CN112000184B - Big data analysis storage facilities - Google Patents
Big data analysis storage facilities Download PDFInfo
- Publication number
- CN112000184B CN112000184B CN202010822166.7A CN202010822166A CN112000184B CN 112000184 B CN112000184 B CN 112000184B CN 202010822166 A CN202010822166 A CN 202010822166A CN 112000184 B CN112000184 B CN 112000184B
- Authority
- CN
- China
- Prior art keywords
- outer shell
- fixed seat
- memory alloy
- shaped
- cavity
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Active
Links
Images
Classifications
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F1/00—Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
- G06F1/16—Constructional details or arrangements
- G06F1/18—Packaging or power distribution
- G06F1/181—Enclosures
- G06F1/182—Enclosures with special features, e.g. for use in industrial environments; grounding or shielding against radio frequency interference [RFI] or electromagnetical interference [EMI]
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F1/00—Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
- G06F1/16—Constructional details or arrangements
- G06F1/20—Cooling means
Landscapes
- Engineering & Computer Science (AREA)
- Theoretical Computer Science (AREA)
- Physics & Mathematics (AREA)
- Human Computer Interaction (AREA)
- General Engineering & Computer Science (AREA)
- General Physics & Mathematics (AREA)
- Electromagnetism (AREA)
- Computer Hardware Design (AREA)
- Power Engineering (AREA)
- Cooling Or The Like Of Electrical Apparatus (AREA)
Abstract
The invention discloses big data analysis storage equipment which comprises a main body mechanism and an automatic heat dissipation mechanism, wherein the main body comprises a first outer shell, a first fixed seat, a second fixed seat and an electronic element, the first fixed seat and the second fixed seat are respectively arranged at the middle positions of the top end and the bottom end of the first outer shell, air holes I are uniformly formed in the side wall of the first outer shell on two sides of the first fixed seat, and the electronic element is clamped in the first outer shell between the first fixed seat and the second fixed seat. When the electronic element does not work, the air holes II on the sliding plate and the air holes I on the outer shell I are mutually staggered, the inner part of the outer shell I is sealed to prevent dust from entering, when the electronic element works to generate heat, the inner temperature of the outer shell I rises, and further the spiral memory alloy II expands, the expansion and extension of the spiral memory alloy II push the sliding plate to move, so that the air holes II of the sliding plate are superposed with the air holes I, and at the moment, the heat can be radiated from the air holes II and the air holes I.
Description
Technical Field
The invention relates to the technical field of storage equipment, in particular to big data analysis storage equipment.
Background
Big data, or huge data, refers to massive, high growth rate and diversified information assets that need a new processing mode to have stronger decision-making power, insight and process optimization capability. "big data" refers to a huge data set gathered from many sources in a multivariate fashion, often with real-time properties. In the case of business-to-business sales, such data may be obtained from social networks, e-commerce websites, customer visit records, and many other sources. The significance of big data is accompanied by the increasingly popular network behaviors of human beings, is collected by related departments and enterprises, and contains data with real intention, preference and non-traditional structure and significance of data producers. The existing large data storage equipment always needs to be maintained, however, the maintenance reasons are mainly that dust invades electronic components, and the service life of the existing large data storage equipment is seriously influenced because the electronic components are worn due to high temperature.
Disclosure of Invention
1. Technical problem to be solved
The present invention is directed to a big data analysis and storage device, so as to solve the problems mentioned above in the background art.
