Foot pad mechanism and notebook computer
By designing a rotatable foot pad assembly and a second foot pad in the foot pad mechanism of the laptop, the state switching is achieved, which solves the problem of insufficient heat dissipation of the laptop, increases the heat exchange space, and maintains support stability.
Patent Information
- Application Number
- CN202520208536.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-10
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-02-10
AI Technical Summary
The fixed and unadjustable support structure of existing laptops results in insufficient heat dissipation and inconvenience in use.
Design a foot pad mechanism, including a foot pad assembly and a second foot pad, and achieve state switching between the two through rotational connection to form an angled or flush state, thereby adjusting the distance between the bottom shell and the placement plane to improve heat dissipation efficiency.
No additional support structure is required. By adjusting the position of the feet, the heat exchange space is increased, heat dissipation efficiency is improved, and support stability is maintained, making it easy to use.
Smart Images

Figure CN223743019U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of support device technology, and in particular to a foot pad mechanism and a laptop computer. Background Technology
[0002] A laptop computer, also known as a portable computer, handheld computer, or lap computer, is characterized by its small size. More convenient to carry than a desktop computer, it is a small, portable personal computer. In actual use, the device needs to be tilted for better heat dissipation and ease of use.
[0003] In the process of developing this application, the inventors discovered that currently, most laptop computers use a support structure to adjust the orientation of the laptop, which requires a redesign of the bottom shell and is inconvenient to use. Utility Model Content
[0004] This application provides a foot pad mechanism and a laptop computer, which can improve the current situation where most laptop computers require an additional support structure to adjust the placement of the laptop, which necessitates a redesign of the bottom shell and is inconvenient to use.
[0005] To solve the above-mentioned technical problems, this application adopts the following technical solution: A foot pad mechanism is provided, applied to a bottom shell, wherein the bottom shell is provided with a foot pad groove. The foot pad mechanism includes a foot pad assembly and a second foot pad. The foot pad assembly includes a first foot pad, a mounting member, and a support member. The mounting member is installed on at least a portion of the foot pad groove. One end of the mounting member is provided with a first rotating part, and one end of the support member is provided with a second rotating part. The first rotating part and the second rotating part are rotatably connected, and the support member can rotate relative to the mounting member. The first foot pad is installed on the support member. The second foot pad is installed on another portion of the foot pad groove, and the second foot pad is disposed close to the mounting member. The foot pad mechanism can switch between a first preset state and a second preset state: In the first preset state, the surface of the first foot pad away from the foot pad groove and the surface of the second foot pad away from the foot pad groove are flush. In the second preset state, there is an included angle between the surface of the first foot pad away from the foot pad groove and the surface of the second foot pad away from the foot pad groove.
[0006] In one or more embodiments, the second foot pad has a first surface and a second surface. The first surface is parallel to the bottom of the foot pad groove. The first surface is disposed on a portion of the second foot pad near the mounting member. A first angle exists between the second surface and the first surface. The second surface is disposed on the side of the first surface away from the mounting member. The first foot pad has a third surface and a fourth surface. A second angle exists between the third surface and the fourth surface. The third surface is located near the second rotating portion relative to the fourth surface. The sum of the first angle and the second angle is 360°. In a first preset state, the third surface is inclined relative to the bottom of the foot pad groove, and the fourth surface is parallel to the bottom of the foot pad groove. In a second preset state, the third surface is in contact with the first surface, the fourth surface is in contact with the second surface, and / or, the first foot pad supports the second foot pad.
[0007] In one or more embodiments, the first foot pad further has a fifth surface disposed at one end of the first foot pad away from the second rotating part, and in the second preset state, the fifth surface is parallel to the first surface.
[0008] In one or more embodiments, the first foot pad further has a sixth surface disposed adjacent to the fifth surface. In the second preset state, the fifth surface contacts a supporting plane outside the foot pad mechanism, and a clearance gap is provided between the sixth surface and the supporting plane outside the foot pad mechanism.
[0009] In one or more embodiments, the mounting member further includes a mounting groove and a first mounting hole, the mounting groove being recessed relative to the mounting member, and the first mounting hole being located at the bottom of the mounting groove. The foot pad mechanism also includes a locking member having a locking portion and a threaded portion, the threaded portion extending from the locking portion and inserted into the first mounting hole, the locking portion being received in the mounting groove, and a surface of the locking portion opposite to the threaded portion being flush with the surface of the mounting member.
