Electric cabinet adjusting supporting seat
By designing an automated electrical cabinet adjustment support seat, using support sleeves, metal balls, pneumatic transition structures and positioning adjustment structures, the problem of manual adjustment of positioning support structures in the prior art is solved, and the automated movement and positioning of the server cabinet is realized, stability and practicality are improved, and air blowing cooling function is provided.
Patent Information
- Application Number
- CN202421346112.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-13
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-06-13
AI Technical Summary
In the prior art, the positioning support structure of the server cabinet requires manual reciprocating adjustment, the structure is complex but the effect is achieved is single and practical.
An electric cabinet adjustment support seat is designed, and a mobile structure is composed of a support sleeve, a metal ball and a pneumatic transition structure, combining the positioning adjustment structure and pneumatic power equipment to achieve automated movement and positioning.
Through automated movement and positioning functions, the mobile and stable placement needs of the server cabinet are met, the operation process is simplified, the stability and practicality of the equipment are improved, and the air blow cooling effect of the server cabinet is achieved.
Smart Images

Figure CN222928604U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of cabinet installation, in particular to an electric cabinet adjusting support base. Background Technique
[0002] At present, for the convenient movement requirements of cabinets and supporting equipment related to servers, the prior art has targeted solutions. For example, the patent document with the application number 202120959166.1 proposes "a big data server device convenient to move, including a server main body and a support base. The support base is arranged at the lower end of the server main body. An auxiliary movement structure is arranged in the support base in a rectangular array, and a positioning support structure is arranged outside the auxiliary movement structure". After implementation, "the existing big data server main body is improved. A support base is arranged at the lower part of the server main body, an auxiliary movement structure is arranged at the lower part of the support base, and a positioning support structure is arranged outside the auxiliary movement structure. When the server main body is in normal use, the positioning support structure is controlled to move downward, thereby lifting the entire server main body, so as to improve the stability of the server main body. When the server main body needs to be moved, the lower end of the positioning support structure is controlled to move upward, so that the auxiliary movement structure contacts the ground, thereby pushing the server main body to move. The structure is simple and the stability is good".
[0003] Judging from the technical solution of the above prior art and the expected technical effects after implementation, in the prior art, the auxiliary movement structure and the positioning support structure are respectively arranged on the cabinet bases related to the server, and are alternately used to meet the movement use requirements and the stable placement use requirements of the cabinet. However, the positioning support structure in the above prior art is multiple and needs to be manually adjusted reciprocally to be alternately used with the auxiliary movement structure. Secondly, the prior art has a rather complex structure, but the achievable technical effects are very single, and there are still certain limitations in practicality. Content of the Utility Model
[0004] Aiming at the deficiencies of the prior art, the utility model provides an electric cabinet adjusting support base, which solves the problems put forward in the above background technique.
[0005] The utility model provides the following technical solution: an electric cabinet adjusting support base, including a server cabinet and a base. Support sleeves are installed at the corners of the bottom of the base. The bottom of the support sleeve is a hemispherical shell structure and is clamped with a metal ball. An air-operated transition structure is sleeved outside the support sleeve. A positioning and adjusting structure is sleeved inside the bottom of the air-operated transition structure, and the bottom surface of the positioning and adjusting structure can be coplanar with the bottom surface of the support sleeve;
[0006] A air blowing pump, an annular pipe, and a control assembly are installed on the bottom surface of the middle part of the base. A connecting plate is installed between the top surface of the annular pipe and the bottom surface of the base. The output end of the air blowing pump is sleeved inside the inner ring structure of the annular pipe, and an auxiliary solenoid valve is installed on the output end of the air blowing pump. The outer ring structure of the annular pipe is sleeved with a connecting pipe and a solenoid valve pipe. One end of the connecting pipe is sleeved inside the bottom of the pneumatic transition structure.
[0007] Preferably, the control assembly includes a controller and a power supply module. The control assembly is electrically connected to a switch through a wire. The switch is installed on the top surface of the base, which is convenient for the operator to perform unified operations.
