Communication device, server and computer device
By designing an automatically controlled connecting device, and utilizing the state switching of elastic elements and fixing mechanisms, the connecting element can be automatically disconnected from the external interface, solving the problem of inconvenient disconnection in existing devices and improving safety and convenience.
Patent Information
- Application Number
- CN202311235518.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-22
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2043-09-22
AI Technical Summary
The existing connection device requires manual operation to disconnect, which makes disconnection inconvenient.
Design a connecting device, including a connecting element, a movable mechanism, and a fixed mechanism. By switching the states of the elastic element and the fixed mechanism, the connecting element can be automatically disconnected and connected to an external interface. Automatic control is achieved through adsorption components such as magnetic suction elements and demagnetizing structures.
It improves the ease and safety of disconnecting the connection device, and avoids environmental pollution and equipment damage caused by fluid leakage.
Smart Images

Figure CN119690218B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of communication devices, in particular to a communication device, a server and a computer device. BACKGROUND
[0002] In the process of fluid delivery, a delivery pipeline is usually used for delivery. When fluid leakage occurs in the process of delivery, the continuously flowing and leaking fluid in the delivery pipeline pollutes or damages the surrounding environment. A communication device is needed to control the on-off of the delivery pipeline to disconnect the delivery pipeline, so as to avoid continuous leakage of fluid flowing to the leakage of the delivery pipeline. However, the existing communication device usually needs to be manually operated to be disconnected, which causes the problem of inconvenient disconnection of the communication device. SUMMARY
[0003] Therefore, it is necessary to provide a communication device to solve the problem of inconvenient disconnection of the existing communication device.
[0004] The present application provides a communication device comprising a communication member, a moving mechanism and a fixing mechanism. The communication member is used for detachable connection with an external interface. The communication member is movably connected with the mounting mechanism. The communication member can move along a first direction and a direction opposite to the first direction relative to the mounting mechanism. The moving mechanism comprises a first moving member, a second moving member and an elastic member. The first moving member and the second moving member are sequentially distributed along the first direction outside the communication member. The first moving member comprises a first end and a second end. The second moving member comprises a third end and a fourth end. The first end is rotatably connected with the communication member. The second end is rotatably connected with the third end. The fourth end is rotatably connected with the mounting mechanism. The elastic member is arranged between the second moving member and the communication member. The elastic member elastically acts on the second moving member. The fixing mechanism is arranged on the mounting mechanism and located on one side of the moving mechanism in a second direction. The second direction is in the rotation plane of the second moving member and perpendicular to the first direction. The fixing mechanism has a first state of being connected with the second moving member and a second state of being disconnected with the second moving member. When the fixing mechanism is switched from the first state to the second state, the elastic member drives the second moving member to rotate, so that the third end rotates away from the fixing mechanism. The third end drives the first moving member, and the first moving member drives the communication member to move along the first direction. The moving mechanism is stressed, so that the third end rotates towards the fixing mechanism against the elastic force of the elastic member. The third end drives the first moving member to rotate, and the first moving member drives the communication member to move along the direction opposite to the first direction. The fixing mechanism is switched from the second state to the first state.
[0005] When the communication device of the above embodiment needs to be disconnected, the fixing effect of the fixing mechanism on the second movable piece is cancelled, so that the second movable piece rotates in the direction away from the communication piece under the elastic restoring effect of the elastic piece, the first movable piece is driven to rotate by the second movable piece, and then the first end of the first movable piece drives the communication piece to move in the first direction and away from the external interface, so that the automatic disconnection effect of the communication piece and the external interface is realized, thereby improving the convenience of disconnection of the communication device.
[0006] In some embodiments, the fixing mechanism includes an adsorption assembly arranged on the mounting mechanism, and the adsorption assembly is used for adsorbing and fixing the second movable piece.
[0007] In the above embodiment, the adsorption assembly is used to act on the second movable piece in the adsorption mode, and the adsorption effect of the adsorption assembly on the second movable piece is eliminated, so that the automatic disconnection function of the communication device is realized in a simple way.
[0008] In some embodiments, the adsorption assembly includes a first magnetic piece arranged on the mounting mechanism and a demagnetization structure connected with the first magnetic piece, the first magnetic piece is used for adsorbing the second movable piece, and the demagnetization structure is used for demagnetizing the first magnetic piece.
[0009] In the above embodiment, the first magnetic piece is used to magnetically adsorb and fix the second movable piece, and then the magnetic field of the first magnetic piece is eliminated or reduced by the demagnetization structure, so that the adsorption effect of the adsorption assembly on the second movable piece is eliminated in a simple way.
[0010] In some embodiments, the adsorption assembly further includes a second magnetic piece adsorbed by the first magnetic piece, and the second magnetic piece is arranged at the third end of the second movable piece.
