limiting part; 12. Conductive element; 121. Contact end; 122. Guide end; 123. Blocking part; 13. Elastic element; 131. Contraction section; 132. Expansion section; 133. Connection end; 2. Housing; 21. Grip part; 3. Circuit board; 4. Bracket. Detailed Implementation
[0020] To enable those skilled in the art to more clearly understand this disclosure, the technical solutions in the embodiments of this disclosure will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this disclosure, and not all of them. Based on the embodiments of this disclosure, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this disclosure.
[0021] In related technologies, the assembly portion of a conductive component used to transfer charged particles includes at least two parts: a mounting component and a conductive component. The mounting component and the conductive component must first be assembled together to form the conductive component, which is then mounted onto the cleaning equipment. This not only involves at least two assembly steps, impacting assembly efficiency, but also, due to the modular design of the mounting component, makes the assembly process relatively complex, further affecting assembly efficiency.
[0022] Based on the above-mentioned technical problems, this disclosure provides a conductive component and a cleaning device, which aims to at least partially solve the technical problem of the relatively complex assembly process of the conductive component into cleaning devices such as vacuum cleaners, so as to improve assembly efficiency and reduce manufacturing costs.
[0023] In a first aspect of this disclosure, a conductive component for use in cleaning equipment is provided. As shown in Figures 1-7, the conductive component 1 includes a mounting part 11, a conductive element 12, and an elastic element 13. The mounting part 11 is provided with a receiving cavity 114, on which opposing first mounting holes 112 and second mounting holes 113 are provided. The conductive element 12 is provided with a guide end 122 and a contact end 121. The guide end 122 is movably inserted through the first mounting hole 112, and the head of the contact end 121 extends out of the second mounting hole 113 to contact the user's hand. The elastic element 13 is disposed within the receiving cavity 114 and fitted onto the conductive element 12.
[0024] The conductive component 1 provided in this disclosure has a receiving cavity 114 in its assembly 11. The receiving cavity 114 has opposing first and second mounting holes 112 and 113, allowing the guide end 122 of the conductive element 12 to movably pass through the first mounting hole 112. Therefore, the conductive element 12 can be operated so that the guide end 122 of the conductive element 12 is first assembled into the first mounting hole 112. Since the elastic element 13 is disposed in the receiving cavity 114 and fitted onto the conductive element 12, it is compressed during the process of assembling the guide end 122 of the conductive element 12 into the first mounting hole 112. Since the head of the contact end 121 can protrude into the second mounting hole 113, the conductive element 12 is released when the guide end 122 of the conductive element 12 is in place. The elastic element 13 deforms and resets, driving the head of the contact end 121 of the conductive element 12 to protrude into the second mounting hole 113 to contact the user's hand, thus assembling the conductive element 12 into place. Therefore, only one assembly step is required: simply assembling the guide end 122 of the conductive element 12 into the first assembly hole 112 is sufficient to assemble the conductive element 12 into the assembly fitting 11. The assembly is simple, convenient, and quick. Since only one assembly fitting 11 is provided for loading the conductive element 12, manufacturing costs can also be reduced to a certain extent, making it highly practical.
[0025] As shown in Figures 3-5, the receiving cavity 114 may be provided with an assembly port 111, so that the conductive component 12 can be assembled into the receiving cavity 114 through the assembly port 111.
[0026] According to one embodiment of this disclosure, as shown in Figures 3-5, the receiving cavity 114 is generally square, having two sides in the length direction, two sides in the width direction, and two sides in the thickness direction. The length direction of the receiving cavity is defined as the first direction, the width direction as the second direction, and the thickness direction as the third direction, with each of the first, second, and third directions being perpendicular to each other. The assembly port 111 of the receiving cavity 114 can be located on one side of the receiving cavity 114 along the third direction. The two sides of the receiving cavity 114 along the first direction are defined as a first side portion 115 and a second side portion 116, respectively. A first assembly hole 112 of the receiving cavity 114 is located on the first side portion 115, and a second assembly hole 113 of the receiving cavity 114 is located on the second side portion 116. According to another embodiment of this disclosure, the assembly port 111 of the receiving cavity 114 can be located on one or both sides of the receiving cavity 114 along the third direction. In other embodiments, the receiving cavity 114 may also be generally cylindrical, with the assembly port 111 disposed on the circumferential surface of the receiving cavity 114, and the first side portion 115 and the second side portion 116 disposed at both ends of the receiving cavity 114, respectively.