[0010] In one or more embodiments, the support member is further provided with a second mounting hole, and the first foot pad is further provided with a hot-melt column, the hot-melt column being inserted into the second mounting hole, and the first foot pad being fixedly installed with the support member.
[0011] In one or more embodiments, the length of the first foot pad is greater than the length of the support member in the direction in which the support member extends. The first foot pad is also provided with a first limiting portion, which is disposed away from the second rotating portion, and the first limiting portion is engaged and fixed to the support member.
[0012] In one or more embodiments, the foot pad mechanism further includes a damping element disposed between the first rotating portion and the second rotating portion.
[0013] To solve the above-mentioned technical problems, another technical solution adopted in this application is: to provide a laptop computer, including the above-mentioned foot pad mechanism and a shell, the shell including a bottom shell, the bottom shell being provided with foot pad grooves, and the foot pad mechanism being installed in the foot pad grooves.
[0014] In one or more embodiments, the outer shell includes a bottom shell, two foot pad grooves are collinearly spaced along a first direction, a foot pad mechanism is disposed in one of the foot pad grooves, and the two foot pad mechanisms are symmetrical in the second preset state.
[0015] The beneficial effects of this application embodiment are as follows: Unlike the prior art, this application embodiment provides a foot pad mechanism applied to a bottom shell, the bottom shell having a foot pad groove. The foot pad mechanism includes a foot pad assembly and a second foot pad. The foot pad assembly includes a first foot pad, a mounting member, and a support member. The mounting member is installed on at least a portion of the foot pad groove. One end of the mounting member has a first rotating portion, and one end of the support member has a second rotating portion. The first and second rotating portions are rotatably connected, and the support member can rotate relative to the mounting member. The first foot pad is installed on the support member. The second foot pad is installed on another portion of the foot pad groove, and the second foot pad is positioned close to the mounting member. The foot pad mechanism can switch between a first preset state and a second preset state: in the first preset state, the surface of the first foot pad away from the foot pad groove and the surface of the second foot pad away from the foot pad groove are flush; in the second preset state, there is an included angle between the surface of the first foot pad away from the foot pad groove and the surface of the second foot pad away from the foot pad groove. By replacing the foot pads with the foot pad mechanism described above, and by having an angle between the first foot pad and the second foot pad in the second preset state, while the surfaces of the first foot pad and the second foot pad are flush in the first preset state, the foot pad mechanism has a height difference in the two preset states, thereby adjusting the distance between the bottom shell and the placement plane, thereby improving heat dissipation efficiency, and without the need for a separate support structure, making it easy to use. Attached Figure Description
[0016] To more clearly illustrate the technical solutions of the embodiments of this application, the drawings used in the embodiments of this application will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on the drawings without creative effort.
[0017] Figure 1This is a perspective view of a laptop computer provided in one embodiment of this application;
[0018] Figure 2 This is a perspective view of a foot pad assembly provided in one embodiment of this application;
[0019] Figure 3 This is a schematic diagram of a laptop computer provided in one embodiment of this application;
[0020] Figure 4 This application provides Figure 3 A schematic diagram of the cross-section of side A;
[0021] Figure 5 This is another schematic diagram of a laptop computer provided in one embodiment of this application;
[0022] Figure 6 This application provides Figure 5 A schematic diagram of the cross-section of side B.
[0023] The attached figures are labeled as follows:
[0024] laptop 1 First mounting hole 123 Foot pad mechanism 1000 Support components 130 Foot pad assembly 100 Second rotating part 131 First foot pad 110 Second mounting hole 132 Third Surface 111 Second foot pad 200 Fourth surface 112 First surface 210 Fifth Surface 113 Second surface 220 Sixth Surface 114 Locking parts 300 First limiting section 115 Locking section 310 Hot melt column 116 Screw joint 320 Installation components 120 shell 2000 First rotating part 121 bottom shell 2100 Mounting slot 122 Foot pad groove 2110 Detailed Implementation
[0025] To facilitate understanding of this application, a more detailed description is provided below with reference to the accompanying drawings and specific embodiments. It should be noted that when an element is described as being "fixed to" another element, it can be directly on the other element, or one or more intermediate elements may exist between them. When an element is described as being "connected" to another element, it can be directly connected to the other element, or one or more intermediate elements may exist between them. The terms "vertical," "horizontal," "left," "right," and similar expressions used in this specification are for illustrative purposes only.