[0008] Preferably, the air blowing pump is electrically connected to the controller through a wire. An L-shaped support seat is fixedly connected to the surface of the air blowing pump housing. The L-shaped support seat is installed and fixed to the bottom surface of the middle part of the base through screws, which is convenient for subsequent maintenance and repair.
[0009] Preferably, the pneumatic transition structure includes an annular hollow plate and an auxiliary plate. The two ends of the auxiliary plate are respectively fixedly connected to the top surface of the support sleeve and the top surface of the annular hollow plate. The inner side of the top of the auxiliary plate is sleeved with one end of the connecting pipe. The pneumatic transition structure serves as a transition support structure for air pressure output and can provide air pressure transmission conditions for subsequent related structures.
[0010] Preferably, the positioning and adjusting structure includes an annular friction plate, an annular piston plate, and a spring. The annular friction plate is movably sleeved outside the bottom of the metal ball. The annular piston plate is clamped inside the bottom of the annular hollow plate. The two ends of the spring are respectively fixedly connected to the inner wall of the top of the annular hollow plate and the top surface of the annular piston plate. A linkage rod is installed between the bottom of the spring and the top of the annular friction plate. Under the support of the pneumatic transition structure and the air pressure output of the air blowing pump through the annular pipe and the connecting pipe, the positioning and adjusting structure can automatically move out and press against the ground at the placement position, achieving the use effect of automatic friction limit.
[0011] Preferably, a sealing ring is provided at the sleeved part of the linkage rod and the bottom structure of the annular hollow plate to improve the sealing performance of the connection between the linkage rod and the annular hollow plate. The bottom surface of the annular friction plate is provided with friction grooves, which can improve the friction positioning effect of the annular friction plate on the ground at the placement position.
[0012] Preferably, a flow guiding hollow arc plate is mounted on the top surface of the base. An air inlet hole facing the server cabinet is formed at the top of the flow guiding hollow arc plate. The number of the air inlet holes is not less than two and they are arranged at equal intervals. One end of the solenoid valve pipe away from the annular pipe is sleeved inside the bottom of the flow guiding hollow arc plate. As a terminal flow guiding structure, the flow guiding hollow arc plate can, in cooperation with the solenoid valve pipe and the annular pipe, guide the air output by the air blowing pump to the surface of the server cabinet, achieving the use effect of air blowing and cooling the server cabinet.
[0013] Preferably, the number of the flow guiding hollow arc plates is set to three and they are distributed and mounted on the two side surfaces and the rear end surface of the base. The number of the solenoid valve pipes is the same as that of the flow guiding hollow arc plates. The arrangement of multiple flow guiding hollow arc plates can, in the subsequent air flow guiding process, cool the server cabinet by large-area air blowing.
[0014] Preferably, the valve arranged inside the solenoid valve pipe is a solenoid valve, and the solenoid valve is electrically connected to the controller through a wire, which is convenient for the user to uniformly control and optimizes the use effect.
[0015] Compared with the prior art, the utility model has the following beneficial effects:
[0016] 1. The utility model forms a moving structure with the provided support sleeve and metal ball, forms a pneumatic limiting structure with the provided pneumatic transition structure and positioning and adjusting structure, and forms a pneumatic power device with the provided connecting pipe, annular pipe, air blowing pump, control component and solenoid valve pipe. After combining multiple groups of moving structures and multiple groups of pneumatic limiting structures with the server cabinet and the base for use, gas can be conveyed to multiple groups of pneumatic limiting structures through the pneumatic power device, so that the positioning and adjusting structure can press against the ground at the placement position under the support of the pneumatic transition structure for limiting. Cooperating with the moving structure can fully meet the two use requirements of the overall device for moving and stable placement.
