Anti-spraying mechanism, liquid cooling pipeline and liquid cooling cabinet
By installing an anti-jet mechanism on the male connector of the liquid-cooled heat dissipation system, the problem of cooling liquid jet damages the equipment by using the design of the barrier and liquid storage chamber is solved, and an effective anti-jet effect is achieved.
Patent Information
- Application Number
- CN202420770617.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-12
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-04-12
AI Technical Summary
In liquid-cooled cooling systems, the sealing structure of the male end joint may fail, causing the coolant to be sprayed out and may sputter onto the equipment inside the cabinet, causing damage.
An anti-jet mechanism is designed, including a support assembly and an anti-jet assembly. The support assembly has a plug-in through hole, and the anti-jet assembly rotates through the barrier and the connector to block or open the plug-in through hole, blocking the ejected liquid and draining it into the reservoir chamber.
Effectively prevent the liquid ejected from the male connector from splashing into the distance, protecting the internal equipment of the cabinet from damage, and at the same time, the structure is simple and the production cost is low.
Smart Images

Figure CN223053311U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of anti - jet mechanisms, and more specifically, to an anti - jet mechanism. In addition, the utility model also relates to a liquid - cooling pipeline including the above - mentioned anti - jet mechanism. Furthermore, the utility model also relates to a liquid - cooling cabinet including the above - mentioned liquid - cooling pipeline. Background Art
[0002] A cabinet is an independent or self - supporting housing structure for accommodating electrical or electronic equipment. A cabinet is generally configured with a door, detachable or non - detachable side panels and a back panel. With the development of technology, the performance of the equipment in the cabinet has been gradually improved, and the accompanying problem is the continuous increase in power consumption. Therefore, a heat - dissipation mechanism is usually provided on the cabinet.
[0003] A relatively efficient way to dissipate heat from the equipment in the cabinet is liquid - cooling heat dissipation, that is, a corresponding liquid - cooling pipeline and a liquid - cooling terminal communicated with the liquid - cooling pipeline are arranged in the cabinet. A power pump is used to input coolant into the liquid - cooling terminal through one pipeline of the liquid - cooling pipeline. The coolant in the liquid - cooling terminal can exchange heat with the equipment in the cabinet, and the heat - exchanged coolant flows out of the liquid - cooling terminal and is discharged through another pipeline of the liquid - cooling pipeline, so as to realize the cooling of the equipment in the cabinet.
[0004] Furthermore, when there are many equipment in the cabinet, in order to enhance the effect of liquid - cooling heat dissipation, a main pipeline and multiple branch pipelines are often set. Each branch pipeline is communicated with the main pipeline, and each branch pipeline is also connected with a corresponding liquid - cooling terminal. The coolant charged into the main pipeline by the cooling pump will flow into the interior of each liquid - cooling terminal through each branch pipeline.
[0005] A male end joint is arranged on the main pipeline, and a female end joint is arranged on the branch pipeline. The female end joint at the end of each branch pipeline is inserted into the corresponding male end joint on the main pipeline, so that each branch pipeline can be conductively connected to the main pipeline. However, during the use of the heat - dissipation mechanism, impurities will inevitably appear inside it. When the impurities flow along the liquid - cooling pipeline, they may adhere to the sealing structure inside the male end joint, causing the sealing structure of the male end joint to fail. When the liquid - cooling pipeline is being repaired, after the female end joint is pulled out from the male end joint, the coolant in the main pipeline will be ejected through the male end joint, and the ejected coolant is very likely to splash on the equipment inside the cabinet, thus having an adverse impact on the equipment, causing it to be damaged or scrapped, etc. Summary of the Utility Model
[0006] In view of this, the purpose of the present utility model is to provide an anti - jet mechanism, which can effectively prevent the liquid ejected from the male end joint from splashing far away and damaging the equipment inside the cabinet.
[0007] Another object of the present utility model is to provide a liquid cooling pipeline including the above anti - jetting mechanism.
[0008] Still another object of the present utility model is to provide a liquid cooling cabinet including the above liquid cooling pipeline.
