Improved temperature controller for hot rolling impressing processing

The improved temperature control and heat dissipation components of the temperature controller enable efficient temperature control during the hot rolling imprinting process. This solves the performance degradation problem caused by vibration, humidity and other factors in existing temperature controllers, improves the stability and safety of the device, and extends its service life.

CN223520459UActive Publication Date: 2025-11-07DONGYANG CHENSHI PLASTIC CO LTD
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Patent Information

Application Number
CN202422969991.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-03
Publication Date
2025-11-07
Estimated Expiration
2034-12-03

AI Technical Summary

Technical Problem

Existing hot roll printing temperature controllers are susceptible to the effects of vibration, humidity and temperature during long-term operation, which can lead to performance degradation or failure, affecting processing stability and safety.

Method used

An improved temperature controller was designed, which includes a temperature control and heat dissipation component. Through the cooperation of the water inlet chamber, the heat conduction chamber and the rotating blades, the efficient flow of water and the effective discharge of heat are achieved in the device, ensuring that the device does not accumulate too much heat during operation and improving the efficiency of water flow and heat transfer.

Benefits of technology

It extends the service life of the equipment, improves the stability and reliability of temperature control, avoids unnecessary downtime, and ensures the safety and consistency of hot roll embossing processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the related technical field of hot rolling impressing processing, and discloses an improved temperature controller for hot rolling impressing processing, which comprises a box body, an equipment inner cavity is arranged in the box body, a temperature control heat dissipation assembly is arranged in the equipment inner cavity, the temperature control heat dissipation assembly comprises a shell, and the shell is internally provided with a temperature control module. A first partition plate, a second partition plate and a third partition plate are installed in the shell, the first partition plate and the second partition plate are installed on the outer side of the third partition plate, the first partition plate is arranged on the left side of the second partition plate, a water inlet cavity is formed between the first partition plate and the shell, and two extrusion springs are installed on the outer side of the first partition plate. Heat in the heat conduction cavity is dissipated outwards through a fourth partition plate, rotation of rotating blades facilitates more effective discharge of the heat, it is guaranteed that excessive heat accumulation cannot be generated during operation of the device, the heat energy transfer efficiency can be improved, and therefore the service life of the device is prolonged; and the water body in the water inlet cavity reaches the maximum pressure value.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to hot roll stamping processing related technical field, more specifically, it is especially related to a hot roll stamping processing is with improved temperature controller. BACKGROUND

[0002] In the hot roll stamping processing, temperature is one of the key factors affecting product quality. In order to ensure the stability of the processing and the consistency of the product, the temperature needs to be accurately controlled. The traditional temperature controller may not meet the specific needs of hot roll stamping in some aspects, so it needs to be improved, but the existing hot roll stamping temperature controller may be affected by various factors such as vibration, humidity, temperature, etc. during long-term operation, resulting in performance degradation or failure. If the stability and reliability of the temperature controller are insufficient, it may bring safety hazards and unnecessary downtime to hot roll stamping.

[0003] Therefore, in view of the above, the existing structure and defects are studied and improved, and an improved temperature controller for hot roll stamping is provided to achieve a more practical value. INVENTION CONTENTS

[0004] The utility model provides a kind of improved temperature controller for hot roll stamping, to overcome the above-mentioned defects in the prior art.

[0005] The purpose and effect of the improved temperature controller for hot roll stamping are achieved by the following specific technical means:

[0006] An improved temperature controller for hot coiling and stamping processing, comprising: a box, an equipment cavity is arranged in the box, a temperature control and heat dissipation assembly is fixedly installed on the inner wall of the equipment cavity, the temperature control and heat dissipation assembly comprises a shell, a first partition plate, a second partition plate and a third partition plate are fixedly installed on the inner wall of the shell, the first partition plate and the second partition plate are fixedly installed on the outer side of the third partition plate, the first partition plate is arranged on the left side of the second partition plate, a water inlet cavity is formed between the first partition plate and the shell, two extrusion springs are fixedly installed on the outer side of the first partition plate, the extrusion springs are fixedly connected between the first partition plate and the inner wall of the water inlet cavity and arranged on the inner wall of the water inlet cavity, a third cavity and a second cavity are further arranged in the shell, the third cavity is arranged on the right side of the water inlet cavity, the second cavity is arranged on the right side of the third cavity, a fixed base is fixedly installed on the side of the first partition plate close to the second partition plate, a guide rod is hingedly arranged on the fixed base, a connecting rod is hingedly arranged at the end of the guide rod, a rotating base is rotatably installed on the third partition plate, one side of the rotating base is eccentrically connected with the connecting rod, a central shaft is rotatably connected to the front of the rotating base, a fourth partition plate is fixedly installed on the front of the third partition plate, a heat conduction cavity is formed between the third partition plate and the fourth partition plate, rotating vanes are fixedly arranged on the surface of the central shaft, the rotating vanes are arranged in the heat conduction cavity, and rotating vanes are fixedly connected to the end of the central shaft.

[0007] Further technical solutions, the second partition plate and the third partition plate are provided with drainage holes, and the drainage holes are communicated with the third cavity, the second cavity and the heat conduction cavity.

[0008] Further technical solutions, one side of the box is provided with a ventilation hole and a first wiring position, the ventilation hole is arranged above the first wiring position, the other side of the box is provided with a heat dissipation hole, and the heat dissipation hole is arranged below the ventilation hole.

[0009] Further technical solutions, a heat conduction plate is fixedly installed in front of the rotating vane and arranged inside the heat dissipation hole.

[0010] Further technical solutions, a water level detector is fixedly installed on one side of the temperature control and heat dissipation assembly, a digital controller is fixedly arranged above the water level detector, and a temperature sensing controller is fixedly connected to the other end of the digital controller.

[0011] Further technical solutions, a second wiring position is fixedly arranged on the back of the box, a drain pipe and a water inlet drain pipe are arranged below the second wiring position, an emergency stop key is fixedly installed on the right side of the second wiring position, a key is fixedly arranged above the second wiring position, and the drain pipe is arranged on the side close to the emergency stop key.

[0012] Further technical solutions, the box front is equipped with water level display device, the water level display device right side installation is equipped with temperature control display screen and water pressure display device, the water pressure display device below is equipped with knob.

[0013] Further technical solutions, the drain pipe with the heat conduction cavity is communicated, the water inlet pipe is communicated with the water inlet cavity, the first partition is equipped with drain valve, the drain valve is communicated with the water inlet cavity and the third cavity.

[0014] Further technical solutions, the central shaft is rotatably installed on the outside of the fourth partition, and the rotating blade is arranged on the side away from the fourth partition.

[0015] Compared with the prior art, the utility model has the advantages of:

[0016] The improved temperature controller for hot coil stamping is provided with a temperature control and heat dissipation assembly, and in the use process, the water inlet pipe first pressurizes the water inlet cavity. With the increase of the water pressure in the water inlet cavity, the first partition is pushed to move forward. The movement of the first partition then drives the guide rod to swing forward, and the swinging of the guide rod further drives the connecting rod to rotate. The rotation of the connecting rod drives the rotating base to rotate, and the rotation of the rotating base drives the rotating blade and the rotating blade to rotate together. When the water in the water inlet cavity reaches the maximum pressure value, the water flows into the third cavity through the drain valve. Then, the water in the third cavity enters the second cavity through the drain hole, and then enters the heat conduction cavity through the drain hole again. In the process of rotating the rotating base, the rotating blade stirs the water in the heat conduction cavity. The heat in the heat conduction cavity is dissipated outward through the fourth partition, and with the rotation of the rotating blade, the heat is more effectively discharged to the outside. Moreover, the water inlet pipe pressurizes the water inlet cavity, which can ensure that the water flows in the device at a certain pressure, thereby improving the transmission efficiency of the water flow. The heat in the heat conduction cavity is dissipated outward through the fourth partition, and the rotation of the rotating blade helps to more effectively discharge the heat and ensures that the device does not accumulate too much heat during operation. Moreover, the efficiency of heat transfer is improved, thereby prolonging the service life of the device. Moreover, after the water in the water inlet cavity reaches the maximum pressure value, it flows into the third cavity through the drain valve, and then enters the second cavity and the heat conduction cavity in turn. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is the overall structure schematic diagram of the utility model.

