High-flexibility special cable device with safety detection function
By introducing a temperature sensing structure and a rotary storage structure into the high-flexible special cable device, the problems of insufficient reminder and inconvenient sorting when the cable is shorted are solved, and the safety and practicality of the device are significantly improved.
Patent Information
- Application Number
- CN202421662257.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-15
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-07-15
AI Technical Summary
The existing cable devices are difficult to effectively remind users when wires are short-circuited, and are inconvenient to organize and store after use, which affects the safety and practicality of users.
A high-flexible special cable device with safety detection function is designed, adopting a temperature sensing structure and a rotating storage structure, monitoring the cable temperature through a temperature sensor, activating the alarm to remind the user when the set value exceeds the set value, and using the rotating component and finishing components to wind and organize the cable and fix the limit.
It realizes effective reminding users when a wire is short-circuited, and quickly organizes and stores cables after use, improving the safety and practicality of the cable device.
Smart Images

Figure CN222860862U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of cable devices, in particular to a high-flexibility special cable device with a safety detection function. Background Art
[0002] Highly flexible special cable devices are key equipment for transmitting signals and power in robots, medical equipment, semiconductor production equipment and other occasions that require frequent movement. Since cables often need to be bent and powered when in use, they must have good flexibility and safety. Most existing cable devices only have an insulating layer as a protective structure. However, once a short circuit occurs in the cable, the wires will instantly release a large amount of heat and voltage that can easily break through the poor quality insulation layer, thereby seriously affecting the life safety of the user.
[0003] Current cable devices lack effective short-circuit warning measures. When a short circuit occurs in the wire, it is difficult to effectively remind the user, which can easily affect the user's life safety, and it is inconvenient to organize and store them after use.
[0004] Therefore, in order to address the problems that the above-mentioned cable device is difficult to effectively remind the user when a short circuit occurs in the wires, and is inconvenient to organize and store it after use, a highly flexible special cable device with a safety detection function can be designed. By utilizing a temperature sensing structure and a rotating storage structure, it can ensure that the user is effectively reminded of the occurrence of abnormal conditions when a short circuit occurs in the wires, and the cables can be quickly organized and stored after use, thereby improving the safety and practicality of the cable device. Utility Model Content
[0005] In order to overcome the problem that it is difficult for the cable device to promptly remind the user of a cable short circuit and to quickly store the cable when in use.
[0006] The technical solution of the utility model is: a high-flexibility special cable device with a safety detection function, including a load-bearing component, a first fixed component, a second fixed component, a cable component, a sorting component, and a rotating component. A rotatable storage sorting component is arranged inside the load-bearing component, a rotating component rotated by a handle is arranged at the rear end of the sorting component, a cable component with a temperature sensing structure is arranged on the sorting component, and a first fixed component and a second fixed component are centrally symmetrically arranged at the left and right ends of the load-bearing component.
[0007] Preferably, the temperature of the output port and the input port is monitored by a first temperature sensor and a second temperature sensor. When the temperature exceeds a set value, the first temperature sensor and the second temperature sensor activate an alarm via a temperature control switch to alert a user that an abnormality exists in the output port and the input port. The storage shaft is rotated by a turning handle to reel in the wires, and the output port and the input port are limited and fixed in cooperation with the first through hole and the second through hole.
[0008] Preferably, the supporting component includes an outer shell, a first groove body, an alarm, a handle, and a slot. The first groove body is penetrated at the front and rear ends of the outer shell, and a handle is fixed to the upper end of the outer shell. When in use, the outer shell can protect the rolled-up wires, and the first groove body can cooperate with the limit block to limit and fix the storage shaft to prevent it from displacement. The alarm can sound an alarm to remind the user of abnormal situations. The handle facilitates the user to move the outer shell, and the slot cooperates with the first buckle and the second buckle to fix the first fixed block and the second fixed block.
[0009] Preferably, the organizing component includes a limit block and a storage shaft, the front and rear ends of the storage shaft are fixedly connected to the limit blocks, the ends of the limit blocks close to each other are fitted with the front and rear ends of the shell, the outer wall of the storage shaft is fitted with the inner wall of the first groove body, and an alarm is installed through the upper end of the shell. When in use, the storage shaft can reel in the electric wires, and the limit block can limit and fix the storage shaft.
