Garment embedded temperature control lighting device

By designing end blocks, air chambers, ventilation grooves and counterweight blocks in the clothing, the effective heat dissipation of temperature control equipment is achieved by using airflow flow, which solves the problem of timely heat dissipation of temperature control equipment in the existing technology, extends the service life of electronic components and improves working stability.

CN120036544APending Publication Date: 2025-05-27FUJIAN JINJIANG LONGTU ELECTRONICS CO LTD
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Patent Information

Application Number
CN202510458856.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-14
Publication Date
2025-05-27

AI Technical Summary

Technical Problem

The temperature control equipment in existing clothing is difficult to dissipate in time due to the temperature on the side close to the clothes, resulting in a decrease in the service life and working stability of electronic components.

Method used

A clothing embedded temperature control lighting device is designed. By setting up components such as end blocks, air chambers, ventilation grooves and counterweight blocks, the counterweight blocks drive the airflow during movement, and the external air is introduced into the temperature control main body through the ventilation grooves and exhaust grooves, achieving effective heat dissipation.

Benefits of technology

By increasing the cooling ability of the temperature control equipment close to the side of the clothes, the service life of the electronic components is extended and the working stability of the temperature control equipment is improved.

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Abstract

The invention relates to the technical field of clothing temperature control lighting, in particular to a clothing embedded temperature control lighting device which comprises a temperature control body, the rear side of the temperature control body is connected with a wrapping structure, the other end of the wrapping structure is connected with an end block, and two air cavities distributed up and down are formed in the end block; a balancing weight capable of sliding up and down is arranged in the air cavity in a matched mode, a connecting rod capable of sliding up and down is inserted into the end block, the two ends of the connecting rod are fixed to the balancing weight on the upper side and the balancing weight on the lower side respectively, an outer end air inlet groove is formed in the end block, and three vent grooves are formed in the vertical position of the end block. The balancing weight can shake in the air cavity of the end block under inertia, the balancing weight drives airflow to flow in the air cavity when moving up and down, so that the airflow flows in the air cavity, the inner side of the temperature control main body and the external space through the outer end air inlet groove, the vent groove and the exhaust groove, and external air can make contact with the inner side of the temperature control main body; and the inner side of the temperature control main body is cooled in time.
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Description

Technical Field

[0001] The present invention relates to the technical field of temperature control lighting for clothing, and particularly to a clothing-embedded temperature control lighting device. Background Art

[0002] With the development, in order to increase the warmth retention of clothing, heating devices are installed inside the clothing to increase the heat inside the clothing. The heating devices are controlled by temperature control devices. In order to facilitate observing the temperature control device in a relatively dark environment, light-emitting diodes are used in the device. The control circuit integrates two parts: light-emitting control and heating control, and is sealed in a silicone LOGO. It is currently sewn and fixed in the chest area of the clothes, and can achieve clothing lighting and warm heating.

[0003] Since the temperature control device contains electronic components, heat will be generated during operation. The existing temperature control device is sewn and attached to the front of the clothes. Due to the warmth retention of the clothes, the temperature of the side of the temperature control device close to the clothes cannot be dissipated in time, which will reduce the service life and working stability of the internal electronic components. For this reason, a clothing-embedded temperature control lighting device is proposed. Summary of the Invention

[0004] In order to increase the heat dissipation of the temperature control device on the side close to the clothes, the present invention provides a clothing-embedded temperature control lighting device.

[0005] A clothing-embedded temperature control lighting device provided by the present invention adopts the following technical solutions: It includes a temperature control main body, a wrapping structure is connected to the rear side of the temperature control main body, the other end of the wrapping structure is connected to an end block, and two air cavities are vertically distributed and opened inside the end block.

[0006] A weight block that can slide up and down is arranged inside the air cavity in a matching manner. A connecting rod that can slide up and down is inserted into the end block. Both ends of the connecting rod are fixed to the weight blocks on the upper and lower sides respectively. An outer end air inlet groove is opened inside the end block, and three ventilation grooves are opened at the vertical position of the end block. The space between the temperature control main body and the wrapping structure is communicated with each ventilation groove.

[0007] An exhaust groove is opened in the end block between the two weight blocks. The exhaust groove and the outer end air inlet groove are both communicated with the external space of the end block. The exhaust groove, the outer end air inlet groove and the three ventilation grooves are communicated with the two air cavities.

[0008] A fitting structure for connecting with the clothes is installed at one end of the end block away from the temperature control main body.

