Housing structure and data center module
By designing the guide wall in the data center module shell structure, water is guided to drip quickly to the vertical wall, solving the problem of water accumulation in outdoor environments and improving waterproof performance and positioning accuracy.
Patent Information
- Application Number
- CN202422251720.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-13
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-09-13
AI Technical Summary
The data center module shell structure is prone to water accumulation in outdoor environments, affecting positioning accuracy.
A shell structure is designed, including a shell and a cover body. The shell and the cover body are closed together in the front and rear directions. A guide wall is provided on the shell, and the guide wall gradually converges and guides water to flow to the first vertical wall. The water drips quickly by using gravity to avoid water accumulation.
It realizes rapid flow diversion, prevents water accumulation in the shell structure, improves the waterproof performance of the data center module, and ensures positioning accuracy.
Smart Images

Figure CN223080295U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of positioning technology, in particular to a housing structure and a data center module. Background Art
[0002] In order to quickly obtain the current position and direction of a courtyard robot and reduce the interference of environmental factors on the positioning data of a self-moving device, the applicant uses an RTK (Real Time Kinematic) system for positioning. Among them, a data center module with an RTK antenna needs to be set as a reference station in a scene outside the self-moving device to perform the positioning of the self-moving device. However, the installation scene of the reference station is usually an outdoor environment, and it will encounter rainy and snowy days. The housing structure of the data center module in the related technology is prone to water accumulation problems and needs to be improved. Summary of the Utility Model
[0003] In view of this, the utility model provides a housing structure and a data center module to solve the problem that the housing structure of the data center module in the related technology is prone to water accumulation.
[0004] To achieve one or part or all of the above purposes or other purposes, the utility model provides a housing structure, including a housing and a cover that are covered with each other along the front-back direction;
[0005] The cover extends along the vertical direction;
[0006] The housing includes a first vertical wall and a guiding wall. The first vertical wall is arranged side by side with the cover. The size of the first vertical wall in the vertical direction is smaller than that of the cover, and the size of the first vertical wall in the left-right direction is smaller than that of the cover;
[0007] The outer peripheral edge of the first vertical wall extends towards the outer peripheral edge of the cover to form the guiding wall;
[0008] The guiding wall gradually converges towards the first vertical wall.
[0009] In some optional embodiments, a first accommodating cavity wall protrudes outward on the guiding wall. The first accommodating cavity wall is smoothly transitioned with the guiding wall, and a first accommodating cavity is formed inside the first accommodating cavity wall for accommodating an antenna.
[0010] In some optional embodiments, the first accommodating cavity wall includes a first arc-shaped side wall and a first top wall;
[0011] The first arc-shaped side wall extends in an arc shape along the horizontal direction. The first top wall is arranged at the top of the first arc-shaped side wall. The first top wall and the first arc-shaped side wall surround to form the first accommodating cavity;
[0012] The first top wall slopes gradually downward in the front-to-back direction.
[0013] In some alternative embodiments, the guiding wall includes a top guiding wall, a first side guiding wall, a bottom guiding wall, and a second side guiding wall that are sequentially connected in a ring shape;
[0014] The lower edge of the top guiding wall is connected to the upper edge of the first vertical wall, and the top guiding wall slopes gradually towards the upper edge of the cover body;
[0015] The right edge of the first side guiding wall is connected to the left edge of the first vertical wall, and the first side guiding wall slopes gradually towards the left edge of the cover body;
[0016] The left edge of the second side guiding wall is connected to the right edge of the first vertical wall, and the second side guiding wall slopes gradually towards the right edge of the cover body;
[0017] The bottom guiding wall is connected to the first vertical wall.
[0018] In some alternative embodiments, the top guiding wall includes a second end face, a first end face, and a third end face that are sequentially connected from left to right;
[0019] The first end face slopes gradually backward in the up-to-down direction;
[0020] The second end face slopes gradually backward in the up-to-down direction and slopes gradually upward in the left-to-right direction;
[0021] The third end face slopes gradually backward in the up-to-down direction and slopes gradually downward in the left-to-right direction.