[0010] Preferably, the cable assembly includes an electric wire and a temperature sensing structure, the temperature sensing structure consists of an output port, a first temperature sensor, a second temperature sensor, and an input port, the electric wire is made of a highly flexible material, the electric wire is wound around the outer wall of the storage shaft, one end of the electric wire is fixedly connected to the first temperature sensor, the left end of the first temperature sensor is fixedly connected to the output port, the other end of the electric wire is fixedly connected to the second temperature sensor, the right end of the second temperature sensor is fixedly connected to the input port, the first temperature sensor and the second temperature sensor are electrically connected to the alarm, and symmetrical card slots are provided at the left and right ends of the outer casing. When in use, the first temperature sensor and the second temperature sensor monitor the temperature of the output port and the input port, and the electric wire can connect the output port and the input port.
[0011] Preferably, the first fixing component includes a first fixing block, a first buckle, and a first through hole. A symmetrical first buckle is fixed to the left end of the first fixing block. First through holes are provided at both left and right ends of the first fixing block. The first buckle is adapted to the slot, and the inner wall of the first through hole fits the outer wall of the wire. When in use, the slot cooperates with the first buckle to fix the first fixing block and the second fixing block, and the first through hole can limit and fix the output port.
[0012] Preferably, the second fixing component includes a second fixing block, a second buckle, and a second through hole. A symmetrical second buckle is fixed to the right end of the second fixing block. Second through holes are opened at both ends of the left and right ends of the second fixing block. The second buckle is adapted to the slot, and the inner wall of the second through hole fits with the outer wall of the wire. When in use, the slot cooperates with the second buckle to fix the first fixing block and the second fixing block, and the second through hole can limit and fix the input port.
[0013] Preferably, the rotating assembly includes a connecting block and a rotating handle. The limiting block at the rear end is fixedly connected to the connecting block, and the rear end of the connecting block is fixedly connected to the rotating handle. When in use, the rotating handle is used to rotate the storage shaft so that the storage shaft can reel in and organize the wires.
[0014] Beneficial effects of the utility model:
[0015] 1. The temperature of the output and input ports is monitored through the cable assembly. When the temperature exceeds the set value, the temperature sensor activates the alarm through the temperature control switch to alert the user that there is an abnormality in the output and input ports. The wires are rolled up and arranged by rotating the rotating assembly in conjunction with the sorting assembly, and the output and input ports are limited and fixed using the through holes.
[0016] 2. The card slot cooperates with the first card buckle and the second card buckle to fix the first fixing block and the second fixing block, so that the user can conveniently maintain the wires when necessary.
[0017] 3. The handle can provide a more comfortable gripping environment for the user's fingers, thereby facilitating the user to move the housing. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 What is shown is a three-dimensional structural schematic diagram of a highly flexible special cable device with a safety detection function of the utility model;
[0019] Figure 2 What is shown is a schematic diagram of the three-dimensional structure disassembly of a highly flexible special cable device with a safety detection function of the utility model;
[0020] Figure 3 What is shown is a three-dimensional structural schematic diagram of a first fixing component of a highly flexible special cable device with a safety detection function of the utility model;
[0021] Figure 4 The present invention shows a schematic diagram of the three-dimensional structure of a cable assembly, a tidying assembly and a rotating assembly of a highly flexible special cable device with a safety detection function;
[0022] Figure 5What is shown is a schematic diagram of the three-dimensional structure disassembly of a bearing component of a highly flexible special cable device with a safety detection function of the utility model.
[0023] Explanation of the reference numerals: 1-carrying component, 101-housing, 102-first slot, 103-alarm, 104-handle, 105-slot, 2-cable assembly, 201-output port, 202-first temperature sensor, 203-wire, 204-second temperature sensor, 205-input port, 3-first fixing component, 301-first fixing block, 302-first buckle, 303-first through hole, 4-rotating component, 401-connecting block, 402-turning handle, 5-arranging component, 501-limiting block, 502-storage shaft, 6-second fixing component, 601-second fixing block, 602-second buckle, 603-second through hole. DETAILED DESCRIPTION
[0024] The utility model is further described below in conjunction with the accompanying drawings and embodiments.
[0025] See also Figure 1 The utility model provides an embodiment: a high-flexibility special cable device with a safety detection function, including a load-bearing component 1, a first fixing component 3, a second fixing component 6, and a cable component 2, a tidying component 5, and a rotating component 4. The interior of the load-bearing component 1 is provided with a rotatable storage tidying component 5, and the rear end of the tidying component 5 is provided with a rotating component 4 that is rotated by a handle. The tidying component 5 is provided with a cable component 2 with a temperature sensing structure, and the left and right ends of the load-bearing component 1 are provided with a first fixing component 3 and a second fixing component 6 that are centrally symmetrical. Through the first temperature sensor The first temperature sensor 202 and the second temperature sensor 204 monitor the temperature of the output port 201 and the input port 205. When the temperature exceeds the set value, the first temperature sensor 202 and the second temperature sensor 204 activate the alarm 103 through the temperature control switch to sound an alarm to remind the user that there is an abnormality in the output port 201 and the input port 205. The storage shaft 502 is rotated by the handle 402 to make the storage shaft 502 roll up the wire 203, and the output port 201 and the input port 205 are limited and fixed in cooperation with the first through hole 303 and the second through hole 603.
