Motor barrel heating and temperature measuring device
By designing a motor barrel heating and temperature measurement device, the problem of rapid temperature loss after barrel heating is solved, efficient heating of the barrel and real-time temperature monitoring are achieved, and the processing effect of motor assembly is improved.
Patent Information
- Application Number
- CN202422264749.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-14
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-09-14
AI Technical Summary
During the assembly process of existing motors, the temperature loss after the barrel is heated is fast and cannot be monitored in real time, resulting in poor pressing and assembly effect.
A motor barrel heating and temperature measurement device is designed, including a barrel heating mechanism and a temperature inspection mechanism. The barrel heating mechanism can be extended into the barrel for heating. The temperature inspection mechanism can measure temperature in real time, and the stable heating and temperature monitoring of the barrel are realized through the main frame mechanism.
It realizes efficient heating and real-time temperature monitoring of the barrel, avoids temperature losses, and improves the subsequent processing effect of the barrel.
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Figure CN223124758U_ABST
Abstract
Description
Technical Field
[0001] The present technical solution relates to the technical field of motor assembly equipment, and particularly refers to a motor cylinder heating and temperature measuring device. Background Art
[0002] A motor is a device that converts electrical energy into mechanical energy. It uses an energized coil (i.e., the stator winding) to generate a rotating magnetic field and acts on the rotor (such as a squirrel-cage closed aluminum frame) to form a magnetoelectric dynamic rotating torque. The motor mainly consists of a stator and a rotor. The direction of the force on the energized wire in the magnetic field is related to the direction of the current and the direction of the magnetic induction line (magnetic field direction). The working principle of the motor is the action of the magnetic field on the current, which causes the motor to rotate.
[0003] At present, for the assembly of motors on the market, the stator, rotor, and end cap need to be installed in the cylinder. Among them, the cylinder needs to be heated to facilitate the insertion of the stator and make the stator more firmly installed. The existing heating device needs to place the cylinder in the heater and take out the cylinder and place it in the processing position before installing the stator. During the process of taking out the cylinder to press-fit the stator, this heating method will cause the temperature of the cylinder to drop, resulting in a poor press-fitting effect. At the same time, the real-time temperature of the cylinder cannot be known, and the cylinder cannot be accurately taken out. Summary of the Invention
[0004] The purpose of the present technical solution is to provide a motor cylinder heating and temperature measuring device, which heats and measures the temperature of the cylinder in real time through a cylinder heating mechanism and a cylinder temperature detection mechanism, and solves the problems of rapid temperature loss and inability to obtain the real-time temperature of the cylinder after heating the cylinder by the original heating equipment.
[0005] The purpose of the present technical solution is achieved as follows:
[0006] A motor cylinder heating and temperature measuring device includes: a main frame mechanism with a cylinder placement position thereon; a cylinder heating mechanism arranged on the main frame mechanism for heating the cylinder; and a cylinder temperature detection mechanism arranged on the main frame mechanism for detecting the temperature of the cylinder. Among them, the cylinder heating mechanism extends into the cylinder to heat it, and the cylinder temperature detection mechanism contacts the outer wall of the cylinder to detect its temperature.
[0007] Preferably, the cylinder heating mechanism includes: a cylinder heating mounting frame arranged on the main frame mechanism; a cylinder heating driving member arranged on the cylinder heating mounting frame; and a cylinder heating member arranged at the output end of the cylinder heating driving member. Among them, the cylinder heating driving member drives the cylinder heating member to move up and down, so that the cylinder heating member extends into the cylinder to heat it.
[0008] Preferably, the barrel heating mechanism further includes: a barrel heating slide rail disposed on the barrel heating mounting bracket; a barrel heating slider movably disposed on the barrel heating slide rail; a barrel heating slide rod passing through the barrel heating slider and connected to the output end of the barrel heating driving member; and a barrel heating movable plate disposed at the upper end of the barrel heating slide rod; wherein, the barrel heating member is disposed on the barrel heating movable plate through a barrel heating connecting rod.
[0009] Preferably, the barrel heating member is configured to be cylindrical, and its outer diameter is adapted to the inner diameter of the barrel.