[0017] 2. The flow guiding hollow arc plate provided by the utility model is used as a terminal flow guiding structure. After being combined with the above-mentioned pneumatic power device, it can, in cooperation with the solenoid valve pipe and the annular pipe, guide the air output by the air blowing pump to the surface of the server cabinet, achieving the use effect of air blowing and cooling the server cabinet. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a bottom view schematic diagram of the structure of the utility model;
[0019] Figure 2 It is a front view schematic diagram of the structure of the utility model;
[0020] Figure 3 It is a top view schematic diagram of the structure of the utility model;
[0021] Figure 4 Partial sectional view of the structure of the present utility model;
[0022] Figure 5 Bottom view of the control component of the structure of the present utility model;
[0023] Figure 6 Bottom view of the positioning and adjusting structure of the structure of the present utility model.
[0024] In the figure: 1, server cabinet; 2, base; 3, support sleeve; 4, metal ball; 5, pneumatic transition structure; 51, annular hollow plate; 52, auxiliary plate; 6, positioning and adjusting structure; 61, annular friction plate; 62, annular piston plate; 63, spring; 7, air pump; 8, annular pipe; 9, control component; 10, connecting pipe; 11, solenoid valve pipe; 12, diversion hollow arc plate. Specific embodiments
[0025] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described 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. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0026] Embodiment 1
[0027] Please refer to Figure 1-2 , Figure 4 , Figure 6 , an electric cabinet adjusting support seat, including a server cabinet 1 and a base 2. Support sleeves 3 are installed at the corners of the bottom of the base 2. The bottom of the support sleeve 3 is a hemispherical shell structure and is clamped with a metal ball 4. A pneumatic transition structure 5 is sleeved outside the support sleeve 3. The inner side of the bottom of the pneumatic transition structure 5 is sleeved with a positioning and adjusting structure 6, and the bottom surface of the positioning and adjusting structure 6 can be coplanar with the bottom surface of the support sleeve 3;
[0028] The pneumatic transition structure 5 includes an annular hollow plate 51 and an auxiliary plate 52. The two ends of the auxiliary plate 52 are respectively fixedly connected to the top surface of the support sleeve 3 and the top surface of the annular hollow plate 51. The inner side of the top of the auxiliary plate 52 is sleeved with one end of the connecting pipe 10. The pneumatic transition structure 5, as a transition support structure for air pressure output, can provide air pressure transmission conditions for subsequent associated structures. The positioning and adjusting structure 6 includes an annular friction plate 61, an annular piston plate 62, and a spring 63. The annular friction plate 61 is movably sleeved on the outside of the bottom of the metal ball 4. The annular piston plate 62 is clamped inside the bottom of the annular hollow plate 51. The two ends of the spring 63 are respectively fixedly connected to the inner wall of the top of the annular hollow plate 51 and the top surface of the annular piston plate 62. A linkage rod is installed between the bottom of the spring 63 and the top of the annular friction plate 61. Under the support of the pneumatic transition structure 5 and the air pressure output of the air pump 7 through the annular pipe 8 and the connecting pipe 10, the positioning and adjusting structure 6 can automatically move out to press against the ground at the placement position, achieving the use effect of automatic friction limit. A sealing ring is provided at the sleeved part of the linkage rod and the bottom structure of the annular hollow plate 51 to improve the sealing performance of the connection between the linkage rod and the annular hollow plate 51. The bottom surface of the annular friction plate 61 is provided with friction grooves, thereby improving the friction positioning effect of the annular friction plate 61 on the ground at the placement location;
[0029] An air pump 7, an annular pipe 8, and a control component 9 are installed on the bottom surface of the middle part of the base 2. The control component 9 includes a controller and a power module. The control component 9 is electrically connected to a switch through a wire, and the switch is installed on the top surface of the base 2, which is convenient for the operator to perform unified operations. The air pump 7 is electrically connected to the controller through a wire. An L-shaped support seat is fixedly connected to the surface of the housing of the air pump 7. The L-shaped support seat is installed and fixed to the bottom surface of the middle part of the base 2 through screws, which is convenient for subsequent maintenance and repair;
[0030] A connecting plate is installed between the top surface of the annular pipe 8 and the bottom surface of the base 2. The output end of the air pump 7 is sleeved inside the inner ring structure of the annular pipe 8, and an auxiliary solenoid valve is installed on the output end of the air pump 7. The outer ring structure of the annular pipe 8 is sleeved with a connecting pipe 10 and a solenoid valve pipe 11. One end of the connecting pipe 10 is sleeved inside the bottom of the pneumatic transition structure 5. The valve arranged inside the solenoid valve pipe 11 is a solenoid valve, and the solenoid valve is electrically connected to the controller through a wire, which is convenient for the user to perform unified control and optimize the use effect.
