Spring heat treatment equipment with intelligent temperature control function
Through the design of module maintenance mechanism, quantitative feeding mechanism and linkage conveying mechanism, the problems of complex maintenance and low degree of automation of existing equipment are solved, convenient maintenance, quantitative transportation and orderly heat treatment are achieved, and the operation efficiency and spring quality of the equipment are improved.
Patent Information
- Application Number
- CN202510740026.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-04
- Publication Date
- 2025-08-15
AI Technical Summary
The existing spring heat treatment equipment with intelligent temperature control requires a complex disassembly process during maintenance, which consumes a lot of time and manpower, and the sealing and stability after maintenance are difficult to ensure, which affects the operating efficiency of the equipment and may lead to a shortening of the equipment life.
A module maintenance mechanism is designed, including an open cover plate, an open cover pull rod, an installation mother piece, a return reed and an open cover spring, etc., to simplify the maintenance process; the quantitative feeding mechanism realizes quantitative conveying of springs through the drive shaft and the conveying spiral; the linkage conveying mechanism prevents spring interference and winding through the linkage shell, transmission belt and conveyor belt.
It realizes the convenience and stability of equipment maintenance, avoids spring blockage and loss, improves processing quality and automation, and improves production efficiency and safety and stability of equipment operation.
Smart Images

Figure CN120485494A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of mechanical manufacturing, and in particular to a spring heat treatment device with intelligent temperature control. Background Art
[0002] In the field of mechanical manufacturing technology, springs, as an important mechanical part, are widely used in various mechanical equipment, automotive industry, electronic equipment and many other fields. The heat treatment of springs is one of the key links that determine their performance and quality. Therefore, there is a special need for a spring heat treatment equipment with intelligent temperature control.
[0003] However, the existing spring heat treatment equipment with intelligent temperature control often requires a complicated disassembly process when repairing the internal heat treatment module, which consumes a lot of time and manpower costs. In addition, the sealing and stability of the equipment after repair are difficult to guarantee, which not only affects the normal operating efficiency of the equipment, but may also shorten the service life of the equipment. Summary of the Invention
[0004] The purpose of the present invention is to provide a spring heat treatment equipment with intelligent temperature control to solve the problem of the existing spring heat treatment equipment with intelligent temperature control proposed in the above background technology. However, in terms of equipment maintenance, the existing spring heat treatment equipment with intelligent temperature control often requires a complicated disassembly process when repairing the internal heat treatment module, which consumes a lot of time and manpower costs, and the sealing and stability of the equipment after repair are difficult to guarantee, which not only affects the normal operating efficiency of the equipment, but may also lead to the problem of shortening the service life of the equipment.
[0005] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: a spring heat treatment device with intelligent temperature control, comprising a control panel, a support base fixedly connected to one side surface of the control panel, a drive motor provided on the upper surface of the support base, a quantitative feeding mechanism provided on one side surface of the drive motor, a device housing fixedly connected to one side surface of the quantitative feeding mechanism, a linkage conveying mechanism provided on one side surface of the device housing, a module maintenance mechanism provided on one side surface of the device housing, a limiting plate fixedly connected to one side surface of the device housing, and a heat treatment module bonded to one side surface of the device housing; The module maintenance mechanism includes an opening cover plate, which is rotatably connected to the upper surface of the equipment casing, a side surface of the opening cover plate is slidably connected to a cover opening pull rod, a side surface of the cover opening pull rod is fixedly connected to a mounting female part, a side surface of the mounting female part is fixedly connected to a reset spring, a side surface of the mounting female part is fitted with a mounting male part, a side surface of the mounting male part is fitted with an opening cover spring, and a side surface of the opening cover spring is fitted with an opening cover limit rod.
[0006] Preferably, the cover opening springs and the cover opening limiting rods are arranged in three groups at equal intervals on one side surface of the cover opening plate, and the cross section of the reset spring is S-shaped.
[0007] Preferably, a sliding groove is provided on one side surface of the cover opening plate, and the cover opening pull rod is slidably connected to the inner wall surface of the cover opening plate through the sliding groove.
