Testing components and bedding
By adjusting the initial force of the elastic member on the conductive member, the problem of fixed sensitivity of the pressure sensor is solved, and the adjustable sensitivity of the detection component is achieved to meet the actual needs of users.
Patent Information
- Application Number
- CN202410839258.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-26
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2044-06-26
AI Technical Summary
The existing pressure sensors are fixed in sensitivity on bedding such as mattresses, sofas, pillows, etc., which cannot meet the actual needs of users.
By adjusting the initial force of the elastic member on the conductive member, and using the base to adjust the sensitivity of the detection member, the conductive member contacts and disconnects from the positive electrode and the negative electrode parts under different preset values, and the signal feedback is flexibly adjusted.
The sensitivity of the detection component can be adjusted according to the needs, meeting the actual needs of different users, and achieving flexible control of signal feedback.
Smart Images

Figure CN118837003B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of pressure detection, in particular to a detection component and bedding. Background Art
[0002] At present, the application of smart home products is becoming more and more widespread. Mattresses, sofas, pillows and other bedding use pressure sensors to detect whether a user is using them. For example, if the pressure sensor detects that a user is lying on a mattress, sofa, pillow and other bedding, the central controller controls the massage device to massage the user through the pressure signal fed back by the pressure sensor.
[0003] The pressure sensors currently used in bedding such as mattresses, sofas, and pillows are all standard products. Standard pressure sensors consist of a pressure-sensitive element and a signal processing unit. When the pressure-sensitive element is subjected to pressure, the signal processing unit immediately feeds back a pressure signal. Its sensitivity is fixed and cannot meet the actual needs of users. Summary of the Invention
[0004] The object of the present invention is to provide a detection component, which uses a base to adjust the initial force of the elastic member on the conductive member to adjust the sensitivity of the detection component to meet actual needs.
[0005] Another object of the present invention is to provide bedding that uses the above detection components to meet actual needs.
[0006] To achieve this object, the present invention adopts the following technical solutions:
[0007] In a first aspect, a detection component is provided, including:
[0008] A mounting seat is provided with a conductive member sliding along the X-axis direction;
[0009] A positive electrode member and a negative electrode member are fixedly mounted on the mounting seat, and when the conductive member contacts the positive electrode member and the negative electrode member, the positive electrode member and the negative electrode member can be electrically connected;
[0010] A base, adjustable along the X-axis direction and mounted on the mounting seat;
[0011] an elastic member disposed between the base and the conductive member, wherein the base is used to adjust the initial force of the elastic member on the conductive member, and the elastic member is used to drive the conductive member to abut against the positive electrode member and the negative electrode member;
[0012] The pressure-driven component is used to generate a driving force under pressure. When the driving force is greater than the initial force, the pressure-driven component drives the conductive component to separate from the positive electrode component and the negative electrode component.
[0013] As an optional technical solution, the pressure-driven part is an air bag, a mounting hole is provided inside the mounting seat, the conductive part is located in the mounting hole, the conductive part separates the mounting hole into a first cavity and a second cavity that are not connected to each other, the positive electrode part and the negative electrode part are both located in the first cavity, and the first cavity is used to connect the air bag.
[0014] As an optional technical solution, the conductive member is a sphere.
[0015] As an optional technical solution, the base is threadedly connected to an end of the mounting hole away from the positive electrode member and the negative electrode member.
[0016] As an optional technical solution, the elastic member is a cylindrical spring, one end of the base extending into the mounting hole is fixedly connected to a fixing seat, the elastic member is sleeved around the circumference of the fixing seat, and the fixing seat is used to support the elastic member.
[0017] As an optional technical solution, a first conductive rubber is provided on the side of the positive electrode member facing the conductive member;
[0018] A second conductive rubber is provided on a side of the negative electrode member facing the conductive member.
[0019] As an optional technical solution, the mounting seat includes a mounting section and a connecting section, the inner diameter of the through hole of the mounting section is larger than the inner diameter of the through hole of the connecting section, the conductive member is slidably arranged in the through hole of the mounting section, and the first conductive rubber and the second conductive rubber are provided on the side of the connecting section facing the mounting section.
[0020] As an optional technical solution, a conductive rubber ring is provided on a side of the connecting section facing the mounting section. The conductive rubber ring includes an isolation portion and a conductive portion. The isolation portion separates the conductive portion into the first conductive rubber and the second conductive rubber.
[0021] As an optional technical solution, the outer wall of the connecting section and the outer wall of the mounting section form a shoulder, and the negative electrode component and the positive electrode component are mounted on the shoulder.
