Overheat protector storage device with bunching function
By designing a storage device for an overheat protector with wire bundling function, the problem of wire scattering is solved by using a box, sponge block, arc-shaped rubber block and magnet structure, which realizes the standardized storage of wires and stable transportation of the device, thereby improving safety and service life.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-29
- Publication Date
- 2026-04-03
AI Technical Summary
When existing overheat protectors are stored, the wires are easily scattered, and there is a lack of effective wire bundling, which leads to inconvenience and potential detachment problems.
A storage device with wire bundling function was designed, including a box, a sponge block, an arc-shaped rubber block, and a magnet structure. By setting grooves, wire channels, and magnets on the box, the wires can be wound and fixed, and a desiccant pack can be used to prevent moisture damage.
This system enables standardized storage of wires, preventing them from falling out, improving the safety and convenience of the storage device, and enhancing transportation stability and the lifespan of the protector.
Smart Images

Figure CN224076005U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of overheat protector storage devices, and in particular to an overheat protector storage device with a wire harness function. Background Technology
[0002] An overheat protector is a device that protects equipment by monitoring temperature changes. It is widely used in industries such as manufacturing, automotive, and home appliances. Its working principle primarily involves using a thermistor (such as a bimetallic strip) to monitor temperature; when the temperature is abnormal, the metal deforms, pushing contacts to disconnect the circuit.
[0003] Existing overheat protectors typically have two extended wires, and some also have a terminal block connected to the end of these wires. When storing overheat protectors, due to their small size, they are usually packaged directly in bags or boxes, leaving the extended wires loose. This packaging method cannot handle the wires and can easily lead to them detaching.
[0004] To address the aforementioned issues, this application proposes a storage device for an overheat protector with a wire harness function. Utility Model Content
[0005] This utility model provides a storage device for an overheat protector with a wire harness function to solve the above-mentioned technical problems.
[0006] To solve the above-mentioned technical problems, this utility model provides an overheat protector storage device with wire bundling function, including a box and an overheat protector. The overheat protector is composed of a protector body, wires and terminals. The wires are fixedly connected between the protector body and the terminals. The top of the box has two grooves distributed on the left and right. The top center of the box has an annular wire groove. A straight wire groove is provided between the grooves and the annular wire groove.
[0007] The groove is filled with a sponge block. The top of the two sponge blocks has a groove that matches the protector body and the terminal block. The protector body and the terminal block are located in the grooves on the two sponge blocks respectively. The wire passes through the straight groove and the annular groove.
[0008] The top of the box is fitted with a lid, and an annular plate II is integrally formed and connected to the center of the top of the lid. The annular plate II is adapted to be located inside the annular groove.
[0009] Preferably, arc-shaped rubber blocks are fixedly connected to both the front and rear sides of the straight groove, the wire is located below the arc-shaped rubber blocks, and the portion of the wire inside the annular groove is wrapped and distributed.
[0010] Preferably, the bottom of the first groove is provided with a second groove, and the second groove is filled with a desiccant packet.
[0011] Preferably, a slot is provided at the top edge of the box body, the box lid is located above the box body and extends into the slot, and the box body and the box lid are interference fit.
[0012] Preferably, the bottom of the box body has a groove three, the inside of the groove three is adapted to the top of the box body, and an annular plate one is integrally formed and connected at the center of the top of the groove three, and the annular plate one is adapted to the annular groove.
[0013] Preferably, magnets are embedded in the left and front sides of the box, and iron sheets are embedded in the right and rear sides of the box.
[0014] Preferably, the number of magnets and iron plates on both the front and rear sides of the box is set to two.
[0015] Preferably, the front and rear sides of the box body and the box lid are processed with anti-slip textures, and the two magnets and two iron pieces located on the front and rear sides of the box body are respectively located on both sides of the anti-slip textures.
[0016] Compared with related technologies, the overheat protector storage device with wire harness function provided by this utility model has the following advantages:
[0017] 1. By providing a recess, a straight wire groove, and an annular wire groove on the box body, the straight wire groove and the annular wire groove, together with the arc-shaped rubber block and the annular plate at the bottom of the box cover, can be used to coil and bundle the wires of the overheat protector. The two sponge blocks in the recess can be used to place the protector body and the terminal block. Compared with the ordinary bag packaging method that causes the wires to scatter freely, this storage method can avoid the problem of the overheat protector wires falling off, making the storage more standardized and the use more convenient.
[0018] 2. By creating a groove three at the bottom of the box, all boxes can be stacked one on top of the other. Furthermore, by embedding magnets and iron sheets on the sides of the box, all boxes can be magnetically attracted to form a whole when stacked in all directions, making it easier to transport storage boxes containing overheat protectors.
