Frame structure and notebook computer
By adopting the design of bezel components and bonding components in the laptop, the problem of bezel occluding the display screen is solved, achieving a higher screen-to-body ratio and convenient display disassembly.
Patent Information
- Application Number
- CN202510462355.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-14
- Publication Date
- 2025-08-01
AI Technical Summary
The bezels in existing laptops will block some displays when the display is fixed, resulting in a decrease in screen-to-body ratio.
The design of frame assembly and bonding assembly is adopted. By setting mounting parts and limiting parts in the housing, the display module is bonded to the mounting parts by using adhesives to prevent the edges of the frame assembly from being snapped and fixed, so that the display area of the display module is completely exposed, and the adhesive parts are removed for easy disassembly through heating.
The screen-to-body ratio of the display module is improved, and the disassembly process of the display module is simplified, avoiding the difficult disassembly caused by the use of thermosetting glue.
Smart Images

Figure CN120406659A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of computer technology, and particularly to a frame structure and a notebook computer. Background Art
[0002] In recent years, due to the maturity of wireless communication technology, mobile information devices have gradually become the mainstream. In particular, mobile phones, digital cameras, digital personal assistants, notebook computers, tablet computers, etc. are more favored because of their small size, light weight and thin thickness.
[0003] At present, traditional notebook computers mainly consist of a display module and an input module. Among them, the display module is used to display pictures for users to view, which is mainly realized through a display screen. With the improvement of domestic consumers' capabilities, the rapid change of consumption concepts, and the entry of large brand mobile phone manufacturers into the notebook computer market, the concept of "high screen ratio, full screen" that is popular in the fields of mobile phones, TVs, etc. has been brought into the sight of the traditional notebook computer industry and has become a new hot spot pursued by the market. The so-called "high screen ratio" refers to an ultra-narrow bezel design, and the visual impact it brings is very shocking. From the innovation of liquid crystal panels to the investment of R & D efforts by major manufacturers, how to strive to develop an almost perfect "full screen" has become a long-term demand and an urgent problem to be solved in the current notebook computer market.
[0004] The display screen in the existing notebook computer is mainly installed on the housing. It is accommodated and fixed by a frame installed on the housing. When the display screen is fixed by the frame, the frame needs to be engaged with the edge part of the display screen to fix the display screen. In this way, the frame will block the edge part of the display screen, resulting in a reduction in the screen ratio of the display screen. Summary of the Invention
[0005] In view of this, the present invention provides a frame structure to solve the problem that the frame in the existing notebook computer blocks part of the display screen when fixing the display screen, resulting in a reduction in the screen ratio of the display screen.
[0006] In a first aspect, the present invention provides a frame structure, including:
[0007] A housing, which is formed with a receiving cavity;
[0008] A frame assembly, including a mounting member and a limiting member connected to each other. The mounting member is disposed in the receiving cavity, and the limiting member is disposed around the circumferential side of the mounting member to enclose a limiting cavity. A display screen module is adapted to be installed in the limiting cavity, and the palm rest area of the display screen module abuts against the mounting member;
[0009] The bonding assembly includes a first bonding member disposed between the mounting member and the palm rest area of the display module to bond the mounting member and the display module.
[0010] Advantageous effects: By providing the frame assembly and the bonding assembly within the housing, the palm rest area of the display module can be bonded to the mounting member through the first bonding member and mounted in the accommodation cavity of the housing through the mounting member. This enables the display module to be fixed without being clamped and fixed through the edge of the frame assembly, so that the display area of the display module will not be blocked by the frame assembly. As a result, the display area of the display module can be completely exposed, which is beneficial to increasing the screen-to-body ratio of the display module. At the same time, by using the first bonding member to bond the display module and the mounting member, when it is necessary to disassemble the display module, the first bonding member can be made ineffective by heating, and thus the display module can be directly disassembled from the mounting member, avoiding the situation where it is difficult to disassemble the display module from the mounting member when using adhesives such as thermosetting glue to bond the display module and the mounting member.