[0031] Working principle: When the server cabinet 1 needs to be moved, the metal balls 4 arranged at the four bottom corners of the bottom of the base 2 provide moving conditions for the overall device in the form of reciprocating movement under the sleeved support of the corresponding support sleeves 3, thereby meeting the moving requirements of the server cabinet 1;
[0032] After the server cabinet 1 finishes moving, start the air-blowing pump 7 and the auxiliary solenoid valve. Air is conveyed into the interior of the annular pipe 8 from the output end of the air-blowing pump 7, and then enters the interior of the annular hollow plate 51 through the connecting pipe 10. As the air flow continuously outputs, the annular piston plate 62 is pressured and drives the annular friction plate 61 to move downward automatically through the linkage rod, and the spring 63 is synchronously pressured and extended until the bottom surface of the annular friction plate 61 presses and rubs against the bottom surface of the placement position. Then, close the auxiliary solenoid valve and the air-blowing pump 7 to achieve the automatic positioning effect and meet the stable use requirements of the overall equipment. When it needs to be moved again later, open the solenoid valve on the solenoid valve pipe 11 to release the air inside the connecting pipe 10, the annular pipe 8, and the annular hollow plate 51.
[0033] Embodiment 2
[0034] Please refer to Figure 1-6 , an electric cabinet adjusting support base, including a server cabinet 1 and a base 2. Support sleeves 3 are installed at the corners of the bottom of the base 2. The bottom of the support sleeve 3 is a hemispherical shell structure and is clamped with a metal ball 4. An air pressure transition structure 5 is sleeved outside the support sleeve 3. A positioning and adjusting structure 6 is sleeved inside the bottom of the air pressure transition structure 5, and the bottom surface of the positioning and adjusting structure 6 can be coplanar with the bottom surface of the support sleeve 3;
[0035] The air pressure transition structure 5 includes an annular hollow plate 51 and an auxiliary plate 52. The two ends of the auxiliary plate 52 are respectively fixedly connected to the top surface of the support sleeve 3 and the top surface of the annular hollow plate 51. The inner side of the top of the auxiliary plate 52 is sleeved with one end of the connecting pipe 10. The air pressure transition structure 5 serves as a transition support structure for air pressure output and can provide air pressure transmission conditions for subsequent related structures. The positioning and adjusting structure 6 includes an annular friction plate 61, an annular piston plate 62, and a spring 63. The annular friction plate 61 is movably sleeved outside the bottom of the metal ball 4. The annular piston plate 62 is clamped inside the bottom of the annular hollow plate 51. The two ends of the spring 63 are respectively fixedly connected to the inner wall of the top of the annular hollow plate 51 and the top surface of the annular piston plate 62. A linkage rod is installed between the bottom of the spring 63 and the top of the annular friction plate 61. Under the support of the air pressure transition structure 5 and the air pressure output of the air-blowing pump 7 through the annular pipe 8 and the connecting pipe 10, the positioning and adjusting structure 6 can automatically move out and press against the ground at the placement position to achieve the use effect of automatic friction limit. A sealing ring is provided at the sleeved part of the linkage rod and the bottom structure of the annular hollow plate 51 to improve the sealing performance of the connection between the linkage rod and the annular hollow plate 51. The bottom surface of the annular friction plate 61 is provided with a friction groove, thereby improving the friction positioning effect of the annular friction plate 61 on the ground at the placement location;
[0036] At the bottom surface of the middle part of the base 2, an air blower 7, an annular pipe 8, and a control component 9 are installed. The control component 9 includes a controller and a power module. The control component 9 is electrically connected to a switch through a wire. The switch is installed on the top surface of the base 2, which is convenient for the operator to perform unified operations. The air blower 7 is electrically connected to the controller through a wire. The surface of the housing of the air blower 7 is fixedly connected with an L-shaped support seat. The L-shaped support seat is installed and fixed between the bottom surface of the middle part of the base 2 through screws, which is convenient for subsequent maintenance and repair;