[0011] In the above embodiment, the second magnetic piece is arranged to facilitate the first magnetic piece to adsorb the second movable piece through the second magnetic piece, which helps to improve the adsorption effect of the first magnetic piece on the second movable piece, and further improves the stability of the fixing mechanism in fixing the second movable piece.
[0012] In some embodiments, the connection between the first end of the first movable piece and the communication piece is the first connection, the connection between the second end of the first movable piece and the third end of the second movable piece is the second connection, and the connection between the fourth end of the second movable piece and the mounting mechanism is the third connection. When the fixing mechanism is connected with the second movable piece, the fixing mechanism can limit the rotation of the third end of the second movable piece towards the communication piece, and the second connection is located on the side of the straight line passing through the first connection and the third connection in the opposite direction of the first direction.
[0013] In the above embodiment, when the communication member moves in the opposite direction of the second direction under the external force, the second movable member abuts against the mounting mechanism, so as to limit the rotation direction of the second movable member towards the communication member, thereby avoiding the condition that the first movable member drives the communication member to move in the opposite direction of the second direction.
[0014] In some embodiments, the mounting mechanism is provided with a guide structure for guiding the movement of the communication member in the second direction.
[0015] In the above embodiment, the guide structure guides the movement of the communication member, so that the communication member can move in the first direction or in the opposite direction of the first direction, thereby improving the accuracy and stability of the separation or connection of the communication member and the external interface.
[0016] In some embodiments, the mounting mechanism is provided with a guide structure for guiding the movement of the communication member in the second direction.
[0017] In the above embodiment, the two side walls limit the two sides of the communication member, so as to avoid the phenomenon that the communication member easily falls off the mounting mechanism, and the protruding part is movably arranged in the guide groove, so as to achieve the purpose of directional movement of the communication member in the first direction through the protruding part.
[0018] In some embodiments, the first movable member includes two first lugs, and the two first lugs are correspondingly arranged on the two sides of the communication member, the second movable member includes two second lugs, and the two second lugs are correspondingly arranged on the two sides of the communication member; the first lug includes opposite fifth and sixth ends, and the second lug includes opposite seventh and eighth ends; the two first lugs are correspondingly arranged with the two second lugs, the fifth end of the first lug is rotatably connected with the communication member, the sixth end of the first lug is rotatably connected with the seventh end of the corresponding second lug, and the eighth end of the second lug is rotatably connected with the mounting mechanism.
[0019] In the above embodiment, the two first lugs and the two second lugs are used to form multi-point connections between the first movable member and the communication member, between the first movable member and the second movable member, and between the second movable member and the mounting mechanism, so as to avoid the loosening of the connection of the first movable member and the second movable member when they are connected in a single way, and to avoid the problem of movement deviation of the first movable member and the second movable member during rotation.
[0020] The embodiment of the present application also provides a server, which comprises a fluid transmission system, a detection mechanism and the communication device.
[0021] The server of any of the above embodiments adopts the detection mechanism to detect the fluid transmission system, and when the detection mechanism detects that the conveying pipeline leaks, the communication device automatically disconnects the conveying pipeline, thereby closing the conveying pipeline and stopping the fluid transmission system from circulating the cooling medium, and further avoiding the fluid transmission system from continuously leaking and causing the server to be contaminated or damaged, and achieving the effect of improving the safety of the server.
[0022] The embodiment of the present application also provides a computer device, which comprises the server.
[0023] The computer device of any of the above embodiments can work for a long time and stably through the server, and the service life of the computer device is effectively improved. BRIEF DESCRIPTION OF DRAWINGS
[0024] Figure 1 A structural schematic diagram of the communication device in a first state of a fixing mechanism is provided for an embodiment of the present application.
[0025] Figure 2 A structural schematic diagram of the communication device in a second state of the fixing mechanism is provided for an embodiment of the present application.
[0026] Figure 3 A structural exploded schematic diagram of the communication device is provided for an embodiment of the present application.
[0027] Figure 4 A structural schematic diagram of a moving mechanism of the communication device is provided for an embodiment of the present application.
[0028] Figure 5 A structural schematic diagram of a second moving part of the communication device is provided for an embodiment of the present application.
[0029] Figure 6 A structural schematic diagram of a first moving part of the communication device is provided for another embodiment of the present application.
[0030] Figure 7 A structural schematic diagram of the server is provided for an embodiment of the present application.
[0031] Figure 8 A structural schematic diagram of the computer device is provided for an embodiment of the present application.