[0011] In an alternative embodiment, the mounting member has an opposing mounting surface and abutting surface. The mounting surface is adapted to be connected to the housing, the limiting member is disposed on the abutting surface, and the side of the first bonding member close to the mounting member is bonded to the abutting surface.
[0012] Advantageous effects: By providing the mounting member with an opposing mounting surface and abutting surface, the mounting surface can be connected to the housing to mount the mounting member in the accommodation cavity of the housing. The limiting member is disposed on the abutting surface, and the palm rest area of the display module also abuts against the abutting surface. At the same time, the first bonding member is disposed between the abutting surface and the palm rest area of the display module, and the side of the first bonding member close to the mounting member is bonded to the abutting surface to bond the display module to the abutting surface.
[0013] In an alternative embodiment, a connecting surface is provided on the periphery of the housing; the bonding assembly further includes a second bonding member disposed between the mounting surface of the mounting member and the connecting surface of the housing to bond the mounting member and the housing.
[0014] Advantageous effects: By providing a connection surface on the housing and a bonding assembly which also includes a second bonding member, the second bonding member is a second double-sided adhesive in this embodiment. Among them, the connection surface is specifically formed on the circumferential side of the housing and within the accommodation cavity. The second bonding member is provided between the mounting surface of the mounting member and the connection surface of the housing, thereby bonding the mounting member and the housing together, and further mounting the mounting member within the accommodation cavity of the housing. Of course, when it is necessary to disassemble the mounting member from the housing, the second bonding member can also be made ineffective by heating to disassemble the mounting member from the housing.
[0015] In an alternative embodiment, a plurality of positioning members are provided on opposite sides of the connection surface, and a plurality of first positioning portions are correspondingly provided on the mounting member. When connecting the mounting member and the housing, the positioning members are adapted to be inserted into the first positioning portions.
[0016] Advantageous effects: By providing a plurality of positioning members on opposite sides of the connection surface and a plurality of first positioning portions correspondingly provided on the mounting member, the positioning members are positioning posts in this embodiment, and the first positioning portions are first positioning holes in this embodiment. Thus, when connecting the mounting member and the housing, each positioning member can be inserted into a first positioning portion, thereby realizing the installation positioning of the mounting member.
[0017] In an alternative embodiment, a plurality of blocking members are provided on the other opposite sides of the connection surface, and a plurality of second positioning portions are correspondingly provided on the mounting member. When connecting the mounting member and the housing, the blocking members are adapted to be snapped into the second positioning portions.
[0018] Advantageous effects: By providing a plurality of blocking members on the other opposite sides of the connection surface and a plurality of second positioning portions correspondingly provided on the mounting member, the blocking members are blocking blocks in this embodiment, and the second positioning portions are second positioning grooves in this embodiment. Thus, when connecting the mounting member and the housing, each blocking member can be snapped into a second positioning portion, thereby realizing the further installation positioning of the mounting member.
[0019] In an alternative embodiment, a plurality of third positioning portions are provided on the first bonding member corresponding to all the positioning members. When the first bonding member is bonded to the abutting surface of the mounting member, the positioning members are adapted to be inserted into the third positioning portions.
[0020] Advantageous effects: By providing a plurality of third positioning portions on the first bonding member, the third positioning portions are third positioning holes in this embodiment, and all the third positioning portions are provided corresponding to all the positioning members on the connection surface. Thus, when the first bonding member is bonded to the abutting surface of the mounting member, each positioning member can be inserted into a third positioning portion, thereby realizing the installation positioning of the first bonding member.
[0021] In an optional embodiment, a plurality of fourth positioning portions are provided on the first adhesive member corresponding to all the blocking members, and when the first adhesive member is bonded to the abutting surface of the mounting member, the blocking member is adapted to be snapped into the fourth positioning portions.