[0009] In order to achieve the above objects, the present utility model provides the following technical solutions:
[0010] An anti - jetting mechanism includes:
[0011] A support assembly, including a support base, the middle of the support base having an insertion through - hole for inserting a male end connector;
[0012] An anti - jetting assembly, disposed on the support assembly, including a blocking member and a connecting member, the blocking member being rotatably disposed on the top of the support base through the connecting member to open or block the male end connector inserted in the insertion through - hole.
[0013] In a possible implementation manner, the rotation central axis of the blocking member is perpendicular to the extension direction of the insertion through - hole, and the straight line where the rotation central axis of the blocking member is located does not intersect the extension path of the insertion through - hole;
[0014] The support base has a liquid storage cavity on the side of the insertion through - hole, and the circumferential surface of the blocking member has a guiding portion for guiding the liquid shooting at the blocking member into the liquid storage cavity.
[0015] In a possible implementation manner, the support assembly further includes a water guiding member and a water collecting member, the first end of the water guiding member being conductively connected to the liquid storage cavity, and the second end being conductively connected to the inner cavity of the water collecting member.
[0016] In a possible implementation manner, both the water guiding member and the water collecting member are of tubular structures;
[0017] The water collecting member is located on the side of the support base;
[0018] The water guiding member is of an L - shaped structure, and one end of the water guiding member is conductively connected to the bottom side of the liquid storage cavity, and the other end of the water guiding member is conductively connected to the top of the water collecting member.
[0019] In a possible implementation manner, the liquid storage cavity is an annular groove, the blocking member has a blocking portion, and the guiding portion is wound around the circumferential surface of the blocking portion to form an annular structure;
[0020] When the blocking member moves close to the insertion through - hole to a preset position, the blocking portion blocks the entire opening of the male end connector, and the guiding portion is embedded in the liquid storage cavity.
[0021] In a possible implementation manner, the support base includes a base, a top cover and a movable member;
[0022] The top cover is disposed on the top of the base, the liquid storage cavity is the cavity formed by the base and the top cover, and the insertion through hole penetrates through the base, the liquid storage cavity and the top cover;
[0023] The movable member is disposed around the inner peripheral surface of the top cover. The movable member can extend out or retract into the insertion through hole to sealingly cooperate with the male end joint inserted into the insertion through hole or sealingly cooperate with the blocking member inserted into the liquid storage cavity. And the inner peripheral surface of the movable member has a dynamic sealing structure so that the guiding portion can be inserted into or pulled out of the liquid storage cavity.
[0024] In a possible implementation manner, a reset member is disposed between the blocking member and the support seat to assist the blocking member in resetting.
[0025] In a possible implementation manner, the side wall of the liquid storage cavity has a first clamping portion, and the peripheral surface of the guiding portion has a second clamping portion that cooperates with the first clamping portion so that the guiding portion abuts against the support seat.
[0026] A liquid cooling pipeline, characterized by comprising a water inlet pipe, a water outlet pipe and the anti-spraying mechanism provided in any one of the above;
[0027] The main pipelines of the water inlet pipe and the water outlet pipe are both provided with male end joints and the anti-spraying mechanism, and the male end joints are inserted into the insertion through holes corresponding to the anti-spraying mechanism.
[0028] A liquid cooling cabinet includes the above liquid cooling pipeline.
[0029] For the anti-spraying mechanism provided by the present utility model, the support assembly is used for installing and supporting the anti-spraying assembly, etc. A plugging through hole is provided in the central part of the support seat in the vertical direction; correspondingly, the blocking member is rotatably disposed on the support seat through a connecting member, and the rotation central axis of the blocking member can be parallel to or perpendicular to the plugging through hole. And after the blocking member rotates in place towards the direction close to the plugging through hole, the blocking member faces the plugging through hole, and then the liquid ejected by the male end joint can be blocked by the blocking member so that it will not splash far away. And after the blocking member rotates in place towards the direction away from the plugging through hole, the plugging through hole can be completely exposed so that the female end joint can be conductively connected to the male end joint inserted into the plugging through hole.