[0032] MAIN ELEMENT SYMBOL EXPLANATION
[0033] Communication device 101
[0034] External interface 1
[0035] Communication member 2
[0036] Mounting mechanism 3
[0037] Fixing mechanism 4
[0038] Movable mechanism 5
[0039] First movable member 51
[0040] Second movable member 52
[0041] Elastic member 53
[0042] Side wall 31
[0043] First lug 511
[0044] Second lug 521
[0045] Guide structure 6
[0046] Guide groove 61
[0047] Protruding portion 21
[0048] Suction assembly 40
[0049] First magnetic suction member 41
[0050] Second magnetic suction member 42
[0051] Demagnetization structure 43
[0052] Server 102
[0053] Fluid transmission system 103
[0054] Conveying pipeline 1031
[0055] Detection mechanism 104
[0056] First end 5101
[0057] Second end 5102
[0058] Third end 5201
[0059] Fourth end 5202
[0060] Fifth end 5111
[0061] Sixth end 5112
[0062] Seventh end 5211
[0063] Eighth end 5212
[0064] First direction X
[0065] Second direction Z
[0066] First connection 54
[0067] Second connection 55
[0068] Third connection 56
[0069] First connecting portion 512
[0070] Second connecting portion 522 DETAILED DESCRIPTION
[0071] The technical solutions in the embodiments of the present application will be described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments of the present application.
[0072] It should be noted that when one component is considered to be "connected" to another component, it can be directly connected to the other component or can exist simultaneously with a middle component. When one component is considered to be "provided on" another component, it can be directly provided on the other component or can exist simultaneously with a middle component.
[0073] The terms "first", "second", and the like are only used to distinguish different objects, and cannot be understood as indicating or implying relative importance or implying the number, specific order or primary and secondary relationship of the indicated technical features.
[0074] The term "vertical" is used to describe the ideal state between two components. In the actual production or use state, there can be an approximate vertical state between the two components.
[0075] It should be recognized that the size of the structure shown in the drawings is given for better understanding and more convenient description, and the present application is not limited to the size shown in the drawings. In order to make the present application clear, the elements irrelevant to the description are omitted from the details of the specification.
[0076] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used in the specification of the present application is only for the purpose of describing specific embodiments and is not intended to limit the present application.
[0077] The application discloses a communication device, comprising a mounting mechanism, a communication component, a movable mechanism and a fixing mechanism. The communication component is used for detachable connection with an external interface, and the communication component is movably connected with the mounting mechanism and can move along a first direction and a direction opposite to the first direction relative to the mounting mechanism. The movable mechanism comprises a first movable component, a second movable component and an elastic component. Along the first direction, the first movable component and the second movable component are sequentially distributed outside the communication component. The first movable component comprises opposite first and second ends, the second movable component comprises opposite third and fourth ends, the first end is rotationally connected with the communication component, the second end is rotationally connected with the third end, and the fourth end is rotationally connected with the mounting mechanism. The elastic component is arranged between the second movable component and the communication component and elastically acts on the second movable component. The fixing mechanism is arranged on the mounting mechanism and is located on one side of the movable mechanism in a second direction. The second direction is in a rotation plane of the second movable component and is perpendicular to the first direction. The fixing mechanism has a first state of being connected with the second movable component and a second state of being disconnected with the second movable component. When the fixing mechanism is switched from the first state to the second state, the elastic component drives the second movable component to rotate, the third end is rotated in a direction away from the fixing mechanism, the third end drives the first movable component, and the first movable component drives the communication component to move along a direction opposite to the first direction. When the fixing mechanism is switched from the second state to the first state, the movable mechanism is stressed, the third end is rotated towards the fixing mechanism against the elastic force of the elastic component, the third end drives the first movable component to rotate, and the first movable component drives the communication component to move along a direction opposite to the first direction.
[0078] The communication device has the following advantages. When the fixing mechanism needs to switch from the first state to the second state, the fixing mechanism releases the force on the second movable part, so that the third end of the second movable part rotates away from the communication part under the elastic force of the elastic part, the first movable part rotates under the driving of the second movable part, and the first end of the first movable part drives the communication part to move away from the external interface in the first direction, so that the communication part and the external interface are automatically disconnected. After the communication part and the external interface are disconnected, the second end of the first movable part and the third end of the second movable part keep away from the communication part under the elastic reset of the elastic part, so that the first end of the first movable part drives the communication part to keep disconnected with the external interface, thereby avoiding the automatic connection of the communication part and the external interface, and effectively improving the safety and reliability of the communication device. When the fixing mechanism needs to switch from the second state to the first state, the third end of the second movable part or the second end of the first movable part is driven to rotate towards the communication part, so that the first movable part rotates with the second movable part and drives the communication part to move in the opposite direction of the second direction, so that the communication part and the external interface are connected. In addition, the second movable part moves towards the fixing area of the fixing mechanism against the elastic force of the elastic part, is finally connected with the second movable part by the fixing mechanism, and is compressed and stored in the process of rotating the second movable part, so that when the fixing mechanism switches from the first state to the second state, the third end of the second movable part can rotate away from the communication part under the elastic force of the elastic part. The communication device can be quickly switched to the connected state and the disconnected state through the above simple operation mode, and the convenience of the communication device is greatly improved.