[0022] Beneficial effect: By opening a plurality of fourth positioning portions on the first adhesive component, the fourth positioning portion is a fourth positioning groove in this embodiment, and all fourth positioning portions are arranged corresponding to all blocking members on the connecting surface, so that when the first adhesive component and the abutting surface of the mounting component are bonded, each blocking member can be snapped into a fourth positioning portion, thereby realizing further installation positioning of the first adhesive component.
[0023] In an optional embodiment, a plurality of fifth positioning portions are provided on the second adhesive member corresponding to all the positioning members, and when the second adhesive member is bonded to the connecting surface of the shell, the positioning members are suitable for being inserted into the fifth positioning portions.
[0024] Beneficial effect: By opening a plurality of fifth positioning portions on the second adhesive component, the fifth positioning portion is a fifth positioning groove in this embodiment, and all fifth positioning portions are arranged corresponding to all positioning members on the connecting surface, so that when the second adhesive component and the shell are bonded to the connecting surface, each positioning member can be inserted into a fifth positioning portion, thereby realizing the installation positioning of the second adhesive component.
[0025] In an optional embodiment, the mounting member and the limiting member are connected through a double-shot molding process, and the mounting member is made of PC+ABS material, and the limiting member is made of soft rubber material.
[0026] Beneficial effect: The mounting parts and the limiting parts are connected by a dual-camera molding process, and the mounting parts are made of PC+ABS material, and the limiting parts are made of soft rubber material. This is because the mounting parts mainly play a role of connection, so the material requirements are not strict, and the limiting parts need to abut against the peripheral edges of the display module. Therefore, the limiting parts cannot be too rigid to avoid damage to the peripheral edges of the display module. At the same time, the shell serves as the upper shell of the notebook. When the shell and the lower shell of the notebook are closed, the limiting parts will abut against the lower shell of the notebook. In this way, the limiting parts need to use a soft material; specifically, the thickness of the mounting part is 1.1mm, the thickness of the limiting part is 0.8mm, and the width is 1.2mm.
[0027] In a second aspect, the present invention further provides a notebook comprising the above-mentioned frame structure.
[0028] Beneficial effects: By providing the notebook with the above-mentioned border structure, that is, by providing a border component and an adhesive component within the housing, the palm rest area of the display module can be adhered to the mounting member through the first adhesive, and the display module can be mounted in the accommodating cavity of the housing through the mounting member, such that the fixing of the display module does not require snap-fitting through the edge of the border component, thereby preventing the display area of the display module from being blocked by the border component, and further enabling the display area of the display module to be completely exposed, which is conducive to increasing the screen-to-body ratio of the display module. At the same time, by using the first adhesive to bond the display module and the mounting member, when it is necessary to disassemble the display module, the first adhesive can be invalidated by heating, and thus the display module can be directly disassembled from the mounting member, avoiding the situation where it is difficult to disassemble the display module from the mounting member when using adhesives such as thermosetting adhesives to bond the display module and the mounting member. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] In order to more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the following will briefly introduce the drawings required for use in the description of the specific embodiments or the prior art. Obviously, the drawings in the following description are some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0030] Figure 1 FIG. is an exploded view of the structure of a border structure according to an embodiment of the present invention;
[0031] Figure 2 FIG. is a schematic structural view of a border component of a border structure according to an embodiment of the present invention;
[0032] Figure 3 FIG. is a schematic structural view of a housing of a border structure according to an embodiment of the present invention.
[0033] Description of the reference numerals:
[0034] 1 - housing; 11 - connection surface; 12 - positioning member; 13 - blocking member; 2 - display module;
[0035] 3 - border component; 31 - mounting member; 311 - mounting surface; 312 - first positioning portion; 313 - second positioning portion; 32 - limiting member; 4 - adhesive component; 41 - first adhesive; 411 - third positioning portion; 412 - fourth positioning portion; 42 - second adhesive; 421 - fifth positioning portion. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0036] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Apparently, the described embodiments are some, but not all, of the embodiments of the present invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0037] The following will describe the embodiments of the present invention in conjunction with Figures 1 to 3 , the embodiments of the present invention will be described.