[0008] Preferably, the quantitative feeding mechanism includes a driving shaft, which is fixedly connected to a side surface of the driving motor, the outer surface of the driving shaft passes through the feed port, the lower surface of the feed port is fixedly connected to a feeding base, one side surface of the feeding base is fixedly connected to a mounting plate, the lower surface of the mounting plate is fixedly connected to a discharging plate, and the inner wall surface of the mounting plate is rotatably connected to a conveying screw.
[0009] Preferably, the conveying screw is fixedly connected to a side surface of the driving shaft, and the conveying screw is fixedly connected to a side surface of the driving motor through the driving shaft.
[0010] Preferably, a hole is opened on one side surface of the discharge plate, and the discharge plate is fixedly connected to the one side surface of the feed base through a mounting plate.
[0011] Preferably, the linkage conveying mechanism includes a linkage shell, the linkage shell is fixedly connected to one side surface of the equipment shell, the inner wall surface of the linkage shell is provided with a first transmission belt, one side surface of the first transmission belt is fixedly connected to the lifting conveyor belt, one side surface of the lifting conveyor belt is adhered to a conveying limiting plate, one side surface of the conveying limiting plate is adhered to a heat treatment conveyor belt, one side surface of the heat treatment conveyor belt is fixedly connected to a second transmission belt, one side surface of the second transmission belt is fixedly connected to a linkage shaft, one side surface of the linkage shaft is rotatably connected to a fixer, one side surface of the linkage shaft is fixedly connected to a linkage screw, and one side surface of the linkage screw is adhered to a linkage gear.
[0012] Preferably, the traveling directions of the lifting conveyor belt and the heat treatment conveyor belt are perpendicular to each other, and the driving motor is fixedly connected to one side surface of the heat treatment conveyor belt through a conveying screw, a linkage gear, a linkage screw, a linkage shaft and a second transmission belt.
[0013] Preferably, the fixer is provided with three groups of outer surfaces of the linkage shaft and the linkage screw, and the linkage shaft and the linkage screw are rotatably connected to one side surface of the device housing through the fixer.
[0014] Preferably, the outer surface of the lifting conveyor belt is provided with a lifting baffle, and the lifting baffles are arranged in multiple groups at equal intervals on the outer surface of the lifting conveyor belt.
[0015] Compared with the prior art, the present invention has the following beneficial effects: 1. This spring heat treatment equipment with intelligent temperature control makes the inspection and maintenance of the heat treatment module inside the equipment simple and convenient through the setting of the module inspection mechanism, without the need for tedious disassembly steps, and the cover plate can be firmly fixed after inspection, effectively ensuring the safety and stability of the equipment during operation, and solving the problem that the existing equipment is difficult to inspect and maintain and the performance of the equipment after inspection is difficult to guarantee.
[0016] 2. This spring heat treatment equipment with intelligent temperature control realizes quantitative and uniform delivery of springs through the setting of quantitative feeding mechanism, successfully avoids spring blockage and loss caused by extrusion during feeding, improves processing quality, reduces equipment maintenance costs, and solves the problems of uneven feeding and easy damage to springs in existing equipment.
[0017] 3. This spring heat treatment equipment with intelligent temperature control can pull the springs up and break up the spacing through the setting of a linkage conveying mechanism, preventing the springs from interfering with and entangled with each other, while allowing the springs to move in an orderly manner to avoid stacking, ensuring that the springs can be evenly heat treated, greatly improving the toughness and quality of the springs, and improving the degree of automation and processing accuracy of the equipment, significantly improving production efficiency, and solving the problems of chaotic spring conveying, poor heat treatment effect and low degree of automation in existing equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 This is a schematic diagram of the side appearance structure of the present invention; Figure 2 This is a schematic diagram of the cross-sectional structure of the device housing of the present invention; Figure 3 This is a schematic diagram of the cross-sectional structure of the linkage housing of the present invention; Figure 4 For the present invention Figure 3 A in the middle is an enlarged structural diagram; Figure 5 This is a schematic diagram of the cross-sectional structure of the cover plate of the present invention; Figure 6 This is a schematic diagram of the structure when the cover plate of the present invention is opened and used; Figure 7 For the present invention Figure 6 The enlarged structural diagram at B in the middle; Figure 8 For the present invention Figure 7 The enlarged structural diagram at C in the middle; Figure 9 This is a schematic diagram of the structure in which the male mounting component and the female mounting component cooperate with each other in the present invention.
