A new notebook cooling stand
By designing a new type of laptop cooling stand with an adjustable angle, the problem of poor user experience caused by the fixed angle in existing technologies has been solved, achieving stable support, high heat dissipation efficiency, and convenient storage.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- COMMUNICATION UNIVERSITY OF CHINA
- Filing Date
- 2025-09-17
- Publication Date
- 2026-07-21
AI Technical Summary
Existing laptop cooling stands cannot flexibly adjust the support angle, resulting in a poor user experience, and their fixed angle makes them unsuitable for various usage scenarios.
A novel laptop cooling stand has been designed, comprising a support plate, a base plate, a cover plate, a slider, a lever, a rotating plate, and a locking plate. The angle of the support plate can be flexibly adjusted through the combination of the shaft, slider, and lever, and the heat dissipation is accelerated through the fan box and heat dissipation holes. The support plate can be folded and stored for easy carrying.
It enables flexible adjustment of the support plate angle to adapt to different usage scenarios, improve the user experience, and at the same time improve heat dissipation efficiency and laptop stability, reduce operating temperature, and extend service life.
Smart Images

Figure CN224536462U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of heat dissipation brackets, and in particular to a novel laptop heat dissipation bracket. Background Technology
[0002] An existing patent (publication number: CN201374028Y) proposes a laptop cooling stand, including a bracket and support legs. The bracket is a hollow plate structure with a quadrilateral concave surface and ventilation holes on the concave surface. A hairdryer is installed inside the bracket, and the power cord of the hairdryer is led out from the side of the bracket, with a USB interface at the top of the power cord. The support legs are movably installed at the corners of the bottom surface of the bracket. However, the support angle of this device is relatively fixed and cannot be flexibly adjusted according to the user's habits, which reduces the user experience and has drawbacks. Summary of the Invention
[0003] This utility model addresses the aforementioned shortcomings of the existing technology by providing a novel laptop cooling stand that offers stable support, convenient folding, and excellent heat dissipation. Furthermore, it allows for flexible adjustment of the laptop's support angle according to user habits and needs, adapting to different usage scenarios and enhancing the user experience through a suitable viewing angle.
[0004] The objective of this utility model is achieved through the following technical solution: A novel laptop cooling stand includes a support plate, a base plate, a cover plate, a slider, a lever, a rotating plate, and a locking plate. The base plate has strips on both sides, and a mounting plate is located on the upper part of each strip. The mounting plate is connected to the support plate via a movable shaft. The movable shaft sequentially connects the mounting plate and the support plate, allowing the support plate to rotate on the movable shaft. The support plate has support plates on both sides. A cover plate is connected to the front of the support plate, and the cover plate has multiple ventilation holes. A fixing sleeve is located on the rear of the support plate, connecting to a fan housing. The support plate has upper connecting ears on both sides, which are connected to the upper ends of support rods via upper shafts. The upper shaft sequentially connects the upper connecting ears and the support rod. The lower ends of the support rods are connected to lower connecting ears via lower shafts, which sequentially connect the lower connecting ears and the support rod. A slider is located at the lower part of the lower connecting ears.
[0005] The strip of this utility model has a horizontal sliding hole, which is adapted to the slider. The slider passes through the horizontal sliding hole and is attached to the outside of the strip. The strip has bosses on both sides, and the bosses have side sliding holes. The slider has a lever hole, and the lever hole and side sliding hole are adapted to the lever. The lever passes through the side sliding hole and lever hole in sequence. The boss is divided into an outer boss and an inner boss. The outer boss has limiting sliding holes on both sides. The lever has limiting rod grooves on both sides. The limiting rod grooves and limiting sliding holes are adapted to the limiting rod. The limiting rod passes through the limiting sliding hole and is connected to the limiting rod groove.