[0030] After the anti-spray mechanism is arranged on the circumferential surface of the male end joint, the free end of the male end joint passes through the insertion through-hole and extends outside, while the middle shaft section of the male end joint is inserted into the insertion through-hole. During use, the blocking member flips forward to approach the insertion through-hole, that is, to approach the male end joint inserted into the insertion through-hole, so as to close the opening of the male end joint. At this time, the blocking member faces the opening of the male end joint, and the liquid ejected from the male end joint will be sprayed on the blocking member. On the contrary, the blocking member flips backward to move away from the insertion through-hole, that is, to move away from the male end joint inserted into the insertion through-hole, so as to open the opening of the male end joint, and then the female end joint and the male end joint can be inserted and connected.
[0031] In summary, after the anti-spray mechanism is arranged on the circumferential surface corresponding to the male end joint, it can not only block the opening of the male end joint so that the ejected liquid can be blocked, but also move away from the male end joint to expose it to facilitate the insertion and connection between the male end joint and the female end joint. Moreover, the structure is simple and the production cost is relatively low. BRIEF DESCRIPTION OF THE DRAWINGS
[0032] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only the embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained according to the provided drawings without creative efforts.
[0033] Figure 1 The first structural schematic diagram of the specific embodiment provided by the present invention;
[0034] Figure 2 The second structural schematic diagram of the specific embodiment provided by the present invention;
[0035] Figure 3 The third structural schematic diagram of the specific embodiment provided by the present invention;
[0036] Figure 4 The first usage schematic diagram of the specific embodiment provided by the present invention;
[0037] Figure 5 The fourth structural schematic diagram of the specific embodiment provided by the present invention;
[0038] Figure 6 The second usage schematic diagram of the specific embodiment provided by the present invention.
[0039] Reference numerals:
[0040] 1 - Support component; 11 - Support base; 111 - Insertion through - hole; 112 - Liquid storage cavity; 113 - Base; 114 - Top cover; 115 - Movable part; 12 - Water - guiding part; 13 - Water - collecting part;
[0041] 2 - Anti - spraying component; 21 - Blocking part; 22 - Connecting part;
[0042] 3 - Anti - spraying mechanism; 4 - Male end joint; 5 - Inlet pipe; 6 - Outlet pipe. Specific embodiments
[0043] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0044] An embodiment of the present invention provides an anti - spraying mechanism, which can effectively prevent the liquid ejected from the male end joint from splashing far away and damaging the equipment inside the cabinet. Another embodiment of the present invention is to provide a liquid - cooling pipeline including the above - mentioned anti - spraying mechanism. An embodiment of the present invention is to provide a liquid - cooling cabinet including the above - mentioned liquid - cooling pipeline.
[0045] Please refer to Figure 1 , the present invention provides an anti - spraying mechanism. The support component 1 includes a support base 11. The middle part of the support base 11 has an insertion through - hole 111 for inserting the male end joint 4. The anti - spraying component 2 is arranged on the support component 1 and includes a blocking part 21 and a connecting part 22. The blocking part 21 is rotatably arranged on the top of the support base 11 through the connecting part 22 to open or block the male end joint 4 inserted in the insertion through - hole 111.
[0046] The support component 1 is used for installing and supporting the anti - spraying component 2, etc. As Figure 1 , Figure 2 and Figure 5 shown, an insertion through - hole 111 is opened in the central part of the support base 11 along the vertical direction. It should be noted that the type of the insertion through - hole 111 is not limited, as long as it can insert the corresponding type of male end joint 4.
[0047] The blocking member 21 is rotatably arranged on the support base 11 through the connecting member 22. The connecting member 22 can be a pin inserted on the support base 11, a damping shaft inserted on the support base 11, or opposite short protrusions on the support base 11, etc. The rotation central axis of the blocking member 21 can be parallel to or perpendicular to the insertion through-hole 111. After the blocking member 21 rotates in place towards the direction close to the insertion through-hole 111, the blocking member 21 faces the insertion through-hole 111, so that the liquid ejected from the male end connector 4 can be blocked by the blocking member 21 and will not splash far away. After the blocking member 21 rotates in place towards the direction away from the insertion through-hole 111, the insertion through-hole 111 can be completely exposed, so that the female end connector can be conductively connected to the male end connector 4 inserted in the insertion through-hole 111.
