A host device for intelligent temperature control
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-07-10
- Publication Date
- 2026-08-14
AI Technical Summary
[0005]针对现有技术的不足,本发明提供了一种温度智能调控的主机装置,解决了调节不便,难以根据实际需求灵活调整高度,且支撑过程中回出现晃动、偏移的问题
1、本发明通过螺纹杆带动横板一滑动实现高度调节,配合滑块与滑槽的导向限位、限位立板与限位环的偏移防护,以及复位弹簧和连接板的稳定作用,能快速完成机体的支撑与固定,有效减少机体运行时的晃动,提升机体工作过程中的稳定性。
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Figure CN122579519A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of mechanical equipment technology, specifically to a main unit for intelligent temperature control. Background Technology
[0002] The main unit for intelligent temperature control is the core control and operation carrier of various electronic and mechanical equipment. It is mainly used to carry out the core computing, control, power output and other key functions of the equipment. Through the built-in control components, it realizes the automatic adjustment of its own operating temperature. Its core effect is to ensure that the main unit always maintains a reasonable operating temperature range under different working loads and different ambient temperatures.
[0003] The core of the intelligent temperature control host device consists of a body, a support mechanism, a heat dissipation mechanism, and a temperature control component. The body serves as the core mounting carrier, used to fix various electronic components and power parts. The support mechanism is used to support and fix the host body and adjust the installation height of the host to adapt to different working scenarios.
[0004] The machine body requires supporting and heat dissipation structures to ensure operational stability. However, most existing supporting structures are inconvenient to adjust, making it difficult to flexibly adjust the height according to actual needs. Furthermore, they are prone to swaying and shifting during the support process. Some supporting structures lack effective guiding and limiting components, which further reduces stability after long-term use, affecting the overall working performance of the machine body. Existing heat dissipation structures have limited heat dissipation efficiency and lack effective protective components during the heat dissipation process, allowing foreign objects to easily enter the heat dissipation structure and cause damage. Some heat dissipation structures cannot adjust the airflow speed according to the heat generation of the machine body, making it difficult to adapt to the heat dissipation needs under different working conditions. After long-term use, the machine body temperature is prone to excessive wear and tear on components, shortening the service life of the equipment and increasing the cost of use and maintenance. Summary of the Invention
[0005] To address the shortcomings of existing technologies, this invention provides a main unit with intelligent temperature control, which solves the problems of inconvenient adjustment, difficulty in flexibly adjusting the height according to actual needs, and the occurrence of swaying and displacement during the support process.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a host device for intelligent temperature control, comprising a body, a support mechanism at the bottom of the body, and a heat dissipation mechanism inside the body for dissipating heat from the inside of the body. The support mechanism includes two horizontal plates, which are slidably connected to the left and right sides of the machine body, respectively. A second horizontal plate is provided at the bottom of each of the two horizontal plates. A sliding groove is provided on the adjacent side of each horizontal plate. A horizontal rod is fixedly connected inside each sliding groove. A return spring is sleeved on the outer wall of each horizontal rod. A sliding block is slidably connected to the outer wall of each horizontal rod. A rotating block is fixedly connected to the adjacent side of each sliding block. A connecting plate is rotatably connected to the adjacent side of each rotating block. A guide component is provided at the bottom of each sliding groove. A moving component is provided at the top of each horizontal plate. Limiting components are provided at both ends of each horizontal plate.
[0007] Preferably, the heat dissipation mechanism includes two rotating doors, both of which are rotatably connected to the front side of the body. Two mounting slots are provided on the front side of the body, and a groove is provided on the top of the front side of the body. A cooling fan is fixedly connected to the bottom of the inner side of the groove. Baffles are fixedly connected to the front and rear sides of the groove. Air outlets are provided on the left and right sides of the body, and multiple rotating plates are rotatably connected inside the two air outlets.
[0008] Preferably, the guiding component includes multiple guide blocks, which are respectively fixedly connected to both sides of the sliding block, and each sliding groove has two guide grooves inside.
[0009] Preferably, a fixing block is fixedly connected to both the left and right sides of the machine body, and a threaded rod is rotatably connected to the top of each of the two fixing blocks. The bottom end of each threaded rod passes through the fixing block and is threadedly connected to the middle of the horizontal plate.
[0010] Preferably, the limiting component includes two reinforcing blocks, which are respectively fixedly connected to the front and rear sides of the horizontal plate two. A limiting plate is fixedly connected to the top of each of the two reinforcing blocks, and a limiting ring is fixedly connected to the front and rear sides of the horizontal plate one.