[0027] According to one embodiment of this disclosure, referring to FIG6, the conductive element 12 can be cylindrical with a circular cross-section. The two ends of the conductive element 12 are the aforementioned contact end 121 and guide end 122, respectively. According to one embodiment of this disclosure, the cross-section of the conductive element 12 can also be square, rectangular, circular, triangular, etc., and is not limited thereto.
[0028] According to an embodiment of this disclosure, as shown in Figures 5 and 6, the guide end 122 of the conductive element 12 can swing within the first mounting hole 112. When assembling the guide end 122 of the conductive element 12 into the first mounting hole 112, the conductive element 12 can be tilted within the first mounting hole 112. After the guide end 122 of the conductive element 12 is assembled into the first mounting hole 112, the conductive element 12 is pressed down so that the contact end 121 of the conductive element 12 faces the second mounting hole 113. The conductive element 12 is released, and under the action of the elastic element 13 deforming and restoring, the contact end 121 of the conductive element 12 is driven to pass through the second mounting hole 113. The blocking portion 123 on the contact end 121 of the conductive element 12 is attached to the inner wall of the second side portion 116 of the receiving cavity 114, thereby enabling the conductive element 12 to be quickly assembled into the assembly 11.
[0029] According to one embodiment of this disclosure, as shown in Figures 3-6, the first mounting hole 112 can be an oblong hole. The length direction of the first mounting hole 112 can be set along a third direction. The width direction of the first mounting hole 112 is set along a second direction. The width dimension of the first mounting hole 112 can be slightly larger than the diameter of the guide end 122 of the conductive member 12. The length dimension of the first mounting hole 112 is larger than the diameter of the guide end 122 of the conductive member 12, so that the guide end 122 of the conductive member 12 can swing within the first mounting hole 112 along the length direction of the first mounting hole 112 (i.e., the third direction). That is, when the mounting opening 111 is located on one or both sides of the receiving cavity 114 in the third direction, the guide end 122 of the conductive member 12 can swing in a direction perpendicular to the mounting opening 111. According to another embodiment of this disclosure, the length direction of the first mounting hole 112 can also be inclined to the third direction, which can also realize the assembly of the guide end 122 of the conductive member 12 into the first mounting hole 112, and no limitation is made here. In this assembly method, the length of the conductive component 12 can be greater than the length of the accommodating cavity 114. When the conductive component 12 is in place, its guide end 122 is constrained by the first mounting hole 112, and its contact end 121 is constrained by the second mounting hole 113. This ensures that the conductive component 12 can only move within a limited space during use, thereby improving the user experience.
[0030] According to another embodiment of this disclosure, the guide end 122 of the conductive element 12 can reciprocate in a first direction within the first mounting hole 112. After the conductive element 12 is placed in the assembly cavity, the guide end 122 of the conductive element 12 is made coaxial with the first mounting hole 112, and then the conductive element 12 is moved towards the first mounting hole 112, thereby causing the guide end 122 of the conductive element 12 to pass through the first mounting hole 112 and compress the elastic element 13. At this time, the contact end 121 of the conductive element 12 is facing the second mounting hole 113. The conductive element 12 is released, and under the action of the elastic element 13 deformation and reset, the contact end 121 of the conductive element 12 is driven to pass through the second mounting hole 113. The blocking portion 123 on the contact end 121 of the conductive element 12 is attached to the inner wall of the second side portion 116 of the receiving cavity 114, thereby enabling the conductive element 12 to be quickly assembled into the assembly 11. The guide end 122 of the conductive element 12 passing through the first mounting hole 112 with a gap is sufficient to meet the assembly requirements. In this assembly method, the length of the conductive component 12 needs to be less than the length of the receiving cavity 114. Therefore, when the conductive component 12 is assembled in place, there is a certain distance between the guide end 122 of the conductive component 12 and the first side 115, so that the conductive component 12 may shake during use only due to the constraint and limitation of the elastic component 13. This is an alternative solution.
[0031] According to an embodiment of this disclosure, as shown in FIG6, the size of the contact end 121 of the conductive element 12 can be larger than the size of the guide end 122 to provide support for the assembly of the elastic element 13, and can also prevent the contact end 121 of the conductive element 12 from moving to the outside of the receiving cavity 114 through the first assembly hole 112 during the use of the cleaning equipment.
[0032] According to an embodiment of this disclosure, as shown in Figures 4 and 6, at least a portion of the peripheral surface of the contact end 121 of the conductive member 12 is provided with a blocking portion 123. The blocking portion 123 can be blocked by the inner wall of the receiving cavity 114 to limit the movement displacement of the contact end 121, thereby allowing the head of the conductive member 12 to extend out of the receiving cavity 114, so that the conductive member 12 can be assembled into the assembly 11.