[0019] In the figure: 1. Control panel; 2. Support base; 3. Drive motor; 4. Quantitative feeding mechanism; 401. Drive shaft; 402. Feed port; 403. Feed base; 404. Mounting plate; 405. Discharge plate; 406. Conveying screw; 5. Equipment housing; 6. Linkage conveying mechanism; 601. Linkage housing; 602. First transmission belt; 603. Lifting conveyor belt; 604. Conveying limit plate; 605. Heat treatment conveyor belt; 606. Second transmission belt; 607. Linkage shaft; 608. Fixer; 609. Linkage screw; 610. Linkage gear; 7. Module maintenance mechanism; 701. Open cover plate; 702. Open cover pull rod; 703. Install female part; 704. Reset spring; 705. Install male part; 706. Open cover spring; 707. Open cover limit rod; 8. Limit plate; 9. Heat treatment module. DETAILED DESCRIPTION
[0020] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0021] See also Figure 1-9 The present invention provides a technical solution: a spring heat treatment device with intelligent temperature control, comprising a control panel 1, a support base 2 is fixedly connected to one side surface of the control panel 1, a drive motor 3 is provided on the upper surface of the support base 2, a quantitative feeding mechanism 4 is provided on one side surface of the drive motor 3, a device housing 5 is fixedly connected to one side surface of the quantitative feeding mechanism 4, a linkage conveying mechanism 6 is provided on one side surface of the device housing 5, a module maintenance mechanism 7 is provided on one side surface of the device housing 5, a limiting plate 8 is fixedly connected to one side surface of the device housing 5, and a heat treatment module 9 is attached to one side surface of the device housing 5; The module maintenance mechanism 7 includes an opening cover plate 701, which is rotatably connected to the upper surface of the device housing 5, and a side surface of the opening cover plate 701 is slidably connected to an opening cover pull rod 702, and a side surface of the opening cover pull rod 702 is fixedly connected to a mounting female part 703, and a side surface of the mounting female part 703 is fixedly connected to a reset spring 704, and a side surface of the mounting female part 703 is attached to a mounting male part 705, and a side surface of the mounting male part 705 is attached to an opening cover spring 706, and a side surface of the opening cover spring 706 is attached to a opening cover limiting rod 707. Through the setting of the module maintenance mechanism 7, when in use, the opening cover pull rod 702 is pulled, Drive the installation mother part 703 to slide along the inner wall of the cover plate 701, press the reset spring 704, and release the limit on the installation male part 705. The three sets of cover opening springs 706 push the cover plate 701 to rotate and release the connection with the equipment housing 5. After inspection and maintenance, lightly press the cover plate 701, the cover opening spring 706 contracts, and the installation male part 705 slides to press the reset spring 704. The reset spring 704 pushes the installation mother part 703 to limit the installation male part 705 and fix the cover plate 701. It is convenient and quick to open and fix the cover plate 701, which is convenient for inspection and maintenance of the heat treatment module 9, beneficial to equipment maintenance, and ensures safe and stable operation of the equipment.
[0022] When the lock 710 is unlocked, the lock 710 will be unlocked, and the lock 710 will be unlocked, so that the lock 710 can be unlocked.
