Opening and closing type normalizing inductor for cab stabilizer bar

By employing uniformly distributed heating rods and real-time temperature monitoring in the stabilizer bar opening and closing type normalizing sensor in the cab, the problem of unstable heating area and temperature control was solved, achieving uniform heating and high-precision machining during the stabilizer bar normalizing process.

CN223592754UActive Publication Date: 2025-11-25WUXI WEI NENG NC TECH CO LTD
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Patent Information

Application Number
CN202423291677.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-11-25
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

The existing stabilizer bar openable normalizing inductor heating zone and temperature are difficult to control, resulting in unstable stabilizer bar normalizing quality, affecting its strength and toughness and other performance indicators, making it difficult to meet the modern automotive industry's demand for high-precision and high-efficiency processing of parts.

Method used

A cab stabilizer bar opening and closing type normalizing sensor was designed, which includes a cylinder, cover plate, T-slot, T-block, fixing column, induction furnace, heating rod, temperature sensor and protective shell. Through the uniformly distributed heating rod and real-time temperature monitoring, the heating process can be precisely controlled to ensure heating uniformity and temperature consistency.

Benefits of technology

This technology enables uniform heating of the stabilizer bar during the normalizing process, ensuring consistent normalizing results, improving the quality of the stabilizer bar, and meeting the high-precision and high-efficiency processing requirements of the modern automotive industry for parts.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the related technical field of metal heat treatment equipment, in particular to a cab stabilizer bar opening and closing type normalizing inductor which comprises a bottom plate, a feeding mechanism is arranged on the upper surface of the bottom plate, and an induction mechanism is arranged on the upper surface of a top plate. According to the open-close type normalizing inductor for the cab stabilizer bar, through the arrangement of the induction mechanism, when the open-close type normalizing inductor is used, an air cylinder is started to push a cover plate connected to the lower portion of the air cylinder to move up and down, the cover plate can cover the surface of an induction furnace, multiple sets of heating rods are fixedly connected to the inner side surface of the induction furnace, and the heating rods are started to generate heat through the heat effect of current; the inner side surface of the induction furnace is further fixedly connected with a plurality of sets of temperature sensors, in the heating process, the temperature sensors monitor the temperature in the induction furnace and transmit temperature data to the control panel electrically connected with the temperature sensors, the control panel can automatically regulate and control the power of the heating rods, and therefore the temperature in the induction furnace is precisely regulated and controlled, and the heating efficiency is improved. And the requirements of the automobile industry for part machining are met.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the related technical field of metal heat treatment equipment especially is driving cab stabilizer bar open and shut type normalizing inductor. BACKGROUND

[0002] In the vehicle cab, stabilizer bar is mainly used for reducing the roll of vehicle in the running process, it passes through connecting the left and right suspensions of vehicle, when the vehicle turns or drives on uneven road, utilizes the elastic deformation of itself to balance the force of left and right sides, thereby improves the stability of vehicle driving, normalizing is a kind of heat treatment process, is used to improve the performance of metal material, normalizing inductor is the device for heating metal in the process of normalizing, makes it better adapt to different heating needs, to ensure that stabilizer bar has excellent mechanical properties, normalizing is one of key processes, therefore, it is particularly needed to drive cab stabilizer bar open and shut type normalizing inductor.

[0003] But the existing stabilizer bar open and shut type normalizing inductor, heating area and temperature are difficult to control, easily cause the unstable normalizing quality of stabilizer bar, influence its strength, toughness and other performance indexes, it is difficult to meet the demand of modern automobile industry to high-precision, high-efficiency processing of parts. UTILITY MODEL CONTENTS

[0004] The utility model discloses a driving cab stabilizer bar open and shut type normalizing inductor to solve the existing stabilizer bar open and shut type normalizing inductor of the above background art, heating area and temperature are difficult to control, easily cause the unstable normalizing quality of stabilizer bar, influence its strength, toughness and other performance indexes, it is difficult to meet the demand of modern automobile industry to high-precision, high-efficiency processing of parts.