[0026] See also Figure 2-4In this embodiment, the bearing assembly 1 includes a shell 101, a first slot 102, an alarm 103, a handle 104, and a slot 105. The first slot 102 is penetrated at the front and rear ends of the shell 101, and the upper end of the shell 101 is fixedly connected with the handle 104. When in use, the shell 101 can protect the rolled wire 203. The first slot 102 cooperates with the limit block 501 to limit and fix the storage shaft 502 to prevent it from displacement. The alarm 103 can sound an alarm to remind the user of abnormal conditions. The handle 104 is convenient for users to move the shell 101, and the card slot 105 cooperates with the first card buckle 302 and the second card buckle 602 to fix the first fixing block 301 and the second fixing block 601. The sorting component 5 includes a limit block 501 and a storage shaft 502. The front and rear ends of the storage shaft 502 are fixedly connected to the limit block 501. The end of the limit block 501 close to each other fits with the front and rear ends of the shell 101. The outer wall of the storage shaft 502 fits with the inner wall of the first slot body 102. The upper end of the shell 101 is penetrated by an alarm 103. When using When the storage shaft 502 is used, the wire 203 can be rolled up, and the limit block 501 can limit and fix the storage shaft 502. The cable assembly 2 includes the wire 203 and a temperature sensing structure. The temperature sensing structure is composed of an output port 201, a first temperature sensor 202, a second temperature sensor 204, and an input port 205. The wire 203 is made of a highly flexible material. The wire 203 is wound around the outer wall of the storage shaft 502. One end of the wire 203 is fixedly connected to the first temperature sensor 202, and the left end of the first temperature sensor 202 is fixedly connected to the output Port 201, the other end of the wire 203 is fixedly connected to the second temperature sensor 204, the right end of the second temperature sensor 204 is fixedly connected to the input port 205, the first temperature sensor 202 and the second temperature sensor 204 are electrically connected to the alarm 103, and symmetrical card slots 105 are provided on the left and right ends of the shell 101. When in use, the first temperature sensor 202 and the second temperature sensor 204 monitor the temperature of the output port 201 and the input port 205, and the wire 203 can connect the output port 201 and the input port 205.
[0027] See also Figure 4-5In this embodiment, the first fixing component 3 includes a first fixing block 301, a first buckle 302, and a first through hole 303. The left end of the first fixing block 301 is fixedly connected with a symmetrical first buckle 302. The left and right ends of the first fixing block 301 are penetrated with first through holes 303. The first buckle 302 is adapted to the card slot 105. The inner wall of the first through hole 303 is in contact with the outer wall of the wire 203. When in use, the card slot 105 cooperates with the first buckle 302 to fix the first fixing block 301 and the second fixing block 601. The first through hole 303 can limit and fix the output port 201. The second fixing component 6 includes a second fixing block 601, a second buckle 602, and a second through hole 603. The right end of the second fixing block 601 is fixed A symmetrical second buckle 602 is connected, and second through holes 603 are opened on the left and right ends of the second fixing block 601. The second buckle 602 is adapted to the slot 105, and the inner wall of the second through hole 603 fits the outer wall of the wire 203. When in use, the slot 105 cooperates with the second buckle 602 to fix the first fixing block 301 and the second fixing block 601, and the second through hole 603 can limit and fix the input port 205. The rotating component 4 includes a connecting block 401 and a rotating handle 402. The limiting block 501 at the rear end is fixedly connected to the connecting block 401, and the rear end of the connecting block 401 is fixedly connected to the rotating handle 402. When in use, the rotating handle 402 is used to rotate the storage shaft 502 so that the storage shaft 502 can reel and organize the wire 203.
[0028] When working, first, the output port 201 is inserted into the corresponding electrical appliance, and then the input port 205 is inserted into the corresponding electrical appliance, so that the two electrical appliances can be connected to each other;
[0029] Next, when in use, the first temperature sensor 202 and the second temperature sensor 204 monitor the temperature of the output port 201 and the input port 205. When the temperature exceeds the set value, the first temperature sensor 202 and the second temperature sensor 204 activate the alarm 103 through the temperature control switch to sound an alarm to remind the user that there is an abnormality in the output port 201 and the input port 205.