[0022] In some alternative embodiments, the guiding wall further includes a first longitudinal wall and a second longitudinal wall;
[0023] The left edge of the first side guiding wall extends towards the left edge of the cover body to form the first longitudinal wall;
[0024] The right edge of the second side guiding wall extends towards the right edge of the cover body to form the second longitudinal wall;
[0025] The top of the first longitudinal wall extends towards the upper right to form a seventh end face, and the seventh end face is connected to the second end face;
[0026] The top of the second longitudinal wall extends towards the upper left to form an eighth end face, and the eighth end face is connected to the third end face;
[0027] A first chamfer is formed at the left end of the top of the cover body, and a second chamfer is formed at the right end of the top of the cover body.
[0028] The first chamfer is aligned with the front edge of the seventh end face, and the second chamfer is aligned with the front edge of the eighth end face.
[0029] In some alternative embodiments, the bottom guiding wall includes a fifth end face, a fourth end face, and a sixth end face that are connected in sequence from left to right;
[0030] The fourth end face is connected to the lower edge of the first vertical wall;
[0031] The fifth end face slopes downward gradually in the left-to-right direction;
[0032] The sixth end face slopes upward gradually in the left-to-right direction;
[0033] A third chamfer is formed at the left bottom end of the cover body, and a fourth chamfer is formed at the right bottom end of the cover body. The third chamfer is aligned with the front edge of the fifth end face, and the fourth chamfer is aligned with the front edge of the sixth end face.
[0034] In some alternative embodiments, the first longitudinal wall and the second longitudinal wall are recessed toward the inside of the housing to form a recessed portion.
[0035] In some alternative embodiments, the cover body includes a second vertical wall. The second vertical wall extends toward the left edge of the housing to form a ninth end face, and the second vertical wall extends toward the right edge of the housing to form a tenth end face;
[0036] The ninth end face slopes forward gradually in the left-to-right direction;
[0037] The tenth end face slopes backward gradually in the left-to-right direction.
[0038] The present utility model also provides a data center module, which includes the housing structure described in any one of the above, and further includes a circuit board and an antenna;
[0039] The circuit board is disposed inside the housing;
[0040] The antenna is disposed inside the housing, and the antenna passes through the guiding wall and extends out to the outside;
[0041] The antenna is electrically connected to the circuit board.
[0042] Implementing the embodiments of the present utility model will have the following beneficial effects:
[0043] The present utility model uses a guiding wall to guide the water flow, concentrates the water to the first vertical wall, and the water drips downward along the first vertical wall and the cover body under the action of gravity, realizing the function of rapid diversion, and can effectively prevent the housing structure from accumulating water.
[0044] It solves the problem that the outer shell structure of the data center module in the related art is prone to water accumulation. BRIEF DESCRIPTION OF THE DRAWINGS
[0045] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the related art, the following will briefly introduce the drawings required for use in the description of the embodiments or the related art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0046] Among them:
[0047] Figure 1 is a three-dimensional view of the outer shell structure of an optional embodiment of the present invention;
[0048] Figure 2 is a three-dimensional view of the outer shell structure of an optional embodiment of the present invention;
[0049] Figure 3 is a three-dimensional view of the internal structure of the data center module of an optional embodiment of the present invention;
[0050] Figure 4 is a cross-sectional view of a partial structure of the data center module of an optional embodiment of the present invention.
[0051] The description of the reference numerals is as follows: 1. Housing; 11. First vertical wall; 12. Guide wall; 121. Top guide wall; 1211. First end face; 1212. Second end face; 1213. Third end face; 122. First side guide wall; 123. Second side guide wall; 124. Bottom guide wall; 1241. Fourth end face; 1242. Fifth end face; 1243. Sixth end face; 125. First longitudinal wall; 1251. Seventh end face; 126. Second longitudinal wall; 1252. Eighth end face; 13. Depressed part; 14. Inclined hole wall; 15. Male buckle; 2. Cover body; 21. Second vertical wall; 22. Ninth end face; 23. Tenth end face; 24. First chamfer; 25. Second chamfer; 26. Third chamfer; 27. Fourth chamfer; 28. Female buckle; 31. First accommodating cavity wall; 311. First arc-shaped side wall; 312. First top wall; 32. Second accommodating cavity wall; 321. Second arc-shaped side wall; 33. Third accommodating cavity wall; 331. Third arc-shaped side wall; 4. Circuit board; 5. Antenna; 6. First sealing ring; 01. First accommodating cavity; 02. Second accommodating cavity; 03. Third accommodating cavity. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0052] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0053] Please refer to Figure 1 and Figure 2 collectively. An outer shell structure in an embodiment of the present utility model is used for quickly guiding the flow of water to prevent water accumulation in the reference station. The outer shell structure includes a housing 1 and a cover 2 that are covered with each other in the front-rear direction.