[0011] Preferably, sliders are fixedly connected to adjacent sides of the two horizontal plates, and grooves are provided on both the left and right sides of the machine body.
[0012] Preferably, the slider is slidably connected to the middle of the groove, and the size of the slider matches that of the groove.
[0013] Preferably, the bottom of the cooling fan is connected to the mounting slot, and the air outlet is connected to the mounting slot.
[0014] This invention provides a host device for intelligent temperature control. It has the following beneficial effects: 1. This invention achieves height adjustment by sliding the horizontal plate through the threaded rod. Combined with the guide and limit of the slider and the slide groove, the offset protection of the limit plate and the limit ring, and the stabilizing effect of the return spring and the connecting plate, it can quickly complete the support and fixation of the machine body, effectively reduce the shaking of the machine body during operation, and improve the stability of the machine body during operation.
[0015] 2. This invention controls the opening and closing of the mounting slot through a rotating door, uses a cooling fan to draw in cold air, and combines the connection design of the mounting slot, cooling fan, and air outlet to form a complete heat dissipation channel. The air outlet speed can be adjusted by rotating the plate, which can efficiently remove the heat generated by the machine's operation, ensure that the machine is at a reasonable working temperature, and extend the machine's service life.
[0016] 3. The present invention adapts to different working scenarios through the height adjustment function of the support mechanism, and the protection and adjustment functions of the heat dissipation mechanism take into account both practicality and safety. The overall structure is easy to operate and maintain, reducing the cost of use and maintenance, and improving the practicality and applicability of the device. Attached Figure Description
[0017] Figure 1 This is a perspective view of the present invention; Figure 2 This is a structural exploded view of the support mechanism of the present invention; Figure 3 This is a schematic diagram of the connecting plate of the present invention; Figure 4 This is a cross-sectional view of the horizontal plate of the present invention; Figure 5 This is an exploded view of the heat dissipation mechanism of the present invention.
[0018] The components are as follows: 1. Body; 2. Support mechanism; 21. Horizontal plate one; 22. Horizontal plate two; 23. Sliding groove; 24. Crossbar; 25. Return spring; 26. Sliding block; 27. Guide assembly; 271. Guide block; 272. Guide groove; 28. Moving assembly; 281. Fixing block; 282. Threaded rod; 29. Limiting assembly; 291. Reinforcing block; 292. Limiting upright plate; 293. Limiting ring; 210. Rotating block; 211. Connecting plate; 3. Heat dissipation mechanism; 31. Rotating door; 32. Mounting groove; 33. Groove; 34. Cooling fan; 35. Baffle; 36. Air outlet; 37. Rotating plate; 4. Sliding block; 5. Sliding groove. Detailed Implementation
[0019] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0020] Reference Figure 1 , Figure 2 , Figure 3 and Figure 4 This invention provides a host device for intelligent temperature control, including a body 1, a support mechanism 2 at the bottom of the body 1, and a heat dissipation mechanism 3 inside the body 1 for dissipating heat from the inside of the body 1. The support mechanism 2 includes two horizontal plates 21, which adjust the overall support position. The two horizontal plates 21 are slidably connected to the left and right sides of the body 1, respectively, and move vertically along the body 1. A second horizontal plate 22 is provided at the bottom of each of the two horizontal plates 21, forming a double-layer support structure. Sliding grooves 23 are provided on adjacent sides of the horizontal plates 21 and 22 to provide space for the installation of internal parts. Horizontal rods 24 are fixedly connected inside the sliding grooves 23, serving as the moving track for the sliding components. Return springs 25 are fitted on the outer walls of the horizontal rods 24, allowing for automatic springback after being subjected to force. The outer wall of the crossbar 24 is slidably connected with sliding blocks 26, which complete linear reciprocating sliding based on the crossbar 24. Each adjacent side of the multiple sliding blocks 26 is fixedly connected with a rotating block 210 to realize the angular rotational cooperation of the connecting parts. Each adjacent side of the multiple rotating blocks 210 is rotatably connected with a connecting plate 211 to link the sliding parts on both sides to operate synchronously. The sliding groove 23 is provided with a guide component 27 to limit the movement trajectory of the sliding parts and prevent deviation. The