[0038] According to an embodiment of the present invention, on the one hand, a frame structure is provided, as Figures 1 to 3 shown, including a housing 1, a frame assembly 3, and an adhesive assembly 4. The housing 1 is formed with a receiving cavity; the frame assembly 3 includes a connecting mounting member 31 and a limiting member 32. The mounting member 31 is disposed in the receiving cavity, and the limiting member 32 is disposed around the circumferential side of the mounting member 31 to enclose a limiting cavity. A display screen module 2 is adapted to be installed in the limiting cavity. The palm rest area of the display screen module 2 abuts against the mounting member 31; the adhesive assembly 4 includes a first adhesive member 41, and the first adhesive member 41 is disposed between the mounting member 31 and the palm rest area of the display screen module 2 to bond the mounting member 31 and the display screen module 2.
[0039] For the frame structure of the above structure, through the frame assembly 3 and the adhesive assembly 4 disposed in the housing 1, wherein the housing 1 has a receiving cavity, and the frame assembly 3 and the adhesive assembly 4 are both disposed in the receiving cavity. The frame assembly 3 specifically includes a connecting mounting member 31 and a limiting member 32. The mounting member 31 and the limiting member 32 are respectively a mounting plate and a limiting block in this embodiment. Among them, the mounting member 31 is disposed in the receiving cavity, and the limiting member 32 is disposed around the circumferential side of the mounting member 31, so that the limiting member 32 can enclose a limiting cavity on the mounting member 31. The limiting cavity is communicatively disposed with the receiving cavity, and the display screen module 2 can be installed in the limiting cavity. When the display screen module 2 is installed in the limiting cavity, the palm rest area of the display screen module 2 abuts against the mounting member 31, and the circumferential edge of the display screen module 2 abuts against the limiting member 32. Furthermore, the limiting member 32 can limit the display screen module 2 to prevent the display screen module 2 from shifting. The adhesive assembly 4 specifically includes a first adhesive member 41, and the first adhesive member 41 is a first double-sided adhesive in this embodiment. The first adhesive member 41 is specifically disposed between the mounting member 31 and the palm rest area of the display screen module 2 to bond the mounting member 31 and the palm rest area of the display screen module 2 together, which is beneficial to improving the connection strength between the mounting member 31 and the display screen module 2.
[0040] Specifically, the palm rest area of the display screen module 2 is specifically the peripheral edge of the glass covering the display screen. The function of the glass is specifically to protect the display screen from external damage. Since the size of the glass is larger than that of the display screen, when the glass covers the display screen, the peripheral edge of the glass will extend beyond the peripheral edge of the display screen. The extended peripheral edge of the glass is the palm rest area of the display screen module 2. Since the palm rest area of the display screen module 2 is bonded to the mounting member 31 through the first bonding member 41 and is mounted in the accommodation cavity of the housing 1 through the mounting member 31, the fixing of the display screen module 2 does not need to be clamped and fixed through the edge of the frame assembly 3, so that the display area of the display screen module 2 will not be blocked by the frame assembly 3, and further the display area of the display screen module 2 can be completely exposed, which is beneficial to improving the screen-to-body ratio of the display screen module 2.
[0041] In addition, by using the first bonding member 41 to bond the display screen module 2 and the mounting member 31, when it is necessary to disassemble the display screen module 2, the first bonding member 41 can be made ineffective by heating, so that the display screen module 2 can be directly disassembled from the mounting member 31, avoiding the situation that it is difficult to disassemble the display screen module 2 from the mounting member 31 when using adhesives such as thermosetting adhesives to bond the display screen module 2 and the mounting member 31; specifically, the thickness of the first bonding member 41 is 0.2 mm.
[0042] In one embodiment, as Figure 1 and Figure 2 shown, the mounting member 31 has an opposing mounting surface 311 and abutting surface. The mounting surface 311 is adapted to be connected to the housing (1), and the limiting member 32 is disposed on the abutting surface, and one side of the first bonding member 41 close to the mounting member 31 is bonded to the abutting surface.