[0037] A connecting plate is installed between the top surface of the annular pipe 8 and the bottom surface of the base 2. The output end of the air blower 7 is sleeved inside the inner ring structure of the annular pipe 8, and an auxiliary solenoid valve is installed on the output end of the air blower 7. The outer ring structure of the annular pipe 8 is sleeved with a connecting pipe 10 and a solenoid valve pipe 11. One end of the connecting pipe 10 is sleeved inside the bottom of the pneumatic transition structure 5. The valve arranged inside the solenoid valve pipe 11 is a solenoid valve, and the solenoid valve is electrically connected to the controller through a wire, which is convenient for the user to perform unified control and optimize the use effect;
[0038] The top surface of the base 2 is installed with a diversion hollow arc plate 12. The top of the diversion hollow arc plate 12 is provided with air inlet holes facing the server cabinet 1. The number of the air inlet holes is not less than two and they are arranged at equal intervals. One end of the solenoid valve pipe 11 away from the annular pipe 8 is sleeved inside the bottom of the diversion hollow arc plate 12. The diversion hollow arc plate 12 is a structure for terminal diversion. With the cooperation of the solenoid valve pipe 11 and the annular pipe 8, the air output by the air blower 7 can be guided to the surface of the server cabinet 1 to achieve the use effect of air blowing and cooling the server cabinet 1. The number of the diversion hollow arc plates 12 is set to three and they are distributed and installed on the two side surfaces and the rear surface of the base 2. The number of the solenoid valve pipes 11 is the same as the number of the diversion hollow arc plates 12. The setting of multiple diversion hollow arc plates 12 can, in the subsequent air diversion process, perform large-area air blowing and cooling on the server cabinet 1.
[0039] Working principle: When the server cabinet 1 needs to be moved, the metal balls 4 arranged at the four bottom corners of the bottom of the base 2 provide the moving conditions for the whole device in the form of reciprocating movement by being sleeved and supported by the corresponding support sleeves 3, so as to meet the moving requirements of the server cabinet 1. After the server cabinet 1 finishes moving, the air blower 7 and the auxiliary solenoid valve are started. The air blower 7 conveys air to the inside of the annular pipe 8 from the output end, and then enters the inside of the annular hollow plate 51 through the connecting pipe 10. As the air flow continuously outputs, the annular piston plate 62 is pressed and drives the annular friction plate 61 to move downward automatically through the linkage rod, and the spring 63 is synchronously pressed and expanded until the bottom surface of the annular friction plate 61 presses and rubs against the bottom surface of the placement position, realizing the automatic positioning effect and meeting the stable use requirements of the whole device. Subsequently;
[0040] When the server cabinet 1 overheats during use, the air blower 7, the auxiliary solenoid valve, and the solenoid valve on the solenoid valve pipe 11 are started. Air is conveyed from the output end of the air blower 7 into the interior of the annular pipe 8, and then enters the interior of the annular hollow plate 51 through the connecting pipe 10. As the air flow continuously outputs, the annular piston plate 62 is pressed and drives the annular friction plate 61 to automatically move downward through the linkage rod, and the spring 63 is synchronously compressed and extended until the bottom surface of the annular friction plate 61 presses against and rubs against the bottom surface of the placement position, achieving an automatic positioning effect. At the same time, part of the air will be conveyed through the solenoid valve pipe 11 into the interior of the diversion hollow arc plate 12, and then through the air holes to the surface of the server cabinet 1 to perform auxiliary air blowing and cooling on the server cabinet 1.
[0041] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "comprising", "including" or any other variant thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device. At the same time, in the drawings of the present utility model, the filling patterns are only for distinguishing layers and are not subject to any other limitations.
[0042] Although the embodiments of the present utility model have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.