[0010] Preferably, the barrel temperature detection mechanism includes: a barrel temperature detection mounting bracket disposed on the main frame mechanism; a barrel temperature detection driving member disposed on the barrel temperature detection mounting bracket; and a barrel temperature detection probe disposed at the output end of the barrel temperature detection driving member; wherein, the barrel temperature detection driving member drives the barrel temperature detection probe to move, so that the barrel temperature detection probe abuts against the outer wall of the barrel for temperature detection.
[0011] Preferably, the barrel temperature detection mechanism further includes: a barrel temperature detection slide rail disposed on the barrel temperature detection mounting bracket; a barrel temperature detection slider movably disposed on the barrel temperature detection slide rail; a barrel temperature detection slide rod passing through the barrel temperature detection slider and connected to the output end of the barrel temperature detection driving member; and a barrel temperature detection movable plate disposed on the barrel temperature detection slider; wherein, the barrel temperature detection probe is disposed on the barrel temperature detection movable plate through a barrel temperature detection connecting rod.
[0012] Preferably, the main frame mechanism includes: a substrate; a transfer disk disposed on the substrate; and a plurality of positioning fixtures disposed on the transfer disk and having barrel placement positions for carrying barrels; wherein, the barrel heating mounting bracket and the barrel temperature detection mounting bracket are located beside the transfer disk.
[0013] The prominent and beneficial technical effects of this technical solution compared with the prior art are:
[0014] 1. The barrel heating mechanism designed in this technical solution can extend into the barrel for heating, without the need to transfer the barrel, avoiding temperature loss and having a better heating effect.
[0015] 2. The barrel heating mechanism designed in this technical solution controls the vertical lifting of the barrel heating member through the barrel heating driving member, with a simple structure and high heating efficiency.
[0016] 3. The barrel temperature detection mechanism designed in this technical solution controls the barrel temperature detection probe to abut against the outer wall of the barrel through the barrel temperature detection driving member, and can measure the barrel temperature in real time.
[0017] 4. The main frame mechanism designed in this technical solution has multiple positioning tooling. Through the transfer tray, the barrel with appropriate temperature can be quickly transferred to the next processing station, saving time and avoiding rapid heat loss of the barrel, thus improving the subsequent processing effect. Description of the Drawings
[0018] Figure 1 It is a schematic diagram when this technical solution is in use.
[0019] Figure 2 It is a schematic structural diagram of this technical solution.
[0020] Figure 3 It is a schematic structural diagram of the barrel heating mechanism.
[0021] Figure 4 It is a schematic structural diagram of the barrel temperature detection mechanism.
[0022] Reference Signs: 1. Main frame mechanism; 2. Barrel heating mechanism; 3. Barrel temperature detection mechanism; 4. Barrel heating mounting frame; 5. Barrel heating driving part; 6. Barrel heating part; 7. Barrel heating slide rail; 8. Barrel heating slide block; 9. Barrel heating slide rod; 10. Barrel heating movable plate; 11. Barrel heating connecting rod; 12. Barrel temperature detection mounting frame; 13. Barrel temperature detection driving part; 14. Barrel temperature detection probe; 15. Barrel temperature detection slide rail; 16. Barrel temperature detection slide block; 17. Barrel temperature detection slide rod; 18. Barrel temperature detection movable plate; 19. Barrel temperature detection connecting rod; 20. Substrate; 21. Transfer tray; 22. Positioning tooling. Detailed Embodiments
[0023] The following further details the detailed embodiments of this technical solution with reference to the drawings.
[0024] As Figure 1 shown, in the assembly process of the motor, the stator, rotor and end cover need to be sequentially installed in the barrel to form a complete motor. Before pressing the stator into the barrel, the barrel needs to be heated, and this application can enable the heated motor to immediately enter the next processing station.
[0025] Specifically, as Figure 2 shown, a motor barrel heating and temperature measuring device includes a main frame mechanism 1, a barrel heating mechanism 2 and a barrel temperature detection mechanism 3. The main frame mechanism 1 has a barrel placement position. The barrel heating mechanism 2 is arranged on the main frame mechanism 1 and is used to heat the barrel. The barrel temperature detection mechanism 3 is arranged on the main frame mechanism 1 and is used to detect the temperature of the barrel. The barrel heating mechanism 2 extends into the barrel to heat it, and the barrel temperature detection mechanism 3 abuts against the outer wall of the barrel to detect its temperature.