[0043] For the frame structure with the above structure, by providing that the mounting member 31 has an opposing mounting surface 311 and abutting surface, wherein the mounting surface 311 can be connected to the housing 1, so as to mount the mounting member 31 in the accommodation cavity of the housing 1. The limiting member 32 is disposed on the abutting surface, and the palm rest area of the display screen module 2 also abuts against the abutting surface. At the same time, the first bonding member 41 is disposed between the abutting surface and the palm rest area of the display screen module 2, and one side of the first bonding member 41 close to the mounting member 31 is bonded to the abutting surface to bond the display screen module 2 to the abutting surface.
[0044] In one embodiment, as Figure 1 and Figure 3 shown, a connecting surface 11 is provided on the periphery of the housing 1; the bonding assembly 4 further includes a second bonding member 42, and the second bonding member 42 is disposed between the mounting surface 311 of the mounting member 31 and the connecting surface 11 of the housing 1 to bond the mounting member 31 and the housing 1.
[0045] For the frame structure of the above-mentioned structure, by providing the connecting surface 11 provided on the housing 1 and providing the bonding assembly 4 which further includes a second bonding member 42. In this embodiment, the second bonding member 42 is a second double-sided adhesive. Wherein, the connecting surface 11 is specifically formed on the circumferential side of the housing 1 and is formed in the accommodating cavity. The second bonding member 42 is provided between the mounting surface 311 of the mounting member 31 and the connecting surface 11 of the housing 1, thereby bonding the mounting member 31 and the housing 1 together, and further mounting the mounting member 31 in the accommodating cavity of the housing 1. Of course, when it is necessary to disassemble the mounting member 31 from the housing 1, the second bonding member 42 can also be made ineffective by heating, so as to disassemble the mounting member 31 from the housing 1.
[0046] In one embodiment, as Figures 1 to 3 shown, a plurality of positioning members 12 are provided on opposite sides of the connecting surface 11, and a plurality of first positioning portions 312 are correspondingly provided on the mounting member 31. When connecting the mounting member 31 and the housing 1, the positioning members 12 are adapted to be inserted into the first positioning portions 312.
[0047] For the frame structure of the above-mentioned structure, by providing a plurality of positioning members 12 on opposite sides of the connecting surface 11 and a plurality of first positioning portions 312 correspondingly provided on the mounting member 31. In this embodiment, the positioning members 12 are positioning posts, and the first positioning portions 312 are first positioning holes in this embodiment. Thus, when connecting the mounting member 31 and the housing 1, each positioning member 12 can be inserted into a first positioning portion 312, and further the mounting positioning of the mounting member 31 is realized.
[0048] In one embodiment, as Figures 1 to 3 shown, a plurality of blocking members 13 are provided on the other opposite sides of the connecting surface 11, and a plurality of second positioning portions 313 are correspondingly provided on the mounting member 31. When connecting the mounting member 31 and the housing 1, the blocking members 13 are adapted to be snapped into the second positioning portions 313.
[0049] For the frame structure of the above-mentioned structure, by providing a plurality of blocking members 13 on the other opposite sides of the connecting surface 11 and a plurality of second positioning portions 313 correspondingly provided on the mounting member 31. In this embodiment, the blocking members 13 are blocking blocks, and the second positioning portions 313 are second positioning grooves in this embodiment. Thus, when connecting the mounting member 31 and the housing 1, each blocking member 13 can be snapped into a second positioning portion 313, and further the further mounting positioning of the mounting member 31 is realized.
[0050] In one embodiment, as Figure 1 shown, a plurality of third positioning portions 411 corresponding to all the positioning members 12 are provided on the first bonding member 41. When the first bonding member 41 is bonded to the abutting surface of the mounting member 31, the positioning members 12 are adapted to be inserted into the third positioning portions 411.