[0033] According to one embodiment of this disclosure, as shown in FIG6, the blocking portion 123 can be integrally formed or otherwise disposed on the side of the contact end 121 facing the guide end 122, that is, the blocking portion 123 is disposed on the inner side of the contact end 121. The blocking portion 123 can be an annular plate disposed on the circumferential surface of the contact end 121, or it can be a protrusion disposed on part of the circumferential surface of the contact end 121, as long as it can fit against the inner wall of the second side portion 116 and restrict the conductive member 12 from continuing to move in the direction of the second mounting hole 113, no limitation is made here. As shown in FIG4 and FIG5, the elastic member 13 can be fitted onto the conductive member between the blocking portion 123 and the first side portion 115 of the receiving cavity 114.
[0034] According to another embodiment of this disclosure, the blocking part 123 may also be disposed in the middle of the peripheral surface of the contact end 121. Under this condition, the elastic member 13 may be fitted onto the conductive member 12 between the contact end 121 and the first side portion 115 of the receiving cavity 114, without limitation.
[0035] In related technologies, the elastic element 13 is mostly a cylindrical spring structure, with only its end face contacting the conductive element 12, resulting in a small and unstable contact area. Therefore, in some embodiments, the end of the elastic element 13 contacts the contact end 121 of the conductive element 12, and a portion of its surface also contacts the surface of the conductive element 12, thereby increasing the contact area between the elastic element 13 and the conductive element 12 and improving the stability of the contact between them.
[0036] As shown in Figure 7, the elastic member 13 may have a contraction section 131 and an expansion section 132. The contraction section 131 is fitted onto and in contact with the conductive member 12, so that a portion of the surface of the elastic member 13 is in contact with the surface of the conductive member 12. The expansion section 132 is fitted onto the conductive member 12 and has a gap between it and the conductive member 12 to facilitate the deformation of the elastic member 13.
[0037] As shown in Figures 3, 4, and 7, according to one embodiment of this disclosure, the contraction section 131 of the elastic member 13 abuts against the contact end 121. The expansion section 132 is connected to the contraction section 131. The expansion section 132 abuts against the first side portion 115 of the receiving cavity 114.
[0038] According to one embodiment of the present disclosure, the diameter of the expansion section 132 can gradually increase from the contact end 121 toward the guide end 122, so that the elastic member 13 is generally in a tower shape.
[0039] It should be noted that the above-mentioned contraction section 131 and expansion section 132 can both be provided in multiple segments, with multiple contraction sections 131 and expansion sections 132 arranged alternately, thereby increasing the contact area between the elastic element 13 and the conductive element 12 and improving the stability of the contact between the conductive element and the conductive element 12.
[0040] The elastic element 13 disclosed herein may also be an elastic element 13 with the above-described cylindrical spring structure, so that the end of the elastic element 13 contacts the contact end 121 of the conductive element 12, without limitation.
[0041] As shown in Figures 3, 4, and 7, in some embodiments, the end of the elastic member 13 adjacent to the first side portion 115 may be provided with a connecting end 133 for connection to the ground portion of the circuit board 3 via a wire. The first side portion 115 has a positioning portion 117 protruding from the assembly opening 111, and a limiting portion 118 may be provided inside the positioning portion 117. The connecting end 133 of the elastic member 13 is disposed below the limiting portion 118 to restrict the position of the connecting end 133 of the elastic member 13, preventing excessive movement of the elastic member 13 during use and causing the conductive component 1 and connecting wire to detach, thereby improving the reliability of the conductive component 1.
[0042] In a second aspect of this disclosure, a cleaning device is also provided. FIG8 shows a schematic diagram of the layout structure of the cleaning device according to some embodiments of this disclosure, and FIG9 shows a schematic diagram of the cleaning device in FIG8 without the housing. As shown in FIG8 and FIG9, the cleaning device includes a housing 2, the aforementioned conductive component 1, and a circuit board 3. The housing 2 is provided with a grip portion 21, which may be at least part of the handle of the cleaning device. The aforementioned conductive component 1 is disposed within the housing 2. The head of the contact end 121 of the conductive element 12 of the conductive component 1 extends out of the housing 2. When the user holds the grip portion 21, the user's hand can contact the contact end of the conductive element 12. The circuit board 3 is disposed within the housing 2 and has a ground portion, which is connected to the elastic element 13 of the conductive component 1. When the user holds the grip portion 21 of the housing 2, the user's hand contacts the contact end 121 of the conductive element 12 to connect to the ground portion of the circuit board 3, thereby transferring charged particles and avoiding the technical problem of long-term accumulation of charged particles leading to functional failure.