[0018] Figure 2 It is the overall side view structure schematic diagram of the utility model.

[0019] Figure 3 It is the overall rear view structure schematic diagram of the utility model.

[0020] Figure 4 It is the whole front view structure schematic diagram of the utility model.

[0021] Figure 5 It is the whole side section structure schematic diagram of the utility model.

[0022] Figure 6 It is the whole side section structure schematic diagram of the temperature control radiating assembly 28 in the utility model.

[0023] Figure 7 It is the first internal structure schematic diagram of the temperature control radiating assembly 28 in the utility model.

[0024] Figure 8 It is the second internal structure schematic diagram of the temperature control radiating assembly 28 in the utility model.

[0025] Mark explanation:

[0026] Box 11, temperature control display screen 12, water level display device 13, water pressure display device 14, knob 15, first wiring position 16, ventilation hole 17, radiating hole 18, water inlet pipe 19, key 20, emergency stop key 21, second wiring position 22, drain pipe 23, equipment inner cavity 24, digital display controller 25, temperature sensor controller 26, water level detector 27, temperature control radiating assembly 28, heat conduction plate 29, rotating blade 30, center shaft 31, heat conduction cavity 32, second cavity 33, third cavity 34, water inlet cavity 35, drain valve 36, rotating base 37, connecting rod 38, guide rod 39, fixed base 40, extrusion spring 41, first baffle 42, second baffle 43, third baffle 44, drain hole 45, shell 46, fourth baffle 47, rotating blade 48. Specific implementation

[0027] The implementation of the utility model will be described in further detail below in combination with the drawings and examples. The following examples are used to illustrate the utility model, but cannot be used to limit the scope of the utility model.

[0028] In the description of the utility model, unless otherwise specified, the meaning of "multiple" is two or more than two; the orientation or position relationship indicated by the terms "upper", "lower", "left", "right", "inner", "outer", "front end", "rear end", "head", "tail" and the like is based on the orientation or position relationship shown in the drawings, and is only for the convenience of describing the utility model and simplifying the description, and cannot be understood as indicating or implying that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the utility model. In addition, the terms "first", "second", "third" and the like are only for the purpose of description, and cannot be understood as indicating or implying relative importance.

[0029] In the description of the utility model, it is necessary to explain, unless another explicit provision and limitation, term '' connected '' '' connection '' should do broad sense understanding, for example, can be fixed connection, also can be detachable connection, or integrally connected, can be mechanical connection, also can be electrical connection, can be directly connected, also can be indirectly connected through intermediate medium. Embodiments

[0030] As shown in the accompanying Figure 1 to the accompanying Figure 8 :

[0031] The utility model provides a kind of improved temperature controller for hot roll stamping.