[0026] Further, the barrel heating mechanism 2 includes a barrel heating mounting bracket 4, a barrel heating driving member 5, and a barrel heating member 6. The barrel heating driving member 5 is arranged on the barrel heating mounting bracket 4, and the barrel heating member 6 is arranged at the output end of the barrel heating driving member 5 and can extend into the barrel to heat it. The barrel temperature detection mechanism 3 includes a barrel temperature detection mounting bracket 12, a barrel temperature detection driving member 13, and a barrel temperature detection probe 14. The barrel temperature detection driving member 13 is arranged on the barrel temperature detection mounting bracket 12, and the barrel temperature detection probe 14 is arranged at the output end of the barrel temperature detection driving member 13 and can horizontally move to abut against the outer wall of the barrel. When the barrel is in the barrel placement position, the barrel temperature detection probe 14 always abuts against the outer wall of the barrel until the barrel leaves. The temperature of the barrel is detected at all times through the barrel temperature detection probe 14. When the detected temperature is too low, the barrel can be reheated repeatedly.
[0027] As Figure 2 shown, the main frame mechanism 1 includes a base plate 20, a material transfer disk 21, and a number of positioning jigs 22. The material transfer disk 21 is rotatably arranged on the base plate 20. All the positioning jigs 22 are arranged circumferentially on the material transfer disk 21. Each positioning jig 22 has a barrel placement position where the barrel can be stably placed and move with the material transfer disk 21. The material transfer disk 21 can transport the barrel to each processing station. The barrel heating mounting bracket 4 and the barrel temperature detection mounting bracket 12 are located beside the material transfer disk 21, which facilitates the operation of the barrel heating member 6 and the barrel temperature detection probe 14.
[0028] As Figure 3 shown, the barrel heating mechanism 2 further includes a barrel heating slide rail 7, a barrel heating slide block 8, a barrel heating slide rod 9, and a barrel heating movable plate 10. The barrel heating slide rail 7 is vertically arranged on the barrel heating mounting bracket 4. The upper and lower ends of the barrel heating slide rail 7 have baffles. The barrel heating slide block 8 is movably arranged on the barrel heating slide rail 7, and the baffles can limit the farthest stroke of the barrel heating slide block 8. The barrel heating slide rod 9 passes through the barrel heating slide block 8 and is connected to the output end of the barrel heating driving member 5. When the barrel heating driving member 5 controls the movement of the barrel heating slide rod 9, the barrel heating slide block 8 and the barrel heating slide rail 7 cooperate to limit the barrel heating slide rod 9 to move stably. The barrel heating movable plate 10 is arranged at the upper end of the barrel heating slide rod 9, and the barrel heating member 6 is arranged on the barrel heating movable plate 10 through a barrel heating connecting rod 11. In this way, the barrel heating member 6 can realize vertical lifting to enter the barrel interior. The barrel heating member 6 is configured as a cylinder, and the outer diameter of the barrel heating member 6 is slightly smaller than the inner diameter of the barrel, which can not only flexibly extend into the barrel but also be close to the inner wall of the barrel to improve the heating efficiency.
[0029] As Figure 4As shown in the figure, the barrel temperature detection mechanism 3 further includes a barrel temperature detection slide rail 15, a barrel temperature detection slide block 16, a barrel temperature detection slide rod 17, and a barrel temperature detection movable plate 18. The barrel temperature detection slide rail 15 is horizontally arranged on the barrel temperature detection mounting bracket 12. The left and right ends of the barrel temperature detection slide rail 15 are provided with baffles. The barrel temperature detection slide block 16 is movably arranged on the barrel temperature detection slide rail 15. The baffles can limit the farthest travel of the barrel temperature detection slide block 16. The barrel temperature detection slide rod 17 passes through the barrel temperature detection slide block 16 and is connected to the output end of the barrel temperature detection driving member 13. When the barrel temperature detection driving member 13 controls the movement of the barrel temperature detection slide rod 17, the barrel temperature detection slide block 16 and the barrel temperature detection slide rail 15 cooperate to limit the barrel temperature detection slide rod 17 and make it move stably. The barrel temperature detection movable plate 18 is arranged on the barrel temperature detection slide block 16. The barrel temperature detection probe 14 is arranged on the barrel temperature detection movable plate 18 through the barrel temperature detection connecting rod 19. In this way, the barrel temperature detection probe 14 can realize horizontal movement to abut against the outer wall of the barrel and perform real-time temperature measurement on it. During the process from when the barrel moves into place until the barrel leaves, the barrel temperature detection mechanism 3 measures the temperature of the barrel in real time. And when the temperature does not meet the setting, the barrel temperature detection mechanism 3 can control the barrel heating mechanism 2 to heat the barrel repeatedly.