[0005] To realize above-mentioned purpose, the utility model provides following technical scheme: driving cab stabilizer bar open and shut type normalizing inductor, including bottom plate, the upper surface of bottom plate is fixedly connected with control panel, the upper surface of bottom plate is provided with feeding mechanism, the upper surface of bottom plate is fixedly connected with support, the upper surface of support is fixedly connected with top plate, the upper surface of top plate is provided with induction mechanism;

[0006] The induction mechanism includes cylinder, cover plate, T-shaped groove, T-shaped block, fixed column, induction furnace, heating rod, temperature sensor and protection shell, the upper surface of top plate is fixedly connected with cylinder, the lower surface of cylinder is fixedly connected with cover plate, the side surface of cover plate is provided with T-shaped groove, the inner side surface of T-shaped groove is slidably connected with T-shaped block, the side surface of T-shaped block is fixedly connected with fixed column, the outer side surface of fixed column is fixedly connected with induction furnace, the inner side surface of induction furnace is fixedly connected with heating rod, the inner side surface of induction furnace is fixedly connected with temperature sensor, the outer side surface of temperature sensor is fixedly connected with protection shell.

[0007] Preferably, the bracket is arranged symmetrically with the central axis of the bottom plate, and the control panel is electrically connected with the temperature sensor.

[0008] Preferably, the inner side of the T-shaped groove and the outer side of the T-shaped block are matched in size, and the T-shaped groove is provided with multiple groups on the surface of the cover plate.

[0009] Preferably, the heating rod is provided with multiple groups on the inner side surface of the induction furnace, and the temperature sensor is provided with multiple groups on the inner side surface of the induction furnace.

[0010] Preferably, the feeding mechanism comprises a fixed block, a sliding groove, a sliding block, a moving block, a threaded rod, a driving motor, a flat plate and a feeding block, the upper surface of the bottom plate is fixedly connected with the fixed block, the upper surface of the bottom plate is provided with the sliding groove, the inner surface of the sliding groove is slidably connected with the sliding block, the upper surface of the sliding block is fixedly connected with the moving block, the inner surface of the moving block is threadedly connected with the threaded rod, one end of the threaded rod is fixedly connected with the driving motor, the upper surface of the moving block is fixedly connected with the flat plate, and the upper surface of the flat plate is fixedly connected with the feeding block.

[0011] Preferably, the fixed block is provided with multiple groups on the surface of the bottom plate, and the inner side of the sliding groove and the outer side of the sliding block are matched in size.

[0012] Preferably, the threaded rod is arranged symmetrically with the central axis of the bottom plate, and the feeding block is arranged symmetrically with the central axis of the flat plate.

[0013] Compared with the prior art, the cab stabilizer bar opening and closing type normalizing inductor has the advantages that: when in use, the cover plate connected below is moved up and down by starting the air cylinder, when the cover plate moves, the T-shaped block slides in the T-shaped groove to limit the cover plate and make the cover plate move more stably, so that the cover plate can be covered on the surface of the induction furnace, a plurality of heating rods are fixedly connected to the inner side surface of the induction furnace, the heating rods generate heat by the heat effect of electric current, the heating rods are uniformly distributed on the inner side surface of the induction furnace, heat can be uniformly radiated in the internal space of the induction furnace, the stabilizer bar is uniformly heated in the heating process, local overheating or insufficient heating is avoided, the consistency of normalizing effect is ensured, the quality of the stabilizer bar is improved, the inner side surface of the induction furnace is also fixedly connected with a plurality of temperature sensors, the outer side surface of the temperature sensor is fixedly connected with a protective shell, the protective shell can prevent the sensor from being damaged in a high-temperature and complex working environment, the measurement accuracy and stability of the sensor are ensured, in the heating process, the temperature sensor monitors the temperature in the induction furnace in real time and transmits the temperature data to the control panel electrically connected thereto, after receiving the data fed back by the temperature sensor, the control panel automatically regulates the power of the heating rod, so that the temperature in the induction furnace is accurately regulated, the normalizing process is strictly carried out according to the process requirement, and the demand of modern automobile industry for high-precision and high-efficiency processing of parts is met. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is a side view appearance structure schematic view of the utility model;

[0015] Figure 2 It is a feeding mechanism structure schematic view of the utility model;

[0016] Figure 3 It is a top plate and air cylinder mutual cooperation structure schematic view of the utility model;

[0017] Figure 4 It is an induction mechanism structure schematic view of the utility model.