[0009] Optionally, the inner walls of the two air chambers on the side away from each other are both connected to the outer intake groove. The middle ventilation groove among the three ventilation grooves is connected to the inner walls of the two air chambers on the side close to each other, and the other two ventilation grooves are connected to the inner walls of the two air chambers on the side away from each other. The exhaust groove is connected to the inside of the two air chambers on the side close to each other. Check valves are installed at the connection points of the exhaust groove, the outer intake groove, and the three ventilation grooves with the two air chambers.

[0010] Optionally, the wrapping structure includes two wrapping plates and two meshing socket heads. Two half-threaded rods are threadedly inserted into the meshing socket heads. The four half-threaded rods are respectively fixed to the upper and lower ends of the two wrapping plates. The temperature control main body is inserted and installed between the two wrapping plates.

[0011] Optionally, the end block includes a snap ring. The outer ring surface of the snap ring is annularly recessed. The snap ring is inserted and installed between the two wrapping plates.

[0012] Optionally, a side cavity is formed inside the wrapping plate. The side away from the end block of the side cavity is a porous structure. Both wrapping plates are provided with connecting pipes. The other ends of the connecting pipes are connected to the end block. The connecting pipes are communicated with the side cavity. The two connecting pipes are respectively communicated with the outer intake groove and the exhaust groove.

[0013] Optionally, the fitting structure includes a fixed disk and a split disk. A jack is formed on the end face of the fixed disk. A slidable nail rod is fitted inside the jack. The nail rod is fixed to the split disk. A rotatable misaligned ring is sleeved on the outer ring surface of the fixed disk. The nail rods are evenly distributed in a multi-layered ring shape.

[0014] Optionally, a plurality of arc-shaped clamping plates are fixed to the inner ring surface of the misaligned ring. The arc axis of the arc-shaped clamping plate is coaxial with the misaligned ring. The arc-shaped clamping plates are evenly distributed in a circumferential array inside the fixed disk. A clamping groove is formed on the nail rod away from the axis of the fixed disk on the outermost ring side. The clamping groove is arranged in cooperation with the arc-shaped clamping plate.

[0015] Optionally, the half-threaded rod is semi-cylindrical, and the end face of the axis of the half-threaded rod is flush with the end face of the wrapping plate.

[0016] Optionally, a heat dissipation cavity is formed between the temperature control main body and one end of the two wrapping plates close to the end block. All three ventilation grooves are communicated with the heat dissipation cavity.

[0017] In summary, the present invention has the following beneficial technical effects: By providing components such as an end block, an air chamber, a ventilation groove, and a counterweight block, when a user wears clothes and exercises, the counterweight block sways in the air chamber of the end block under inertia. When the counterweight block moves up and down, it drives the air flow to flow in the air chamber, so that the air flow passes through the outer intake groove, the ventilation groove, and the exhaust groove to flow in the air chamber, inside the temperature control main body, and the external space, enabling the external air to contact the inside of the temperature control main body and timely cooling and dissipating heat from the inside of the temperature control main body.

[0018] In the present invention, by providing components such as side chambers, connecting pipes, and one-way valves, when the counterweight moves up and down in the air chamber, it drives the air flow. The external air flow passes through the side chamber, connecting pipe, and the connected one-way valve on one side and enters the outer end air inlet groove. Then, the air flow is pushed by the counterweight to flow through the corresponding ventilation grooves and the connected one-way valves to contact the temperature control main body. At the same time, during the movement of the counterweight, the gas after contacting the temperature control main body is inhaled into the air chamber through the ventilation groove in the middle position, and then the gas is filled into the side chamber through the exhaust groove and the connected connecting pipe and discharged into the external space.

[0019] In the present invention, by providing a heat dissipation cavity, the heat dissipation cavity increases the space between the temperature control main body and the wrapping plate, thereby increasing the total amount of air flow in contact with the inner side of the temperature control main body, and thus increasing the heat dissipation speed of the temperature control main body.

[0020] In the present invention, by providing components such as arc-shaped clamping plates, nail rods, dividing plates, and offset rings, when connecting the temperature control main body to the clothes, the nail rod is passed through the clothes fabric, and then the nail rod is inserted into the fixed plate. Rotating the offset ring drives the arc-shaped clamping plate to cooperate with the nail rod on the outer ring side, so that the nail rod cannot be separated from the fixed plate, thereby detachably connecting the temperature control main body to the clothes. Brief Description of the Drawings

[0021] Figure 1 is the overall structure schematic diagram in the embodiment of the present invention; Figure 2 is the structure schematic diagram of the connection between the wrapping plate and the temperature control main body in the embodiment of the present invention; Figure 3 is the structure schematic diagram of the connection between the offset ring and the fixed plate in the embodiment of the present invention; Figure 4 is the structure schematic diagram of the connection between the snap ring and the wrapping plate in the embodiment of the present invention; Figure 5 is the front view schematic diagram of part of the structure in the embodiment of the present invention; Figure 6 is the side view schematic diagram of part of the structure in the embodiment of the present invention; Figure 7 is the ventilation groove distribution schematic diagram in the embodiment of the present invention; Figure 8 is in the embodiment of the present invention Figure 3 the enlarged schematic diagram of the structure at A; Figure 9 is the structure schematic diagram inside the end block in the embodiment of the present invention.