2. Technical scheme
In order to solve the problems, the invention adopts the following technical scheme:
a big data analysis storage device comprises a main body mechanism and an automatic heat dissipation mechanism, wherein the main body comprises a first outer shell, a first fixed seat, a second fixed seat and an electronic element, the first fixed seat and the second fixed seat are respectively arranged at the middle positions of the top end and the bottom end of the first outer shell, air holes I are uniformly formed in the side wall of the first outer shell on two sides of the first fixed seat, and the electronic element is clamped in the first outer shell between the first fixed seat and the second fixed seat;
the automatic heat dissipation mechanism comprises an automatic exhaust component and an automatic air inlet component, the automatic exhaust component comprises a second spiral memory alloy and a sliding plate, the two sides of the first fixed seat are both provided with the second spiral memory alloy, one end, far away from the first fixed seat, of the second spiral memory alloy is fixedly connected with the sliding plate which is arranged at the top of the first outer shell in a sliding mode, and the sliding plate is evenly provided with second air holes which are staggered with the first air holes; the automatic air inlet component comprises a second outer shell, a partition plate, a first return spring, a first sealing ball, a rectangular piston, a sliding column, a movable block, a grid net, a second return spring, a second sealing ball, a sliding rod, a frame-shaped piston, a first spiral memory alloy, a hose and a connecting pipe, wherein the second outer shell is arranged at the bottom end of each of two sides of the first outer shell, a rectangular air cavity is arranged at the middle position of the second outer shell, a frame-shaped cooling liquid cavity is arranged inside the second outer shell outside the rectangular air cavity, an arc-shaped through groove I is arranged on the side wall of the second outer shell at the end, far away from the first outer shell, of the rectangular air cavity, the partition plate is arranged at one end, close to the arc-shaped through groove, the first return spring is arranged at one side of the partition plate, the first sealing ball matched with the arc-shaped through groove I is fixedly connected to the tail end of the first return spring, and through holes are uniformly arranged at two ends of the partition plate, a rectangular piston is arranged inside the rectangular air cavity in a sliding mode, a cavity is arranged inside the rectangular piston, an arc-shaped through groove II is formed in one side, close to the partition plate, of the cavity, a sliding column is vertically arranged on the other side of the rectangular piston, a movable block is arranged at one end, far away from the rectangular piston, of the sliding column and extends into the shell I, an air inlet channel communicated with the cavity is arranged in the movable block and the sliding column in a penetrating mode, a grid net is arranged at one end, close to the cavity, of the air inlet channel, a return spring II is arranged on one side of the grid net, a sealing ball II is arranged at the position, along the arc-shaped through groove II, of the free end of the return spring II, sliding rods are vertically arranged on the movable blocks on the two sides of the sliding column, a frame-shaped piston is arranged at the free end of each sliding rod and extends into the frame-shaped cooling liquid cavity, and a spiral memory alloy I is arranged between the movable block and the fixed seat II, and a hose is wound on the first spiral memory alloy, one end of the hose extends to one side of the movable block and is connected with a connecting pipe, and the free end of the connecting pipe penetrates through the frame-shaped piston.
Preferably, the second spiral memory alloy and the first spiral memory alloy are both in contact with the electronic element.
Preferably, the first spiral memory alloy and the second spiral memory alloy are made of nickel-titanium alloy materials.
Preferably, the air holes II are matched with the air holes I.
3. Advantageous effects
1. The two sides of the first fixed seat are both provided with the second spiral memory alloy, one end of the second spiral memory alloy, which is far away from the first fixed seat, is fixedly connected with the sliding plate which is arranged on the top of the first outer shell in a sliding mode, the sliding plate is uniformly provided with the second air holes which are mutually staggered with the first air holes, and the second air holes are mutually matched with the first air holes.