[0018] In the drawing: 1, bottom plate; 2, control panel; 3, feeding mechanism; 301, fixed block; 302, sliding groove; 303, sliding block; 304, moving block; 305, threaded rod; 306, driving motor; 307, flat plate; 308, feeding block; 4, support; 5, top plate; 6, induction mechanism; 601, air cylinder; 602, cover plate; 603, T-shaped groove; 604, T-shaped block; 605, fixed column; 606, induction furnace; 607, heating rod; 608, temperature sensor; 609, protective shell. DETAILED DESCRIPTION

[0019] Clearly, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0020] Please refer to Figures 1-4 The utility model provides a technical scheme: cab stabilizer bar open -close formula normalizing inductor, including bottom plate 1, bottom plate 1's upper surface fixedly connected with control panel 2, bottom plate 1's upper surface is provided with feeding mechanism 3, bottom plate 1's upper surface fixedly connected with support 4, support 4's upper surface fixedly connected with top plate 5, top plate 5's upper surface is provided with induction mechanism 6;

[0021] The induction mechanism 6 comprises a pneumatic cylinder 601, a cover plate 602, a T-shaped groove 603, a T-shaped block 604, a fixed column 605, an induction furnace 606, a heating rod 607, a temperature sensor 608 and a protective shell 609, the upper surface of the top plate 5 is fixedly connected with the pneumatic cylinder 601, the lower surface of the pneumatic cylinder 601 is fixedly connected with the cover plate 602, one side surface of the cover plate 602 is provided with the T-shaped groove 603, the inner side surface of the T-shaped groove 603 is slidably connected with the T-shaped block 604, one side surface of the T-shaped block 604 is fixedly connected with the fixed column 605, the outer side surface of the fixed column 605 is fixedly connected with the induction furnace 606, the inner side surface of the induction furnace 606 is fixedly connected with the heating rod 607, the inner side surface of the induction furnace 606 is fixedly connected with the temperature sensor 608, the outer side surface of the temperature sensor 608 is fixedly connected with the protective shell 609, through the setting of the pneumatic cylinder 601, the cover plate 602, the T-shaped groove 603, the T-shaped block 604, the fixed column 605, the induction furnace 606, the heating rod 607, the temperature sensor 608 and the protective shell 609, when in use, the pneumatic cylinder 601 is started, the cover plate 602 connected below is pushed to move up and down, when the cover plate 602 moves, the T-shaped block 604 will slide in the T-shaped groove 603, the cover plate 602 is positioned, the cover plate 602 moves more stably, the cover plate 602 can be covered on the surface of the induction furnace 606, a plurality of heating rods 607 are fixedly connected to the inner side surface of the induction furnace 606, the heating rods 607 generate heat by the heat effect of electric current, because the heating rods 607 are uniformly distributed on the inner side surface of the induction furnace 606, the heat can be evenly distributed in the internal space of the induction furnace 606, the stability rod is heated uniformly in the heating process, the local overheating or insufficient heating is avoided, the consistency of the normalizing effect is ensured, the quality of the stability rod is improved, a plurality of temperature sensors 608 are fixedly connected to the inner side surface of the induction furnace 606, the outer side surface of the temperature sensor 608 is fixedly connected with the protective shell 609, the protective shell 609 can prevent the sensor from being damaged in the high-temperature and complex working environment, ensure the measurement accuracy and stability, in the heating process, the temperature sensor 608 monitors the temperature in the induction furnace 606 in real time, and transmits the temperature data to the control panel 2 electrically connected thereto, after receiving the data feedback by the temperature sensor 608, the control panel 2 automatically adjusts the power of the heating rod 607, so as to accurately control the temperature in the induction furnace 606, ensure that the normalizing process strictly follows the process requirements, meet the needs of modern automobile industry for high-precision and high-efficiency processing of parts.

[0022] Further, the bracket 4 is symmetrically arranged with the central axis of the bottom plate 1, the control panel 2 is electrically connected with the temperature sensor 608, through the arrangement of the control panel 2, in use, the control panel 2 is built-in with a preset normalizing process temperature curve, after receiving the data feedback by the temperature sensor 608, the control panel 2 will compare and analyze according to the set temperature curve, if the monitored temperature deviates from the preset value, the control panel 2 will automatically control the power of the heating rod 607, for example, when the temperature is lower than the preset value, the power supply current of the heating rod 607 is increased to increase the heating power, when the temperature is higher than the preset value, the power supply current is reduced to reduce the heating power, so as to accurately control the temperature in the induction furnace 606.

[0023] Further, the inner size of the T-shaped groove 603 and the outer size of the T-shaped block 604 are matched, the T-shaped groove 603 is provided with a plurality of groups on the surface of the cover plate 602, through the arrangement of the T-shaped groove 603 and the T-shaped block 604, in use, the T-shaped block 604 slides in the inner side of the T-shaped groove 603, the T-shaped groove 603 limits the T-shaped block 604, so that the movement of the cover plate 602 is more stable.