[0019] 3. By placing a desiccant packet under the sponge pad, the residual moisture in the storage device can be prevented from causing corrosion or moisture damage to the overheat protector, resulting in better safety and extending the service life of the overheat protector. Attached Figure Description
[0020] Figure 1 This is a first-view overall structural diagram of the present invention;
[0021] Figure 2 This is a schematic diagram of the overall structure of the present invention from a second perspective;
[0022] Figure 3 This is a schematic diagram of the internal structure of the box body of this utility model;
[0023] Figure 4 This is a schematic diagram of the box structure of this utility model;
[0024] Figure 5 This is a schematic diagram of the box lid structure of this utility model;
[0025] Figure 6 This is a schematic diagram illustrating the stacking effect of this utility model.
[0026] The following are labeled in the diagram: 1. Box body, 2. Groove one, 3. Groove two, 4. Desiccant pack, 5. Sponge block, 6. Straight wire groove, 7. Circular wire groove, 8. Arc-shaped rubber block, 9. Protector body, 10. Wire, 11. Terminal block, 12. Groove three, 13. Circular plate one, 14. Box cover, 15. Circular plate two, 16. Magnet, 17. Iron sheet, 18. Anti-slip texture, 19. Slot. Detailed Implementation
[0027] Example 1, by Figures 1-6 The present invention includes a housing 1 and an overheat protector. The overheat protector consists of a protector body 9, a wire 10 and a terminal block 11. The wire 10 is fixedly connected between the protector body 9 and the terminal block 11. The present invention is characterized in that: two grooves 2 are provided on the top of the housing 1, and an annular groove 7 is provided at the center of the top of the housing 1. A straight groove 6 is provided between the grooves 2 and the annular groove 7.
[0028] The groove 12 is filled with a sponge block 5. The top of the two sponge blocks 5 is provided with a groove that is compatible with the protector body 9 and the terminal block 11. The protector body 9 and the terminal block 11 are respectively located in the grooves on the two sponge blocks 5. The wire 10 passes through the straight wire groove 6 and the annular wire groove 7.
[0029] The top of the box body 1 is fitted with a box cover 14. An annular plate 2 15 is integrally formed and connected to the center of the top of the box cover 14. The annular plate 2 15 is adapted to be located inside the annular groove 7.
[0030] After the cover 14 is closed, the second annular plate 15 at the bottom of the cover fits perfectly into the annular wire groove 7. At this time, the wire 10 wrapped inside the annular wire groove 7 is pressed down by the second annular plate 15 to prevent it from bulging and becoming loose due to wrapping, thus achieving a better wire binding effect.
[0031] The straight wire trough 6 has arc-shaped rubber blocks 8 fixedly connected to both the front and rear sides. The wire 10 is located below the arc-shaped rubber blocks 8. The part of the wire 10 inside the annular wire trough 7 is wrapped and distributed. When the wire 10 is embedded in the straight wire trough 6, the wire passes between the two arc-shaped rubber blocks 8 and is then restricted by the arc-shaped rubber blocks 8. Even if the cover 14 is not closed, the wire 10 inside the straight wire trough 6 will not come out, thus playing the role of wire bundling.
[0032] A slot 19 is provided at the top edge of the box body 1. The lid 14 is located above the box body 1 and extends into the slot 19. The box body 1 and the lid 14 are interference fit. The slot 19 at the top edge of the box body 1 makes the outer surface of the box body 1 flush with the outer surface of the lid 14 when the lid 14 is placed on top of the box body 1. This is both aesthetically pleasing and convenient for stacking and transportation.
[0033] In Example 2, based on Example 1, a second groove 3 is provided at the bottom of the first groove 2. The second groove 3 is filled with a desiccant pack 4. The sponge block 5 has good air permeability. Therefore, when the overheat protector is stored through the sponge block 5, the air in the storage device can pass through the sponge block 5 and be dried by the desiccant pack 4, thus avoiding damage to the overheat protector due to air moisture.
[0034] In Example 3, based on Example 1, a groove 3 12 is provided at the bottom of the box body 1. The inside of the groove 3 12 is adapted to the top of the box body 1. An annular plate 13 is integrally formed and connected at the center of the top of the groove 3 12. The annular plate 13 is adapted to the annular wire groove 7. The groove 3 12 and the annular plate 13 at the bottom of the box body 1 have the same effect as the box cover 14 and the annular plate 2 15. That is, when multiple boxes 1 are stacked up and down, the upper box 1 can cover the top of the lower box 1 through the groove 3 12 at the bottom, and the annular plate 2 15 can also be embedded in the annular wire groove 7 to bundle the wires 10.