[0048] After the anti-spray mechanism is arranged on the circumferential surface of the male end connector 4, as Figure 4 and Figure 6 shown, the free end of the male end connector 4 passes through the insertion through-hole 111 and extends outside, while the middle shaft section of the male end connector 4 is inserted in the insertion through-hole 111. During use, with Figures 1 to 6 the orientation as a reference, the blocking member 21 can be flipped forward from left to right to approach the insertion through-hole 111, that is, approach the male end connector 4 inserted in the insertion through-hole 111, so as to close the opening of the male end connector 4. At this time, the central structure of the blocking member 21 faces the opening of the male end connector 4, and the liquid ejected from the male end connector 4 will be sprayed on the blocking member 21. Under the action of the guiding portion, the liquid is guided into the liquid storage cavity 112. On the contrary, the blocking member 21 is flipped backward from right to left to move away from the insertion through-hole 111, that is, move away from the male end connector 4 inserted in the insertion through-hole 111, so as to open the opening of the male end connector 4, and then the female end connector can be inserted and connected to the male end connector 4.
[0049] In summary, after the anti-spray mechanism is arranged on the circumferential surface corresponding to the male end connector 4, it can not only block the opening of the male end connector 4 so that the ejected liquid is blocked, but also move away from the male end connector 4 to expose it to facilitate the insertion connection between the male end connector 4 and the female end connector, and has a simple structure and low production cost.
[0050] On the basis of the above embodiments, the rotation central axis of the blocking member 21 is perpendicular to the extension direction of the insertion through-hole 111, and the straight line where the rotation central axis of the blocking member 21 is located does not intersect with the extension path of the insertion through-hole 111; the support base 11 has a liquid storage cavity 112 on the side of the insertion through-hole 111, and the circumferential surface of the blocking member 21 has a guiding portion for guiding the liquid shooting at the blocking member 21 into the liquid storage cavity 112. It should be noted that the extension path of the insertion through-hole 111 can be understood as the hole cavity area and its extended area along the hole depth direction. Taking a cylindrical hole as an example, the area surrounded by the extension of the cylindrical hole wall in the axial direction.
[0051] As Figure 1 , Figure 2 and Figure 5 shown, the insertion through-hole 111 extends in the vertical direction, the blocking member 21 is arranged around the connecting member 22 extending in the horizontal direction, and the insertion through-hole 111 and the blocking member 21 are staggeredly distributed, that is, the straight line where the rotation center axis of the blocking member 21 is located does not intersect with the insertion through-hole 111. Then, the blocking member 21 can be flipped around the direction perpendicular to the insertion through-hole 111 to approach or move away from the insertion through-hole. Correspondingly, a groove is formed on the upper surface or inside of the support base 11 as the liquid storage cavity 112, and the liquid storage cavity 112 is located on the side of the above-mentioned insertion through-hole 111. The liquid storage cavity 112 can be an annular or fan-shaped structure with a notch, etc. In this embodiment, the blocking member 21 blocks the liquid from splashing far away through its central structure, and the guiding portion on its peripheral surface is used to drain the blocked liquid, and then the liquid ejected from the male connector 4 can be stored through the liquid storage cavity 112.
[0052] It should be noted that the type of the guiding portion is not limited. For example, a solid annular edge structure is adopted. At this time, the blocking member 21 is a bottle cap structure. When in use, the liquid will splash into the chamber surrounded by the edge structure, and the inner wall of the edge structure is used to guide the flow of the liquid. Or, a hollow annular edge structure is adopted. When in use, the liquid will splash into the inner cavity of the edge structure, and the inner cavity wall of the edge structure is used to guide the flow of the liquid. As long as the guiding of the liquid can be realized.
[0053] It should be noted that the type of the support base 11 is not limited as long as the above functional requirements are met. In a possible implementation manner, the support base 11 includes a first support portion provided with a liquid storage cavity 112 and an insertion through-hole 111, and a second support portion provided with a connecting member 22 and a blocking member 21. The first support portion adopts a plate-like structure, and the second support portion includes two parallel special-shaped plate-like structures. The part of the blocking member 21 connected to the connecting member 22 is located between the two special-shaped plate-like structures, and the included angle between the first support portion and the second support portion is 90 degrees. Such a setting is convenient for manufacturing, has a low cost, and the rotation stability of the blocking member 21 is relatively high.