[0023] Furthermore, a sliding groove is provided on one side surface of the opening cover plate 701, and the opening cover rod 702 is slidably connected to the inner wall surface of the opening cover plate 701 through the sliding groove. Through the setting of the opening cover plate 701, when in use, this structural design provides a precise guide path for the sliding of the opening cover rod 702, so that when the operator pulls the opening cover rod 702, it can slide stably along the sliding groove, thereby reliably driving the installation mother part 703 to move, and then realizing the opening and closing operation of the opening cover plate 701, ensuring the accuracy and stability of the movement of the module maintenance mechanism 7, and also facilitating the operator to carry out maintenance work inside the equipment.
[0024] Furthermore, the quantitative feeding mechanism 4 includes a driving shaft 401, which is fixedly connected to a side surface of the driving motor 3, and the outer surface of the driving shaft 401 passes through the feeding port 402. The lower surface of the feeding port 402 is fixedly connected to a feeding base 403, and a side surface of the feeding base 403 is fixedly connected to a mounting plate 404. The lower surface of the mounting plate 404 is fixedly connected to a discharging plate 405. The inner wall surface of the mounting plate 404 is rotatably connected to a conveying screw 406. Through the setting of the quantitative feeding mechanism 4, when in use, the springs to be heat treated can be quantitatively conveyed to avoid extrusion loss of the springs to be processed due to blockage, and the size of the springs is consistent with the size of the thread to ensure the appropriate amount of conveying. The springs to be heat treated are poured into the feeding port 402, and the driving motor 3 is started. The driving motor 3 drives the driving shaft 401 and the conveying screw 406 to rotate, and the conveying screw 406 drives the springs to be processed along the thread to be transferred to the opening cover plate 701 and falls into the feeding base 403.
[0025] Furthermore, the conveying screw 406 is fixedly connected to the side surface of the driving shaft 401, and the conveying screw 406 is fixedly connected to the side surface of the driving motor 3 through the driving shaft 401. Through the setting of the conveying screw 406, when in use, this connection method can enable the power of the driving motor 3 to be efficiently and stably transmitted to the conveying screw 406. When the driving motor 3 rotates, it can directly drive the driving shaft 401 to rotate synchronously, and then reliably drive the conveying screw 406 to rotate, thereby realizing stable conveying of the heat-treated springs, ensuring the stability and reliability of the operation of the quantitative feeding mechanism 4, and providing a stable feeding basis for the subsequent spring processing process.
[0026] Furthermore, a hole is opened on one side surface of the discharge plate 405, and the discharge plate 405 is fixedly connected to the one side surface of the feed base 403 through the mounting plate 404. Through the setting of the discharge plate 405, when in use, the hole on the discharge plate 405 can allow the spring to be processed conveyed by the conveying screw 406 to pass through and fall smoothly, and the mounting plate 404 firmly fixes the discharge plate 405 on one side of the feed base 403, ensuring the stability of the position of the discharge plate 405, so that the spring can be discharged in an orderly manner according to the established path, ensuring the continuity and accuracy of the discharge process of the quantitative feeding mechanism 4, and avoiding the normal conveying and subsequent processing flow of the spring due to the loosening or displacement of the discharge plate 405.
[0027] Furthermore, the linkage conveying mechanism 6 includes a linkage shell 601, which is fixedly connected to one side surface of the equipment shell 5, and the inner wall surface of the linkage shell 601 is provided with a first transmission belt 602, one side surface of the first transmission belt 602 is fixedly connected to the pulling conveyor belt 603, one side surface of the pulling conveyor belt 603 is attached to a conveying limit plate 604, one side surface of the conveying limit plate 604 is attached to a heat treatment conveyor belt 605, one side surface of the heat treatment conveyor belt 605 is fixedly connected to a second transmission belt 606, one side surface of the second transmission belt 606 is fixedly connected to a linkage shaft 607, one side surface of the linkage shaft 607 is rotatably connected to a fixer 608, one side surface of the linkage shaft 607 is fixedly connected to a linkage screw 609, one side surface of the linkage screw 609 is attached to a linkage gear 610, through the linkage conveying mechanism 6 The setting is that when in use, the driving motor 3 drives the driving shaft 401 and the conveying screw 406, and at the same time, the other output end drives the first transmission belt 602, driving the lifting conveyor belt 603 and the lifting baffle to rotate. After the spring is lifted, it falls along the conveying limit plate 604 above the heat treatment conveyor belt 605, and the conveying screw 406 drives the linkage gear 610 to rotate, and the linkage gear 610 drives the linkage screw 609 to rotate, and the linkage screw 609 drives the linkage shaft 607 to rotate, driving the second transmission belt 606 to rotate, and the second transmission belt 606 drives the heat treatment conveyor belt 605 to rotate. The spring is discharged after heat treatment by the heat treatment module 9 under the action of the limiting plate 8, which can realize the lifting of the spring and the breaking up of the spacing to prevent the springs from interfering with each other. At the same time, the spring is driven to move along the heat treatment conveyor belt 605 in an orderly manner, and the stress is eliminated by the heat treatment module 9 under the action of the limiting plate 8 to improve the toughness of the spring.