[0024] Further, the heating rod 607 is provided with a plurality of groups on the inner side surface of the induction furnace 606, the temperature sensor 608 is provided with a plurality of groups on the inner side surface of the induction furnace 606, through the arrangement of the heating rod 607 and the temperature sensor 608, in use, the arrangement of the plurality of groups of the heating rod 607 makes the stability inside the induction furnace 606 more uniform, the arrangement of the plurality of groups of the temperature sensor 608 makes the temperature sensing more accurate.

[0025] Further, the feeding mechanism 3 comprises a fixed block 301, a sliding groove 302, a sliding block 303, a moving block 304, a threaded rod 305, a driving motor 306, a flat plate 307 and a feeding block 308, the upper surface of the bottom plate 1 is fixedly connected with the fixed block 301, the upper surface of the bottom plate 1 is provided with the sliding groove 302, the inner surface of the sliding groove 302 is slidably connected with the sliding block 303, the upper surface of the sliding block 303 is fixedly connected with the moving block 304, the inner surface of the moving block 304 is threadedly connected with the threaded rod 305, one end of the threaded rod 305 is fixedly connected with the driving motor 306, the upper surface of the moving block 304 is fixedly connected with the flat plate 307, and the upper surface of the flat plate 307 is fixedly connected with the feeding block 308. Through the arrangement of the fixed block 301, the sliding groove 302, the sliding block 303, the moving block 304, the threaded rod 305, the driving motor 306, the flat plate 307 and the feeding block 308, when in use, the driving motor 306 is started to drive the threaded rod 305 to rotate, according to the screw transmission principle, when the threaded rod 305 rotates, the moving block 304 will relatively move on the threaded rod 305, at the same time, the sliding block 303 slides on the surface of the sliding groove 302, and the sliding groove 302 limits the sliding block 303 to avoid the moving block 304 from deviating or shaking during the rotation of the threaded rod 305, so as to ensure the accuracy of feeding. The flat plate 307 and the feeding block 308 on the upper surface of the moving block 304, the feeding block 308 is designed with a groove matched with the shape of the cab stabilizer bar, which can firmly carry the to-be-processed stabilizer bar. When the moving block 304 moves along the sliding groove 302 under the driving of the threaded rod 305, the flat plate 307 and the feeding block 308 thereon also move synchronously, so as to stably push the stabilizer bar placed on the feeding block 308 to the middle of the induction furnace 606, ready for normalizing treatment.

[0026] Further, a plurality of fixed blocks 301 are arranged on the surface of the bottom plate 1, the inner size of the sliding groove 302 matches the outer size of the sliding block 303, and through the arrangement of the sliding groove 302 and the sliding block 303, in use, the sliding block 303 slides on the inner side of the sliding groove 302, and the sliding groove 302 limits the sliding block 303 to make the movement of the moving block 304 more stable.

[0027] Further, the threaded rod 305 is symmetrically arranged about the central axis of the bottom plate 1, and the feeding block 308 is symmetrically arranged about the central axis of the flat plate 307, and through the arrangement of the feeding block 308, in use, the feeding block 308 is designed with a groove matched with the shape of the cab stabilizer bar, which can firmly carry the to-be-processed stabilizer bar, so as to make the feeding of the stabilizer bar more stable.

[0028] Working principle: start the driving motor 306, drive the threaded rod 305 to rotate, according to the screw transmission principle, when the threaded rod 305 rotates, the moving block 304 will produce relative movement on the threaded rod 305, at the same time, the sliding block 303 slides on the surface of the sliding groove 302, the sliding groove 302 limits the sliding block 303, avoids the deviation or shaking of the moving block 304 in the rotating process of the threaded rod 305, so as to ensure the accuracy of feeding, the flat plate 307 on the upper surface of the moving block 304 and the feeding block 308, the feeding block 308 is designed with a groove matched with the shape of the cab stabilizer, which can firmly carry the stabilizer to be processed, when the moving block 304 moves along the sliding groove 302 under the drive of the threaded rod 305, the flat plate 307 and the feeding block 308 on it also move synchronously, so as to stably push the stabilizer placed on the feeding block 308 to the middle of the induction furnace 606, ready for normalizing treatment, then start the cylinder 601, push the connected cover plate 602 below to move up and down, when the cover plate 602 moves, the T-shaped block 604 will slide in the T-shaped groove 603, limit the movement of the cover plate 602, make the cover plate 602 move more stably, so that the cover plate 602 can be covered on the surface of the induction furnace 606, a plurality of heating rods 607 are fixedly connected to the inner side surface of the induction furnace 606, start the heating rods 607, the heating rods 607 generate heat by the heat effect of electric current, since the heating rods 607 are uniformly distributed on the inner side surface of the induction furnace 606, the heat can be uniformly distributed in the internal space of the induction furnace 606, so as to ensure that the stabilizer is heated uniformly during heating, avoid local overheating or insufficient heating, so as to ensure the consistency of normalizing effect and improve the quality of the stabilizer, a plurality of temperature sensors 608 are fixedly connected to the inner side surface of the induction furnace 606, the outer side surface of the temperature sensor 608 is fixedly connected with the protection shell 609, the protection shell 609 can prevent the sensor from being damaged in high temperature and complex working environment, ensure the measurement accuracy and stability, during the heating process, the temperature sensor 608 monitors the temperature in the induction furnace 606 in real time, and transmits the temperature data to the control panel 2 electrically connected thereto, after receiving the data feedback by the temperature sensor 608, the control panel 2 will automatically control the power of the heating rod 607, so as to accurately control the temperature in the induction furnace 606, and ensure that the normalizing process is strictly carried out according to the process requirements.