[0032] Refer to the accompanying Figure 1 to the accompanying Figure 8 , including: box 11, equipment inner cavity 24 is equipped in the box 11, temperature control heat dissipation assembly 28 is fixedly installed in equipment inner cavity 24 inner wall, temperature control heat dissipation assembly 28 includes shell 46, first baffle 42, second baffle 43 and third baffle 44 are fixedly installed in shell 46 inner wall, first baffle 42 and second baffle 43 are fixedly installed on the outer side of third baffle 44, first baffle 42 is located at the left side of second baffle 43, water inlet chamber 35 is formed between first baffle 42 and shell 46, two extrusion springs 41 are fixedly installed on the outer side of first baffle 42, extrusion spring 41 is fixedly connected between first baffle 42 and the inner wall of water inlet chamber 35, is placed on the inner wall of water inlet chamber 35, third cavity 34 and second cavity 33 are also equipped in shell 46, third cavity 34 is arranged at the right side of water inlet chamber 35, second cavity 33 is arranged at the right side of third cavity 34, fixed base 40 is fixedly installed on the side of first baffle 42 close to second baffle 43, guide rod 39 is hingedly equipped on fixed base 40, connecting rod 38 is hingedly equipped at the end of guide rod 39, rotating base 37 is rotatably installed on third baffle 44, one side of rotating base 37 is eccentrically connected with connecting rod 38, central shaft 31 is rotatably connected to the front of rotating base 37, fourth baffle 47 is fixedly installed in front of third baffle 44, heat conduction cavity 32 is formed between third baffle 44 and fourth baffle 47, rotating vane 48 is fixedly installed on the surface of central shaft 31, rotating vane 48 is arranged in heat conduction cavity 32, rotating blade 30 is fixedly connected at the end of central shaft 31.

[0033] Preferably, refer to the accompanying Figure 6The second partition plate 43 and the third partition plate 44 are provided with a drainage hole 45, and the drainage hole 45 is communicated with the third cavity 34, the second cavity 33 and the heat conduction cavity 32.

[0034] Preferably, referring to the accompanying drawings Figure 1 and the accompanying drawings Figure 2 One side of the box 11 is provided with a ventilation hole 17 and a first wiring position 16, the ventilation hole 17 is arranged above the first wiring position 16, and the other side of the box 11 is provided with a heat dissipation hole 18, and the heat dissipation hole 18 is arranged below the ventilation hole 17.

[0035] Preferably, referring to the accompanying drawings Figure 6 The front of the rotating blade 30 is fixedly provided with a heat conduction plate 29, and the heat conduction plate 29 is arranged in the inner side of the heat dissipation hole 18.

[0036] Preferably, referring to the accompanying drawings Figure 5 One side of the temperature control and heat dissipation assembly 28 is fixedly provided with a water level detector 27, an upper side of the water level detector 27 is fixedly provided with a digital display controller 25, and the other end of the digital display controller 25 is fixedly connected with a temperature sensing controller 26.

[0037] Preferably, referring to the accompanying drawings Figure 3 The back of the box 11 is fixedly provided with a second wiring position 22, a drainage pipe 23 and a water inlet and drainage pipe 19 are arranged below the second wiring position 22, an emergency stop key 21 is fixedly arranged on the right side of the second wiring position 22, an opening key 20 is fixedly arranged above the second wiring position 22, and the drainage pipe 23 is arranged on one side close to the emergency stop key 21.

[0038] Preferably, referring to the accompanying drawings Figure 1 The front of the box 11 is provided with a water level display device 13, a temperature control display screen 12 and a water pressure display device 14 are arranged on the right side of the water level display device 13, and a rotary knob 15 is arranged below the water pressure display device 14.

[0039] Preferably, referring to the accompanying drawings Figure 3 The drainage pipe 23 is communicated with the heat conduction cavity 32, the water inlet and drainage pipe 19 is communicated with the water inlet cavity 35, a drainage valve 36 is arranged on the first partition plate 42, and the drainage valve 36 is communicated with the water inlet cavity 35 and the third cavity 34.

[0040] Preferably, referring to the accompanying drawings Figure 6 The central shaft 31 is rotatably arranged outside the fourth partition plate 47, and the rotating blade 30 is arranged on the side away from the fourth partition plate 47.

[0041] The specific use method of the utility model:

[0042] In use of the utility model, first, the utility model's drain pipe 23 and water inlet pipe 19 are connected with external circulating water pipe, then the utility model's power supply is connected, after connection is finished, the utility model's power supply is connected, power cord is connected with second wiring position 22, after connection is finished, key 20 can be opened.