[0022] As an optional technical solution, an outer cover is provided around the periphery of the connecting section, and the positive electrode component and the negative electrode component are both located inside the outer cover.
[0023] In a second aspect, bedding is provided, comprising a bedding body and the above-mentioned detection component, wherein the detection component is disposed inside the bedding body.
[0024] As an optional technical solution, the bedding further includes a supporting airbag, which is installed inside the bedding body, and the pressure-driven component is the supporting airbag.
[0025] Beneficial effects of the present invention:
[0026] The present invention provides a detection component, which includes a mounting seat, a positive electrode member, a negative electrode member, a base, an elastic member and a pressure-driven member. The mounting seat is provided with a conductive member sliding along the X-axis direction; the positive electrode member and the negative electrode member are both fixedly arranged on the mounting seat, and when the conductive member contacts the positive electrode member and the negative electrode member, the positive electrode member and the negative electrode member can be electrically conductive; the base is adjustably installed on the mounting seat along the X-axis direction; the elastic member is arranged between the base and the conductive member, and the base is used to adjust the initial action of the elastic member on the conductive member, and the elastic member is used to drive the conductive member to abut against the positive electrode member and the negative electrode member; the pressure-driven member is used to generate a driving force under pressure, and when the driving force is greater than the initial action force, the pressure-driven member drives the conductive member to separate from the positive electrode member and the negative electrode member. Under normal conditions, the pressurized driving member is not subjected to external force, and the pressurized driving member does not generate a driving force to drive the conductive member away from the positive and negative pole members. The force exerted by the elastic member on the conductive member keeps the conductive member in contact with the positive and negative pole members, and the conductive member electrically conducts the positive and negative pole members. When the user exerts force on the bedding, the pressurized driving member exerts a driving force on the conductive member away from the positive and negative pole members. When the driving force is greater than the initial force of the elastic member, the conductive member moves away from the positive and negative pole members, and the positive and negative pole members are disconnected, realizing signal feedback. When the sensitivity needs to be improved, the base and the installation are changed. The distance between the base and the mounting seat reduces the initial force of the elastic member on the conductive member to a first preset value. As long as the force applied by the user to the conductive member is greater than the first preset value, the conductive member can be urged away from the positive and negative members, disconnecting the positive and negative members and achieving signal feedback. When the sensitivity needs to be reduced, the distance between the base and the mounting seat is changed again, increasing the initial force of the elastic member on the conductive member to a second preset value. Only when the force applied by the user to the conductive member is greater than the second preset value can the conductive member be urged away from the positive and negative members, disconnecting the positive and negative members and achieving signal feedback. The sensitivity of the detection component can be adjusted as needed to meet the actual needs of the user.
[0027] The present invention also provides bedding that adopts the above-mentioned detection component to meet the needs of users. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] Figure 1 is an exploded view of the detection component of the present invention (the pressure-driven component is not shown);
[0029] Figure 2 is a cross-sectional view of the detection component of the present invention (the pressure-driven member is not shown and the initial force is maximum);
[0030] Figure 3 is a cross-sectional view of the detection component of the present invention (the pressure-driven member is not shown and the initial force is reduced);
[0031] Figure 4 It is a structural schematic diagram of the detection component of the present invention (the pressure-driven component is an air bag).
[0032] In the picture:
[0033] 1. Mounting seat; 11. First cavity; 12. Second cavity; 13. Mounting section; 14. Connecting section;
[0034] 2. Conductive parts;
[0035] 3. Positive electrode;
[0036] 4. Negative electrode;
[0037] 5. Base;
[0038] 6. Elastic parts;
[0039] 7. Fixed seat; 71. Connecting part;
[0040] 8. Conductive rubber ring; 81. First conductive rubber; 82. Second conductive rubber;
[0041] 9. Outer cover;
[0042] 10. Pressure-driven parts;
[0043] 101. Screws. DETAILED DESCRIPTION
[0044] The present invention will be further described in detail below with reference to the accompanying drawings and examples. It will be understood that the specific embodiments described herein are intended only to illustrate the present invention and are not intended to limit the present invention. It should also be noted that, for ease of description, the accompanying drawings only illustrate portions relevant to the present invention, not all structures.
[0045] In the description of the present invention, unless otherwise expressly specified or limited, the terms "connected," "connected," and "fixed" should be understood in a broad sense. For example, they may refer to fixed connections, detachable connections, or integration; mechanical connections or electrical connections; direct connections or indirect connections through an intermediate medium; and internal communication between two components or interaction between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention in specific circumstances.