[0054] The cover 2 extends in the vertical direction. The cover 2 can guide the water to flow vertically downward.
[0055] The housing 1 includes a first vertical wall 11 and a guiding wall 12. The first vertical wall 11 is arranged side by side with the cover 2. The dimension of the first vertical wall 11 in the vertical direction is smaller than that of the cover 2, and the dimension of the first vertical wall 11 in the left-right direction is smaller than that of the cover 2.
[0056] The outer peripheral edge of the first vertical wall 11 extends towards the outer peripheral edge of the cover 2 to form the guiding wall 12.
[0057] The guiding wall 12 gradually converges towards the first vertical wall 11.
[0058] In this embodiment, the guiding wall 12 is adopted to guide the water flow, concentrate the water towards the first vertical wall 11, and the water drips downward along the first vertical wall 11 and the cover 2 under the action of gravity, realizing the function of rapid water diversion, effectively preventing water accumulation in the outer shell structure, avoiding the situation that water slowly seeps into the data center module through the gap due to the long-term existence of water accumulation, and optimizing the waterproof performance of the data center module. It solves the problem that the outer shell structure of the data center module in the related technology is prone to water accumulation.
[0059] When the user actually installs the data center module, it may not be possible to ensure completely vertical installation, and there may be a certain angular deviation. In this case, the guiding wall 12 can still guide the water flow and concentrate the water towards the first vertical wall 11 to achieve rapid water diversion.
[0060] The guiding wall 12 gradually converges towards the first vertical wall 11, which can be achieved by gradually converging with an arc-shaped curved surface, or by gradually converging with an inclined plane, or a combination of the above two, etc.
[0061] In order to provide a guiding wall 12 structure with better drainage effect, in some alternative embodiments, please refer to Figure 1 and Figure 2, the guiding wall 12 includes a top guiding wall 121, a first side guiding wall 122, a bottom guiding wall 124, and a second side guiding wall 123 that are sequentially connected in a ring shape.
[0062] The lower edge of the top guiding wall 121 is connected to the upper edge of the first vertical wall 11, and the top guiding wall 121 gradually inclines towards the upper edge of the cover body 2. The top guiding wall 121 can quickly drain the accumulated water at the top downward to prevent water accumulation at the top.
[0063] The right edge of the first side guiding wall 122 is connected to the left edge of the first vertical wall 11, and the first side guiding wall 122 gradually inclines towards the left edge of the cover body 2. The first side guiding wall 122 can concentrate the water flow and direct it to the first vertical wall 11 or the left edge of the cover body 2 to achieve rapid diversion.
[0064] The left edge of the second side guiding wall 123 is connected to the right edge of the first vertical wall 11, and the second side guiding wall 123 gradually inclines towards the right edge of the cover body 2. The second side guiding wall 123 can concentrate the water flow and direct it to the first vertical wall 11 or the right edge of the cover body 2 to achieve rapid diversion. The bottom guiding wall 124 is connected to the first vertical wall 11.
[0065] Optionally, the top guiding wall 121 includes a second end face 1212, a first end face 1211, and a third end face 1213 that are sequentially connected from left to right. The first end face 1211 gradually inclines backward in the vertical direction from top to bottom. The second end face 1212 gradually inclines backward in the vertical direction and gradually inclines upward in the horizontal direction from left to right. The third end face 1213 gradually inclines backward in the vertical direction and gradually inclines downward in the horizontal direction from left to right. The second end face 1212, the first end face 1211, and the third end face 1213 are used to concentrate the accumulated water at the top of the housing 1 and direct it to the first vertical wall 11.
[0066] In some alternative embodiments: The guiding wall 12 further includes a first longitudinal wall 125 and a second longitudinal wall 126. The first longitudinal wall 125 and the second longitudinal wall 126 are arranged along the vertical direction.
[0067] The left edge of the first side guiding wall 122 extends towards the left edge of the cover body 2 to form the first longitudinal wall 125.
[0068] The right edge of the second side guiding wall 123 extends towards the right edge of the cover body 2 to form the second longitudinal wall 126.
[0069] The top of the first longitudinal wall 125 extends towards the upper right to form a seventh end face 1251, and the seventh end face 1251 is connected to the second end face 1212. The seventh end face 1251 is used to direct the water flow to the first longitudinal wall 125 and then flow downward along the first longitudinal wall 125 for rapid drainage.