[0043] In the subsequent process of using the utility model, water inlet pipe 19 will first pressurize inside water inlet cavity 35. With the increase of the pressure of water body inside water inlet cavity 35, first baffle 42 will be pushed to move forward. The movement of first baffle 42 will subsequently drive guide rod 39 to swing forward, and the swing of guide rod 39 will further drive connecting rod 38 to rotate. The rotation of connecting rod 38 will drive rotating base 37 to rotate, and the rotation of rotating base 37 will make rotating blade 30 and rotating blade 48 rotate together. When the water body inside water inlet cavity 35 reaches the maximum pressure value, the water body will flow into third cavity 34 inside through drain valve 36. Then, the water body inside third cavity 34 will enter second cavity 33 inside through drain hole 45, and then enter heat conduction cavity 32 inside through drain hole 45 again. In the process of rotating base 37 rotating, rotating blade 48 will agitate the water body inside heat conduction cavity 32. The heat inside heat conduction cavity 32 will be dissipated outward through fourth baffle 47, and with the rotation of rotating blade 30, the heat will be more effectively discharged to the outside. Moreover, by pressurizing inside water inlet cavity 35 through water inlet pipe 19, it can ensure that the water body flows inside the device at a certain pressure, thereby improving the transmission efficiency of water flow. The heat inside heat conduction cavity 32 is dissipated outward through fourth baffle 47, and the rotation of rotating blade 30 helps more effective discharge of heat, and ensures that the device does not produce excessive heat accumulation when running, and can also improve the efficiency of heat energy transmission, thereby prolonging the service life of the device. Moreover, after the water body inside water inlet cavity 35 reaches the maximum pressure value, it will flow into third cavity 34 through drain valve 36, and then into second cavity 33 and heat conduction cavity 32 in turn.

[0044] The utility model discloses a hot roll stamping processing uses improved temperature controller through being equipped with temperature control heat dissipation subassembly, in the use process, the water inlet pipe will first pressurize the inside of water inlet cavity. With the pressure of water body inside water inlet cavity increases, will push first baffle and move forward. The movement of first baffle will drive guide rod swing forward in turn, and the swing of guide rod will drive connecting rod to rotate in turn. The rotation of connecting rod will drive rotary base to rotate, and the rotation of rotary base will make rotary blade and rotating blade rotate together, when the water body inside water inlet cavity reaches the maximum pressure value, water body will flow into the third cavity inside through the drain valve. Then, the water body inside third cavity will enter the second cavity inside through the drain hole, and then enters the heat conduction cavity inside through the drain hole again, in the process of rotary base rotation, rotating blade will agitate the water body inside heat conduction cavity. And the heat inside heat conduction cavity will be scattered outward through the fourth baffle, and with the rotation of rotating blade, heat can be more effectively discharged to the outside, and through the water inlet pipe pressurizes the inside of water inlet cavity, can ensure that water body flows in the device inside with certain pressure, thereby improve the transmission efficiency of water flow, and the heat inside heat conduction cavity is scattered outward through the fourth baffle, and the rotation of rotating blade helps the more effective discharge of heat, and ensures that the device does not produce too much heat accumulation when operating, can also improve the efficiency of heat energy transmission, thereby prolong the service life of device, and the water body inside water inlet cavity reaches the maximum pressure value, and then flows into the third cavity through the drain valve, and then enters the second cavity and heat conduction cavity in turn.

[0045] The embodiments of the present application are given for the purpose of illustration and description, and are not intended to be exhaustive or to limit the application to the disclosed form. Many modifications and variations will be apparent to those of ordinary skill in the art. The embodiments were chosen and described in order to best explain the principles of the application and its practical application, and to enable others skilled in the art to understand the application for various embodiments with various modifications as are suited to the particular use contemplated.