[0051] For the frame structure of the above structure, through a plurality of third positioning portions 411 formed in the first bonding member 41, the third positioning portions 411 are third positioning holes in this embodiment, and all the third positioning portions 411 are arranged corresponding to all the positioning members 12 on the connection surface 11. Thus, when the abutting surface of the first bonding member 41 and the mounting member 31 is bonded, each positioning member 12 can be inserted into a third positioning portion 411, thereby realizing the installation and positioning of the first bonding member 41.
[0052] In one embodiment, as Figure 1 shown, a plurality of fourth positioning portions 412 are formed in the first bonding member 41 corresponding to all the blocking members 13. When the abutting surface of the first bonding member 41 and the mounting member 31 is bonded, the blocking members 13 are adapted to be snapped into the fourth positioning portions 412.
[0053] For the frame structure of the above structure, through a plurality of fourth positioning portions 412 formed in the first bonding member 41, the fourth positioning portions 412 are fourth positioning grooves in this embodiment, and all the fourth positioning portions 412 are arranged corresponding to all the blocking members 13 on the connection surface 11. Thus, when the abutting surface of the first bonding member 41 and the mounting member 31 is bonded, each blocking member 13 can be snapped into a fourth positioning portion 412, thereby realizing the further installation and positioning of the first bonding member 41.
[0054] In one embodiment, as Figure 1 shown, a plurality of fifth positioning portions 421 are formed in the second bonding member 42 corresponding to all the positioning members 12. When the connection surface 11 of the second bonding member 42 and the housing 1 is bonded, the positioning members 12 are adapted to be inserted into the fifth positioning portions 421.
[0055] For the frame structure of the above structure, through a plurality of fifth positioning portions 421 formed in the second bonding member 42, the fifth positioning portions 421 are fifth positioning grooves in this embodiment, and all the fifth positioning portions 421 are arranged corresponding to all the positioning members 12 on the connection surface 11. Thus, when the connection surface 11 of the second bonding member 42 and the housing 1 is bonded, each positioning member 12 can be inserted into a fifth positioning portion 421, thereby realizing the installation and positioning of the second bonding member 42.
[0056] In one embodiment, as Figure 1 and Figure 2 shown, the mounting member 31 and the limiting member 32 are connected by a dual-shot molding process, and the mounting member 31 is made of PC + ABS material, and the limiting member 32 is made of soft glue material.
[0057] The frame structure of the above structure is connected by setting the mounting part 31 and the limiting part 32 to be a dual-camera molding process, and the mounting part 31 is made of PC+ABS material, and the limiting part 32 is made of soft rubber material. This is because the mounting part 31 mainly plays a transition role, so the material requirements are not strict, and the limiting part 32 needs to abut against the peripheral edge of the display module 2. Therefore, the limiting part 32 cannot be too rigid to avoid damage to the peripheral edge of the display module 2. At the same time, the shell 1 serves as the upper shell of the notebook. When the shell 1 and the lower shell of the notebook are closed, the limiting part 32 will abut against the lower shell of the notebook. In this way, the limiting part 32 needs to use a soft material; specifically, the thickness of the mounting part 31 is 1.1mm, the thickness of the limiting part 32 is 0.8mm, and the width is 1.2mm.
[0058] According to an embodiment of the present invention, on the other hand, a notebook is provided. Figures 1 to 3 As shown, the above-mentioned frame structure is included. The notebook of the above-mentioned structure is provided with the above-mentioned frame structure, that is, the frame component 3 and the adhesive component 4 are provided in the shell 1, so that the palm rest area of the display screen module 2 can be bonded to the mounting component 31 through the first adhesive component 41, and is installed in the accommodating cavity of the shell 1 through the mounting component 31, so that the display screen module 2 does not need to be fixed by the edge of the frame component 3, so that the display area of the display screen module 2 will not be blocked by the frame component 3, and the display area of the display screen module 2 can be completely exposed, which is beneficial to improving the screen-to-body ratio of the display screen module 2. At the same time, by using the first adhesive component 41 to bond the display screen module 2 and the mounting component 31, when the display screen module 2 needs to be disassembled, the first adhesive component 41 can be rendered ineffective by heating, so that the display screen module 2 can be directly removed from the mounting component 31, avoiding the use of glue such as thermosetting glue to bond the display screen module 2 and the mounting component 31, which makes it difficult to remove the display screen module 2 from the mounting component 31.