[0030] Then, after use, the storage shaft 502 is rotated by the handle 402 to roll up the wires 203 , and the output port 201 and the input port 205 are limited and fixed in place by cooperating with the first through hole 303 and the second through hole 603 .
[0031] Through the above steps, the temperature of the output and input ports 205 is monitored by the temperature sensor. When the temperature exceeds the set value, the temperature sensor activates the alarm 103 through the temperature control switch to sound an alarm to remind the user that there is an abnormality in the output and input port 205. The storage shaft 502 is then rotated by the handle 402 to allow the storage shaft 502 to reel in the wires 203, and the output and input ports 205 are limited and fixed in place with the through holes to solve the problem that the rainwater recovery device is difficult to adjust the flow rate of the collection structure according to the amount of rainfall during use.
Claims
1. A highly flexible special cable device with a safety detection function, comprising a bearing component (1), a first fixing component (3), and a second fixing component (6), characterized in that: The invention also comprises a cable assembly (2), a tidying assembly (5), and a rotating assembly (4); a rotatable storage tidying assembly (5) is arranged inside the bearing assembly (1); a rotating assembly (4) that is rotated by a handle is arranged at the rear end of the tidying assembly (5); a cable assembly (2) having a temperature sensing structure is arranged on the tidying assembly (5); and a first fixing assembly (3) and a second fixing assembly (6) that are centrally symmetrical are arranged at the left and right ends of the bearing assembly (1).
2. According to claim 1, a highly flexible special cable device with a safety detection function is characterized in that: The bearing assembly (1) comprises a housing (101), a first slot (102), an alarm (103), a handle (104), and a slot (105). The first slot (102) is provided through the front and rear ends of the housing (101), and the handle (104) is fixedly connected to the upper end of the housing (101).
3. A highly flexible special cable device with safety detection function according to claim 2, characterized in that: The sorting component (5) comprises a limit block (501) and a storage shaft (502); the front and rear ends of the storage shaft (502) are fixedly connected to the limit block (501); the ends of the limit block (501) that are close to each other fit with the front and rear ends of the housing (101); the outer wall of the storage shaft (502) fits with the inner wall of the first slot body (102); and an alarm (103) is installed through the upper end of the housing (101).
4. A highly flexible special cable device with safety detection function according to claim 3, characterized in that: The cable assembly (2) comprises an electric wire (203) and a temperature sensing structure. The temperature sensing structure comprises an output port (201), a first temperature sensor (202), a second temperature sensor (204), and an input port (205). The electric wire (203) is made of a highly flexible material. The electric wire (203) is wound around the outer wall of a storage shaft (502). One end of the electric wire (203) is fixedly connected to the first temperature sensor (202). The left end of the first temperature sensor (202) is fixedly connected to the output port (201). The other end of the electric wire (203) is fixedly connected to the second temperature sensor (204). The right end of the second temperature sensor (204) is fixedly connected to the input port (205). The first temperature sensor (202) and the second temperature sensor (204) are electrically connected to the alarm (103). Symmetrical card slots (105) are provided at the left and right ends of the housing (101).
5. A highly flexible special cable device with safety detection function according to claim 4, characterized in that: The first fixing assembly (3) comprises a first fixing block (301), a first buckle (302), and a first through hole (303); the left end of the first fixing block (301) is fixedly connected to a symmetrical first buckle (302); the left and right ends of the first fixing block (301) are penetrated by first through holes (303); the first buckle (302) is adapted to the slot (105); and the inner wall of the first through hole (303) is in contact with the outer wall of the electric wire (203).
6. A highly flexible special cable device with safety detection function according to claim 5, characterized in that: The second fixing assembly (6) comprises a second fixing block (601), a second buckle (602), and a second through hole (603); a symmetrical second buckle (602) is fixedly connected to the right end of the second fixing block (601); second through holes (603) are provided at both left and right ends of the second fixing block (601); the second buckle (602) is matched with the slot (105); and the inner wall of the second through hole (603) is in contact with the outer wall of the electric wire (203).
7. The highly flexible special cable device with safety detection function according to claim 3, characterized in that: The rotating assembly (4) comprises a connecting block (401) and a rotating handle (402); a limiting block (501) located at the rear end is fixedly connected to the connecting block (401); and the rear end of the connecting block (401) is fixedly connected to the rotating handle (402).