[0035] Magnets 16 are embedded on the left and front sides of box 1, and iron sheets 17 are embedded on the right and rear sides of box 1. The number of magnets 16 and iron sheets 17 on the front and rear sides of box 1 is set to two. When multiple boxes 1 are stacked in front, behind, left and right, they can be connected by the magnetic attraction of magnets 16 and iron sheets 17, so that multiple storage devices can form a whole, which is not easy to scatter and is easier to transport.
[0036] The front and back sides of the box body 1 and the box lid 14 are both processed with anti-slip textures 18, and the two magnets 16 and two iron pieces 17 located on the front and back sides of the box body 1 are respectively located on both sides of the anti-slip textures 18. The anti-slip textures 18 can improve the friction, making it easier to remove the box lid 14 from the box body 1, and also making it easier to separate the boxes 1 stacked on top of each other.
[0037] Working principle:
[0038] When storing the overheat protector, a desiccant pack 4 can be placed inside the second groove 3 first, and then two sponge blocks 5 can be placed inside the first groove 2 to press down the desiccant pack 4. The two sponge blocks 5 have grooves that match the shape of the protector body 9 and the terminal 11 in the overheat protector. Therefore, the protector body 9 and the terminal 11 can be embedded into the grooves on the two sponge blocks 5 respectively. At the same time, the part of the wire 10 that is close to the protector body 9 and the terminal 11 is embedded into the straight wire groove 6, and the middle part of the wire 10 is wrapped in the annular wire groove 7.
[0039] Then, simply place the cover 14 on the box body 1. At this time, the part of the wire 10 located inside the straight wire groove 6 is restricted by the arc-shaped rubber block 8. Even without the cover 14, it will not come off the straight wire groove 6. After the cover 14 is placed on, the annular plate 15 at the bottom of the cover 14 is inserted into the annular wire groove 7 to press down the wire 10 wrapped inside the annular wire groove 7 to prevent it from bulging and loosening.
[0040] Multiple boxes 1 can be stacked vertically, horizontally, and in all directions. When stacked vertically, the groove 12 at the bottom of the upper box 1 can fit perfectly over the top of the lower box 1. The boxes 1 on the left, right, front, and back can be magnetically connected together by magnets 16 and iron sheets 17. Then, the lid 14 can be placed on the top box 1. Multiple storage devices can be connected into a whole after being stacked together, which is convenient for transportation.
Claims
1. A kind of overheat protector storage device with bundle function, including box body (1) and overheat protector, the overheat protector is made of protector main body (9), wire (10) and terminal (11), wire (10) is fixedly connected between protector main body (9) and terminal (11), it is characterized by: The box body (1) top is provided with two left and right recesses (2), the box body (1) top center is provided with an annular wire groove (7), the recess (2) and annular wire groove (7) are provided with straight wire groove (6) between them. The recess (2) is filled with sponge block (5), two sponge blocks (5) top is provided with the embedded groove matched with protector body (9) and terminal (11), the protector body (9) and terminal (11) are respectively located in the embedded groove on the two sponge blocks (5), the wire (10) penetrates straight wire groove (6) and annular wire groove (7). The box body (1) top is provided with box cover (14), the box cover (14) inside top center is integrally connected with annular plate two (15), the annular plate two (15) is matched with the inside of annular wire groove (7).
2. The overheat protector storage device with a wire bundling function according to claim 1, characterized in that, The straight wire groove (6) inside front and back sides are fixedly connected with arc rubber block (8), the wire (10) is below the arc rubber block (8), the wire (10) is partially wound in the annular wire groove (7).
3. The overheat protector storage device with a wire harness function according to claim 1, characterized in that, The recess (2) bottom is provided with recess (3), the recess (3) is filled with desiccant bag (4).
4. The overheat protector storage device with a wire harness function according to claim 1, characterized in that, The box body (1) top edge is provided with clamping groove (19), the box cover (14) is above the box body (1) and extends to the inside of clamping groove (19), the box body (1) and box cover (14) are interference fit.
5. The overheat protector storage device with a wire harness function according to claim 1, characterized in that, The box body (1) bottom is provided with recess (12), the recess (12) inside and box body (1) top are matched, the recess (12) inside top center is integrally connected with annular plate one (13), the annular plate one (13) and annular wire groove (7) are matched.
6. The overheat protector storage device with a wire harness function according to claim 1, characterized by The box body (1) left side and front side are embedded with magnet (16), the box body (1) right side and back side are embedded with iron sheet (17).
7. The overheat protector storage device with a wire harness function according to claim 6, characterized in that, The number of magnet (16) and iron sheet (17) on the front and back sides of box body (1) is two.
8. The overheat protector storage device with a wire harness function according to claim 6, characterized by The front and back sides of box body (1) and box cover (14) are processed with anti-skid lines (18), and the two magnets (16) and two iron sheets (17) on the front and back sides of box body (1) are respectively located on the two sides of anti-skid lines (18).