[0043] As shown in Figures 8 and 9, in the cleaning equipment with the above-mentioned conductive component 1, the conductive component 12 can be quickly assembled into the assembly 11. The assembly is simple, convenient and quick, and can reduce manufacturing costs to a certain extent, thus having good practicality.
[0044] As shown in Figure 9, a support 4 can be disposed inside the housing 2. The assembly 11 of the conductive component 1 is disposed on the support 4. The assembly 11 can be an assembly on the support 4 or a component integrally formed with the support 4, i.e., the assembly 11 is integrated into the support 4. A groove can be formed on one side of the support 4, which can be configured as the aforementioned receiving cavity 114, and the opening of the groove is the assembly port 111 of the receiving cavity 114. The conductive component 12 of the conductive component 1 is assembled in this groove.
[0045] As shown in Figure 9, the circuit board 3 can be set on the other side of the bracket 4. The wires connected to the elastic element 13 can be connected to the grounding part of the circuit board through screws or other connectors. This is the prior art and will not be described in detail here.
[0046] The cleaning device provided in this disclosure includes the conductive component 1 of any of the above-described technical solutions, and therefore also possesses all the beneficial effects of the conductive component 1 of the above-described technical solutions.
[0047] The cleaning equipment provided in this disclosure can be handheld cleaning equipment, such as vacuum cleaners, mops, floor scrubbers, etc., and there is no limitation herein.
[0048] In a first aspect of this disclosure, a conductive component is provided for use in a cleaning device. The conductive component includes: an assembly having a receiving cavity, the receiving cavity having opposing first and second mounting holes; a conductive element having a guide end and a contact end, the guide end being movably inserted through the first mounting hole and the head of the contact end extending out of the second mounting hole; and an elastic element disposed within the receiving cavity and fitted onto the conductive element.
[0049] The conductive component provided in this disclosure has a receiving cavity in its assembly. This cavity has opposing first and second mounting holes. The guide end of the conductive element can movably pass through the first mounting hole. Therefore, the conductive element can be operated to first assemble its guide end into the first mounting hole. Since an elastic element is located within the receiving cavity and fitted onto the conductive element, it is compressed during the assembly of the guide end into the first mounting hole. Because the head of the contact end can extend out of the second mounting hole, the conductive element is released once its guide end is in place. The elastic element deforms and resets, driving the head of the contact end of the conductive element through the second mounting hole to contact the user's hand. This allows the conductive element to be quickly assembled into the assembly, making assembly simple, convenient, and fast, and providing excellent practicality.
[0050] In some implementations, the guide end may oscillate within the first mounting hole.
[0051] In some embodiments, the receiving cavity is provided with an assembly port for assembling the conductive element.
[0052] In some implementations, the guide end may swing within the first mounting hole in a direction perpendicular to the mounting opening.
[0053] In some implementations, the guide end may reciprocate within the first mounting hole.
[0054] In some embodiments, at least a portion of the peripheral surface of the contact end is provided with a blocking portion, which can be blocked by the inner wall of the receiving cavity to limit the movable displacement of the contact end.
[0055] In some embodiments, the blocking portion is disposed on the side of the contact end facing the guide end.
[0056] In some embodiments, the elastic element is disposed between the blocking portion and the receiving cavity having the sidewall of the first mounting hole.
[0057] In some implementations, the end of the elastic element contacts the contact end.
[0058] In some embodiments, a portion of the surface of the elastic element is in contact with the surface of the conductive element.
[0059] In some embodiments, the elastic element has a contraction section and an expansion section, the contraction section being fitted onto the conductive element in contact with the ground, and the expansion section being fitted onto the conductive element with a gap.
[0060] In some embodiments, the contraction section abuts against the contact end, the expansion section is connected to the contraction section, and the expansion section abuts against the sidewall of the receiving cavity.
[0061] In some implementations, the diameter of the expansion section increases sequentially from the contact end toward the guide end.
[0062] In some embodiments, the elastic element has a connecting end near the conductive end, the connecting end being used to connect to the grounding portion of the circuit board; the side wall of the receiving cavity having the first mounting hole has a positioning portion protruding from the mounting opening, the inner side of the positioning portion has a limiting portion, and the connecting end of the elastic element is disposed below the limiting portion.