top of the first horizontal plate 21 is provided with a moving component 28 to provide the power required for overall adjustment. The two ends of the second horizontal plate 22 are provided with limit components 29 to limit the range of motion between the two sets of plates. The guide assembly 27 includes multiple guide blocks 271, which are snapped into corresponding structures to achieve directional positioning. The multiple guide blocks 271 are fixedly connected to both sides of the sliding block 26 and move synchronously with the sliding block 26. The sliding groove 23 has two guide grooves 272 inside, which match the guide blocks 271 to complete directional sliding. The left and right sides of the machine body 1 are fixedly connected to fixed blocks 281 to securely install the adjustment transmission parts. The top of each of the two fixed blocks 281 is rotatably connected to a threaded rod 282, which transmits lifting power by rotation. The bottom end of each threaded rod 282 passes through the fixed block 281 and is threadedly connected to the middle of the horizontal plate 21, which drives the horizontal plate 21 to rise and fall through the threaded transmission. The limiting component 29 includes two reinforcing blocks 291, which improve the overall installation firmness of the limiting structure. The two reinforcing blocks 291 are fixedly connected to the front and rear sides of the horizontal plate 22 respectively, and the limiting protection structure is fixedly arranged. The top of the two reinforcing blocks 291 is fixedly connected to the limiting plate 292, which prevents the vertical blocking plate from shifting. The front and rear sides of the horizontal plate 21 are fixedly connected to the limiting rings 293, which cooperate with the limiting plate 292 to complete the position locking. Specifically, two horizontal plates 21 are slidably connected to the left and right sides of the body 1, serving as the basic support and adjustment components. They can slide along the body 1 to achieve height adjustment. Horizontal plate 22 is located at the bottom of horizontal plate 21 and works in conjunction with horizontal plate 21 to form the main support of the support mechanism 2, improving support stability. A sliding groove 23 is opened on the side adjacent to horizontal plate 21 and horizontal plate 22, providing installation space for components such as horizontal bar 24 and sliding block 26. Horizontal bar 24 is fixed inside the sliding groove 23, providing a sliding track for sliding block 26 and also limiting the return spring 25.
[0021] The return spring 25 is sleeved on the outer wall of the crossbar 24. When the sliding block 26 slides, it can be compressed or stretched to assist the sliding block 26 in resetting and maintain the relative position stability of the first crossbar 21 and the second crossbar 22. The sliding block 26 is slidably connected to the outer wall of the crossbar 24 and is used to connect the rotating block 210 to transmit the adjustment force. The rotating block 210 is fixed on the side adjacent to the sliding block 26 and can be rotatably connected to the connecting plate 211 so that the connecting plate 211 can be flexibly transmitted. The connecting plate 211 is connected to the rotating blocks 210 on both sides, which drives the sliding blocks 26 on both sides to move synchronously, ensuring that the first crossbar 21 and the second crossbar 22 are adjusted synchronously and maintain relative stability. The guide assembly 27 is used to ensure that the sliding block 26 slides smoothly. The guide block 271 is fixed on both sides of the sliding block 26, and the guide groove 272 is opened inside the sliding groove 23. The guide block 271 is embedded in the guide groove 272 to limit the sliding direction of the sliding block 26 and prevent it from deviating. The movable component 28 is used to adjust the height of the horizontal plate 21. The fixed block 281 is fixed on the left and right sides of the machine body 1 to provide installation support for the threaded rod 282. The threaded rod 282 is rotatably connected to the top of the fixed block 281 and its bottom end is threadedly connected to the horizontal plate 21. Rotating the threaded rod 282 can drive the horizontal plate 21 to slide along the machine body 1. The limiting component 29 is used to prevent the first horizontal plate 21 and the second horizontal plate 22 from shifting. The reinforcing block 291 is fixed on the front and rear sides of the second horizontal plate 22 to fix the limiting upright plate 292. The limiting upright plate 292 is fixed on the top of the reinforcing block 291 and cooperates with the limiting ring 293 on the front and rear sides of the first horizontal plate 21 to limit the relative displacement of the first horizontal plate 21 and the second horizontal plate 22, further improving the support stability.