[0059] Although the embodiments of the present invention have been described with reference to the accompanying drawings, those skilled in the art may make various modifications and variations without departing from the spirit and scope of the present invention. Such modifications and variations are all within the scope defined by the appended claims.
Claims
1. A frame structure, characterized in that, Comprising: A housing (1), which is formed with a receiving cavity; A frame assembly (3), including a mounting member (31) and a limiting member (32) connected to each other. The mounting member (31) is disposed in the receiving cavity, and the limiting member (32) is disposed around the circumferential side of the mounting member (31) to enclose a limiting cavity. A display screen module (2) is adapted to be mounted in the limiting cavity, and the palm rest area of the display screen module (2) abuts against the mounting member (31); An adhesive assembly (4), including a first adhesive member (41). The first adhesive member (41) is disposed between the mounting member (31) and the palm rest area of the display screen module (2) to bond the mounting member (31) and the display screen module (2).
2. The border structure according to claim 1, characterized in that, The mounting member (31) has a mounting surface (311) and an abutting surface disposed opposite to each other. The mounting surface (311) is adapted to be connected to the housing (1). The limiting member (32) is disposed on the abutting surface, and one side of the first adhesive member (41) close to the mounting member (31) is bonded to the abutting surface.
3. The border structure according to claim 2, wherein A connecting surface (11) is disposed on the circumferential side of the housing (1); the adhesive assembly (4) further includes a second adhesive member (42). The second adhesive member (42) is disposed between the mounting surface (311) of the mounting member (31) and the connecting surface (11) of the housing (1) to bond the mounting member (31) and the housing (1).
4. The border structure according to claim 3, characterized in that, A plurality of positioning members (12) are disposed on two opposite sides of the connecting surface (11). A plurality of first positioning portions (312) are correspondingly formed on the mounting member (31). When connecting the mounting member (31) and the housing (1), the positioning members (12) are adapted to be inserted into the first positioning portions (312).
5. The border structure according to claim 4, characterized in that, A plurality of blocking members (13) are disposed on the other two opposite sides of the connecting surface (11). A plurality of second positioning portions (313) are correspondingly formed on the mounting member (31). When connecting the mounting member (31) and the housing (1), the blocking members (13) are adapted to be snapped into the second positioning portions (313).
6. The border structure according to claim 5, wherein A plurality of third positioning portions (411) are formed on the first adhesive member (41) corresponding to all the positioning members (12). When the first adhesive member (41) is bonded to the abutting surface of the mounting member (31), the positioning members (12) are adapted to be inserted into the third positioning portions (411).
7. The border structure according to claim 6, wherein A plurality of fourth positioning portions (412) are formed on the first adhesive member (41) corresponding to all the blocking members (13). When the first adhesive member (41) is bonded to the abutting surface of the mounting member (31), the blocking members (13) are adapted to be snapped into the fourth positioning portions (412).
8. The border structure according to claim 7, characterized in that A plurality of fifth positioning portions (421) are formed on the second adhesive member (42) corresponding to all the positioning members (12). When the second adhesive member (42) is bonded to the connecting surface (11) of the housing (1), the positioning members (12) are adapted to be inserted into the fifth positioning portions (421).
9. The border structure according to claim 8, wherein The mounting member (31) and the limiting member (32) are connected by a double-shot molding process, and the mounting member (31) is made of PC+ABS material, and the limiting member (32) is made of soft rubber material.
10. A notebook, characterized in that, It includes the frame structure according to any one of claims 1-9.