[0079] Some embodiments of the present application will be described below with reference to the accompanying drawings. The following embodiments and features in the embodiments can be combined with each other without conflict.
[0080] Please refer to Figures 1 to 3 The communication device 101 provided by the embodiments of the present application comprises a mounting mechanism 3, a communication part 2, a movable mechanism 5 and a fixing mechanism 4.
[0081] The connecting device 101 is used to connect the fluid transport pipeline. By moving the connecting member 2 back and forth on the mounting mechanism 3 along the first direction X, the connecting member 2 can move closer to the external interface 1 and connect with it, or move the connecting member 2 away from the external interface 1 and disconnect it from it, so that the connecting device 101 can be in a disconnected state or a connected state. A movable mechanism 5 is provided on the outer side of the connecting member 2. The movable mechanism 5 includes a first movable member 51, a second movable member 52, and an elastic member 53. The first movable member 51 includes a first end 5101 and a second end 5102, which are opposite each other. The second movable member 52 includes a third end 5201 and a fourth end 5202, which are opposite each other. The first end 5101 is rotatably connected to the connecting member 2, the second end 5102 is rotatably connected to the third end 5201, and the fourth end 5202 is rotatably connected to the mounting mechanism 3, so that the first movable member 51, the second movable member 52, and the connecting member 2 together form a linkage structure on the mounting mechanism 3. When the second movable member 52 rotates on the mounting mechanism 3, the third end 5201 acts on the second end 5102 to drive the first movable member 51 to rotate. The first end 5101 then acts on the connecting member 2 to drive the connecting member 2 to reciprocate along the first direction X. One end of the elastic element 53 acts on the second movable element 52. When the second movable element 52 rotates toward the connecting element 2, the elastic element 53 is compressed and stores energy under the action of the second movable element 52. When the fixing mechanism 4 cancels the action on the second movable element 52, the elastic element 53 resets and releases the stored energy, so that the third end 5201 of the second movable element 52 rotates under the reset action of the elastic element 53, thereby driving the first movable element 51 to drive the connecting element 2 to move along the first direction X, so that the connecting device 101 can have the function of automatic disconnection.
[0082] The first movable member 51 and the second movable member 52 are arranged sequentially along the first direction X, which is conducive to the first movable member 51 and the second movable member 52 fully driving the connecting member 2 to move back and forth along the first direction X within their own length range. This helps to reduce the space occupied by the first movable member 51 and the second movable member 52, making the connecting device 101 smaller in size and more compact in structure.
[0083] In some embodiments, please refer to Figures 1 to 2The fixing mechanism 4 comprises an adsorption assembly 40 arranged on the mounting mechanism 3. When the second movable element 52 is forced to rotate towards the direction of approaching the communicating element 2, the second movable element 52 drives the first movable element 51 to move the communicating element 2 towards the direction of approaching the external interface 1. When the communicating element 2 communicates with the external interface 1, the adsorption assembly 40 applies adsorption force to the second movable element 52, and the fixing mechanism 4 is kept in the first state, so that the second movable element 52 which stops rotating drives the first movable element 51 to stop moving, and the communicating element 2 is kept in communication with the external interface 1 under the driving of the first movable element 51, so that the function of keeping the communicating state of the communicating device 101 is realized in a simple way.
[0084] In other embodiments, the fixing mechanism 4 comprises a buckle assembly. When the second movable element 52 is forced to rotate towards the direction of approaching the communicating element 2, the second movable element 52 is rotated to the working range of the buckle assembly, and finally the working end of the buckle assembly is buckled with the second movable element 52, so that the function of applying force to the second movable element 52 to keep the second movable element 52 fixed can also be realized. The buckle assembly belongs to the prior art and will not be described here.
[0085] In some embodiments, the adsorption assembly 40 comprises a first magnetic adsorption element 41 arranged on the mounting mechanism 3 and a demagnetization structure 43 connected with the first magnetic adsorption element 41. The second movable element 52 is adsorbed by the first magnetic adsorption element 41, so that the second movable element 52 is fixedly connected with the first magnetic adsorption element 41 under the action of magnetic force, so that the fixing mechanism 4 is in the first state, and the function of keeping the communicating element 2 in communication with the external interface 1 is realized.
[0086] For example, the first magnetic element is an electromagnet or a permanent magnet. When the first magnetic adsorption element is a permanent magnet, the first magnetic adsorption element 41 can adsorb the second movable element 52 by the magnetic force generated by itself without providing current to the first magnetic adsorption element 41.