Claims

1. An improved temperature controller for hot coining, comprising a box (11), characterized in that: The box (11) is internally provided with an equipment inner cavity (24), and a temperature control and heat dissipation assembly (28) is fixedly installed on the inner wall of the equipment inner cavity (24). The temperature control and heat dissipation assembly (28) comprises a shell (46), a first partition plate (42), a second partition plate (43) and a third partition plate (44) are fixedly installed on the inner wall of the shell (46), the first partition plate (42) is fixedly installed on the outer side of the second partition plate (43) and the third partition plate (44), the first partition plate (42) is arranged on the left side of the second partition plate (43), a water inlet cavity (35) is formed between the first partition plate (42) and the shell (46), two extrusion springs (41) are fixedly installed on the outer side of the first partition plate (42), the extrusion springs (41) are fixedly connected between the first partition plate (42) and the inner wall of the water inlet cavity (35) and arranged on the inner wall of the water inlet cavity (35), a third cavity (34) and a second cavity (33) are further arranged in the shell (46), the third cavity (34) is arranged on the right side of the water inlet cavity (35), the second cavity (33) is arranged on the right side of the third cavity (34), a fixed base (40) is fixedly installed on the side of the first partition plate (42) close to the second partition plate (43), a guide rod (39) is hingedly arranged on the fixed base (40), a connecting rod (38) is hingedly arranged at the end of the guide rod (39), a rotating base (37) is rotatably installed on the third partition plate (44), one side of the rotating base (37) is eccentrically connected with the connecting rod (38), a central shaft (31) is rotatably connected to the front of the rotating base (37), a fourth partition plate (47) is fixedly installed on the front of the third partition plate (44), a heat conduction cavity (32) is formed between the third partition plate (44) and the fourth partition plate (47), a rotating blade (48) is fixedly arranged on the surface of the central shaft (31), and the rotating blade (48) is arranged in the heat conduction cavity (32). A rotating blade (30) is fixedly connected to the end of the central shaft (31).

2. The improved temperature controller for hot coining according to claim 1, characterized in that: The second partition plate (43) and the third partition plate (44) are both provided with a drain hole (45), and the drain hole (45) is in communication with the third cavity (34), the second cavity (33) and the heat conduction cavity (32).

3. The improved temperature controller for hot coining according to claim 1, wherein: One side of the box (11) is provided with a ventilation hole (17) and a first wiring position (16), the ventilation hole (17) is arranged above the first wiring position (16), and the other side of the box (11) is provided with a heat dissipation hole (18), the heat dissipation hole (18) is arranged below the ventilation hole (17).

4. The improved temperature controller for hot coining according to claim 3, wherein: The rotating blade (30) is fixedly installed with a heat conduction plate (29) in front of it, and the heat conduction plate (29) is arranged inside the heat dissipation hole (18).

5. The improved temperature controller for hot coining according to claim 1, wherein: A water level detector (27) is fixedly installed on one side of the temperature control and heat dissipation assembly (28), a digital display controller (25) is fixedly arranged above the water level detector (27), and a temperature sensing controller (26) is fixedly connected to the other end of the digital display controller (25).

6. The improved temperature controller for hot coining according to claim 4, wherein: The box (11) back is fixedly provided with a second wiring position (22), a drain pipe (23) and a water inlet drain pipe (19) are arranged below the second wiring position (22), an emergency stop key (21) is fixedly arranged on the right side of the second wiring position (22), an on-off key (20) is fixedly arranged above the second wiring position (22), and the drain pipe (23) is arranged on the side close to the emergency stop key (21).

7. The improved temperature controller for hot coining according to claim 6, wherein: The box (11) is provided with a water level display device (13) on the front side, a temperature control display screen (12) and a water pressure display device (14) are arranged on the right side of the water level display device (13), and a knob (15) is arranged below the water pressure display device (14).

8. The improved temperature controller for hot coining according to claim 7, wherein: The drain pipe (23) is communicated with the heat conduction cavity (32), the water inlet drain pipe (19) is communicated with the water inlet cavity (35), the first partition plate (42) is provided with a drain valve (36), and the drain valve (36) is communicated with the water inlet cavity (35) and the third cavity (34).

9. The improved temperature controller for hot coining according to claim 8, wherein: The central shaft (31) is rotatably arranged on the outer side of the fourth partition plate (47), and the rotating blade (30) is arranged on the side away from the fourth partition plate (47).