[0028] Furthermore, the traveling directions of the lifting conveyor belt 603 and the heat treatment conveyor belt 605 are perpendicular to each other, and the driving motor 3 is fixedly connected to the surface of one side of the heat treatment conveyor belt 605 through the conveying screw 406, the linkage gear 610, the linkage screw 609, the linkage shaft 607 and the second transmission belt 606. By setting the conveying screw 406, the lifting conveyor belt 603, the heat treatment conveyor belt 605, the linkage shaft 607, the linkage screw 609 and the linkage gear 610, when in use, the design of the traveling directions of the lifting conveyor belt 603 and the heat treatment conveyor belt 605 intersecting perpendicularly can make the spring After the lifting conveyor belt 603 is lifted and the spacing is broken up, it smoothly and accurately transitions to the heat treatment conveyor belt 605, realizing orderly processing at different stages; and the driving motor 3 is connected to the heat treatment conveyor belt 605 through a series of transmission components, which can effectively transmit the power of the driving motor 3 to the heat treatment conveyor belt 605, ensuring the stable operation of the heat treatment conveyor belt 605, driving the spring to continuously move for heat treatment. At the same time, this linkage transmission also realizes the coordinated work between the various components of the equipment, improves the degree of automation of the equipment and the overall operating efficiency, and ensures that the spring can complete the heat treatment process efficiently and with high quality.
[0029] Furthermore, three groups of fixers 608 are provided on the outer surfaces of the linkage shaft 607 and the linkage screw 609. The linkage shaft 607 and the linkage screw 609 are rotatably connected to the side surface of the device housing 5 through the fixer 608. Through the setting of the fixer 608, when in use, the three groups of fixers 608 are evenly distributed on the outer surfaces of the linkage shaft 607 and the linkage screw 609, which can provide stable and balanced support for the linkage shaft 607 and the linkage screw 609, ensuring that they maintain good coaxiality and stability during rotation, reducing transmission errors caused by shaking or offset, and at the same time, the linkage shaft 607 and the linkage screw 609 are rotatably connected to the device housing 5 through the fixer 608, so that they can be reliably installed on the device housing 5, realize effective power transmission, ensure the coordinated operation of the various components in the linkage conveying mechanism 6, and thereby ensure that the spring can move stably according to the predetermined path in the device and undergo heat treatment, thereby improving the reliability and processing accuracy of the device operation.
[0030] Furthermore, the outer surface of the lifting conveyor belt 603 is provided with a lifting baffle, and multiple groups of lifting baffles are equidistantly arranged on the outer surface of the lifting conveyor belt 603. Through the setting of the lifting conveyor belt 603, when in use, the multiple groups of lifting baffles equidistantly arranged can evenly and effectively pull the springs upward to a certain height during the rotation of the lifting conveyor belt 603, and at the same time further break up the distance between the springs during the lifting process to avoid the springs from being entangled or aggregated with each other, so that the springs can be conveyed to the heat treatment conveyor belt 605 in a more orderly manner, ensuring the dispersion and orderliness of the springs during the transportation process, creating good conditions for the subsequent springs to smoothly undergo heat treatment, and improving the quality and efficiency of the spring heat treatment processing.