[0046] In the present invention, unless otherwise expressly specified or limited, a first feature being "above" or "below" a second feature may include the first and second features being in direct contact, or may include the first and second features being in contact not directly but through another feature between them. Furthermore, a first feature being "above," "above," and "above" a second feature may include the first feature being directly above or obliquely above the second feature, or may simply mean that the first feature is higher in level than the second feature. A first feature being "below," "below," and "below" a second feature may include the first feature being directly below or obliquely below the second feature, or may simply mean that the first feature is lower in level than the second feature.
[0047] In the description of this embodiment, the terms "upper," "lower," "right," and other orientations or positional relationships are based on the orientations or positional relationships shown in the accompanying drawings and are intended solely for ease of description and simplified operation. They do not indicate or imply that the devices or components referred to must have, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on the present invention. Furthermore, the terms "first" and "second" are used solely for descriptive purposes and have no special meanings.
[0048] Example 1
[0049] like Figures 1 to 4 As shown, this embodiment provides a detection component, which includes a mounting seat 1, a positive electrode member 3, a negative electrode member 4, a base 5, an elastic member 6 and a pressure-driven member 10. The mounting seat 1 is provided with a conductive member 2 sliding along the X-axis direction; the positive electrode member 3 and the negative electrode member 4 are both fixedly arranged on the mounting seat 1, and when the conductive member 2 contacts the positive electrode member 3 and the negative electrode member 4, the positive electrode member 3 and the negative electrode member 4 can be electrically conductive; the base 5 is adjustably installed on the mounting seat 1 along the X-axis direction; the elastic member 6 is arranged between the base 5 and the conductive member 2, and the base 5 is used to adjust the initial force of the elastic member 6 on the conductive member 2, and the elastic member 6 is used to drive the conductive member 2 to abut against the positive electrode member 3 and the negative electrode member 4; the pressure-driven member 10 is used to generate a driving force under pressure, and when the driving force is greater than the initial force, the pressure-driven member 10 drives the conductive member 2 to separate from the positive electrode member 3 and the negative electrode member 4.
[0050] The detection component of this embodiment can be applied to a variety of products, such as mattresses, sofas, chairs, pillows and other bedding. This embodiment applies the detection component to mattresses, but does not limit the application field of the detection component.
[0051] Specifically, under normal conditions, the pressurized driving member 10 is not subjected to an external force, and the pressurized driving member 10 does not generate a driving force to drive the conductive member 2 away from the positive electrode member 3 and the negative electrode member 4. The force exerted by the elastic member 6 on the conductive member 2 keeps the conductive member 2 in contact with the positive electrode member 3 and the negative electrode member 4, and the conductive member 2 electrically conducts the positive electrode member 3 and the negative electrode member 4. When the user exerts a force on the bedding, the pressurized driving member 10 exerts a driving force on the conductive member 2 away from the positive electrode member 3 and the negative electrode member 4. When the driving force is greater than the initial force of the elastic member, the conductive member 2 moves away from the positive electrode member 3 and the negative electrode member 4, and the positive electrode member 3 and the negative electrode member 4 are disconnected, realizing signal feedback. When the sensitivity needs to be improved, the change The distance between the base 5 and the mounting seat 1 reduces the initial force of the elastic member 6 on the conductive member 2 to a first preset value. As long as the force applied by the user to the conductive member 2 is greater than the first preset value, the conductive member 2 can be urged to move away from the positive electrode member 3 and the negative electrode member 4, so that the positive electrode member 3 and the negative electrode member 4 are disconnected, thereby realizing signal feedback. When the sensitivity needs to be reduced, the distance between the base 5 and the mounting seat 1 is changed again, so that the initial force of the elastic member 6 on the conductive member 2 is increased to a second preset value. Only when the force applied by the user to the conductive member 2 is greater than the second preset value can the conductive member 2 be urged to move away from the positive electrode member 3 and the negative electrode member 4, so that the positive electrode member 3 and the negative electrode member 4 are disconnected, thereby realizing signal feedback.
[0052] The sensitivity of the detection component can be adjusted according to actual needs, which can meet the needs of different users and can be widely used in different household products.
[0053] The positive electrode member 3 and the negative electrode member 4 are respectively electrically connected to the signal feedback device, which is a prior art and will not be described in detail in this embodiment.