[0087] When the fixing mechanism 4 needs to switch from the second state to the first state, the magnetic field of the first magnetic attraction piece 41 is eliminated or reduced by the demagnetizing structure 43, so as to reduce the attraction force of the first magnetic attraction piece 41 to the second movable piece 52. When the attraction force of the first magnetic attraction piece 41 to the second movable piece 52 is less than the elastic force of the elastic piece 53 to the second movable piece 52, the second movable piece 52 is driven by the elastic piece 53 to rotate away from the communication piece 2, and away from the magnetic field range of the first magnetic attraction piece 41, so that the demagnetizing structure 43 cancels the demagnetizing effect on the first magnetic attraction piece 41. The first magnetic attraction piece 41 cannot directly re-adsorb the second movable piece 52, so as to keep the fixing mechanism 4 in the second state, and keep the second end 5102 and the third end 5201 away from the communication piece 2 under the elastic reset action of the elastic piece 53 itself. The first movable piece 51 keeps the communication piece 2 disconnected with the external interface 1, so as to avoid the automatic connection phenomenon between the communication piece 2 and the external interface 1, and effectively improve the safety and reliability of the communication device 101 in the disconnected state.
[0088] For example, the demagnetizing structure 43 is a demagnetizing coil or a demagnetizing heater arranged on the outer periphery of the first magnetic attraction piece 41. When the eliminating structure is a demagnetizing coil, the magnetic field generated by the demagnetizing coil weakens or even cancels the magnetic field generated by the first magnetic attraction piece 41 by introducing current into the demagnetizing coil, so as to eliminate or reduce the magnetic field of the first magnetic attraction piece 41. When the demagnetizing structure 43 is a demagnetizing heater, the first magnetic attraction piece 41 is heated by the demagnetizing heater. When the first magnetic attraction piece 41 is heated to a certain temperature, the magnetism of the first magnetic attraction piece 41 disappears quickly, so as to achieve the purpose of eliminating or reducing the magnetic field of the first magnetic attraction piece 41.
[0089] In some embodiments, the demagnetizing structure 43 is a demagnetizing coil. By energizing the demagnetizing coil, the demagnetizing coil can not only achieve the effect of demagnetizing the first magnetic attraction piece 41 in a simple way, but also quickly and accurately control the current flowing through the demagnetizing coil, so as to quickly and accurately generate a magnetic field by the demagnetizing coil. Thus, the demagnetizing coil can avoid the adverse effects on the surrounding environment when energized, which helps to improve the safety and stability of the communication device 101.
[0090] In other embodiments, the adsorption assembly 40 comprises a vacuum adsorption assembly 40, and the second movable element 52 is adsorbed and fixed by the vacuum adsorption assembly 40 in a vacuum adsorption manner. When the fixing mechanism 4 is switched from the second state to the first state, the vacuum destruction valve is used to destroy the negative pressure environment between the vacuum adsorption assembly 40 and the second movable element 52, so as to eliminate the adsorption effect of the vacuum adsorption assembly 40 on the second movable element 52, and the fixing mechanism 4 can also achieve the functions of the first state and the second state. The vacuum adsorption assembly 40 belongs to the prior art, and will not be described here.
[0091] In some embodiments, the adsorption assembly 40 further comprises a second magnetic adsorption element 42 for being adsorbed by the first magnetic adsorption element 41. The second magnetic adsorption element 42 comprises a paramagnetic outer layer structure, so that the second magnetic adsorption element 42 is easily attracted by the magnetic force. The first magnetic adsorption element 41 is arranged on the mounting mechanism 3, and the second magnetic adsorption element 42 is arranged on the second movable element 52 corresponding to the first magnetic adsorption element 41. When the second movable element 52 drives the second magnetic adsorption element 42 to approach the adsorption range of the first magnetic adsorption element 41, the first magnetic adsorption element 41 adsorbs the second magnetic adsorption element 42, so that the second magnetic adsorption element 42 drives the second movable element 52 to be connected with the first magnetic adsorption element 41, thereby achieving the purpose of adsorbing and fixing the second movable element 52 by the first magnetic adsorption element 41.
[0092] In other embodiments, the first magnetic adsorption element 41 can also be arranged on the second movable element 52, and the second magnetic adsorption element 42 is arranged on the mounting mechanism 3 corresponding to the first magnetic adsorption element 41. When the second movable element 52 drives the first magnetic adsorption element 41 to approach the second magnetic adsorption element 42, the second magnetic adsorption element 42 is within the adsorption range of the first magnetic adsorption element 41, and under the action of the magnetic force, the first magnetic adsorption element 41 is "attracted" by the second magnetic adsorption element 42 and connected with each other, so that the first magnetic adsorption element 41 drives the second movable element 52 to be connected with the second magnetic adsorption element 42, thereby achieving the effect that the fixing mechanism 4 is in the first state.