2. The invention arranges a rectangular air cavity at the middle position of the two outer shells, a frame-shaped cooling liquid cavity is arranged in the two outer shells at the outer sides of the rectangular air cavity, the frame-shaped cooling liquid cavity is filled with cooling liquid to cool the air entering the rectangular air cavity, a frame-shaped piston is arranged in the frame-shaped cooling liquid cavity, the rectangular piston is arranged in the rectangular air cavity in a sliding way, a sliding column is vertically arranged at the other side of the rectangular piston, one end of the sliding column, far away from the rectangular piston, extends to the inner part of the first outer shell and is provided with a movable block, a first spiral memory alloy is arranged between the movable block and the second fixed seat, a hose is wound on the first spiral memory alloy, one end of the hose extends to one side of the movable block and is connected with a connecting pipe, the free end of the connecting pipe penetrates through the frame-shaped piston, when in use, the temperature in the first outer shell rises to enable the first spiral memory alloy to expand and extend to push the movable block to move to one side of the corresponding second outer shell, the rectangular piston moves to one side of the partition plate through the sliding column, the first reset spring is arranged on one side of the partition plate close to the first arc-shaped through groove, the tail end of the first reset spring is fixedly connected with the first seal ball matched with the first arc-shaped through groove, the second reset spring is arranged on one side of the grid net, the second seal ball is arranged at the position of the free end of the second reset spring along the second arc-shaped through groove, so that the air pressure in the rectangular air cavity is increased, the second seal ball extrudes the second reset spring, the air is exhausted into the first outer shell through the air inlet channel, on one hand, the first spiral memory alloy can be cooled, on the other hand, the hot air in the first outer shell is accelerated, meanwhile, the movable block pushes the frame-shaped piston to extrude the cooling liquid in the frame-shaped cooling liquid cavity through the sliding rod, the cooling liquid enters the hose through the connecting pipe, and the cooling liquid in the hose cools the first spiral memory alloy, when the rectangular piston moves to one side of the movable block, outside air pushes a sealing ring to extrude a return spring to enter a rectangular air cavity through an arc-shaped through groove I, when the frame-shaped piston moves to one side of the movable block, cooling liquid in the hose enters the frame-shaped cooling liquid cavity again through a connecting pipe, and the circulation is repeated.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of a partial structure at A in FIG. 1;
fig. 3 is a schematic view of the structure at B in fig. 1.
Reference numerals: 1-electronic component, 2-first fixed seat, 3-first outer seat, 4-first vent hole, 5-second outer seat, 6-frame-shaped cooling liquid cavity, 7-rectangular air cavity, 8-frame-shaped piston, 9-sliding rod, 10-sliding column, 11-movable block, 12-hose, 13-first spiral memory alloy, 14-, second fixed seat, 15-second spiral memory alloy, 151-sliding plate, 152-second vent hole, 16-connecting pipe, 17-air inlet channel, 18-partition plate, 19-first arc through groove, 20-first sealing ball, 21-first return spring, 22-through hole, 23-grid net, 24-rectangular piston, 25-second arc through groove, 26-second sealing ball, 27-cavity, 28-a second return spring.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and examples.
Examples
As shown in fig. 1-3, the big data analysis storage device comprises a main body mechanism and an automatic heat dissipation mechanism, wherein the main body comprises a first outer shell 3, a first fixing seat 2, a second fixing seat 14 and an electronic element 1, the first fixing seat 2 and the second fixing seat 14 are respectively arranged at the middle positions of the top end and the bottom end of the first outer shell 3, air holes I4 are uniformly formed in the side wall of the first outer shell 3 at the two sides of the first fixing seat 2, and the electronic element 1 is clamped in the first outer shell 3 between the first fixing seat 2 and the second fixing seat 14;