[0054] On the basis of the above embodiment, the support assembly 1 further includes a water guiding member 12 and a water collecting member 13. The first end of the water guiding member 12 is conductively connected to the liquid storage cavity 112, and the second end is conductively connected to the inner cavity of the water collecting member 13. For example, the first end of the water guiding member 12 is conductively connected to the liquid storage cavity 112 through the notch of the annular liquid storage cavity 112.
[0055] As Figure 1 , Figure 2 and Figure 5As shown in the figure, a water guiding member 12 is arranged on the supporting seat 11. The water guiding member 12 can adopt a water pipe or a hollow box structure, etc. One side of the water guiding member 12 is conductively connected to the liquid storage cavity 112, so that the liquid collected in the liquid storage cavity 112 can flow out through the water guiding member 12. The other side of the water guiding member 12 is conductively connected to a water collecting member 13. The water collecting member 13 can adopt a structure such as a water bucket, a water tank or a water pipe, etc., so that the liquid can be collected and stored through the water collecting member 13. With such a setting, the water outlet capacity of the anti-spray structure is effectively improved.
[0056] On the basis of the above embodiment, the water collecting member 13 has a plurality of connection terminals for conductively connecting the corresponding water guiding member 12. The connection terminals can adopt valve heads or water pipe connectors, etc., for plugging into the water guiding member 12. With such a setting, the water collecting member 13 can collect the liquid splashed out by each male terminal joint 4, which is beneficial to simplifying the anti-splash mechanism and reducing its occupied space.
[0057] In a possible implementation manner, the connection terminals are arranged in an array on the water collecting member 13. Optionally, the water collecting member 13 adopts a water tank, and a plurality of connection terminals are arranged on one side surface of the water tank in a 4×4 rectangular array or a circular array, etc. Optionally, the water collecting member 13 adopts a water pipe, and a plurality of connection terminals are arranged along the length direction of the water pipe, and the connection terminals are collinear, or the connection terminals are arranged in two rows, each row is collinear or arranged along a spiral line, etc. With such a setting, it is convenient to position and install the connection terminals. Of course, the arrangement manner of the connection terminals is not limited to the above example types, as long as the above functional requirements are met.
[0058] On the basis of the above embodiment, both the water guiding member 12 and the water collecting member 13 are tubular structures; the water collecting member 13 is located on the side of the supporting seat 11, the water guiding member 12 is an L-shaped structure, one end of the water guiding member 12 is conductively connected to the liquid storage cavity 112, and the other end of the water guiding member 12 is conductively connected to the water collecting member 13.
[0059] As Figure 4 and Figure 6 shown, both the water collecting member 13 and the water guiding member 12 adopt tubular structures, and the water collecting member 13 is located on the side of the supporting seat 11. The water collecting member 13 and the supporting seat 11 can be arranged side by side or in a stepped manner. The water guiding member 12 adopts an L-shaped structure, and the water guiding member 12 is buckled on the top of the supporting seat 11. It is achievable that one end of the water guiding member 12 extends downward and vertically plugs into the cavity wall of the liquid storage cavity 112, and the other end of the water guiding member 12 extends horizontally to insert into the water collecting member 13. With such a setting, the anti-spray structure has a reasonable layout and a simple structure, which is not only convenient for manufacturing but also beneficial to reducing costs.
[0060] In a possible implementation manner, one end of the water guiding member 12 is conductively connected to the side bottom of the liquid storage cavity 112, and the other end of the water guiding member 12 is conductively connected to the top of the water collecting member 13, so as to Figures 1 to 6Taking the orientation of [reference] as a reference, one end of the water guide member 12 extends downward and is vertically inserted into the water collecting member 13, and the other end of the water guide member 12 extends horizontally to be inserted into the bottom end of the cavity wall of the liquid storage cavity 112. Optionally, such a setting is conducive to discharging all the liquid in the liquid storage cavity 112 into the water collecting member 13.