[0093] In some embodiments, please refer to Figure 2 and Figure 4 The first end 5101 of the first movable element 51 is connected with the communication element 2 at the first connection position 54, the second end 5102 of the first movable element 51 is connected with the third end 5201 of the second movable element 52 at the second connection position 55, and the fourth end 5202 of the second movable element 52 is connected with the mounting mechanism 3 at the third connection position 56; when the fixing mechanism 4 is in the first state, as shown in Figure 6As shown, the second connecting position 55 is located on the side of the straight line where the first connecting position 54 and the third connecting position 56 are located in the opposite direction of the first direction X, and the second movable piece 52 abuts against the fixing mechanism 4; when the communication piece 2 is moved in the opposite direction of the second direction Z by an external force, the third end 5201 of the second movable piece 52 can only rotate in the direction close to the communication piece 2 under the driving of the communication piece, and since the second movable piece 52 abuts against the fixing mechanism 4, the fixing mechanism 4 limits the direction of the second movable piece 52 rotating close to the communication piece 2, thereby achieving the effect of avoiding the condition that the first movable piece 51 drives the communication piece 2 to move in the opposite direction of the second direction Z under the driving of the second movable piece 52, and further avoiding the problem that the communication piece 2 and the external interface 1 are prone to loose connection, thereby greatly improving the connection stability of the first movable piece 51 and the second connecting piece.
[0094] For example, when the fixing mechanism 4 includes the first magnetic attraction piece 41 arranged on the mounting mechanism 3 and the second magnetic attraction piece 42 arranged on the second movable piece 52 corresponding to the first magnetic attraction piece 41, the second magnetic attraction piece 42 is limited by the first magnetic attraction piece 41, that is, the fixing mechanism 4 can limit the rotation of the third end of the second movable piece 52 in the direction close to the communication piece 2.
[0095] In some embodiments, referring to Figure 3 The mounting mechanism 3 is provided with a guide structure 6 extending along the first direction X, and the guide structure 6 guides the movement of the communication piece 2, so that the communication piece 2 can move along the first direction X or in the opposite direction of the first direction X, thereby helping to improve the accuracy and stability of the separation or connection of the communication piece 2 and the external interface 1.
[0096] In some embodiments, referring to Figure 3The side walls 31 are respectively formed on both sides of the mounting mechanism 3, and the communication member 2 is movably arranged between the two side walls 31 to avoid the communication member 2 from easily falling off the mounting mechanism 3. The guide structure 6 includes guide grooves 61 arranged on the side walls 31, and the side walls 31 extend along the first direction X, so that the guide direction of the guide grooves 61 also extends along the first direction X. The protruding portions 21 are arranged on the communication member 2 corresponding to the guide grooves 61, and the protruding portions 21 are movably arranged in the guide grooves 61. When the protruding portions 21 are moved by the communication member 2, the inner side surface of the guide grooves 61 acts on the protruding portions 21 to enable the protruding portions 21 to move the communication member 2 along the extension direction of the guide grooves 61, and the two protruding portions 21 are respectively limited in the corresponding guide grooves 61 to limit the two sides of the communication member 2, further avoiding the communication member 2 from easily falling off the mounting mechanism 3. It can be understood that, in order to avoid the communication member 2 rotating around the protruding portions 21 as the axis, the direction in which the protruding portions 21 extend outside the communication member 2 is the length direction of the protruding portions 21, and the shape of the cross section of the protruding portions 21 perpendicular to the length direction is non-circular. The inner side surface of the guide grooves 61 rotates the protruding portions 21 to avoid the protruding portions 21 from rotating in the guide grooves 61, so as to ensure that the communication member 2 does not rotate around the protruding portions 21 as the axis when the first movable member 51 rotates and acts on the communication member 2, which helps to improve the stability of the communication member 2 moving along the first direction X by the first movable member 51.
[0097] In other embodiments, the guide structure 6 can also be a guide rail arranged on the mounting mechanism 3, and the communication member 2 is formed with through holes for the guide rail to pass through. The guide rail extends along the first direction X, and the communication member 2 moves along the guide rail through the through holes. The guide structure 6 also has the effect of guiding the movement of the communication member 2.
[0098] In some embodiments, please refer to Figure 5 and Figure 6The first movable piece 51 comprises two first lugs 511, and the two first lugs 511 are correspondingly arranged at two sides of the communicating piece 2. The second movable piece 52 comprises two second lugs 521, and the two second lugs 521 are correspondingly arranged at two sides of the communicating piece 2. The first lug 511 comprises a fifth end 5111 and a sixth end 5112. The second lug 521 comprises a seventh end 5211 and an eighth end 5212. The two first lugs 511 are correspondingly arranged with the two second lugs 521. The fifth end 5111 of the first lug 511 is rotationally connected with the communicating piece 2. The sixth end 5112 of the first lug 511 is rotationally connected with the seventh end 5211 of the corresponding second lug 521. The eighth end 5212 of the second lug 521 is rotationally connected with the mounting mechanism 3. The two first lugs 511 and the two second lugs 521 are arranged to form multi-point connections between the first movable piece 51 and the communicating piece 2, between the first movable piece 51 and the second movable piece 52, and between the second movable piece 52 and the mounting mechanism 3. This can avoid the loosening of the connection between the first movable piece 51 and the second movable piece 52, and can avoid the movement deviation of the first movable piece 51 and the second movable piece 52 during rotation. This can improve the stability of the first movable piece 51 and the second movable piece 52. It can be understood that the inner sides of the two first lugs 511 are arranged in parallel with each other. The two first lugs 511 can uniformly act on the two sides of the communicating piece 2, thereby improving the uniformity and stability of the connection between the first movable piece 51 and the communicating piece 2. Similarly, the inner sides of the two second lugs 521 are arranged in parallel with each other. The two second lugs 521 can be uniformly connected to the two sides of the mounting mechanism 3, thereby improving the uniformity and stability of the connection between the second movable piece 52 and the mounting mechanism 3. The first lug 511 is rotationally connected with the corresponding second lug 521, which can improve the stability of the connection between the second movable piece 52 and the first movable piece 51.
