A precision heat exchange device heating wire

CN224635617UActive Publication Date: 2026-08-14ANHUI YOURUI SEMICON TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-22
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

[0003]传统的加热丝虽然能够将电能转化为热能,但是其在水箱内部接触流体的面积较小,导致其加热的时间较长,影响工作效率,且传统的加热丝都是采用固定式安装,其无法移动,在给水箱内的流体进行加热时,很难让流体均匀受热

Benefits of technology

[0010]本实用新型的有益效果:本实用新型的一种精密热交换装置加热丝,在加热棒上固定安装有一组安装块,在安装块的内部固定安装有一组防水电推杆,当防水电推杆启动之后,其会带动加热管以及滑动板向前移动,在滑动板的内部固定安装有多组加热丝,能够有效增加加热装置和流体的接触面积,并且在圆盘的底部固定安装有一组电机,其可以带动圆盘进行旋转,达到搅拌水箱内流体的效果,能够让流体受热均匀,从而加快加热速度,有效提高了工作效率。

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Abstract

This utility model relates to the field of semiconductor heating devices. It provides a precision heat exchange device heating wire, including a rotating device, a telescopic structure, a mounting block, a waterproof electric actuator, a connecting sleeve, and a heating tube. The utility model has a set of mounting blocks fixedly installed on the heating rod, and a set of waterproof electric actuators fixedly installed inside the mounting blocks. When the waterproof electric actuators are activated, they drive the heating tube and sliding plate forward. Multiple sets of heating wires are fixedly installed inside the sliding plate, effectively increasing the contact area between the heating device and the fluid. Furthermore, a motor is fixedly installed at the bottom of the disc, which drives the disc to rotate, achieving the effect of stirring the fluid in the water tank, ensuring uniform heating of the fluid, thereby accelerating the heating speed and effectively improving work efficiency.
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Description

Technical Field

[0001] This utility model relates to the field of semiconductor heating devices, and in particular to a heating wire for a precision heat exchange device. Background Technology

[0002] The main function of a heating wire is to convert electrical energy into heat energy for heating and temperature regulation. Heating wires in different devices have different functions. Heating wires can also be called electric heating wires or heating elements. Iron-chromium-aluminum and nickel-chromium electric heating alloys generally have strong oxidation resistance.

[0003] While traditional heating wires can convert electrical energy into heat energy, their small contact area with the fluid inside the water tank results in a longer heating time, affecting work efficiency. Furthermore, traditional heating wires are fixed in place and cannot be moved, making it difficult to ensure that the fluid in the water tank is heated evenly. Utility Model Content

[0004] In order to solve the problems existing in the background technology, the present invention provides a heating wire that can make the fluid in the water tank evenly heated and increase the contact area between the fluid and the heating wire.

[0005] To address the problems in the existing technology, this utility model provides a precision heat exchange device heating wire, including a rotating device. The telescopic structure is fixedly installed on the heating rod. The telescopic structure includes a mounting block, a waterproof electric actuator, a connecting sleeve, and a heating tube. Two sets of mounting blocks are respectively fixed to the upper and lower parts of the outer wall of the heating rod. One end of the waterproof electric actuator is fixedly connected to the inside of the mounting block. One end of the connecting sleeve is fixedly connected to the output end of the waterproof electric actuator. The outer wall of the heating tube is snapped into the inside of the connecting sleeve. A set of heating wires is fixedly installed inside the heating tube.

[0006] Specifically, a set of sleeve plates is fixedly connected to each of the two side walls of the connecting sleeve. The sleeve plates include a sliding plate and a connecting box. One side of the sliding plate is fixedly connected to the side wall of the connecting sleeve, and a set of sliding plates is also fixedly installed on the other side of the connecting sleeve. The sliding plate is slidably connected inside the connecting box. The bottom of the connecting box is fixedly connected to the disc. A set of heating wires is fixedly installed inside the sliding plate.

[0007] Specifically, the rotating device includes a mounting cylinder, a motor, and a connecting shaft. The motor is fixedly installed inside the mounting cylinder, and the output shaft of the motor is fixedly connected to one end of the connecting shaft. The other end of the connecting shaft is fixedly connected to the lower center of the disc. Two sets of connecting blocks are fixedly installed on the side wall of the disc. The two sets of connecting blocks are symmetrical to each other, and a set of temperature detectors is fixedly installed on each set of connecting blocks.

[0008] Specifically, a set of heating devices is fixedly installed on the disc. The heating devices include heating rods, heating wires, fixing blocks, and heating cylinders. Two sets of heating rods are fixedly installed on the disc, and a set of heating wires is fixedly installed inside the heating rods.