[0061] On the basis of the above embodiment, the liquid storage cavity 112 is an annular groove, the blocking member 21 has a blocking portion, and the guiding portion is wound around the circumferential surface of the blocking portion to form an annular structure; when the blocking member 21 moves close to the insertion through hole 111 to a preset position, the blocking portion blocks the entire opening of the male end joint 4, and the guiding portion is embedded in the liquid storage cavity 112.
[0062] As Figure 1 、 Figure 2 and Figure 5 As shown in [figures], the liquid storage cavity 112 adopts an annular groove around the entire circumference of the insertion through hole 111. Correspondingly, in the blocking member 21, the blocking portion at the central position is circular or rectangular, etc., and there is a guiding portion around its entire circumferential surface. During use, the blocking member 21 is flipped forward to close the opening of the male end joint 4. At this time, the blocking portion at the central position of the blocking member 21 faces the opening of the male end joint 4, the guiding portion is located between the blocking portion and the circumferential surface of the male end joint 4, and the lower end of the guiding portion extends into the interior of the liquid storage cavity 112 and is fitted with the side wall of the liquid storage cavity 112. Then the liquid ejected from the male end joint 4 will be sprayed on the lower surface of the blocking portion, and then the liquid directly drops from the blocking portion or flows along the guiding portion and finally flows into the liquid storage cavity 112.
[0063] On the basis of the above embodiment, the support base 11 includes a base 113, a top cover 114 and a movable member 115; the top cover 114 covers the top of the base 113, the liquid storage cavity 112 is a cavity formed by the base 113 and the top cover 114, and the insertion through hole 111 penetrates through the base 113, the liquid storage cavity 112 and the top cover 114; the movable member 115 is arranged around the inner circumferential surface of the top cover 114, and the movable member 115 can extend or retract into the insertion through hole 111 to be in sealing cooperation with the male end joint 4 inserted into the insertion through hole 111 or with the blocking member 21 inserted into the liquid storage cavity 112, and the inner circumferential surface of the movable member 115 has a dynamic sealing structure so that the guiding portion can be inserted into or pulled out of the liquid storage cavity 112.
[0064] In this embodiment, the liquid storage cavity 112 is a groove opened inside the support base 11. Specifically, as Figure 3As shown, the base 113 is a groove-shaped structure, the liquid storage chamber 112 is a groove opened above the base 113, and the structure located above the liquid storage chamber 112 is the top cover 114, which is used to prevent the liquid from flowing out from above the liquid storage chamber 112. The base 113 and the top cover 114 can be an integral structure or a threaded connection structure, etc. Through holes are opened on the base 113 and the top cover 114 as the insertion through holes 111. Correspondingly, an annular movable member 115 is provided on the inner peripheral surface of the top cover 114, and the inner peripheral surface of the movable member 115 has a dynamic sealing structure. When the movable member 115 is in a natural state, the movable member 115 is in sealing cooperation with the outer peripheral surface of the male end joint 4 inserted in the insertion through hole 111 through the dynamic sealing structure. During the process of the blocking member 21 rotating forward to the in-place position, the movable member 115 is squeezed to deform or the movable member 115 is pushed to rotate, etc., so that the movable member 115 gives way to the blocking member 21, and the blocking member 21 passes through the through hole in the middle of the movable member 115 and inserts into the liquid storage chamber 112. At this time, the movable member 115 is in a compressed state, and the dynamic sealing structure on the inner peripheral surface of the movable member 115 is in sealing cooperation with the outer peripheral surface of the blocking member 21. Then this anti-spray mechanism can be used horizontally or vertically.
[0065] Optionally, the movable member 115 is made of a rubber ring, and the outer periphery of the movable member 115 is fixedly connected to the top cover 114. Optionally, the movable member 115 is made of a plastic ring formed by splicing multiple segments. A dynamic sealing ring is provided on the inner peripheral surface of the movable member 115, and the outer periphery of the movable member 115 is rotatably connected to the top cover 114. Of course, the movable member 115 is not limited to the above types, as long as the above functions can be achieved.
[0066] On the basis of the above embodiment, a reset member is provided between the blocking member 21 and the support base 11 to assist the blocking member 21 to reset.