[0054] In some other embodiments, the positive electrode member 3 and the negative electrode member 4 are two independent adjustable resistors. When the elastic member 6 slides along the X-axis direction, the contact position between the conductive member 2 and the positive electrode member 3, and the contact position between the conductive member 2 and the negative electrode member 4 change, and the total resistance of the connection changes, thereby changing the current size. Whether the user is lying on the mattress or the user's weight is determined based on the current signal.
[0055] In some other embodiments, the detection component is placed vertically, that is, the X-axis direction is the vertical direction. When users of different weights sit on the mattress, the mattress has different depression depths. Only when the depression depth reaches a preset value can the conductive member 2 be contacted and kept away from the positive electrode member 3 and the negative electrode member 4, thereby realizing signal feedback.
[0056] In some other embodiments, the pressure-driven member 10 is a transmission rod, which is connected to the conductive member 2. When the detection component is applied to the mattress, the transmission rod is set vertically. When the user sits on the mattress, the transmission rod pushes the conductive member 2 away from the positive electrode member 3 and the negative electrode member 4, thereby realizing signal feedback.
[0057] In this embodiment, the pressure-driven component 10 is an air bag, a mounting hole is provided inside the mounting seat 1, and the conductive component 2 is located in the mounting hole. The conductive component 2 separates the mounting hole into a first cavity 11 and a second cavity 12 that are not connected to each other. The positive electrode component 3 and the negative electrode component 4 are both located in the first cavity 11, and the first cavity 11 is used to connect the air bag.
[0058] The detection component is installed inside the mattress. When the user sits on the mattress, the air bag is pressurized and the air pressure inside the air bag increases, making the air pressure in the first cavity 11 greater than the air pressure in the second cavity 12, prompting the conductive part 2 to move away from the positive electrode part 3 and the negative electrode part 4, thereby realizing signal feedback.
[0059] The distance between the positive electrode member 3 and the negative electrode member 4 is smaller than the diameter of the conductive member 2 . When the elastic member 6 pushes the conductive member 2 to abut against the positive electrode member 3 and the negative electrode member 4 , the conductive member 2 is blocked and stops moving.
[0060] In this embodiment, the elastic member 6 is located in the second cavity 12, and the elastic member 6 applies an elastic thrust to the conductive member 2. When the distance between the base 5 and the mounting seat 1 is increased, the initial force of the elastic member 6 on the conductive member 2 decreases. When the distance between the base 5 and the mounting seat 1 is reduced, the initial force of the elastic member 6 on the conductive member 2 increases. In some other embodiments, the elastic member 6, the positive electrode member 3 and the negative electrode member 4 are located on the same side of the conductive member 2, and the elastic member 6 applies an elastic pulling force to the conductive member 2. When the distance between the base 5 and the mounting seat 1 is increased, the initial force of the elastic member 6 on the conductive member 2 increases. When the distance between the base 5 and the mounting seat 1 is reduced, the initial force of the elastic member 6 on the conductive member 2 decreases.
[0061] In this embodiment, the conductive member 2 is a sphere, and the outer wall of the sphere contacts the inner wall of the mounting hole more closely, resulting in a better sealing effect, thereby preventing air leakage between the first cavity 11 and the second cavity 12 .
[0062] In some other embodiments, the conductive element 2 is a disc structure or an arc structure.
[0063] In this embodiment, the elastic member 6 is a cylindrical spring, the end of which is more compatible with the outer wall of the spherical conductive member 2, and the connection stability is better.
[0064] In some other embodiments, the elastic member 6 is a curved spring.
[0065] In this embodiment, the base 5 is threadedly connected to the mounting base 1. The initial force of the elastic member 6 on the conductive member 2 can be changed by rotating the base 5 relative to the mounting base 1, which is easy to operate and has higher adjustment accuracy.
[0066] In some other embodiments, the base 5 and the mounting base 1 are connected by a snap-fit connection. One of the mounting base 1 and the base 5 is provided with a plurality of slots spaced apart along the X-axis direction, and the other one is provided with a snap-fit, which can be snapped into any slot. When the snap-fit is snapped into different slots, the initial force of the elastic member 6 on the conductive member 2 can be changed.
[0067] In this embodiment, the inner wall of the mounting hole at the end away from the positive and negative electrode members 3 and 4 is provided with internal threads, and the periphery of the base 5 is provided with external threads. The base 5 is threadedly connected to the end of the mounting hole away from the positive and negative electrode members 3 and 4. Positioning the base 5 at the end of the mounting base 1 away from the airbag makes it easier to adjust the position of the base 5.