[0006] The lever of this invention is connected to the outside of the bearing, and a rotating plate is connected inside the bearing. The outer end of the rotating plate has a knob that fits against the lever. The inner end of the rotating plate has a control support rod that passes through the lever. The lever has a slide rail that is adapted to the control support sleeve. The control support sleeve is connected to the slide rail and slides within the slide rail. Beneficial effects
[0007] This utility model connects the support plate, support rod, and base plate via a shaft and slides along the horizontal sliding hole with a slider to flexibly adjust the tilt angle of the support plate. This allows the support angle of the laptop to be adjusted according to the user's usage habits and needs, adapting to different usage scenarios. It also enhances the user experience through a reasonable viewing angle. Furthermore, the support plate can be quickly folded up through a hinge, making it easy to operate. The folding device also reduces its storage space occupation, making it easy to carry.
[0008] The heat dissipation holes of the cover plate of this utility model form an airflow channel with the fan box, and together with the hollow support at the rear of the support plate, it accelerates the heat dissipation efficiency of the laptop. By reducing the temperature of the laptop during operation, its service life is extended. The support plates on both sides of the support plate can increase the support points for the laptop, prevent the support plate from sliding down, and increase the stability of the laptop.
[0009] This utility model's control support rod is positioned and connected to the control support sleeve via a threaded connection. When the control support rod is rotated by rotating the knob, the locking plate moves laterally in a linear fashion. When the locking plate moves outward until the locking block is completely disengaged from the locking groove, the positioning fulcrum of the bar plate against the lever disappears. At this point, the support angle of the support plate can be quickly adjusted by sliding the slider according to actual usage needs. When the locking plate is moved inward by rotating the knob in the opposite direction until the locking block is embedded in the locking groove, the slider and lever are simultaneously braked and locked to prevent the support plate from shaking or shifting angle during use, thus providing stable support for the laptop.
[0010] This utility model provides stable support, is easy to fold, has good heat dissipation, and allows for flexible adjustment of the laptop support angle according to user habits and needs, adapting to different usage scenarios and enhancing the user experience through a reasonable viewing angle. Attached Figure Description
[0011] Figure 1 This is a schematic diagram of a novel laptop cooling bracket structure according to the present invention.
[0012] Figure 2 This is a bottom view of a novel laptop cooling bracket structure according to the present invention.
[0013] Figure 3 This is a cross-sectional view of a novel laptop cooling bracket structure according to the present invention.
[0014] Figure 4 This is a schematic diagram of the slider and base plate connection structure described in this utility model.
[0015] Figure 5 This is an exploded view of the locking plate, lever, and control support rod structure described in this utility model.
[0016] Figure 6 This is a cross-sectional view of the connection structure of the strip, slider, and support rod described in this utility model.
[0017] Figure 7 This is a cross-sectional view of the support plate structure described in this utility model. Detailed Implementation
[0018] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments: Example 1: A novel laptop cooling stand includes a support plate 01, a base plate 02, a cover plate 05, a slider 12, a lever 18, a rotating plate 23, and a locking plate 28. The base plate 02 has strips 03 on both sides, and a mounting plate 10 on the upper part of the strips 03. The mounting plate 10 is connected to the support plate 01 via a movable shaft 09. The movable shaft 09 sequentially connects the mounting plate 10 and the support plate 01, allowing the support plate 01 to rotate on the movable shaft 09. The support plate 01 has support plates 04 on both sides, and a cover plate 05 is connected to the front of the support plate 01. The cover plate 05 has multiple ventilation holes 06. A fixing sleeve 07 is located on the rear of the support plate 01, connecting to a fan housing 08. The support plate 01 also has upper connecting ears 15 on both sides. The connecting ear 15 is connected to the upper end of the support rod 17 via the upper shaft 13. The upper shaft 13 is connected to the upper connecting ear 15 and the support rod 17 in sequence. The lower end of the support rod 17 is connected to the lower connecting ear 16 via the lower shaft 14. The lower shaft 14 is connected to the lower connecting ear 16 and the support rod 17 in sequence. The lower connecting ear 16 has a slider 12 at its lower part. The heat dissipation hole 06 of the cover plate 05 and the fan box 08 form an airflow channel. Together with the hollow support at the rear of the support plate 01, it accelerates the heat dissipation efficiency of the laptop. By reducing the temperature of the laptop during operation, its service life is extended. The support plates 04 provided on both sides of the support plate 01 can increase the support points for the laptop, prevent the support plate 01 from sliding down, and increase the stability of the laptop.