[0026] Unless otherwise defined, all technical and scientific terms used in this specification have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used in this specification is for the purpose of describing particular embodiments only and is not intended to limit the scope of this application. The term "and / or" as used in this specification includes any and all combinations of one or more of the associated listed items.
[0027] As a mobile smart terminal, laptops need to operate stably in various environments, and their heat dissipation capacity determines the efficiency of electronic components such as the CPU and motherboard. Some laptops use external cooling stands to improve heat dissipation, but due to portability, they still rely on their own structural support to provide space for heat exchange through the ventilation openings on the bottom. Most laptops have feet on the bottom, but these feet are fixed to the bottom, their height is not adjustable, and they provide limited space for heat exchange, failing to improve the device's heat dissipation capacity.
[0028] Based on this, please refer to Figure 1 This application provides a foot pad mechanism 1000 for use in the bottom shell 2100 of a laptop computer 1, which improves upon the current fixed foot pads, thereby increasing the heat exchange space of the device and improving the device's heat dissipation capacity.
[0029] For the aforementioned laptop 1, please refer to Figure 1 and Figure 3 The laptop computer 1 includes a casing 2000 and a foot pad mechanism 1000. The casing 2000 includes a bottom shell 2100, and the bottom shell 2100 is provided with a foot pad groove 2110. The foot pad mechanism 1000 is installed in the foot pad groove 2110.
[0030] For details on how the foot pad mechanism 1000 increases the heat exchange space of the equipment and thus improves the equipment's heat dissipation capacity, please refer to the following text.
[0031] For the aforementioned foot pad mechanism 1000, please refer to Figures 2 to 5In conjunction with other accompanying drawings, the foot pad mechanism 1000 includes a foot pad assembly 100 and a second foot pad 200. The foot pad assembly 100 includes a first foot pad 110, a mounting member 120, and a support member 130. The mounting member 120 is mounted on at least a portion of the foot pad groove 2110. One end of the mounting member 120 is provided with a first rotating portion 121, and one end of the support member 130 is provided with a second rotating portion 131. The first rotating portion 121 and the second rotating portion 131 are rotatably connected, and the support member 130 can rotate relative to the mounting member 120. The first foot pad 110 is mounted on the support member 130. The second foot pad 200 is mounted on the other portion of the foot pad groove 2110, and the second foot pad 200 is positioned close to the mounting member 120. The foot pad mechanism 1000 can switch between a first preset state and a second preset state: in the first preset state, the surface of the first foot pad 110 away from the foot pad groove 2110 and the surface of the second foot pad 200 away from the foot pad groove 2110 are flush. In the second preset state, there is an angle between the surface of the first foot pad 110 away from the foot pad groove 2110 and the surface of the second foot pad 200 away from the foot pad groove 2110. With the above structure, replacing the foot pads with the aforementioned foot pad mechanism 1000, by having an angle between the first foot pad 110 and the second foot pad 200 in the second preset state, and by having the surfaces of the first foot pad 110 and the second foot pad 200 flush in the first preset state, a height difference exists between the foot pad mechanism 1000 in the two preset states. This adjusts the distance between the bottom shell 2100 and the placement plane, thereby improving heat dissipation efficiency, and eliminating the need for a separate support structure, making it convenient to use.
[0032] It should be noted that the foot pad assembly 100 and the second foot pad 200 are installed in the same foot pad groove 2110, so that in the first preset state, the flush first foot pad 110 and the second foot pad 200 form a flat plane, thereby improving the support stability of the foot pad mechanism 1000 and reducing wear on the first foot pad 110 or the second foot pad 200. It should also be noted that the flushing of the first foot pad 110 and the second foot pad 200 can have a small error. In the second preset state, through the relative rotation between the first rotating part 121 and the second rotating part 131, an angle is formed between the first foot pad 110 and the second foot pad 200, so that in the vertical direction, the foot pad mechanism 1000 in the second preset state is higher than that in the first preset state, thereby providing a larger heat exchange space and improving heat dissipation efficiency. Optionally, the angle between the first foot pad 110 and the second foot pad 200 can be any angle greater than 0°, as long as there is a height difference between the first and second preset states. Preferably, the included angle is between 30° and 60°, and more preferably, the included angle is 35°.