[0029] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, replacements and modifications can be made to the embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. Cab stabilizer bar open-close type fire induction sensor comprising a base plate (1), characterized in that: The upper surface of the bottom plate (1) is fixedly connected with a control panel (2), the upper surface of the bottom plate (1) is provided with a feeding mechanism (3), the upper surface of the bottom plate (1) is fixedly connected with a support (4), the upper surface of the support (4) is fixedly connected with a top plate (5), and the upper surface of the top plate (5) is provided with an induction mechanism (6). The induction mechanism (6) comprises a pneumatic cylinder (601), a cover plate (602), a T-shaped groove (603), a T-shaped block (604), a fixed column (605), an induction furnace (606), a heating rod (607), a temperature sensor (608) and a protective shell (609), the upper surface of the top plate (5) is fixedly connected with the pneumatic cylinder (601), the lower surface of the pneumatic cylinder (601) is fixedly connected with the cover plate (602), one side surface of the cover plate (602) is provided with the T-shaped groove (603), the inner side surface of the T-shaped groove (603) is slidably connected with the T-shaped block (604), one side surface of the T-shaped block (604) is fixedly connected with the fixed column (605), the outer side surface of the fixed column (605) is fixedly connected with the induction furnace (606), the inner side surface of the induction furnace (606) is fixedly connected with the heating rod (607), the inner side surface of the induction furnace (606) is fixedly connected with the temperature sensor (608), and the outer side surface of the temperature sensor (608) is fixedly connected with the protective shell (609).

2. The cab stabilizer bar open-loop inductor of claim 1, wherein: The support (4) is arranged symmetrically about the central axis of the bottom plate (1), and the control panel (2) is electrically connected with the temperature sensor (608).

3. The cab stabilizer bar open center fire inductor of claim 1, wherein: The inner side of the T-shaped groove (603) and the outer side of the T-shaped block (604) are matched in size, and a plurality of groups of T-shaped grooves (603) are formed in the surface of the cover plate (602).

4. The cab stabilizer bar open-loop sensor of claim 1, wherein: A plurality of groups of heating rods (607) are arranged on the inner side surface of the induction furnace (606), and a plurality of groups of temperature sensors (608) are arranged on the inner side surface of the induction furnace (606).

5. The cab stabilizer bar open-loop sensor of claim 1, wherein: The feeding mechanism (3) comprises a fixed block (301), a sliding groove (302), a sliding block (303), a moving block (304), a threaded rod (305), a driving motor (306), a flat plate (307) and a feeding block (308), the upper surface of the bottom plate (1) is fixedly connected with the fixed block (301), the upper surface of the bottom plate (1) is provided with the sliding groove (302), the inner side surface of the sliding groove (302) is slidably connected with the sliding block (303), the upper surface of the sliding block (303) is fixedly connected with the moving block (304), the inner side surface of the moving block (304) is threadedly connected with the threaded rod (305), one end of the threaded rod (305) is fixedly connected with the driving motor (306), the upper surface of the moving block (304) is fixedly connected with the flat plate (307), and the upper surface of the flat plate (307) is fixedly connected with the feeding block (308).

6. The cab stabilizer bar open-loop inductor of claim 5, wherein: A plurality of groups of fixed blocks (301) are arranged on the surface of the bottom plate (1), and the inner side of the sliding groove (302) and the outer side of the sliding block (303) are matched in size.

7. The cab stabilizer bar open center fire inductor of claim 5 wherein: The threaded rod (305) is arranged symmetrically with the central axis of the base plate (1), and the feeding block (308) is arranged symmetrically with the central axis of the flat plate (307).