[0031] Working principle: When the equipment starts to run, the external power supply supplies power to the entire system. First, check whether the heat treatment module 9 is working normally and whether the relevant function modules need to be repaired or replaced. In the module maintenance mechanism 7, pull the cover opening rod 702, and the cover opening rod 702 drives the installation mother part 703 to slide along the inner wall surface of the cover plate 701, and then drives the installation mother part 703 to press the reset spring 704, and release the limiting effect of the installation mother part 703 on the installation male part 705. At this time, the three groups of cover opening springs 706 release the elastic potential energy accumulated in the limited state, and push the cover plate 701 to rotate along the cover opening limit rod 707, and release the connection state with the equipment housing 5. At this time, the specific situation of the heat treatment module 9 can be visually viewed, and it can be inspected and repaired to ensure that it is in good working order. After the locking cam 706 is unlocked, the locking cam 706 is unlocked and the locking cam 706 is unlocked, and the locking cam 706 is unlocked. A certain amount of springs to be processed are driven to be transmitted along the thread to the open cover plate 701, and a hole is opened along the surface of one side of the open cover plate 701 to fall into the feeding base 403. Since the rotation speed of the conveying screw per unit time is limited, the amount of springs conveyed per unit time is also limited, which avoids the extrusion loss of the springs to be processed caused by blockage. The size of the spring is consistent with the size of the thread to meet the transportation of the appropriate number. In the linkage conveying mechanism 6, the driving motor 3 drives the driving shaft 401 and the conveying screw 406 at the same time. In the linkage housing 601, the other output end of the driving motor 3 drives the first transmission belt 602, and the first transmission belt 602 drives the lifting conveyor belt 603. When the lifting conveyor belt 603 rotates, it drives the lifting conveyor belt 603 fixedly connected to the outer surface. The lifting baffle rotates, thereby driving the spring to be pulled to a height, and then falls along the conveying limit plate 604 to the upper surface of the heat treatment conveyor belt 605, which plays a role in breaking up the spacing between the springs to be processed and preventing the springs to be processed from interfering with each other. When the conveying screw 406 rotates, it also drives the linkage gear 610 to rotate. The linkage gear 610 rotates to drive the linkage screw 609 to rotate along the outer surface of the fixer 608. The linkage screw 609 drives the linkage shaft 607 to rotate, thereby driving the second transmission belt 606 to rotate. The rotation of the second transmission belt 606 drives the heat treatment conveyor belt 605 to rotate, thereby driving the spring to be processed to move along the outer surface of the heat treatment conveyor belt 605. The spring is affected by the limiting plate 8 to prevent stacking of the springs, and the heat treatment module 9 is heat treated.This eliminates the stress generated during spring processing, making the spring more resilient. The spring is then discharged from the interior of the device housing 5. The model of the drive motor 3 is YE2-132S-4. This completes the use of a spring heat treatment device with intelligent temperature control.
[0032] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A spring heat treatment device with intelligent temperature control, comprising a control panel (1), characterized in that: A support base (2) is fixedly connected to one side surface of the control panel (1), a drive motor (3) is provided on the upper surface of the support base (2), a quantitative feeding mechanism (4) is provided on one side surface of the drive motor (3), a device housing (5) is fixedly connected to one side surface of the quantitative feeding mechanism (4), a linkage conveying mechanism (6) is provided on one side surface of the device housing (5), a module maintenance mechanism (7) is provided on one side surface of the device housing (5), a limiting plate (8) is fixedly connected to one side surface of the device housing (5), and a heat treatment module (9) is attached to one side surface of the device housing (5); The module maintenance mechanism (7) includes an opening cover plate (701), the opening cover plate (701) is rotatably connected to the upper surface of the device housing (5), a side surface of the opening cover plate (701) is slidably connected to an opening cover pull rod (702), a side surface of the opening cover pull rod (702) is fixedly connected to a mounting female part (703), a side surface of the mounting female part (703) is fixedly connected to a reset spring (704), a side surface of the mounting female part (703) is affixed to a mounting male part (705), a side surface of the mounting male part (705) is affixed to an opening cover spring (706), and a side surface of the opening cover spring (706) is affixed to an opening cover limit rod (707).