[0022] Reference numerals: 1, temperature control main body; 2, counterweight; 3, air cavity; 4, end block; 41, snap ring; 5, wrapping structure; 51, wrapping plate; 511, side cavity; 512, connecting pipe; 513, heat dissipation cavity; 52, meshing socket; 53, semi-threaded rod; 6, fitting structure; 61, fixing plate; 611, offset ring; 612, arc-shaped clamping plate; 613, clamping groove; 62, dividing plate; 63, jack; 64, nail rod; 7, connecting rod; 8, outer end air inlet groove; 9, ventilation groove; 10, exhaust groove; 11, check valve. Detailed implementation manners

[0023] The following further elaborates on the present invention in conjunction with the attached Figures 1 - 9 drawings.

[0024] An embodiment of the present invention discloses a clothing-embedded temperature control lighting device. As Figures 1 - 9 shown, it includes a temperature control main body 1, and the temperature control main body 1 is connected to a heating structure and a temperature control structure through a circuit. The temperature control main body 1 is provided with a button and a light-emitting diode for control and lighting.

[0025] A wrapping structure 5 is connected to the rear side of the temperature control main body 1, and the other end of the wrapping structure 5 is connected to an end block 4.

[0026] The wrapping structure 5 includes two wrapping plates 51 and two meshing sockets 52. Two semi-threaded rods 53 are threadedly inserted into the meshing sockets 52. The four semi-threaded rods 53 are respectively fixed to the upper and lower ends of the two wrapping plates 51. The semi-threaded rod 53 is semi-cylindrical, and the end face of the axis of the semi-threaded rod 53 is flush with the end face of the wrapping plate 51. The temperature control main body 1 is inserted and installed between the two wrapping plates 51. When the two wrapping plates 51 are in contact, the temperature control main body 1 can be closely wrapped in the space therebetween. When the two wrapping plates 51 are in contact, the two upper semi-threaded rods 53 and the two lower semi-threaded rods 53 form two complete cylindrical threaded rods. During the rotation of the meshing socket 52, by meshing with the formed complete threaded rods, the two wrapping plates 51 are stably wrapped on the surface of the temperature control main body 1.

[0027] The end block 4 includes a snap ring 41. The outer ring surface of the snap ring 41 is annularly recessed. The snap ring 41 is inserted and installed between the two wrapping plates 51. When the two wrapping plates 51 are in contact, they are sleeved on the annularly recessed part of the snap ring, so that the end block 4 will not be separated from the two wrapping plates 51.

[0028] Two air cavities 3 are provided inside the end block 4 and are distributed up and down.

[0029] Inside the air chamber 3, a sliding counterweight 2 is arranged. When the user is moving while wearing clothes, the counterweight 2 can slide in the air chamber 3 under inertia. A slidable connecting rod 7 is inserted into the end block 4. Both ends of the connecting rod 7 are fixed to the upper and lower counterweights 2 respectively. The connecting rod 7 enables the two counterweights 2 to move synchronously. An outer end air inlet groove 8 is formed inside the end block 4.

[0030] Three ventilation grooves 9 are formed in the vertical position of the end block 4. The temperature control main body 1 communicates with each ventilation groove 9 between the temperature control main body 1 and the wrapping structure 5. A heat dissipation cavity 513 is formed between the temperature control main body 1 and one end of the two wrapping plates 51 close to the end block 4. All three ventilation grooves 9 communicate with the heat dissipation cavity 513. The heat dissipation cavity 513 increases the space between the temperature control main body 1 and the wrapping plate 51, thereby increasing the total amount of air flow in contact with the inner side of the temperature control main body 1, and thus increasing the heat dissipation speed of the temperature control main body 1.

[0031] An exhaust groove 10 is formed in the end block 4 between the two counterweights 2. Both the exhaust groove 10 and the outer end air inlet groove 8 communicate with the external space of the end block 4.