[0067] As Figures 1 to 6 shown, a reset member is provided on the support base 11. During use, when the reset member rotates in reverse to open the opening of the male end joint 4, under the action of the restoring force such as the resilience or suction force generated by the reset member, it helps the blocking member 21 to reset.
[0068] Optionally, as Figures 1 to 4 shown, the reset member is a linear spring, and one end of the reset member is movably connected to the support base 11 and the other end is movably connected to the side surface of the blocking member 21. Optionally, the reset member is a torsion spring. As Figure 5 and Figure 6 shown, a reset member is sleeved outside the pin shaft for rotatably connecting the blocking member 21 on the support base 11, and one end of the reset member is connected to the blocking member 21 and the other end is connected to the support base 11. Optionally, as Figures 1 to 6Taking the orientation of [orientation not specified in the original] as a reference, the reset member includes a positive magnet and a negative magnet. The insertion through hole 111 is located on the right side of the support base 11, while the positive magnet is installed on the left side of the support base 11, and the negative magnet is installed on the left side of the blocking member 21. Of course, the reset member is not limited to the above-exemplified type, as long as it can meet the requirements of the above functions.
[0069] Based on the above embodiment, the side wall of the liquid storage cavity 112 has a first clamping portion, and the peripheral surface of the guiding portion has a second clamping portion that cooperates with the first clamping portion to enable the guiding portion to abut against the support base 11. In this embodiment, the first clamping portion and the second clamping portion adopt a matching card slot and a clamping protrusion. With the cooperation of the first clamping portion and the second clamping portion, it is beneficial to position the blocking member 21 and to keep the opening of the closed male connector 4 in this state. Such a setting is beneficial to ensuring the realization of the function of the anti-spray mechanism to prevent the joint from splashing liquid.
[0070] In addition to the above anti-spray mechanism, the present invention also provides a liquid cooling pipeline including the anti-spray mechanism disclosed in the above embodiment. The liquid cooling pipeline further includes a water inlet pipe 5 and a water outlet pipe 6. Specifically, the main pipelines of the water inlet pipe 5 and the water outlet pipe 6 are both provided with a male connector 4 and an anti-spray mechanism 3. The male connector 4 is inserted into the insertion through hole 111 of the corresponding anti-spray mechanism 3, as Figure 4 and Figure 6 shown. The anti-spray mechanism 3 is provided at the preset positions of the water inlet pipe 5 and the water outlet pipe 6, and is used to close or open the opening of the corresponding male connector 4.
[0071] In a possible implementation manner, the water collecting member 13 is a tubular structure, and the main pipeline of the water inlet pipe 5, the water collecting member 13, and the main pipeline of the water outlet pipe 6 are adjacent and parallel to each other in sequence, and the water guiding members 12 of each anti-spray mechanism 3 are all connected to the water collecting member 13, as Figure 4 and Figure 6 shown. The water collecting member 13, the water inlet pipe 5, and the water outlet pipe 6 are arranged in parallel, and the water collecting pipe is located between the water inlet pipe 5 and the water outlet pipe 6. Such a setting makes the structure of the liquid cooling pipeline compact.
[0072] In addition to the above liquid cooling pipeline, the present invention also provides a liquid cooling cabinet including the liquid cooling pipeline disclosed in the above embodiment. For the structures of other parts of the liquid cooling cabinet, please refer to the prior art and will not be elaborated herein.
[0073] It should be noted that the relational terms such as "first" and "second" mentioned above are only used to distinguish one entity from several other entities, and do not necessarily require or imply any such actual relationship or order between these entities; the "upper surface, lower surface, top, bottom" and the orientation terms "up, down, left, right" mentioned above are all defined based on the drawings of the specification.
[0074] In the present specification, the various embodiments are described in a progressive manner. Each embodiment focuses on the differences from other embodiments. For the same or similar parts among the various embodiments, reference can be made to each other.
[0075] The above has introduced in detail the anti-spray mechanism, liquid cooling pipeline and liquid cooling cabinet provided by the present utility model. Specific examples are used in this article to elaborate on the principle and implementation manner of the present utility model. The description of the above embodiments is only used to help understand the method and its core idea of the present utility model. It should be noted that for those of ordinary skill in the art in this technical field, without departing from the principle of the present utility model, several improvements and modifications can still be made to the present utility model, and these improvements and modifications also fall within the protection scope of the present utility model.