[0033] In some embodiments, please refer to Figures 3 to 6In conjunction with other accompanying drawings, the second foot pad 200 has a first surface 210 and a second surface 220. The first surface 210 is parallel to the bottom of the foot pad groove 2110 and is disposed on the portion of the second foot pad 200 near the mounting member 120. A first angle exists between the second surface 220 and the first surface 210, and the second surface 220 is disposed on the side of the first surface 210 away from the mounting member 120. The first foot pad 110 has a third surface 111 and a fourth surface 112. A second angle exists between the third surface 111 and the fourth surface 112. The third surface 111 is closer to the second rotating part 131 relative to the fourth surface 112. The sum of the first angle and the second angle is 360°. In a first preset state, the third surface 111 is inclined relative to the bottom of the foot pad groove 2110, and the fourth surface 112 is parallel to the bottom of the foot pad groove 2110. That is, at this time, both the first foot pad 110 and the second foot pad 200 are housed within the foot pad groove 2110, forming a flat foot pad mechanism 1000, thereby facilitating storage and portability and use in environments where improved heat dissipation is not required, thus reducing the overall thickness of the laptop 1. In the second preset state, the third surface 111 is in contact with the first surface 210, the fourth surface 112 is in contact with the second surface 220, and / or, the first foot pad 110 supports the second foot pad 200. That is, in the second preset state, the support stability of the foot pad mechanism 1000 is improved by the surface contact between the third surface 111 and the first surface 210, and the contact between the fourth surface 112 and the second surface 220 also improves the support stability of the foot pad mechanism 1000. Satisfying at least one of the above conditions is sufficient to improve the support stability of the foot pad mechanism 1000. In other words, in some other embodiments, the support stability of the foot pad mechanism 1000 can be improved by having the first surface 210 and the third surface 111 in surface contact, and the second surface 220 and the fourth surface 112 in point contact or no contact; or, the support stability of the foot pad mechanism 1000 can be improved by having the second surface 220 and the fourth surface 112 in surface contact, and the first surface 210 and the third surface 111 in point contact or no contact; or, the support stability of the foot pad mechanism 1000 can be further improved by having the first surface 210 and the third surface 111 in surface contact, and the second surface 220 and the fourth surface 112 in surface contact.
[0034] For the first foot pad 110 mentioned above, please refer to Figures 3 to 6In conjunction with other accompanying drawings, the first foot pad 110 also has a fifth surface 113, which is disposed at the end of the first foot pad 110 away from the second rotating part 131. In the second preset state, the fifth surface 113 is parallel to the first surface 210. By providing the fifth surface 113 to contact a plane outside the foot pad mechanism 1000, the point contact or line contact between the first foot pad 110 and the plane is changed to a surface contact. This increases the contact area, reduces the concentration of local pressure, and prevents excessive pressure from causing the first foot pad 110 to deform and fail.
[0035] Alternatively, in these embodiments, the fifth surface 113 may also be configured to have a rough surface structure, thereby increasing the friction between the fifth surface 113 and the plane outside the foot pad mechanism 1000, thereby improving the support stability of the foot pad mechanism 1000.
[0036] Further, please refer to Figures 3 to 6 In conjunction with other accompanying drawings, the first foot pad 110 also has a sixth surface 114, which is disposed adjacent to the fifth surface 113. In a second preset state, the fifth surface 113 is in contact with a supporting plane outside the foot pad mechanism 1000, and a clearance gap is left between the sixth surface 114 and the supporting plane outside the foot pad mechanism 1000. By setting this clearance gap, on the one hand, the sharp structure of the edge of the first foot pad 110 can be reduced to reduce damage to other objects or the human body; on the other hand, the clearance gap formed between the fifth surface 113 and the sixth surface 114 allows the human hand or other auxiliary tools to rotate the first foot pad 110 in the first preset state.
[0037] For the aforementioned mounting component 120, please refer to Figures 3 to 6 In conjunction with other accompanying drawings, the mounting member 120 is also provided with a mounting groove 122 and a first mounting hole 123. The mounting groove 122 is recessed relative to the mounting member 120, and the first mounting hole 123 is located at the bottom of the mounting groove 122. The foot pad mechanism 1000 also includes a locking member 300, which has a locking portion 310 and a screw portion 320. The screw portion 320 extends from the locking portion 310 and is inserted into the first mounting hole 123. The locking portion 310 is received in the mounting groove 122, and the surface of the locking portion 310 facing away from the screw portion 320 is flush with the surface of the mounting member 120. That is, by providing the locking member 300, the mounting member 120 is screwed to the bottom shell 2100, thereby fixing the foot pad assembly 100.