[0070] The top of the second longitudinal wall 126 extends towards the upper left to form an eighth end face 1252, and the eighth end face 1252 is connected to the third end face 1213. The eighth end face 1252 is used to direct the water flow towards the second longitudinal wall 126 and then flow downward along the second longitudinal wall 126 for rapid drainage.
[0071] A first chamfer 24 is formed at the left end of the top of the cover body 2, and a second chamfer 25 is formed at the right end of the top of the cover body 2. The first chamfer 24 is aligned with the front edge of the seventh end face 1251, and the second chamfer 25 is aligned with the front edge of the eighth end face 1252.
[0072] In some alternative embodiments, as Figure 2 shown, the bottom guide wall 124 includes a fifth end face 1242, a fourth end face 1241, and a sixth end face 1243 that are connected in sequence from left to right. The fourth end face 1241 is connected to the lower edge of the first vertical wall 11. The fifth end face 1242 slopes gradually downward in the left-to-right direction. The sixth end face 1243 slopes gradually upward in the left-to-right direction.
[0073] A third chamfer 26 is formed at the left end of the bottom of the cover body 2, and a fourth chamfer 27 is formed at the right end of the bottom of the cover body 2. The third chamfer 26 is aligned with the front edge of the fifth end face 1242, and the fourth chamfer 27 is aligned with the front edge of the sixth end face 1243.
[0074] The fifth end face 1242 and the sixth end face 1243 are used to direct the water flows on both sides of the housing 1 towards the fourth end face 1241 to concentrate the water flow so that the water drips downward along the fourth end face 1241.
[0075] For the convenience of user installation, the first longitudinal wall 125 and the second longitudinal wall 126 are recessed towards the interior of the housing 1 to form a recessed portion 13. The recessed portion 13 can serve as a force application site for the user to hold by hand or with tools.
[0076] To minimize the volume of the housing structure while meeting the required assembly space for the internal components, in some alternative embodiments, please refer to Figure 1 and Figure 3 , the guiding wall 12 protrudes outward to form a first accommodating cavity wall 31. The first accommodating cavity wall 31 is smoothly transitioned with the guiding wall 12. A first accommodating cavity 01 is formed inside the first accommodating cavity wall 31, and the first accommodating cavity 01 is used to accommodate and install the antenna 5. The design of the smooth transition between the first accommodating cavity wall 31 and the guiding wall 12 is beneficial for guiding the flow.
[0077] The number of accommodating cavity walls can be set according to the number of antennas required for the data center module. As an alternative example, the number of accommodating cavity walls is three, as Figures 1 to 3As shown in the figure, a first accommodation cavity wall 31, a second accommodation cavity wall 32, and a third accommodation cavity wall 33 are convexly formed on the guiding wall 12. The first accommodation cavity wall 31 is located at the top of the guiding wall 12, the second accommodation cavity wall 32 is located on the left side of the guiding wall 12, and the third accommodation cavity wall 33 is located on the right side of the guiding wall 12. A first accommodation cavity 01 is formed inside the first accommodation cavity wall 31, a second accommodation cavity 02 is formed inside the second accommodation cavity wall 32, and a third accommodation cavity 03 is formed inside the third accommodation cavity wall 33. Antennas 5 are assembled in the first accommodation cavity 01, the second accommodation cavity 02, and the third accommodation cavity wall 33.
[0078] The design of the first accommodation cavity wall 31 can be diverse. To improve the guiding effect on water flow, in some alternative embodiments, as Figure 1 shown in the figure, the first accommodation cavity wall 31 includes a first arc-shaped side wall 311 and a first top wall 312. The first arc-shaped side wall 311 extends in an arc shape in the horizontal direction, the first top wall 312 is provided at the top of the first arc-shaped side wall 311, and the first top wall 312 and the first arc-shaped side wall 311 enclose to form the first accommodation cavity 01. The first top wall 312 gradually slopes downward in the front-to-back direction. The first arc-shaped side wall 311 can concentrate and guide the water flow towards the middle position of the arc to achieve rapid diversion. The inclined design of the first top wall 312 can also concentrate and guide the water flow towards the middle position of the arc of the first arc-shaped side wall 311.