[0022] Reference Figure 1 and Figure 5The heat dissipation mechanism 3 includes two rotating doors 31 to control the opening and closing of the heat dissipation channel. Both rotating doors 31 are rotatably connected to the front side of the body 1, flexibly realizing the opening and closing action. Two mounting slots 32 are opened on the front side of the body 1 to realize the communication between the inside of the body and the outside. A groove 33 is opened on the top of the front side of the body 1 for installing the heat dissipation core component. A cooling fan 34 is fixedly connected to the bottom of the inner side of the groove 33 to generate airflow to realize heat exchange. Baffles 35 are fixedly connected to the front and rear sides of the groove 33 to prevent foreign objects from entering and protect the cooling fan 34. Air outlets 36 are opened on the left and right sides of the body 1 to exhaust the air carrying heat from the body 1. Multiple rotating plates 37 are rotatably connected inside the two air outlets 36 to adjust the air outlet angle and air outlet speed. Specifically, the rotating door 31 is rotatably connected to the front of the machine body 1. Its function is to control the opening and closing of the front of the machine body 1. Opening the rotating door 31 exposes the mounting slot 32, while closing it protects the internal components of the machine body 1 and prevents foreign objects from entering. There are two mounting slots 32 on the front of the machine body 1. After opening the rotating door 31, the mounting slots 32 enable communication between the inside of the machine body 1 and the outside, providing a channel for cold air to enter and hot air to exit, thus preparing for heat dissipation. The groove 33 is located on the top of the front of the machine body 1 and is used to install and accommodate the cooling fan 34, providing a stable installation space for the cooling fan 34 and ensuring that the cooling fan 34 can operate normally. The cooling fan 34 is fixed to the bottom of the inner side of the groove 33 and is the core working component of the heat dissipation mechanism 3. When operating, it can draw cold air from the outside into the machine body 1 and at the same time remove the heat generated during the operation of the machine body 1, thus realizing the core function of heat dissipation. The baffle 35 is fixed on the front and rear sides of the groove 33. Its function is to prevent foreign objects, dust and other objects from entering the groove 33, and to prevent foreign objects from contacting and damaging the cooling fan 34. It protects the cooling fan 34. The air outlet 36 is opened on the left and right sides of the body 1. It is a channel for hot air to be discharged. Air carrying the heat of the body 1 can be discharged through the air outlet 36 to complete the heat exchange and achieve the purpose of heat dissipation. The rotating plate 37 is rotatably connected inside the air outlet 36. According to the heat dissipation requirements of the unit 1, it adjusts its own rotation angle to control the air outlet 36, thereby ensuring stable heat dissipation of the unit 1 and ensuring that the heat dissipation operation is completed in an orderly manner.
[0023] Reference Figure 2 and Figure 5Each of the two horizontal plates 21 has a slider 4 fixedly connected to one of their adjacent sides, which cooperates with the corresponding structure to achieve a guiding function. The left and right sides of the body 1 are provided with a slide groove 5 to provide sliding space for the slider 4. The slider 4 is slidably connected to the middle of the slide groove 5 and slides smoothly along the slide groove 5. The size of the slider 4 and the slide groove 5 are matched to avoid loosening or displacement during sliding. The bottom of the cooling fan 34 is connected to the mounting groove 32 to allow the cold air drawn in to enter the body 1 smoothly. The air outlet 36 is connected to the mounting groove 32 to allow the air carrying heat to be discharged smoothly to form a circulation. Specifically, slider 4 is fixed on one side of the two horizontal plates 21, and slide groove 5 is opened on the left and right sides of the body 1. Slider 4 is slidably connected in the middle of slide groove 5, and the two are matched in size. Its function is to cooperate with the horizontal plate 21 to slide along the body 1, limit and guide the sliding direction of the horizontal plate 21, prevent the horizontal plate 21 from deviating when sliding, further improve the stability of the support mechanism 2 during adjustment, and assist the horizontal plate 21 in completing the height adjustment. The bottom of the cooling fan 34 is connected to the mounting slot 32. Its function is to allow the cold air drawn in by the cooling fan 34 to smoothly enter the body 1 through the mounting slot 32, ensuring that the cold air can fully contact the heat-generating components inside the body 1 and efficiently remove heat. The air outlet 36 is connected to the mounting slot 32. Its function is to allow the air carrying heat inside the body 1 to be collected through the mounting slot 32 and smoothly discharged from the body 1 through the air outlet 36, forming a complete air circulation channel, ensuring the heat dissipation efficiency of the cooling mechanism 3, and ensuring the stable completion of the heat dissipation operation.