[0068] In some other embodiments, the outer wall of the mounting hole away from the positive electrode component 3 and the negative electrode component 4 is provided with an external thread, the inner wall of the base 5 is provided with an internal thread, and the base 5 is sleeved on the outer periphery of the mounting hole away from the positive electrode component 3 and the negative electrode component 4.
[0069] In this embodiment, the elastic member 6 is a cylindrical spring. One end of the base 5 extending into the mounting hole is fixedly connected to a fixing seat 7. The elastic member 6 is sleeved around the fixing seat 7. The fixing seat 7 is used to support the elastic member 6.
[0070] The fixing seat 7 plays the role of bearing, guiding and limiting the cylindrical spring, preventing the cylindrical spring from deviating from the preset telescopic path or separating from the conductive member 2.
[0071] In this embodiment, the base 5 and the fixing base 7 are fixedly connected by screws 101 .
[0072] Optionally, the base 5 is provided with a through hole extending along the X-axis direction, and the end of the fixing seat 7 away from the conductive part 2 is provided with a connecting portion 71, which extends into the through hole of the base 5, and the connecting portion 71 is provided with a through hole extending along the X-axis direction. The screw 101 passes through the through hole of the base 5 and is connected to the through hole of the connecting portion 71, thereby locking the base 5 and the fixing seat 7, so that the fixing seat 7 can rotate synchronously with the base 5.
[0073] Optionally, the base 5 and the mounting base 1 are made of non-conductive materials to prevent short circuits and electric shocks to users. Specifically, the base 5 and the mounting base 1 are made of plastic materials.
[0074] Optionally, a first conductive rubber 81 is provided on a side of the positive electrode member 3 facing the conductive member 2 ; a second conductive rubber 82 is provided on a side of the negative electrode member 4 facing the conductive member 2 .
[0075] Conductive rubber is an existing material with good conductivity and buffering capacity. The positive electrode member 3 and the negative electrode member 4 are both made of metal materials. The positive electrode member 3, the negative electrode member 4 and the conductive member 2 all have good rigidity. In this embodiment, conductive rubber is used to isolate and protect the positive electrode member 3 and the negative electrode member 4 to prevent rigid collision between the conductive member 2 and the positive electrode member 3 and the negative electrode member 4, and to avoid excessive electric sparks, thereby extending the service life of the detection component.
[0076] Both the positive electrode component 3 and the negative electrode component 4 pass through the wall of the mounting base 1. One end of each is located inside the mounting base 1 and the other end is located outside the mounting base 1. This easily creates a gap and causes air leakage. In this embodiment, the first conductive rubber 81 can cover the positive electrode component 3 and the second conductive rubber 82 can cover the negative electrode component 4, thereby reducing the risk of air leakage.
[0077] In this embodiment, the mounting base 1 includes a mounting section 13 and a connecting section 14. The inner diameter of the through hole of the mounting section 13 is larger than the inner diameter of the through hole of the connecting section 14. The conductive member 2 is slidably arranged in the through hole of the mounting section 13. The side of the connecting section 14 facing the mounting section 13 is provided with a first conductive rubber 81 and a second conductive rubber 82.
[0078] The elastic member 6 applies elastic thrust to the conductive member 2 . Since the inner diameter of the through hole of the connecting section 14 is smaller than that of the through hole of the mounting section 13 , the connecting section 14 acts as a barrier to prevent the first conductive rubber 81 and the second conductive rubber 82 from deviating.
[0079] In this embodiment, a conductive rubber ring 8 is provided on the side of the connecting section 14 facing the mounting section 13 . The conductive rubber ring 8 includes an isolation portion and a conductive portion. The isolation portion separates the conductive portion into a first conductive rubber 81 and a second conductive rubber 82 .
[0080] In this embodiment, the outer wall of the connecting section 14 and the outer wall of the mounting section 13 form a shoulder, and the negative electrode component 4 and the positive electrode component 3 are mounted on the shoulder, which serves to store and protect the positive electrode component 3 and the negative electrode component 4 and facilitates lead-in.
[0081] Optionally, an outer cover 9 is provided around the periphery of the connecting section 14 , and the positive electrode component 3 and the negative electrode component 4 are both located inside the outer cover 9 , so as to isolate and protect the positive electrode component 3 and the negative electrode component 4 .
[0082] Example 2
[0083] This embodiment provides bedding, which includes a bedding body and a detection component as described in Example 1. The detection component is disposed within the bedding body. The detection component is capable of detecting whether a user is lying on the bedding. The bedding may be a household product such as a mattress, sofa, or pillow. For example, in the case of a mattress, the detection component is capable of detecting whether a user is in or out of bed.