[0079] In some alternative embodiments, as Figures 1 to 3 shown in the figure, the second accommodation cavity wall 32 includes a second arc-shaped side wall 321. The second arc-shaped side wall 321 is formed on the first side guiding wall 122 and extends in an arc shape in the vertical direction. The left side of the second arc-shaped side wall 321 is connected to the first longitudinal wall 125. A part of the first longitudinal wall 125 can also be regarded as a part of the second accommodation cavity wall 32. The second arc-shaped side wall 321 increases the installation space for the antenna 5 and does not cause water accumulation in the outer shell at the same time.
[0080] In some alternative embodiments, as Figures 1 to 3 shown in the figure, the third accommodation cavity wall 33 includes a third arc-shaped side wall 331. The third arc-shaped side wall 331 is formed on the second side guiding wall 123 and extends in an arc shape in the vertical direction. The right side of the third arc-shaped side wall 331 is connected to the second longitudinal wall 126. A part of the second longitudinal wall 126 can also be regarded as a part of the third accommodation cavity wall 33. The third arc-shaped side wall 331 increases the installation space for the antenna 5 and does not cause water accumulation in the outer shell at the same time.
[0081] In some alternative embodiments, as Figure 2As shown in the figure, the cover body 2 includes a second vertical wall 21. The second vertical wall 21 extends towards the left edge of the housing 1 to form a ninth end face 22, and the second vertical wall 21 extends towards the right edge of the housing 1 to form a tenth end face 23. The ninth end face 22 gradually inclines forward in the left-to-right direction. The tenth end face 23 gradually inclines backward in the left-to-right direction. The ninth end face 22 and the tenth end face 23 are used to lead water to the horizontal two-side edges of the cover body 2 and quickly drip along the edges.
[0082] In some alternative embodiments, as Figure 3 and Figure 4 shown in the figure, a first sealing ring 6 is provided between the housing 1 and the cover body 2 for sealing to improve the waterproof performance of the housing structure. Optionally, as Figure 4 shown in the figure, a male buckle 15 is provided along the outer circle of the housing 1, and a female buckle 28 is provided along the outer circle of the cover body 2. The male buckle 15 is buckled into the female buckle 28, and the first sealing ring 6 is squeezed between the male buckle 15 and the female buckle 28 to improve the tightness.
[0083] In some alternative embodiments, as Figure 1 shown in the figure, the housing 1 and the cover body 2 can be relatively fixed by using components such as screws. Screw holes are provided on the housing 1, and the hole walls of the screw holes are inclined hole walls 14 which incline downward to prevent water from seeping into the data center module through the screw holes.
[0084] An embodiment of the utility model relates to a data center module. The data center module is used as a reference station for receiving satellite signals and calculating correction data to achieve precise positioning of a rover such as a self-mobile device.
[0085] Please refer comprehensively to Figures 1 to 4 , which includes the above-mentioned housing structure and also includes a circuit board 4 and an antenna 5. The circuit board 4 is arranged inside the housing 1. The antenna 5 is arranged inside the housing 1. The antenna 5 passes through the guiding wall 12 and extends out to the outside; the antenna 5 is electrically connected to the circuit board 4.
[0086] The above description is only a preferred embodiment of the present application and does not impose any form of limitation on the present application. Although the present application has been disclosed above in a preferred embodiment, it is not intended to limit the present application. Any person skilled in the art can make some changes or modifications to equivalent embodiments by using the above-disclosed technical content within the scope of the technical solution of the present application. However, as long as it does not depart from the content of the technical solution of the present application, any simple modification, equivalent change and modification made to the above embodiments based on the technical essence of the present application still fall within the scope of the technical solution of the present application.
Claims
1. A housing structure, characterized in that: It includes a housing (1) and a cover (2) that cover each other along the front-back direction; The cover (2) extends along the vertical direction; The housing (1) includes a first vertical wall (11) and a guiding wall (12). The first vertical wall (11) is arranged side by side with the cover (2). The dimension of the first vertical wall (11) in the vertical direction is smaller than that of the cover (2), and the dimension of the first vertical wall (11) in the left-right direction is smaller than that of the cover (2); The outer peripheral edge of the first vertical wall (11) extends towards the outer peripheral edge of the cover (2) to form the guiding wall (12); The guiding wall (12) gradually converges towards the first vertical wall (11).
2. The housing structure according to claim 1, wherein: An outer convex first accommodating cavity wall (31) is formed on the guiding wall (12). The first accommodating cavity wall (31) is smoothly transitioned with the guiding wall (12), and a first accommodating cavity (01) is formed inside the first accommodating cavity wall (31).