[0024] Working principle: When the machine body 1 needs to be supported, the first horizontal plate 21 is slid along the left and right sides of the machine body 1 by rotating the threaded rod 282 to adjust the height. When adjusting the horizontal plate 21, the sliding block 26 slides along the horizontal bar 24, compressing or stretching the return spring 25. The guide blocks 271 on both sides of the sliding block 26 are embedded in the guide groove 272 in the sliding groove 23 to ensure that the sliding block 26 slides smoothly. The connecting plate 211 drives the sliding blocks 26 on both sides to move synchronously, so that the horizontal plate 21 and the horizontal plate 22 remain relatively stable. The limiting components 29 at both ends of the horizontal plate 22 achieve the limiting. The reinforcing blocks 291 on the front and rear sides of the horizontal plate 22 are fixed with limiting plates 292. The limiting rings 293 on the front and rear sides of the horizontal plate 21 cooperate with the limiting plates 292 to prevent the horizontal plate 21 and the horizontal plate 22 from shifting, thus completing the adjustment and fixation of the support mechanism 2 and reducing the shaking of the machine body 1. After opening the rotating door 31, two mounting slots 32 on the front side of the body 1 are exposed, ensuring that the inside of the body 1 is connected to the outside world, preparing for heat dissipation. The cooling fan 34 is started. The cooling fan 34 is fixed to the bottom of the inner side of the groove 33 on the top front side of the body 1. The baffles 35 on the front and rear sides of the groove 33 can prevent foreign objects from entering and protect the cooling fan 34. When the cooling fan 34 is running, it draws in cold air from the outside into the body 1 and takes away the heat generated by the operation of the body 1. The air carrying the heat is discharged through the air outlets 36 on the left and right sides of the body 1. Multiple rotating plates 37 are rotatably connected inside the air outlets 36, which can adjust the angle and control the airflow speed according to the heat dissipation requirements to ensure stable heat dissipation until the temperature of the body 1 drops to a reasonable range, completing the heat dissipation operation.
[0025] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A host device for intelligent temperature control, comprising a body (1), characterized in that, The bottom of the body (1) is provided with a support mechanism (2), and the interior of the body (1) is provided with a heat dissipation mechanism (3), which is used to dissipate heat from the interior of the body (1). The support mechanism (2) includes two horizontal plates (21), which are slidably connected to the left and right sides of the body (1). A horizontal plate (22) is provided at the bottom of each of the two horizontal plates (21). A sliding groove (23) is provided on the adjacent side of the horizontal plate (21) and the horizontal plate (22). A horizontal rod (24) is fixedly connected inside the sliding groove (23). A reset spring (25) is sleeved on the outer wall of the horizontal rod (24). A sliding block (26) is slidably connected to the outer wall of the horizontal rod (24). A rotating block (210) is fixedly connected on the adjacent side of the sliding block (26). A connecting plate (211) is rotatably connected on the adjacent side of the rotating block (210). A guide component (27) is provided at the bottom of the sliding groove (23). A moving component (28) is provided at the top of the horizontal plate (21). Limit components (29) are provided at both ends of the horizontal plate (22).
2. The host device for intelligent temperature control according to claim 1, characterized in that, The heat dissipation mechanism (3) includes two rotating doors (31), both of which are rotatably connected to the front side of the body (1). The front side of the body (1) has two mounting slots (32), and the top of the front side of the body (1) has a groove (33). A cooling fan (34) is fixedly connected to the bottom of the inner side of the groove (33). Baffles (35) are fixedly connected to the front and rear sides of the groove (33). Air outlets (36) are opened on the left and right sides of the body (1). Multiple rotating plates (37) are rotatably connected inside the two air outlets (36).
3. The host device for intelligent temperature control according to claim 1, characterized in that, The guide component (27) includes multiple guide blocks (271), which are fixedly connected to both sides of the sliding block (26). The sliding groove (23) has two guide grooves (272) inside.
4. The host device for intelligent temperature control according to claim 1, characterized in that, The machine body (1) is fixedly connected to the left and right sides with fixed blocks (281), and the top of the two fixed blocks (281) is rotatably connected with threaded rods (282). The bottom end of the threaded rods (282) passes through the fixed blocks (281) and is threadedly connected to the middle of the horizontal plate (21).
5. The host device for intelligent temperature control according to claim 1, characterized in that, The limiting component (29) includes two reinforcing blocks (291), which are fixedly connected to the front and rear sides of the second horizontal plate (22) respectively. The top of each of the two reinforcing blocks (291) is fixedly connected to a limiting plate (292), and the front and rear sides of the first horizontal plate (21) are fixedly connected to a limiting ring (293).
6. The host device for intelligent temperature control according to claim 1, characterized in that, Slider (4) is fixedly connected to each of the two adjacent sides of the horizontal plate (21), and slide groove (5) is provided on the left and right sides of the body (1).
7. The host device for intelligent temperature control according to claim 6, characterized in that, The slider (4) is slidably connected to the middle of the groove (5), and the slider (4) matches the size of the groove (5).
8. The host device for intelligent temperature control according to claim 2, characterized in that, The bottom of the cooling fan (34) is connected to the mounting slot (32), and the air outlet (36) is connected to the mounting slot (32).