the automatic heat dissipation mechanism comprises an automatic exhaust component and an automatic air intake component, the automatic exhaust component comprises a second spiral memory alloy 15 and a sliding plate 151, both sides of a first fixed seat 2 are provided with the second spiral memory alloy 15, one end of the second spiral memory alloy 15, far away from the first fixed seat 2, is fixedly connected with the sliding plate 151, which is arranged at the top of a first outer shell 3 in a sliding manner, the sliding plate 151 is uniformly provided with second air holes 152 which are staggered with the first air holes 4, and the second air holes 152 are matched with the first air holes 4; the automatic air inlet component comprises an outer shell II 5, a partition plate 18, a return spring I21, a sealing ball I20, a rectangular piston 24, a sliding column 10, a movable block 11, a grid mesh 23, a return spring II 28, a sealing ball II 26, a sliding rod 9, a frame-shaped piston 8, a spiral memory alloy I13, a hose 12 and a connecting pipe 16, wherein the bottom ends of two sides of the outer shell I3 are provided with the outer shell II 5, the middle position of the outer shell II 5 is provided with a rectangular air cavity 7, the inner part of the outer shell II 5 outside the rectangular air cavity 7 is provided with a frame-shaped cooling liquid cavity 6, the side wall of the outer shell II 5 at one end of the rectangular air cavity 7 far away from the outer shell I3 is provided with an arc-shaped through groove I19, one end of the rectangular air cavity 7 close to the arc-shaped through groove I19 is provided with the partition plate 18, one side of the partition plate 18 close to the arc-shaped through groove I19 is provided with the return spring I21, and the tail end of the return spring I21 is fixedly connected with the sealing ball I20 matched with the arc-shaped through groove I19, through holes 22 are uniformly formed in both ends of the partition plate 18, a rectangular piston 24 is slidably arranged in the rectangular air cavity 7, a cavity 27 is arranged in the rectangular piston 24, an arc through groove two 25 is formed in one side of the cavity 27 close to the partition plate 18, a sliding column 10 is vertically arranged on the other side of the rectangular piston 24, a movable block 11 is arranged in the first shell 3 and extends from one end of the sliding column 10 far away from the rectangular piston 24, an air inlet channel 17 communicated with the cavity 27 is arranged in the movable block 11 and the sliding column 10 in a penetrating manner, a grid net 23 is arranged at one end of the air inlet channel 17 close to the cavity 27, a return spring two 28 is arranged on one side of the grid net 23, a sealing ball two 26 is arranged at the position of the arc through groove two 25 along the free end of the return spring two 28, sliding rods 9 are vertically arranged on the movable blocks 11 on both sides of the sliding column 10, and a frame-shaped piston 8 is arranged in the frame-shaped cooling liquid cavity 6 and extends from the free end of the sliding rod 9, a first spiral memory alloy 13 is arranged between the movable block 11 and the second fixed seat 14, a hose 12 is wound on the first spiral memory alloy 13, one end of the hose 12 extends to one side of the movable block 11 and is connected with a connecting pipe 16, the free end of the connecting pipe 16 penetrates through the frame-shaped piston 8, the second spiral memory alloy 15 and the first spiral memory alloy 13 are both in contact with the electronic element 1, and the first spiral memory alloy 13 and the second spiral memory alloy 15 are made of nickel-titanium alloy materials.
The working principle is as follows: when the electronic element 1 is not in use, the air holes 152 on the sliding plate 151 and the air holes 4 on the first outer shell 3 are mutually staggered, the inner part of the first outer shell 3 is sealed to prevent dust from entering, when the electronic element 1 works to generate heat so as to raise the inner temperature of the first outer shell 3, further, the spiral memory alloy 15 expands, the expansion and extension of the spiral memory alloy 15 pushes the sliding plate 151 to move so that the air holes 152 and the air holes 4 of the sliding plate 151 are superposed, at the moment, the heat can be dissipated from the air holes 152 and the air holes 4, and when the inner temperature of the first outer shell 3 rises, the spiral memory alloy 13 can also expand and extend, the expansion and extension of the spiral memory alloy 13 can push the movable block 11 to move to one side of the corresponding second