[0009] Specifically, the heating wire is fixedly installed on the disc, the side wall of the heating wire is fixedly connected to the lower part of the side wall of the multiple sets of connecting boxes, the side wall of another set of heating wires is fixedly connected to the upper part of the side wall of the multiple sets of connecting boxes, and a heating cylinder is fixedly installed between the two sets of heating wires.

[0010] The beneficial effects of this utility model are as follows: The heating wire of the precision heat exchange device of this utility model has a set of mounting blocks fixedly installed on the heating rod. A set of waterproof electric actuators is fixedly installed inside the mounting blocks. When the waterproof electric actuators are activated, they will drive the heating tube and the sliding plate to move forward. Multiple sets of heating wires are fixedly installed inside the sliding plate, which can effectively increase the contact area between the heating device and the fluid. Furthermore, a set of motors is fixedly installed at the bottom of the disc, which can drive the disc to rotate, thereby achieving the effect of stirring the fluid in the water tank. This allows the fluid to be heated evenly, thus accelerating the heating speed and effectively improving the working efficiency. Attached Figure Description

[0011] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0012] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0013] Figure 2 This is a schematic diagram of the connection structure of the mounting cylinder and motor and other parts in this utility model;

[0014] Figure 3 This is a top view of the overall structure of this utility model;

[0015] Figure 4 This is an exploded view of the connection structure of the heating rod, heating wire, and sleeve plate in this utility model.

[0016] In the diagram: 1. Rotating device; 110. Mounting cylinder; 111. Motor; 112. Connecting shaft; 113. Disc; 114. Connecting block; 115. Temperature detector; 2. Heating device; 210. Heating rod; 211. Heating wire; 212. Fixing block; 213. Heating cylinder; 3. Telescopic structure; 310. Mounting block; 311. Waterproof electric actuator; 312. Connecting sleeve; 313. Heating tube; 314. Connecting box; 315. Sliding plate; 316. Sleeve plate. Detailed Implementation

[0017] To make the technical methods, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0018] like Figure 3 and Figure 4 As shown, a precision heat exchange device includes a heating wire, comprising a rotating device 1, a telescopic structure 3 fixedly mounted on a heating rod 210, and a mounting block 310, a waterproof electric actuator 311, a connecting sleeve 312, and a heating tube 313. Two sets of mounting blocks 310 are respectively fixed to the upper and lower parts of the outer wall of the heating rod 210. One end of the waterproof electric actuator 311 is fixedly connected to the inside of the mounting block 310, and one end of the connecting sleeve 312 is fixedly connected to the output end of the waterproof electric actuator 311. The outer wall of the heating tube 313 is snapped into the inside of the connecting sleeve 312, and a set of heating wires 211 is fixedly installed inside the heating tube 313, which can increase the contact area between the fluid and the heating wire, thereby increasing the heating speed and improving working efficiency.

[0019] like Figure 1-2 As shown, a set of sleeve plates 316 are fixedly connected to each of the two side walls of the connecting sleeve 312. Each sleeve plate 316 includes a sliding plate 315 and a connecting box 314. One side of the sliding plate 315 is fixedly connected to the side wall of the connecting sleeve 312, and another set of sliding plates 315 is fixedly installed on the other side of the connecting sleeve 312. The sliding plates 315 are slidably connected inside the connecting box 314. The bottom of the connecting box 314 is fixedly connected to the disc 113. A set of heating wires 211 is fixedly installed inside the sliding plate 315. The rotating device 1 includes... The device comprises an installation cylinder 110, a motor 111, and a connecting shaft 112. The motor 111 is fixedly installed inside the installation cylinder 110. The output shaft of the motor 111 is fixedly connected to one end of the connecting shaft 112. The other end of the connecting shaft 112 is fixedly connected to the lower center of the disc 113. Two sets of connecting blocks 114 are fixedly installed on the side wall of the disc 113. The two sets of connecting blocks 114 are symmetrical to each other. A set of temperature detectors 115 is fixedly installed on each set of connecting blocks 114, which can drive the entire heating device to rotate, thereby making the fluid heat up evenly.

[0020] (1) In this utility model, the waterproof electric actuator 311 is activated first. The waterproof electric actuator 311 will drive the connecting sleeve 312 and the heating tube 313 to extend forward. While the heating tube 313 moves, the sliding plate 315 will also move together. At this time, the telescopic structure 3 will be fully extended. Multiple sets of heating wires 211 are fixedly installed inside the sliding plate 315, which can increase the contact area between the fluid and the heating wire, making the heating speed faster and thus improving the working efficiency. After the heating is completed, the waterproof electric actuator 311 can drive the sliding plate 315 back into the connecting box 314, which is convenient and practical.