[0038] In some embodiments, please refer to Figures 3 to 6In conjunction with other accompanying drawings, the support member 130 is also provided with a second mounting hole 132, and the first foot pad 110 is also provided with a hot-melt column 116. The hot-melt column 116 is inserted into the second mounting hole 132, and the first foot pad 110 is fixedly installed to the support member 130. It can be understood that the hot-melt column 116 is a structure that protrudes from the first foot pad 110 itself. After heating, it will melt and adhere to the second mounting hole 132, making the protruding part of the hot-melt column 116 flush with the surface of the support member 130. This reduces the need for screws and other structures, making installation easier and more stable.
[0039] In some embodiments, please refer to Figures 3 to 6 In conjunction with other accompanying drawings, in the direction in which the support member 130 extends, the length of the first foot pad 110 is greater than the length of the support member 130. The first foot pad 110 is also provided with a first limiting portion 115, which is disposed away from the second rotating portion 131 and is snapped and fixed to the support member 130. That is, by providing the first limiting portion 115, the first foot pad 110 is further snapped to the support member 130, preventing the first foot pad 110 from detaching from the support member 130. Optionally, a second limiting portion (not shown in the figure) can also be provided at the other end of the first foot pad 110. The first foot pad 110 is fixed to the support member 130 by the combined clamping of the first limiting portion 115 and the second limiting portion. It is understood that the first limiting portion 115 and the support member 130 can be an interference fit.
[0040] In some embodiments, the foot pad mechanism 1000 further includes a damping element (not shown in the figure), which is disposed between the first rotating part 121 and the second rotating part 131. By providing the damping element, the relative rotation between the first rotating part 121 and the second rotating part 131 is affected by resistance. In some embodiments, this is manifested as having a multi-level adjustment function, so that the included angle between the first foot pad 110 and the second foot pad 200 can be adjusted, thereby providing heat exchange space of different sizes; while in other embodiments, the relative rotation between the first rotating part 121 and the second rotating part 131 is subject to resistance, thereby protecting the first foot pad 110 and the second foot pad 200, making the rotation between them smoother and improving the user experience.
[0041] Based on this, the laptop 1 equipped with the aforementioned foot pad mechanism 1000 can also improve the current situation where most laptop 1 devices use an additional support structure to adjust the placement of the laptop 1, which requires a redesign of the bottom shell 2100 and is inconvenient to use.
[0042] Regarding the aforementioned laptop 1, it should be added that the two foot pad grooves 2110 are arranged collinearly and spaced apart along the first direction, and a foot pad mechanism 1000 is disposed within the foot pad groove 2110, and the two foot pad mechanisms 1000 are symmetrical in the second preset state. This improves the support stability of the foot pad mechanism 1000.
[0043] This application aims to provide a foot pad mechanism 1000, applied to a bottom shell 2100, the bottom shell 2100 being provided with a foot pad groove 2110. The foot pad mechanism 1000 includes a foot pad assembly 100 and a second foot pad 200. The foot pad assembly 100 includes a first foot pad 110, a mounting member 120, and a support member 130. The mounting member 120 is mounted on at least a portion of the foot pad groove 2110, and one end of the mounting member 120 is provided with a first rotating portion 121. One end of the support member 130 is provided with a second rotating portion 131. The first rotating portion 121 and the second rotating portion 131 are rotatably connected, and the support member 130 is rotatable relative to the mounting member 120. The first foot pad 110 is mounted on the support member 130. The second foot pad 200 is mounted on the other portion of the foot pad groove 2110, and the second foot pad 200 is disposed close to the mounting member 120. The foot pad mechanism 1000 can switch between a first preset state and a second preset state: in the first preset state, the surface of the first foot pad 110 away from the foot pad groove 2110 and the surface of the second foot pad 200 away from the foot pad groove 2110 are flush; in the second preset state, there is an angle between the surface of the first foot pad 110 away from the foot pad groove 2110 and the surface of the second foot pad 200 away from the foot pad groove 2110. With this structure, replacing the foot pads with the aforementioned foot pad mechanism 1000, and with the angle between the first foot pad 110 and the second foot pad 200 in the second preset state, and the flush surface between the first foot pad 110 and the second foot pad 200 in the first preset state, creates a height difference between the foot pad mechanism 1000 in both preset states. This adjusts the distance between the bottom shell 2100 and the placement plane, thereby improving heat dissipation efficiency. Furthermore, no additional support structure is required, making it convenient to use.