[0084] Example 3:
[0085] This embodiment provides bedding, comprising a bedding body and a detection component as described in Example 1, disposed within the bedding body. The bedding also includes a supporting airbag, and the pressure-driven component 10 is the supporting airbag. The bedding may be a home product such as an airbag mattress, airbag sofa, or airbag pillow equipped with a supporting airbag. For example, using the airbag of the airbag mattress as the pressure-driven component 10 of the detection component simplifies the structure of the detection component. The detection component can detect when a user enters or leaves the bed.
[0086] Obviously, the above embodiments of the present invention are merely examples for the purpose of clearly illustrating the present invention and are not intended to limit the embodiments of the present invention. A person skilled in the art would be able to make various obvious changes, readjustments, and substitutions without departing from the scope of protection of the present invention. It is not necessary and impossible to enumerate all embodiments here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the claims of the present invention.
Claims
1. A detection component, characterized in that: include: A mounting seat (1) is provided with a conductive member (2) slidably arranged along the X-axis direction, wherein the conductive member (2) is a sphere; A positive electrode member (3) and a negative electrode member (4) are fixedly arranged on the mounting seat (1), and when the conductive member (2) contacts the positive electrode member (3) and the negative electrode member (4), the positive electrode member (3) and the negative electrode member (4) can be electrically connected; A base (5) is adjustable and mounted on the mounting seat (1) along the X-axis direction; an elastic member (6) disposed between the base (5) and the conductive member (2), the base (5) being used to adjust the initial force of the elastic member (6) on the conductive member (2), and the elastic member (6) being used to drive the conductive member (2) to abut against the positive electrode member (3) and the negative electrode member (4); A pressure-driven member (10), the pressure-driven member (10) is used to generate a driving force under pressure, and when the driving force is greater than the initial force, the pressure-driven member (10) drives the conductive member (2) to separate from the positive electrode member (3) and the negative electrode member (4); The pressure-driven component (10) is an air bag, a mounting hole is provided inside the mounting seat (1), the conductive component (2) is located in the mounting hole, the conductive component (2) divides the mounting hole into a first cavity (11) and a second cavity (12) that are not connected to each other, the positive electrode component (3) and the negative electrode component (4) are both located in the first cavity (11), and the first cavity (11) is used to connect the air bag; A first conductive rubber (81) is provided on the side of the positive electrode member (3) facing the conductive member (2); A second conductive rubber (82) is provided on the side of the negative electrode member (4) facing the conductive member (2); The mounting seat (1) comprises a mounting section (13) and a connecting section (14); the inner diameter of the through hole of the mounting section (13) is larger than the inner diameter of the through hole of the connecting section (14); the conductive member (2) is slidably arranged in the through hole of the mounting section (13); and the first conductive rubber (81) and the second conductive rubber (82) are provided on a side of the connecting section (14) facing the mounting section (13); A conductive rubber ring (8) is provided on a side of the connecting section (14) facing the mounting section (13), the conductive rubber ring (8) comprising an isolation portion and a conductive portion, the isolation portion separating the conductive portion into the first conductive rubber (81) and the second conductive rubber (82).
2. The detection component according to claim 1, characterized in that The base (5) is threadedly connected to one end of the mounting hole away from the positive electrode member (3) and the negative electrode member (4).
3. The detection component according to claim 2, characterized in that The elastic member (6) is a cylindrical spring. One end of the base (5) extending into the mounting hole is fixedly connected to a fixing seat (7). The elastic member (6) is sleeved on the periphery of the fixing seat (7). The fixing seat (7) is used to support the elastic member (6).
4. The detection component according to any one of claims 1 to 3, characterized in that: The outer wall of the connecting section (14) and the outer wall of the mounting section (13) form a shoulder, and the negative electrode member (4) and the positive electrode member (3) are mounted on the shoulder.
5. The detection component according to any one of claims 1 to 3, characterized in that: An outer cover (9) is sleeved around the periphery of the connecting section (14), and the positive electrode member (3) and the negative electrode member (4) are both located inside the outer cover (9).
6. Bedding, characterized in that The bedding device comprises a bedding body and a detection component according to any one of claims 1 to 5, wherein the detection component is arranged inside the bedding body.
7. The bedding according to claim 6, characterized in that: The bedding further comprises a supporting airbag, which is installed inside the bedding body, and the pressure-driven component (10) is the supporting airbag.
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