Claims
1. An electric cabinet adjustment support base, comprising a server cabinet (1) and a base (2), characterized in that: A support sleeve (3) is installed at the corner of the bottom of the base (2); the bottom of the support sleeve (3) is a hemispherical shell structure and is clamped with a metal ball (4); the outer side of the support sleeve (3) is sleeved with a pneumatic transition structure (5); the inner side of the bottom of the pneumatic transition structure (5) is sleeved with a positioning adjustment structure (6); and the bottom surface of the positioning adjustment structure (6) can be arranged coplanar with the bottom surface of the support sleeve (3); An air pump (7), an annular tube (8), and a control component (9) are installed on the bottom surface of the middle part of the base (2); a connecting plate is installed between the top surface of the annular tube (8) and the bottom surface of the base (2); the output end of the air pump (7) is sleeved inside the inner ring structure of the annular tube (8), and an auxiliary solenoid valve is installed on the output end of the air pump (7); the outer ring structure of the annular tube (8) is sleeved with a connecting tube (10) and a solenoid valve tube (11); one end of the connecting tube (10) is sleeved on the inner side of the bottom of the pneumatic transition structure (5).
2. The electric cabinet adjustment support seat according to claim 1, characterized in that: The control component (9) comprises a controller and a power module. The control component (9) is electrically connected to a switch via a wire. The switch is mounted on the surface of the top of the base (2).
3. The electric cabinet adjustment support seat according to claim 2, characterized in that: The air pump (7) is electrically connected to the controller via a wire, an L-shaped support seat is fixedly connected to the surface of the air pump (7) shell, and an L-shaped support seat is installed between the L-shaped support seat and the bottom surface of the middle part of the base (2) and fixed by screws.
4. The electric cabinet adjustment support seat according to claim 1, characterized in that: The pneumatic transition structure (5) comprises an annular hollow plate (51) and an auxiliary plate (52), wherein two ends of the auxiliary plate (52) are respectively fixedly connected to the top surface of the support sleeve (3) and the top surface of the annular hollow plate (51), and the inner side of the top of the auxiliary plate (52) is sleeved with one end of the connecting pipe (10).
5. The electric cabinet adjustment support seat according to claim 4, characterized in that: The positioning adjustment structure (6) comprises an annular friction plate (61), an annular piston plate (62) and a spring (63); the annular friction plate (61) is movably sleeved on the outer side of the bottom of the metal ball (4); the annular piston plate (62) is clamped on the inner side of the bottom of the annular hollow plate (51); two ends of the spring (63) are respectively fixedly connected to the inner wall of the top of the annular hollow plate (51) and the top surface of the annular piston plate (62); and a linkage rod is installed between the bottom of the spring (63) and the top of the annular friction plate (61).
6. The electric cabinet adjustment support seat according to claim 5, characterized in that: A sealing ring is provided at the fitting position of the linkage rod and the bottom structure of the annular hollow plate (51), and a friction groove is provided on the bottom surface of the annular friction plate (61).
7. The electric cabinet adjustment support base according to claim 1, characterized in that: A flow guide hollow arc plate (12) is installed on the surface of the top of the base (2); a gas supply hole facing the server cabinet (1) is opened on the top of the flow guide hollow arc plate (12); the number of the gas supply holes is not less than two and they are arranged at equal distances; and one end of the solenoid valve tube (11) away from the annular tube (8) is sleeved on the inner side of the bottom of the flow guide hollow arc plate (12).
8. The electric cabinet adjustment support base according to claim 7, characterized in that: The number of the guide hollow arc plates (12) is set to three and is distributed and installed on the side surfaces on both sides and the rear end surface of the base (2); the number of the solenoid valve tubes (11) is the same as the number of the guide hollow arc plates (12).
9. The electric cabinet adjustment support seat according to claim 2, characterized in that: The valve arranged inside the solenoid valve tube (11) is a solenoid valve, and the solenoid valve is electrically connected to the controller via a wire.
Citation Information
Patent Citations
Big data server equipment convenient to move
CN215735137U