[0044] Based on the same inventive concept, this application also provides a laptop computer 1, which includes the aforementioned foot pad mechanism 1000 and outer shell 2000. The structure and function of the foot pad mechanism 1000 and outer shell 2000 can be referred to the above embodiments, and will not be repeated here.
[0045] It should be noted that while preferred embodiments of this application are provided in the specification and accompanying drawings, this application can be implemented in many different forms and is not limited to the embodiments described herein. These embodiments are not intended to impose additional limitations on the content of this application; their purpose is to provide a more thorough and comprehensive understanding of the disclosure of this application. Furthermore, the above-described technical features can be combined with each other to form various embodiments not listed above, all of which are considered to be within the scope of this application's specification. Moreover, those skilled in the art can make improvements or modifications based on the above description, and all such improvements and modifications should fall within the protection scope of the appended claims.
Claims
1. A foot mat mechanism applied to a bottom case provided with a foot mat recess, characterized by, The application relates to a foot pad assembly. The foot pad assembly comprises a first foot pad, a mounting member and a supporting member, one end of the mounting member is provided with a first rotating part, one end of the supporting member is provided with a second rotating part, the first rotating part and the second rotating part are rotationally connected, the supporting member can rotate relative to the mounting member, and the first foot pad is mounted on the supporting member. A second foot pad is mounted on another part of the foot pad groove and is arranged close to the mounting member. The foot pad mechanism can be switched between a first preset state and a second preset state. In the first preset state, the first foot pad is away from the surface of the foot pad groove and is flush with the second foot pad away from the surface of the foot pad groove. In the second preset state, there is an included angle between the first foot pad away from the surface of the foot pad groove and the second foot pad away from the surface of the foot pad groove.
2. The footbed mechanism of claim 1, wherein, The second foot pad has a first surface and a second surface, the first surface is parallel to the groove bottom of the foot pad groove, the first surface is arranged on the part of the second foot pad close to the mounting member, and the second surface is arranged on the side of the first surface away from the mounting member. The first foot pad has a third surface and a fourth surface, the third surface is close to the second rotating part relative to the fourth surface, and the sum of the first included angle and the second included angle is 360 degrees. In the first preset state, the third surface is arranged to be inclined relative to the groove bottom of the foot pad groove, and the fourth surface is parallel to the groove bottom of the foot pad groove. In the second preset state, the third surface is attached to the first surface, the fourth surface is attached to the second surface, and / or the first foot pad supports the second foot pad.
3. The footbed mechanism of claim 2, wherein, The first foot pad further has a fifth surface, the fifth surface is arranged on one end of the first foot pad away from the second rotating part, and in the second preset state, the fifth surface is parallel to the first surface.
4. The footbed mechanism of claim 3, wherein, The first foot pad further has a sixth surface, the sixth surface is arranged adjacent to the fifth surface, in the second preset state, the fifth surface is in contact with the plane outside the foot pad mechanism for supporting, and a gap is left between the sixth surface and the plane outside the foot pad mechanism for supporting.
5. The footbed mechanism of claim 1, wherein, The mounting member is further provided with a mounting groove and a first mounting hole, the mounting groove is arranged to be concave relative to the mounting member, and the first mounting hole is located at the groove bottom of the mounting groove. The foot pad mechanism further comprises a locking member, the locking member has a locking part and a threaded part, the threaded part extends from the locking part, the threaded part is inserted into the first mounting hole, the locking part is accommodated in the mounting groove, and the surface of the locking part away from the threaded part is flush with the surface of the mounting member.
6. The footbed mechanism of claim 2, wherein, The supporting member is further provided with a second mounting hole, the first foot pad is further provided with a hot melt column, the hot melt column is inserted into the second mounting hole, and the first foot pad and the supporting member are mounted and fixed.
7. The footbed mechanism of claim 1, wherein, The length of the first foot pad is greater than the length of the support in the direction in which the support extends; The first foot pad is further provided with a first limiting part, which is arranged away from the second rotating part and is clamped and fixed to the support.
8. The footbed mechanism of claim 1, wherein, The foot pad mechanism further comprises a damping part, which is arranged between the first rotating part and the second rotating part.
9. A notebook computer, characterized by The foot pad mechanism comprises a shell, which comprises a bottom shell provided with a foot pad groove, and the foot pad mechanism is mounted in the foot pad groove.
10. The notebook computer of claim 9, wherein, Two foot pad grooves are arranged in line along a first direction, one foot pad mechanism is arranged in one foot pad groove, and the two foot pad mechanisms are symmetrical in the second preset state.