[0099] In some embodiments, referring to Figure 5 and Figure 6 The first movable piece 51 further comprises a first connecting portion 512, and the first connecting portion 512 is used for connecting the two first lugs 511. The second movable piece 52 comprises a second connecting portion 522, and the second connecting portion 522 is used for connecting the two second lugs 521. The first connecting portion 512 is used for connecting the two first lugs 511, and the second connecting portion 522 is used for connecting the two second lugs 521. The two first lugs 511 and the two second lugs 521 can synchronously rotate, which can make the energy transmission between the first movable piece 51 and the communicating piece 2 and between the first movable piece 51 and the second movable piece 52 more uniform, thereby further improving the stability of the first movable piece 51 and the second movable piece 52.
[0100] In other embodiments, when the guide structure 6 comprises the guide groove 61 arranged on the side wall 31, and one of the first lugs 511 is located outside the side wall 31, the end surface of the protruding portion 21 protrudes outside the guide groove 61, and the end surface of the protruding portion 21 can act on the first movable piece 51 to form a gap between the first lug 511 and the mounting mechanism 3; when the first movable piece 51 moves, the first movable piece 51 is limited by the protruding portion 21 to form a gap between the first movable piece 51 and the mounting mechanism 3, so as to avoid the risk of reducing the contact between the first movable piece 51 and the mounting mechanism 3, which can cause the first movable piece 51 to easily rub against the mounting mechanism 3 during the movement and rotation of the first movable piece 51, thereby improving the smoothness of the movement of the first movable piece 51, and making the external interface 1 and the communication member 2 more stable and reliable during disconnection and connection.
[0101] In some embodiments, referring to Figure 3 , the elastic member 53 comprises a plurality of torsion springs, and the two ends of the torsion springs act on the mounting mechanism 3 and the second movable piece 52, respectively. The elastic force of the torsion spring is arc-shaped, so that the second movable piece 52 can stably rotate under the action of the elastic force of the torsion spring; and since the angle between the two ends of the torsion spring gradually decreases when the two ends are compressed, the height of the torsion spring in the second direction Z is greatly reduced, so that when the fixing mechanism 4 is in the second state, the third end 5201 of the second movable piece 52 can further approach the mounting mechanism 3, and the thickness of the communication device 101 is further reduced, and the structure of the communication device 101 is compact.
[0102] In other embodiments, the elastic member 53 further comprises a plurality of springs. In order to make the elastic direction of the spring arc-shaped, the spring is an arc spring, so that the second movable piece 52 can stably rotate under the action of the elastic force of the spring. In order to further reduce the height of the spring, a recess for accommodating the spring is formed on the mounting mechanism 3, and one end of the spring is connected with the bottom of the recess. When the fixing mechanism 4 is in the second state, the second movable piece 52 compresses the spring and accommodates the spring in the recess, so as to avoid the compressed spring protruding between the mounting mechanism 3 and the second movable piece 52, effectively avoiding the spring easily hindering the second movable piece 52, so that the third end 5201 of the second movable piece 52 can further approach the mounting mechanism 3, and the thickness of the communication device 101 is further reduced, and the structure of the communication device 101 is compact.
[0103] Referring to Figure 7Based on the above-mentioned connecting device 101, the application further provides a server 102, comprising a fluid transmission system 103, a detection mechanism 104 and the above-mentioned connecting device 101, the detection mechanism 104 is used for leakage detection of the fluid transmission system 103, the fluid transmission system 103 comprises a conveying pipeline 1031, and the connecting device 101 is connected to the conveying path of the conveying pipeline 1031; the server 102 is transmitted with cooling medium by the fluid transmission system 103, so as to dissipate heat for the server 102, meanwhile, the detection mechanism 104 is used for leakage detection of the fluid transmission system 103, when the detection mechanism 104 detects that the conveying pipeline 1031 leaks, the connecting device 101 automatically disconnects the conveying pipeline 1031, so as to close the conveying pipeline 1031 and make the fluid transmission system 103 stop circulating transmission of the cooling medium, thereby achieving the purpose of avoiding continuous leakage of the fluid transmission system 103 to cause pollution or damage of the server 102, and achieving the effect of improving the safety of the server 102.