[0030] The above shows and describes the basic principles, main features, and advantages of this technical solution. Those skilled in the art should understand that this technical solution is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principles of this technical solution. Without departing from the spirit and scope of this technical solution, this technical solution will have various changes and improvements, and these changes and improvements all fall within the scope of this technical solution claimed. The scope of protection required by this technical solution is defined by the appended claims and their equivalents.
Claims
1. A motor barrel heating and temperature measuring device, characterized in that, Comprising: A main frame mechanism (1) with a barrel placement position thereon; A barrel heating mechanism (2) disposed on the main frame mechanism (1) for heating the barrel; And A barrel temperature detection mechanism (3) disposed on the main frame mechanism (1) for detecting the temperature of the barrel; Wherein, the barrel heating mechanism (2) extends into the barrel for heating it, and the barrel temperature detection mechanism (3) abuts against the outer wall of the barrel for temperature detection.
2. The motor barrel heating and temperature measuring device according to claim 1, characterized in that, The barrel heating mechanism (2) includes: A barrel heating mounting bracket (4) provided on the main frame mechanism (1); A barrel heating driving member (5) disposed on the barrel heating mounting bracket (4); and A barrel heating member (6) disposed at the output end of the barrel heating driving member (5); Wherein, the barrel heating driving member (5) drives the barrel heating member (6) to move up and down so that the barrel heating member (6) extends into the barrel for heating it.
3. The motor barrel heating and temperature measuring device according to claim 2, characterized in that, The barrel heating mechanism (2) further includes: A barrel heating slide rail (7) provided on the barrel heating mounting bracket (4); A barrel heating slide block (8) movably disposed on the barrel heating slide rail (7); A barrel heating slide rod (9) passing through the barrel heating slide block (8) and connected to the output end of the barrel heating driving member (5); and A barrel heating movable plate (10) provided at the upper end of the barrel heating slide rod (9); Wherein, the barrel heating member (6) is provided on the barrel heating movable plate (10) through a barrel heating connecting rod (11).
4. The motor barrel heating and temperature measuring device according to claim 3, characterized in that: The barrel heating member (6) is configured as a cylinder, and its outer diameter is adapted to the inner diameter of the barrel.
5. A motor barrel heating and temperature measuring device according to any one of claims 1-4, characterized in that, The barrel temperature detection mechanism (3) includes: A barrel temperature detection mounting bracket (12) provided on the main frame mechanism (1); A barrel temperature detection driving member (13) disposed on the barrel temperature detection mounting bracket (12); and A barrel temperature detection probe (14) disposed at the output end of the barrel temperature detection driving member (13); Wherein, the barrel temperature detection driving member (13) drives the barrel temperature detection probe (14) to move so that the barrel temperature detection probe (14) abuts against the outer wall of the barrel for temperature detection.
6. The motor barrel heating and temperature measuring device according to claim 5, wherein, The barrel temperature detection mechanism (3) further includes: A barrel temperature detection slide rail (15) provided on the barrel temperature detection mounting bracket (12); A barrel temperature detection slide block (16) movably disposed on the barrel temperature detection slide rail (15); A barrel temperature detection slide rod (17) passing through the barrel temperature detection slide block (16) and connected to the output end of the barrel temperature detection driving member (13); and A barrel temperature detection movable plate (18) provided on the barrel temperature detection slide block (16); Wherein, the barrel temperature detection probe (14) is provided on the barrel temperature detection movable plate (18) through a barrel temperature detection connecting rod (19).
7. The motor barrel heating and temperature measuring device according to claim 2, wherein The main frame mechanism (1) includes: A substrate (20); A transfer disk (21) provided on the substrate (20); and A plurality of positioning jigs (22) provided on the transfer disk (21) and having a barrel placement position for carrying the barrel. Among them, the barrel heating mounting bracket (4) and the barrel temperature detection mounting bracket (12) are located beside the material transfer disc (21).