2. The spring heat treatment equipment with intelligent temperature control according to claim 1, characterized in that: The cover opening spring (706) and the cover opening limiting rod (707) are arranged in three groups at equal intervals on a side surface of the cover opening plate (701), and the cross section of the reset spring (704) is S-shaped.
3. The spring heat treatment equipment with intelligent temperature control according to claim 1, characterized in that: A sliding groove is provided on one side surface of the cover opening plate (701), and the cover opening pull rod (702) is slidably connected to the inner wall surface of the cover opening plate (701) through the sliding groove.
4. The spring heat treatment equipment with intelligent temperature control according to claim 1, characterized in that: The quantitative feeding mechanism (4) includes a driving shaft (401), the driving shaft (401) is fixedly connected to a side surface of the driving motor (3), the outer surface of the driving shaft (401) passes through the feeding port (402), the lower surface of the feeding port (402) is fixedly connected to a feeding base (403), a side surface of the feeding base (403) is fixedly connected to a mounting plate (404), the lower surface of the mounting plate (404) is fixedly connected to a discharging plate (405), and the inner wall surface of the mounting plate (404) is rotatably connected to a conveying screw (406).
5. The spring heat treatment equipment with intelligent temperature control according to claim 4, characterized in that: The conveying screw (406) is fixedly connected to a side surface of the driving shaft (401), and the conveying screw (406) is fixedly connected to a side surface of the driving motor (3) through the driving shaft (401).
6. The spring heat treatment equipment with intelligent temperature control according to claim 4, characterized in that: A hole is provided on one side surface of the discharge plate (405), and the discharge plate (405) is fixedly connected to one side surface of the feed base (403) via a mounting plate (404).
7. The spring heat treatment equipment with intelligent temperature control according to claim 1, characterized in that: The linkage conveying mechanism (6) includes a linkage housing (601), the linkage housing (601) is fixedly connected to a side surface of the equipment housing (5), the inner wall surface of the linkage housing (601) is provided with a first transmission belt (602), one side surface of the first transmission belt (602) is fixedly connected to a lifting conveyor belt (603), one side surface of the lifting conveyor belt (603) is bonded with a conveying limit plate (604), one side surface of the conveying limit plate (604) is bonded with a heat treatment conveyor belt (605), one side surface of the heat treatment conveyor belt (605) is fixedly connected to a second transmission belt (606), one side surface of the second transmission belt (606) is fixedly connected to a linkage shaft (607), one side surface of the linkage shaft (607) is rotatably connected to a fixer (608), one side surface of the linkage shaft (607) is fixedly connected to a linkage screw (609), and one side surface of the linkage screw (609) is bonded with a linkage gear (610).
8. The spring heat treatment equipment with intelligent temperature control according to claim 7, characterized in that: The travel directions of the lifting conveyor belt (603) and the heat treatment conveyor belt (605) are perpendicular to each other, and the driving motor (3) is fixedly connected to a side surface of the heat treatment conveyor belt (605) through a conveying screw (406), a linkage gear (610), a linkage screw (609), a linkage shaft (607) and a second transmission belt (606).
9. The spring heat treatment equipment with intelligent temperature control according to claim 7, characterized in that: The fixer (608) is provided with three groups of linkage shafts (607) and linkage screws (609) on the outer surface thereof. The linkage shafts (607) and linkage screws (609) are rotatably connected to a side surface of the device housing (5) through the fixer (608).
10. The spring heat treatment equipment with intelligent temperature control according to claim 7, characterized in that: The outer surface of the lifting conveyor belt (603) is provided with lifting baffles, and the lifting baffles are arranged in multiple groups at equal intervals on the outer surface of the lifting conveyor belt (603).