[0032] A side cavity 511 is formed inside the wrapping plate 51. The side away from the end block 4 of the side cavity 511 is a porous structure. The external environment communicates with the side cavity 511 through the porous structure. Compared with directly discharging and absorbing air flow from the outer end air inlet groove 8 and the exhaust groove 10 on one side of the end block 4, the distance between the position of the incoming and outgoing air flow and the clothes is increased, thereby reducing the influence of the clothing on the inhaled temperature. Both wrapping plates 51 are provided with connecting pipes 512. The other ends of the connecting pipes 512 are connected to the end block 4. The connecting pipes 512 communicate with the side cavity 511. The two connecting pipes 512 communicate with the outer end air inlet groove 8 and the exhaust groove 10 respectively.

[0033] The exhaust groove 10, the outer end air inlet groove 8 and the three ventilation grooves 9 communicate with the two air chambers 3.

[0034] The inner walls on the mutually remote sides of the two air chambers 3 are both communicated with the outer end air inlet groove 8. Among the three air vent grooves 9, the middle air vent groove 9 is communicated with the inner walls on the mutually close sides of the two air chambers 3, and the other two air vent grooves 9 are communicated with the inner walls on the mutually remote sides of the two air chambers 3. The exhaust groove 10 is communicated with the inner parts on the mutually close sides of the two air chambers 3. Check valves 11 are installed at the communicating positions of the exhaust groove 10, the outer end air inlet groove 8 and the three air vent grooves 9 with the two air chambers 3. When the movement of the counterweight 2 drives the change of the spaces of the two air chambers 3 on both sides, it drives the air flow. The check valves 11 limit the air flow direction. When the counterweight 2 moves upward, the air flow can only pass through the check valve 11 communicated with the outer end air inlet groove 8 unidirectionally and enter the corresponding air chamber 3. The air flow flows out of the air chamber 3 through the check valve 11 connected to the exhaust groove 10 unidirectionally. The air flow enters the two air chambers 3 through the check valve 11 connecting the middle air vent groove 9 and the two air chambers 3 unidirectionally. The air flow in the two air chambers 3 flows to the space between the temperature control main body 1 and the wrapping plate 51 through the upper and lower air vent grooves 9 and the corresponding check valves 11.

[0035] A fitting structure 6 connected to the clothes is installed at one end of the end block 4 away from the temperature control main body 1.

[0036] The fitting structure 6 includes a fixed disk 61 and a split disk 62. A jack 63 is opened on the end face of the fixed disk 61. A slidable nail rod 64 is fitted in the jack 63. The nail rod 64 is fixed to the split disk 62. A rotatable misalignment ring 611 is sleeved on the outer ring surface of the fixed disk 61. The nail rods 64 are evenly distributed in a multi-layered ring shape. The split disk 62 is located inside the clothes, and the fixed disk 61 is located outside the clothes. The end of the nail rod 64 is a tip, and the nail rod 64 can pass through the clothes and be inserted into the fixed disk 61.

[0037] A plurality of arc-shaped clamping plates 612 are fixed to the inner ring surface of the misalignment ring 611. The circular arc axis of the arc-shaped clamping plate 612 is coaxial with the misalignment ring 611. The arc-shaped clamping plates 612 are evenly distributed in a circumferential array inside the fixed disk 61. A clamping groove 613 is opened on the nail rod 64 on the outermost ring side away from the axis of the fixed disk 61. The clamping groove 613 is arranged in cooperation with the arc-shaped clamping plate 612. After the nail rod 64 is inserted into the fixed disk 61, the misalignment ring 611 is rotated to drive the arc-shaped clamping plate 612 to cooperate with the clamping groove 613 on the surface of the outermost ring side nail rod 64, so that the nail rod 64 cannot be separated from the fixed disk 61, and the temperature control main body 1 is connected to the clothes.

[0038] The working principle is as follows: When the user wears clothes and moves, the counterweight 2 sways in the air cavity 3 of the end block 4 under inertia. When the two counterweights 2 move upward, the space between the two sides of the counterweight 2 and the middle part of the end block 4 gradually changes. The gradually increasing space can suck air into the corresponding part of the air cavity 3, and the gradually decreasing space can push the gas in the air cavity 3 out. Thus, when the counterweight 2 moves up and down, it drives the air flow to flow in the air cavity 3, so that the air flow passes through the outer end air inlet groove 8, the ventilation groove 9 and the exhaust groove 10 to flow in the air cavity 3, the inner side and the outer space of the temperature control main body 1, enabling the external air to contact the inner side of the temperature control main body 1 and timely cooling and dissipating heat from the inner side of the temperature control main body 1.

[0039] The above are all preferred embodiments of the present invention, and the protection scope of the present invention is not limited thereby. Therefore, all equivalent changes made according to the structure, shape and principle of the present invention shall be covered within the protection scope of the present invention.