3. The housing structure according to claim 2, characterized in that: The first accommodating cavity wall (31) includes a first arc-shaped side wall (311) and a first top wall (312); The first arc-shaped side wall (311) extends in an arc shape along the horizontal direction. The first top wall (312) is arranged at the top of the first arc-shaped side wall (311). The first top wall (312) and the first arc-shaped side wall (311) enclose to form the first accommodating cavity (01); The first top wall (312) gradually slopes downwards in the front-to-back direction.
4. The housing structure according to claim 1, wherein: The guiding wall (12) includes a top guiding wall (121), a first side guiding wall (122), a bottom guiding wall (124), and a second side guiding wall (123) that are sequentially connected in a ring shape; The lower edge of the top guiding wall (121) is connected to the upper edge of the first vertical wall (11), and the top guiding wall (121) gradually slopes towards the upper edge of the cover (2); The right edge of the first side guiding wall (122) is connected to the left edge of the first vertical wall (11), and the first side guiding wall (122) gradually slopes towards the left edge of the cover (2); The left edge of the second side guiding wall (123) is connected to the right edge of the first vertical wall (11), and the second side guiding wall (123) gradually slopes towards the right edge of the cover (2); The bottom guiding wall (124) is connected to the first vertical wall (11).
5. The housing structure according to claim 4, wherein: The top guiding wall (121) includes a second end face (1212), a first end face (1211), and a third end face (1213) that are sequentially connected from left to right; The first end face (1211) gradually slopes backwards in the up-down direction; The second end face (1212) gradually slopes backwards in the up-down direction, and the second end face (1212) gradually slopes upwards in the left-right direction; The third end face (1213) gradually slopes backwards in the up-down direction, and the third end face (1213) gradually slopes downwards in the left-right direction.
6. The housing structure according to claim 5, characterized in that: The guiding wall (12) further includes a first longitudinal wall (125) and a second longitudinal wall (126); The left edge of the first side guiding wall (122) extends towards the left edge of the cover body (2) to form the first longitudinal wall (125); The right edge of the second side guiding wall (123) extends towards the right edge of the cover body (2) to form the second longitudinal wall (126); The top of the first longitudinal wall (125) extends towards the upper right to form a seventh end face (1251), and the seventh end face (1251) is connected to the second end face (1212); The top of the second longitudinal wall (126) extends towards the upper left to form an eighth end face (1252), and the eighth end face (1252) is connected to the third end face (1213); A first chamfer (24) is formed at the left end of the top of the cover body (2), and a second chamfer (25) is formed at the right end of the top of the cover body (2), The first chamfer (24) is aligned with the front edge of the seventh end face (1251), and the second chamfer (25) is aligned with the front edge of the eighth end face (1252).
7. The housing structure according to claim 6, wherein: The bottom guiding wall (124) includes a fifth end face (1242), a fourth end face (1241), and a sixth end face (1243) that are connected in sequence from left to right; The fourth end face (1241) is connected to the lower edge of the first vertical wall (11); The fifth end face (1242) slopes gradually downward in the left-to-right direction; The sixth end face (1243) slopes gradually upward in the left-to-right direction; A third chamfer (26) is formed at the left end of the bottom of the cover body (2), and a fourth chamfer (27) is formed at the right end of the bottom of the cover body (2). The third chamfer (26) is aligned with the front edge of the fifth end face (1242), and the fourth chamfer (27) is aligned with the front edge of the sixth end face (1243).
8. The housing structure according to claim 6, wherein: The first longitudinal wall (125) and the second longitudinal wall (126) are recessed towards the inside of the housing (1) to form a recessed portion (13).
9. The housing structure according to claim 1, wherein: The cover body (2) includes a second vertical wall (21). The second vertical wall (21) extends towards the left edge of the housing (1) to form a ninth end face (22), and the second vertical wall (21) extends towards the right edge of the housing (1) to form a tenth end face (23); The ninth end face (22) slopes gradually forward in the left-to-right direction; The tenth end face (23) slopes gradually backward in the left-to-right direction.
10. A data center module, characterized in that: An outer shell structure according to any one of claims 1 to 9, further comprising a circuit board (4) and an antenna (5); The circuit board (4) is disposed inside the housing (1); The antenna (5) is disposed inside the housing (1), and the antenna (5) passes through the guiding wall (12) and protrudes to the outside; The antenna (5) and the circuit board (4) are electrically connected.
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WO2026056645A1