[0104] Please refer to Figure 8 Based on the above-mentioned server 102, the application further provides a computer device, comprising the above-mentioned server 102, the server 102 can work for a long time and stably, so as to effectively improve the service life of the computer device.
[0105] In addition, those skilled in the art should understand that the above-mentioned embodiments are only used to illustrate the application, and are not used as a limitation to the application, and any appropriate changes and variations to the above-mentioned embodiments within the essential scope of the application are within the scope of the present application.
Claims
1. A communication device, characterized by: The utility model relates to a kind of installation mechanism, communication piece, active mechanism and fixed mechanism, comprising: Installation mechanism; Communication piece, which is used for detachable connection with the conveying pipeline of the server, is movably connected with the installation mechanism, and can move along the first direction and the direction opposite to the first direction relative to the installation mechanism; Active mechanism, which comprises a first active element, a second active element and an elastic element, the first active element and the second active element are sequentially distributed along the first direction outside the communication piece, the first active element comprises a first end and a second end, the second active element comprises a third end and a fourth end, the first end is rotatably connected with the communication piece, the second end is rotatably connected with the third end, and the fourth end is rotatably connected with the installation mechanism;The elastic element is arranged between the second active element and the communication piece, and the elastic element elastically acts on the second active element; Fixed mechanism, which is arranged on the installation mechanism and located on one side of the active mechanism in the second direction, the second direction is in the rotation plane of the second active element and perpendicular to the first direction, and the fixed mechanism has a first state connected with the second active element and a second state disconnected with the second active element; When the fixed mechanism is switched from the first state to the second state, the elastic element drives the second active element to rotate, so that the third end rotates away from the fixed mechanism, the third end drives the first active element, and the first active element drives the communication piece to move along the first direction;When the active mechanism is stressed, the third end rotates towards the communication piece against the elastic force of the elastic element, the third end drives the first active element to rotate, the first active element drives the communication piece to move in the direction opposite to the first direction, and the fixed mechanism is switched from the second state to the first state; The fixed mechanism comprises an adsorption assembly arranged on the installation mechanism, and the adsorption assembly is used for adsorbing and fixing the second active element; The adsorption assembly comprises a first magnetic adsorption element arranged on the installation mechanism and a demagnetization structure connected with the first magnetic adsorption element, the first magnetic adsorption element is used for adsorbing the second active element, and the demagnetization structure is used for demagnetizing the first magnetic adsorption element; The installation mechanism is provided with a guide structure for guiding the movement of the communication piece in the second direction; One side of the installation mechanism extending in the first direction is formed with a side wall, the guide structure comprises a guide groove arranged on the side wall, the first active element is provided with a protruding portion corresponding to the guide groove, the protruding portion can be movably arranged in the guide groove, and the inner side of the guide groove rotates the protruding portion. The first movable member comprises two first lugs which are correspondingly arranged on two sides of the communication member and connected with the protruding part respectively, and the second movable member comprises two second lugs which are correspondingly arranged on two sides of the communication member; the first lug comprises a fifth end and a sixth end, the second lug comprises a seventh end and an eighth end, the two first lugs are correspondingly arranged with the two second lugs respectively, the fifth end of the first lug is rotationally connected with the communication member, the sixth end of the first lug is rotationally connected with the seventh end of the corresponding second lug, and the eighth end of the second lug is rotationally connected with the mounting mechanism. The elastic member comprises a torsion spring, and two ends of the torsion spring are respectively applied to the mounting mechanism and the second movable member.
2. A communication device according to claim 1, wherein: The adsorption assembly further comprises a second magnetic adsorption member for being adsorbed by the first magnetic adsorption member, and the second magnetic adsorption member is arranged at the third end of the second movable member.
3. A communication device according to claim 1, wherein: The first end of the first movable member is connected with the communication member at a first connection position, the second end of the first movable member is connected with the third end of the second movable member at a second connection position, and the fourth end of the second movable member is connected with the mounting mechanism at a third connection position. When the fixing mechanism is connected with the second movable member, the fixing mechanism can rotationally limit the third end of the second movable member towards the direction of the communication member, and the second connection position is located on the side of the first connection position and the third connection position along the opposite direction of the first direction.
4. A server, characterized by: The server comprises a fluid transmission system, a detection mechanism and the communication device of any one of claims 1 to 3, the detection mechanism is arranged on the mounting mechanism for detecting the leakage of the fluid transmission system, the fluid transmission system comprises a conveying pipeline, and the communication device is connected on the conveying path of the conveying pipeline.
5. A computer device, characterized by: The server comprises the server of claim 4. The server comprises the server of claim 4.
Citation Information
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