outer shell 5, and the rectangular piston 24 can move to one side of the partition plate 18 through the sliding column 10, because the first return spring 21 is arranged on one side of the partition plate 18 close to the first arc-shaped through groove 19, the tail end of the first return spring 21 is fixedly connected with the first seal ball 20 matched with the first arc-shaped through groove 19, the second return spring 28 is arranged on one side of the grid mesh 23, and the second seal ball 26 is arranged at the position of the free end of the second return spring 28 along the second arc-shaped through groove 25, so that the air pressure in the rectangular air cavity 7 is increased, the second seal ball 26 extrudes the second return spring 28, the air is exhausted into the first outer shell 3 through the air inlet channel 17, on one hand, the first spiral memory alloy 13 can be cooled, on the other hand, the hot air in the first outer shell 3 is accelerated to be exhausted, in the process, the movable block 11 moves to push the frame-shaped piston 8 to extrude the cooling liquid in the frame-shaped cooling liquid cavity 6 through the sliding rod 9, so that the cooling liquid enters the hose 12 through the connecting pipe 16, and the cooling liquid in the hose 12 cools the first spiral memory alloy 13, so that the first spiral memory alloy 13 contracts and shortens, at the moment, the first spiral memory alloy 13 pulls the movable block 11 to move to one side of the second fixed seat 14, the movable block 11 moves to one side of the second fixed seat 14 and drives the rectangular piston 24 and the frame-shaped piston to move to one side of the movable block 8 through the fixed column 10 and the sliding rod 9, when the rectangular piston 24 moves to one side of the movable block 11, the outside air pushes the first sealing ball 20 to extrude the first return spring 21 to enter the rectangular air cavity 7 through the first arc-shaped through groove 19, when the frame-shaped piston 8 moves to one side of the movable block 11, the cooling liquid in the hose 12 reenters the frame-shaped cooling liquid cavity 6 through the connecting pipe 16, and the circulation is repeated, namely, the invention makes the first spiral memory alloy 13 deform through the internal temperature change of the first outer shell 3, provides power to make the air be continuously pressed into the first outer shell 3, so as to dissipate heat of the electronic element 1 inside the first outer shell 3, the heat dissipation effect is good.
It should be understood by those skilled in the art that the above embodiments are only for illustrating the present invention and are not to be used as a limitation of the present invention, and that changes and modifications to the above embodiments are within the scope of the claims of the present invention as long as they are within the spirit and scope of the present invention.
Claims (4)
1. The big data analysis and storage device is characterized by comprising a main body mechanism and an automatic heat dissipation mechanism, wherein the main body comprises a first outer shell (3), a first fixed seat (2), a second fixed seat (14) and an electronic element (1), the first fixed seat (2) and the second fixed seat (14) are respectively arranged at the middle positions of the top end and the bottom end of the first outer shell (3), air holes (4) are uniformly formed in the side wall of the first outer shell (3) on the two sides of the first fixed seat (2), and the electronic element (1) is clamped in the first outer shell (3) between the first fixed seat (2) and the second fixed seat (14);
the automatic heat dissipation mechanism comprises an automatic exhaust component and an automatic air inlet component, the automatic exhaust component comprises a second spiral memory alloy (15) and a sliding plate (151), the two sides of the first fixed seat (2) are both provided with the second spiral memory alloy (15), one end, far away from the first fixed seat (2), of the second spiral memory alloy (15) is fixedly connected with the sliding plate (151) which is arranged at the top of the first outer shell (3) in a sliding mode, and the sliding plate (151) is uniformly provided with second air holes (152) which are mutually staggered with the first air holes (4); the automatic air inlet component comprises a second outer shell (5), a partition plate (18), a first reset spring (21), a first sealing ball (20), a rectangular piston (24), a sliding column (10), a movable block (11), a grid net (23), a second reset spring (28), a second sealing ball (26), a sliding rod (9), a frame-shaped piston (8), a first spiral memory alloy (13), a hose (12) and a connecting pipe (16), wherein the bottom ends of the two sides of the first outer shell (3) are provided with the second outer shell (5), a rectangular air cavity (7) is arranged in the middle of the second outer shell (5), a frame-shaped cooling liquid cavity (6) is arranged inside the second outer shell (5) outside the rectangular air cavity (7), an arc-shaped through groove (19) is arranged on the side wall of the second outer shell (5) at the end, far away from the first outer shell (3), of the rectangular air cavity (7), and the partition plate (18) is arranged at the end, close to the arc-shaped through groove (19), one side of the partition plate (18) close to the arc-shaped through groove I (19) is provided with a first reset spring (21), the tail end of the first reset spring (21) is fixedly connected with a first sealing ball (20) matched with the arc-shaped through groove I (19), both ends of the partition plate (18) are uniformly provided with through holes (22), a rectangular piston (24) is arranged in the rectangular air cavity (7) in a sliding manner, a cavity (27) is arranged in the rectangular piston (24), one side of the cavity (27) close to the partition plate (18) is provided with an arc-shaped through groove II (25), the other side of the rectangular piston (24) is vertically provided with a sliding column (10), one end of the sliding column (10) far away from the rectangular piston (24) extends into the outer shell I (3) to be provided with a movable block (11), and the movable block (11) and the sliding column (10) are internally provided with an air inlet channel (17) communicated with the cavity (27) in a penetrating manner, a grid net (23) is arranged at one end of the air inlet channel (17) close to the cavity (27), a second return spring (28) is arranged at one side of the grid net (23), and a second sealing ball (26) is arranged at the position from the free end edge of the second return spring (28) to the second arc-shaped through groove (25), the movable blocks (11) at the two sides of the sliding column (10) are both vertically provided with a sliding rod (9), and the free end of the sliding rod (9) extends to the inside of the frame-shaped cooling liquid cavity (6) and is provided with a frame-shaped piston (8), a first spiral memory alloy (13) is arranged between the movable block (11) and the second fixed seat (14), and a hose (12) is wound on the first spiral memory alloy (13), one end of the hose (12) extends to one side of the movable block (11) and is connected with a connecting pipe (16), and the free end of the connecting pipe (16) penetrates through the frame-shaped piston (8).
2. A big data storage device according to claim 1, wherein the spiral memory alloy two (15) and the spiral memory alloy one (13) are both in contact with the electronic component (1).
3. The big data analysis and storage device according to claim 1, wherein the first spiral memory alloy (13) and the second spiral memory alloy (15) are made of nitinol.
4. The big data analysis storage device of claim 1, wherein the second vent (152) and the first vent (4) are matched with each other.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202010822166.7A CN112000184B (en) | 2020-08-16 | 2020-08-16 | Big data analysis storage facilities |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202010822166.7A CN112000184B (en) | 2020-08-16 | 2020-08-16 | Big data analysis storage facilities |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| CN112000184A CN112000184A (en) | 2020-11-27 |
| CN112000184B true CN112000184B (en) | 2022-02-25 |
Family
ID=73473818
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202010822166.7A Active CN112000184B (en) | 2020-08-16 | 2020-08-16 | Big data analysis storage facilities |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN112000184B (en) |
Families Citing this family (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN112808701B (en) * | 2021-01-12 | 2022-08-26 | 沈阳建筑大学 | Device and method for recognizing and translating full-language books |
| CN112701595B (en) * | 2021-01-14 | 2023-09-05 | 国网冀北电力有限公司廊坊供电公司 | An outdoor anti-theft distribution box |
| CN113965836A (en) * | 2021-11-08 | 2022-01-21 | 深圳市锦昊安科技有限公司 | Automatic temperature control mechanism for industrial-grade optical fiber switch and heat dissipation method |
| CN115765318B (en) * | 2022-11-14 | 2023-09-29 | 双龙集团上海防爆电机盐城股份有限公司 | Explosion-proof motor |