Claims

1. A clothing embedded temperature control lighting device, comprising a temperature control body (1), characterized in that: The rear side of the temperature control body (1) is connected to a wrapping structure (5), the other end of the wrapping structure (5) is connected to an end block (4), and two air cavities (3) distributed vertically are provided inside the end block (4); The air cavity (3) is provided with a counterweight block (2) that can slide up and down, the end block (4) is plugged with a connecting rod (7) that can slide up and down, the two ends of the connecting rod (7) are respectively fixed to the counterweight blocks (2) on the upper and lower sides, the end block (4) is provided with an outer air inlet groove (8), the end block (4) is provided with three ventilation grooves (9) at a vertical position, and the temperature control body (1) is connected to the wrapping structure (5) and each ventilation groove (9); The end block (4) is provided with an exhaust groove (10) between the two counterweight blocks (2); the exhaust groove (10) and the outer air inlet groove (8) are both in communication with the outer space of the end block (4); the exhaust groove (10), the outer air inlet groove (8) and the three ventilation grooves (9) are in communication with the two air cavities (3); An end of the end block (4) away from the temperature control body (1) is provided with a mounting structure (6) connected to clothes.

2. The clothing embedded temperature control lighting device according to claim 1, characterized in that: The inner walls of the two air cavities (3) on the side away from each other are both connected to the outer air inlet groove (8); the middle air vent groove (9) among the three air vent grooves (9) is connected to the inner walls of the two air cavities (3) on the side close to each other; the other two air vent grooves (9) are connected to the inner walls of the two air cavities (3) on the side away from each other; the exhaust groove (10) is connected to the inside of the two air cavities (3) on the side close to each other; and one-way valves (11) are installed at the places where the exhaust groove (10), the outer air inlet groove (8) and the three air vent grooves (9) are connected to the two air cavities (3).

3. The clothing embedded temperature control lighting device according to claim 1, characterized in that: The wrapping structure (5) comprises two wrapping plates (51) and two engaging sleeves (52); two semi-threaded rods (53) are inserted into the internal threads of the engaging sleeves (52); the four semi-threaded rods (53) are respectively fixed to the upper and lower ends of the two wrapping plates (51); and the temperature control body (1) is inserted and installed between the two wrapping plates (51).

4. The clothing embedded temperature control lighting device according to claim 3, characterized in that: The end block (4) comprises a clamping ring (41), the outer ring surface of the clamping ring (41) is an annular concave shape, and the clamping ring (41) is plugged and installed between two wrapping plates (51).

5. The clothing embedded temperature control lighting device according to claim 3, characterized in that: The wrapping plate (51) has a side cavity (511) formed inside, and a side of the side cavity (511) away from the end block (4) has a plurality of hole-shaped structures. The two wrapping plates (51) are both provided with a connecting pipe (512), the other end of the connecting pipe (512) is connected to the end block (4), the connecting pipe (512) is connected to the side cavity (511), and the two connecting pipes (512) are respectively connected to the outer end air inlet groove (8) and the air outlet groove (10).

6. The clothing embedded temperature control lighting device according to claim 1, characterized in that: The assembly structure (6) comprises a fixed disk (61) and a sub-disk (62). The fixed disk (61) has an end surface provided with an insertion hole (63). A slidable nail rod (64) is fitted in the insertion hole (63). The nail rod (64) is fixed to the sub-disk (62). A rotatable dislocation ring (611) is sleeved on the outer ring surface of the fixed disk (61). The nail rods (64) are evenly distributed in a multi-layer ring shape.

7. The clothing embedded temperature control lighting device according to claim 6, characterized in that: A plurality of arc-shaped clamping plates (612) are fixed on the inner ring surface of the dislocation ring (611); the arc axis of the arc-shaped clamping plates (612) is coaxial with the dislocation ring (611); the arc-shaped clamping plates (612) are evenly distributed in a circular array in the fixed disk (61); a clamping groove (613) is provided on the nail rod (64) located on the outermost ring side away from the axis of the fixed disk (61); and the clamping groove (613) and the arc-shaped clamping plates (612) are arranged in coordination.

8. The clothing embedded temperature control lighting device according to claim 3, characterized in that: The semi-threaded rod (53) is semi-cylindrical, and the axial end surface of the semi-threaded rod (53) is flush with the end surface of the wrapping plate (51).

9. The clothing embedded temperature control lighting device according to claim 3, characterized in that: A heat dissipation cavity (513) is formed between the temperature control body (1) and one end of the two wrapping plates (51) close to the end block (4), and the three ventilation grooves (9) are all in communication with the heat dissipation cavity (513).