[0019] Example 2: The strip 03 of this utility model has a horizontal sliding hole 11, which is adapted to a slider 12. The slider 12 passes through the horizontal sliding hole 11 and is externally attached to the strip 03. The strip 03 has protrusions 21 on both sides, and each protrusion 21 has a side sliding hole 20. The slider 12 has a lever hole 19, which is adapted to a lever 18. The lever 18 passes through the side sliding hole 20 and the lever hole 19 in sequence. The protrusion 21 is divided into an outer protrusion 211 and an inner protrusion 212. The outer protrusion 211 has limiting sliding holes 33 on both sides. The lever 18 has limiting rod grooves 32 on both sides. 3. Adapted to the limiting rod 31, the limiting rod 31 passes through the limiting sliding hole 33 and is connected to the limiting rod groove 32. The support plate 01, support rod 17, and base plate 02 are connected by a shaft and cooperate with the slider 12 to slide along the horizontal sliding hole 11 to flexibly adjust the tilt angle of the support plate 01. This allows the support angle of the laptop to be adjusted according to the user's usage habits and needs, adapting to different usage scenarios. The reasonable viewing angle enhances the user experience. Furthermore, the hinge enables the support plate 01 to be quickly folded, making operation convenient. The folding device also reduces its storage space occupation, making it easy to carry.
[0020] Example 3: The lever 18 of this invention is connected to the outside of the bearing 24. The bearing 24 is connected to the inside of the rotating plate 23. The outer end of the rotating plate 23 has a knob 22, which fits against the lever 18. The inner end of the rotating plate 23 has a control support rod 25, which passes through the lever 18. The lever 18 has a slide 27, which is adapted to the control support sleeve 26. The control support sleeve 26 is connected to the slide 27 and slides within the slide 27. This device provides stable support, is easy to close, has good heat dissipation, and allows for flexible adjustment of the laptop support angle according to user habits and needs. It can adapt to different usage scenarios and improve the user experience through a reasonable viewing angle.
[0021] Example 4: The positioning sleeve 26 of this utility model is threadedly connected to the positioning support rod 25. The outer end of the positioning sleeve 26 has a locking plate 28, which is connected to an inner boss 212. The inner boss 212 has multiple locking grooves 30 on both sides, and the locking plate 28 has locking blocks 29 on both sides. The locking blocks 29 are adapted to the locking grooves 30 and are connected to the locking grooves 30. The positioning support rod 25 is positioned and connected to the positioning sleeve 26 by threads, so that when the positioning support rod 25 is rotated by rotating the knob 22, the locking plate 28 moves laterally in a straight line. When the locking plate 28 moves outward until the locking block 29 is completely disengaged from the locking groove 30, the positioning fulcrum of the bar 03 and the lever 18 disappears. At this time, the support angle of the support plate 01 can be quickly adjusted by sliding the slider 12 according to actual usage needs. When the locking plate 28 is moved inward by rotating the knob 22 in the opposite direction until the locking block 29 is embedded in the locking groove 30, the slider 12 and the lever 18 are simultaneously braked and locked to prevent the support plate 01 from shaking or shifting in angle during use, thus providing stable support for the laptop.