| CN116379408B (en) * | 2023-03-31 | 2023-08-29 | 新网电(山东)能源装备科技有限公司 | Solid heat storage device for steam boiler energy storage |
| CN116372274B (en) * | 2023-04-13 | 2023-10-31 | 深圳市海洲数控机械刀具有限公司 | Adjustable precision reamer of polycrystalline diamond |
Citations (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN110149776A (en) * | 2019-04-26 | 2019-08-20 | 杭州美创科技有限公司 | A Multifunctional Security Server |
| CN209784927U (en) * | 2019-04-19 | 2019-12-13 | 重庆勾正数据科技有限公司 | Energy-saving cooling device for computer server |
Family Cites Families (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP3302350B2 (en) * | 2000-06-29 | 2002-07-15 | 株式会社東芝 | Electronics |
| TW200601947A (en) * | 2004-06-23 | 2006-01-01 | Asustek Comp Inc | Electronic apparatus and shielding structure for heat dissipation openings |
-
2020
- 2020-08-16 CN CN202010822166.7A patent/CN112000184B/en active Active
Patent Citations (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN209784927U (en) * | 2019-04-19 | 2019-12-13 | 重庆勾正数据科技有限公司 | Energy-saving cooling device for computer server |
| CN110149776A (en) * | 2019-04-26 | 2019-08-20 | 杭州美创科技有限公司 | A Multifunctional Security Server |
Also Published As
| Publication number | Publication date |
|---|---|
| CN112000184A (en) | 2020-11-27 |
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| CN112000184A (en) | Big data analysis storage facilities | |
| CN119987509A (en) | Intelligent temperature control method and system for solid state drives based on edge computing | |
| CN102208375A (en) | Circulation radiator, and manufacturing method and components thereof | |
| Ding et al. | A thermal-hydraulic analysis model of printed circuit heat exchangers for system simulation using Modelica | |
| Moffat | Modeling air-cooled heat sinks as heat exchangers | |
| CN108762449B (en) | Cooling device for computer cooling module | |
| Yuan et al. | Multi-objective optimization of thermal modules in high heat flux laptops | |
| CN110488946A (en) | A kind of network security server applied in the cluster | |
| Abbas et al. | Transient thermal management characteristics of a porous fin with radially outwards fluid flow | |
| CN115238567A (en) | A vacuum calculation method for the condenser of a gas turbine combined cycle unit | |
| CN221684828U (en) | A multi-stage semiconductor refrigeration device for refrigerating infrared detectors | |
| Aranyosi et al. | Compact air-cooled heat sinks for power packages | |
| CN212231990U (en) | High-performance heat dissipation device for electromechanical equipment | |
| Jose et al. | Numerical Investigation to Analyze the Effect of Various Operating Parameters on the Thermal Characteristics of Heat Pipe | |
| CN114824997A (en) | Temperature control system of laser and design method | |
| CN115832828A (en) | Liquid metal phase change cold plate low-deformation structure for laser heat dissipation and use method | |
| Chiou et al. | Thermal modeling and design on smartphones with heat pipe cooling technique | |
| Sobamowo | Finite element analysis of transient thermal performance of a convective-radiative cooling fin: effects of fin tip conditions and magnetic field | |
| CN214413367U (en) | Detection device radiator | |
| CN206683456U (en) | Heat pipe heat transfer device | |
| Yan et al. | Optimization mechanism of laminated ceramic package structure on the regulation of semiconductor cooling performance | |
| HAJMOHAMMADI et al. | OPTIMAL DESIGN OF CONSTRUCTAL CONDUCTIVE PATHWAYS USING MACHINE LEARNING ALGORITHMS | |
| Mallikarjuna et al. | Modeling and Optimization of shape of a Heat Sink Fins on Motherboard | |
| Li et al. | Design of multi-stage cooling system for high power laser diode | |
| CN213872640U (en) | Stage lighting heat dissipation device |
Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| PB01 | Publication | ||
| PB01 | Publication | ||
| SE01 | Entry into force of request for substantive examination | ||
| SE01 | Entry into force of request for substantive examination | ||
| GR01 | Patent grant | ||
| GR01 | Patent grant | ||
| TR01 | Transfer of patent right | ||
| TR01 | Transfer of patent right |
Effective date of registration: 20230718 Address after: No. 16, Yu Road, Mengzhuang Town Industrial Park, Shizhong District, Zaozhuang City, Shandong Province, 277101 Patentee after: Shandong Zhudian New Energy Co.,Ltd. Address before: 277101 100m west of Liutun village committee, Shizhong District, Zaozhuang City, Shandong Province Patentee before: Zaozhuang Jinhai Trading Co.,Ltd. |