[0063] In a second aspect, this disclosure also provides a cleaning device, the cleaning device comprising: a housing having a grip portion; the aforementioned conductive component disposed within the housing, wherein the head of the contact end of the conductive element of the conductive component extends out of the housing, and when a user grips the grip portion, the user's hand can contact the contact end of the conductive element; and a circuit board disposed within the housing, the circuit board having a ground portion and an elastic element of the conductive component.
[0064] Cleaning equipment equipped with the aforementioned conductive components allows for the rapid assembly of conductive parts into the assembly, making assembly simple, convenient, and quick, and demonstrating excellent practicality.
[0065] In this disclosure, unless otherwise expressly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.
[0066] In the description of this disclosure, it should be understood that the terms “center,” “longitudinal,” “lateral,” “length,” “width,” “thickness,” “upper,” “lower,” “front,” “rear,” “left,” “right,” “vertical,” “horizontal,” “top,” “bottom,” “inner,” “outer,” “clockwise,” and “counterclockwise” indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this disclosure and simplifying the description, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this disclosure.
[0067] In this disclosure, unless otherwise expressly specified and limited, the terms "connection," "fixed," etc., should be interpreted broadly. For example, "fixed" can mean a fixed connection, a detachable connection, or an integral part; it can mean a mechanical connection or an electrical connection; it can mean a direct connection or an indirect connection through an intermediate medium; it can mean the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this disclosure according to the specific circumstances.
[0068] Furthermore, the use of terms such as "first" and "second" in this disclosure is for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, features defined with "first" or "second" may explicitly or implicitly include one or more features. In the description of this disclosure, "multiple" means two or more, unless otherwise explicitly specified.
[0069] Although embodiments of the present disclosure have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present disclosure, the scope of which is defined by the claims and their equivalents.
Claims
1. A conductive component for use in cleaning equipment, the conductive component comprising: The assembly is provided with a receiving cavity, and the receiving cavity is provided with a first assembly hole and a second assembly hole; A conductive component is provided with a guide end and a contact end. The guide end is movably inserted through the first mounting hole, and the head of the contact end extends out of the second mounting hole to contact the user's hand. as well as An elastic element is disposed within the receiving cavity and fitted onto the conductive element.
2. The conductive component according to claim 1, wherein, The guide end is oscillating within the first mounting hole.
3. The conductive component according to claim 2, wherein, The receiving cavity is provided with an assembly port for assembling the conductive component.
4. The conductive component according to claim 3, wherein, The guide end can swing within the first assembly hole in a direction perpendicular to the assembly opening.
5. The conductive component according to claim 1, wherein, The guide end is reciprocating within the first mounting hole.
6. The conductive component according to any one of claims 1-5, wherein, At least a portion of the peripheral surface of the contact end is provided with a blocking portion, which can be blocked by the inner wall of the receiving cavity to limit the movable displacement of the contact end.
7. The conductive component according to claim 6, wherein, The blocking portion is disposed on the side of the contact end facing the guide end.
8. The conductive component according to claim 7, wherein, The elastic element is disposed between the blocking portion and the side wall of the receiving cavity having the first assembly hole.
9. The conductive component according to any one of claims 1-5 and 7-8, wherein, The end of the elastic element contacts the contact end.
10. The conductive component according to claim 9, wherein, A portion of the surface of the elastic element is in contact with the surface of the conductive element.
11. The conductive component according to any one of claims 1-5 and 7-8, wherein, The elastic element has a contraction section and an expansion section. The contraction section is fitted onto the conductive element in contact with the ground, and the expansion section is fitted onto the conductive element with a gap.
12. The conductive component according to claim 11, wherein, The contraction section abuts against the contact end, the expansion section is connected to the contraction section, and the expansion section abuts against the side wall of the receiving cavity.
13. The conductive component according to claim 12, wherein, The diameter of the expansion section increases sequentially from the contact end to the guide end.
14. The conductive component according to any one of claims 1-5, 7-8, 10, and 12-13, wherein, The elastic element has a connection end near the conductive end, and the connection end is used to connect to the ground part of the circuit board. The side wall of the receiving cavity with the first assembly hole has a positioning part protruding from the assembly opening, and a limiting part is provided on the inner side of the positioning part. The connecting end of the elastic member is located below the limiting part.
15. A cleaning device, comprising: The housing is equipped with a gripping part; The conductive component as described in any one of claims 1-14 is disposed within the housing, wherein the head of the contact end of the conductive element of the conductive component extends out of the housing, and when the user holds the grip portion, the user's hand can contact the contact end of the conductive element. as well as A circuit board is disposed within the housing, the circuit board having a grounding portion, the grounding portion being connected to the elastic element of the conductive component.
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