[0022] Example 5: Installation steps: First, assemble the base plate 02 structure. Place the slider 12 into the horizontal sliding hole 11, ensuring the lever hole 19 corresponds to the side sliding hole 20. Then, pass the lever 18 through the side sliding hole 20 and the lever hole 19, ensuring the limiting rod groove 32 corresponds to the limiting sliding hole 33. Next, pass the limiting rod 31 through the limiting sliding hole 33 until its inner end is embedded in the limiting rod groove 32 and fixedly connected to the lever 18. Then, embed the rotating plate 23 into the bearing 24, and pass the control support rod 25 through the lever 18. The inner surface of the knob 22 should fit against the outer surface of the lever 18. Finally, place the control sleeve 26 into the slide rail 27 and fit it over the control support rod 25, ensuring the control sleeve 26 is open. The locking plate 28 is positioned and connected to the control rod 25 through the thread. The inner surface of the locking plate 28 fits against the outer surface of the inner boss 212. The locking block 29 is embedded in the locking groove 30. After the base plate 02 structure is assembled, the support plate 01 structure is assembled. First, the fan box 08 is placed at the rear of the support plate 01 and fixedly connected to the fixing sleeve 07. Then, the cover plate 05 is placed at the front of the support plate 01 and fixedly connected to it. Then, the support plate 01 is placed on the upper part of the base plate 02 and connected to the mounting plate 10 through the movable shaft 09. Finally, the upper end of the support rod 17 is connected to the upper connecting ear 15 through the upper shaft 13, and the lower end of the support rod 17 is connected to the lower connecting ear 16 through the lower shaft 14 to complete the installation.
[0023] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.
Claims
1. A novel laptop cooling stand, characterized in that: The system includes a support plate (01), a base plate (02), a cover plate (05), a slider (12), a lever (18), a rotating plate (23), and a locking plate (28). The base plate (02) has strips (03) on both sides, and a mounting plate (10) on the upper part of the strips (03). The mounting plate (10) is connected to the support plate (01) via a movable shaft (09). The movable shaft (09) is connected to the mounting plate (10) and the support plate (01) in sequence. The support plate (01) rotates on the movable shaft (09). The support plate (01) has support plates (04) on both sides, and a cover plate (05) is connected to the front side of the support plate (01). 05) It has multiple heat dissipation holes (06), the support plate (01) has a fixing sleeve (07) on the back side, the fixing sleeve (07) is connected to the fan box (08), the support plate (01) has upper connecting ears (15) on both sides, the upper connecting ears (15) are connected to the upper end of the support rod (17) through the upper shaft (13), the upper shaft (13) is connected to the upper connecting ears (15) and the support rod (17) in sequence, the lower end of the support rod (17) is connected to the lower connecting ears (16) through the lower shaft (14), the lower shaft (14) is connected to the lower connecting ears (16) and the support rod (17) in sequence, and the lower connecting ears (16) has a slider (12) at the bottom.
2. The novel laptop cooling stand according to claim 1, characterized in that: The strip (03) has a horizontal sliding hole (11), which is adapted to the slider (12). The slider (12) passes through the horizontal sliding hole (11) and is attached to the outside of the strip (03). The strip (03) has bosses (21) on both sides, and the bosses (21) have side sliding holes (20). The slider (12) has a lever hole (19), and the lever hole (19) and the side sliding hole (20) are adapted to the lever (18). Passing through the side sliding hole (20) and the lever hole (19) in sequence, the boss (21) is divided into an outer boss (211) and an inner boss (212). The outer boss (211) has limiting sliding holes (33) on both sides, and the lever (18) has limiting rod grooves (32) on both sides. The limiting rod grooves (32) and the limiting sliding holes (33) are adapted to the limiting rod (31). The limiting rod (31) passes through the limiting sliding holes (33) and is connected to the limiting rod grooves (32).
3. A novel laptop cooling stand according to claim 2, characterized in that... The lever (18) is connected to the outside of the bearing (24), and the bearing (24) is connected to the inside of the rotating plate (23). The outer end of the rotating plate (23) has a knob (22), which fits against the lever (18). The inner end of the rotating plate (23) has a control support rod (25), which passes through the lever (18). The lever (18) has a slide (27), which is adapted to the control support sleeve (26). The control support sleeve (26) is connected to the slide (27), and the control support sleeve (26) slides in the slide (27).
4. A novel laptop cooling stand according to claim 3, characterized in that: The control sleeve (26) is connected to the control rod (25) by a thread. The outer end of the control sleeve (26) has a locking plate (28). The locking plate (28) is connected to the inner boss (212). The inner boss (212) has multiple locking grooves (30) on both sides. The locking plate (28) has locking blocks (29) on both sides. The locking blocks (29) are adapted to the locking grooves (30) and are connected to the locking grooves (30).