Claims
1. An anti-ejection mechanism, characterized in that: include: A support assembly (1) comprises a support seat (11), wherein the middle portion of the support seat (11) has an insertion through hole (111) for inserting a male end connector (4); An anti-spray assembly (2) is arranged on the support assembly (1), comprising a blocking member (21) and a connecting member (22), wherein the blocking member (21) is rotatably arranged on the top of the support seat (11) through the connecting member (22) to open or cover the male end connector (4) inserted in the plug-in through hole (111).
2. The anti-ejection mechanism according to claim 1, characterized in that: The rotation center axis of the blocking member (21) is perpendicular to the extension direction of the plug-in through hole (111), and the straight line where the rotation center axis of the blocking member (21) is located does not intersect with the extension path of the plug-in through hole (111); The support seat (11) has a liquid storage cavity (112) on the side of the plug-in through hole (111), and the peripheral surface of the blocking member (21) has a guide portion for guiding the liquid ejected toward the blocking member (21) into the liquid storage cavity (112).
3. The anti-ejection mechanism according to claim 2, characterized in that: The support assembly (1) further comprises a water guide member (12) and a water collecting member (13), wherein a first end of the water guide member (12) is conductively connected to the liquid storage chamber (112), and a second end of the water guide member (12) is conductively connected to the inner chamber of the water collecting member (13).
4. The anti-ejection mechanism according to claim 3, characterized in that: The water guide member (12) and the water collecting member (13) are both tubular structures; The water collecting member (13) is located on the side of the supporting seat (11); The water guide member (12) is an L-shaped structure, and one end of the water guide member (12) is conductively connected to the bottom of the side of the liquid storage chamber (112), and the other end of the water guide member (12) is conductively connected to the top of the water collecting member (13).
5. The anti-ejection mechanism according to any one of claims 2 to 4, characterized in that: The liquid storage cavity (112) is an annular groove, the blocking member (21) has a blocking portion, and the guiding portion is arranged around the circumference of the blocking portion to form an annular structure; When the blocking member (21) moves to a preset position close to the plug-in through hole (111), the blocking portion blocks the entire opening of the male end connector (4), and the guiding portion is embedded in the liquid storage cavity (112).
6. The anti-ejection mechanism according to claim 5, characterized in that: The support base (11) comprises a base (113), a top cover (114) and a movable part (115); The top cover (114) is disposed on the top of the base (113); the liquid storage cavity (112) is a cavity surrounded by the base (113) and the top cover (114); and the plug-in through hole (111) penetrates the base (113), the liquid storage cavity (112) and the top cover (114); The movable part (115) is arranged around the inner circumference of the top cover (114), and the movable part (115) can be extended or retracted into the plug-in through hole (111) to seal with the male end connector (4) inserted in the plug-in through hole (111) or to seal with the blocking part (21) inserted in the liquid storage chamber (112), and the inner circumference of the movable part (115) has a dynamic sealing structure so that the guide part can be inserted into or pulled out of the liquid storage chamber (112).
7. The anti-ejection mechanism according to any one of claims 1 to 4, characterized in that: A resetting member is provided between the blocking member (21) and the supporting seat (11) to assist the blocking member (21) in resetting.
8. The anti-ejection mechanism according to any one of claims 2 to 4, characterized in that: The side wall of the liquid storage cavity (112) has a first clamping portion, and the peripheral surface of the guide portion has a second clamping portion that cooperates with the first clamping portion, so that the guide portion abuts against the support seat (11).
9. A liquid cooling pipeline, characterized in that: It comprises a water inlet pipe (5), a water outlet pipe (6) and the anti-spraying mechanism (3) according to any one of claims 1 to 8; The main line of the water inlet pipe (5) and the main line of the water outlet pipe (6) are both provided with a male end connector (4) and the anti-jet mechanism (3), and the male end connector (4) is inserted into the insertion through hole (111) corresponding to the anti-jet mechanism (3).
10. A liquid cooling cabinet, characterized in that: Comprising the liquid cooling circuit as claimed in claim 9.