[0021] (2) In this utility model, the heating device 2 is fixedly installed on the disc 113, and the telescopic structure 3 is fixedly installed on the heating device 2. So when the disc 113 rotates, it will also drive the telescopic structure 3 to rotate. When the heating reaches the preset time, the two sets of temperature detectors 115 will detect the temperature of the fluid in real time and transmit it to the display device. The staff can take the middle value of the two sets of data to know the temperature of the fluid inside the water tank.

[0022] Working principle: First, the waterproof electric actuator 311 is activated, which drives the connecting sleeve 312 and the heating tube 313 to extend forward. As the heating tube 313 moves, the sliding plate 315 also moves along with it. At this time, the telescopic structure 3 will be fully extended, and the starting device will begin to heat the fluid inside the water tank. At this time, the motor 111 is activated, which drives the connecting shaft 112 and the disc 113 to rotate. The telescopic structure 3 is fixedly installed on the disc 113, so when the disc 113 rotates, it will also drive the telescopic structure 3 to rotate. When the pre-set time is reached, the two sets of temperature detectors 115 will detect the temperature of the fluid in real time and transmit it to the display device. The operator can take the midpoint of the two sets of data to know the temperature of the fluid inside the water tank. This not only increases the contact area between the fluid and the heating wire, making the heating speed faster, but also allows the fluid to be heated evenly.

[0023] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The descriptions of the above embodiments and specifications are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of protection claimed by this utility model. Scope of Protection of this Utility Model.

Claims

1. A precision heat exchange device heating wire, characterized by comprising a rotating device (1) ; A telescopic structure (3) is fixedly installed on a heating rod (210), and the telescopic structure (3) comprises a mounting block (310), a waterproof electric push rod (311), a connecting sleeve (312) and a heating pipe (313) ; Two groups of mounting blocks (310) are fixedly installed on the upper part and the lower part of the outer wall of the heating rod (210) respectively; One end of the waterproof electric push rod (311) is fixedly connected to the inside of the mounting block (310) ; One end of the connecting sleeve (312) is fixedly connected to the output end of the waterproof electric push rod (311) ; The outer wall of the heating pipe (313) is clamped in the inside of the connecting sleeve (312), and one group of heating wires (211) is fixedly installed in the inside of the heating pipe (313). Both sides of the connecting sleeve (312) are fixedly connected with a group of sleeve plates (316) respectively, the sleeve plate (316) comprises a sliding plate (315) and a connecting box (314), one side of the sliding plate (315) is fixedly connected with the side wall of the connecting sleeve (312), and the other side of the connecting sleeve (312) is also fixedly installed with a group of sliding plates (315). The sliding plate (315) is slidingly connected in the inside of the connecting box (314), the bottom of the connecting box (314) is fixedly connected with the disc (113), and one group of heating wires (211) is fixedly installed in the inside of the sliding plate (315). The rotating device (1) comprises a mounting cylinder (110), a motor (111) and a connecting shaft (112), the motor (111) is fixedly installed in the inside of the mounting cylinder (110), the output shaft of the motor (111) is fixedly connected with one end of the connecting shaft (112), and the other end of the connecting shaft (112) is fixedly connected with the lower end center of the disc (113). Two groups of connecting blocks (114) are fixedly installed on the side wall of the disc (113), the two groups of connecting blocks (114) are symmetrical to each other, and one group of temperature detectors (115) is fixedly installed on the two groups of connecting blocks (114). A group of heating devices (2) are fixedly installed on the disc (113), the heating device (2) comprises a heating rod (210), a heating wire (211), a fixing block (212) and a heating cylinder (213), two groups of heating rods (210) are fixedly installed on the disc (113), and one group of heating wires (211) is fixedly installed in the inside of the heating rod (210). The heating wire (211) is fixedly installed on the disc (113), one group of heating cylinders (213) is fixedly installed between the two groups of heating wires (211), one group of heating cylinders (213) is fixedly installed between the two groups of heating wires (211), and the other group of heating wires (211) is fixedly connected with the lower part of the side wall of the connecting box (314).

2. A precision heat exchange device heating wire according to claim 1, characterized in that: ​ 3. A precision heat exchange device heating wire according to claim 2, wherein: ​ 4. The heating wire of the precision heat exchange device according to claim 1, characterized in that: ​ 5. A precision heat exchange device heating wire as defined in claim 4, wherein: ​ 6. A precision heat exchange device heating wire as defined in claim 4, wherein: ​ 7. A heating wire for a precision heat exchange device according to claim 6, wherein: ​