WO2022012470A1 - 框架 - Google Patents

框架 Download PDF

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Publication number
WO2022012470A1
WO2022012470A1 PCT/CN2021/105784 CN2021105784W WO2022012470A1 WO 2022012470 A1 WO2022012470 A1 WO 2022012470A1 CN 2021105784 W CN2021105784 W CN 2021105784W WO 2022012470 A1 WO2022012470 A1 WO 2022012470A1
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WO
WIPO (PCT)
Prior art keywords
bottom plate
plate portion
top plate
frame
accommodating area
Prior art date
Application number
PCT/CN2021/105784
Other languages
English (en)
French (fr)
Inventor
张少华
张楠赓
Original Assignee
北京嘉楠捷思信息技术有限公司
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by 北京嘉楠捷思信息技术有限公司 filed Critical 北京嘉楠捷思信息技术有限公司
Priority to CA3185698A priority Critical patent/CA3185698A1/en
Priority to US18/005,340 priority patent/US20230280802A1/en
Priority to EP21842795.3A priority patent/EP4184286A4/en
Publication of WO2022012470A1 publication Critical patent/WO2022012470A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/18Packaging or power distribution
    • G06F1/181Enclosures
    • G06F1/182Enclosures with special features, e.g. for use in industrial environments; grounding or shielding against radio frequency interference [RFI] or electromagnetical interference [EMI]
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/18Packaging or power distribution
    • G06F1/183Internal mounting support structures, e.g. for printed circuit boards, internal connecting means
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/18Packaging or power distribution
    • G06F1/181Enclosures
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/18Packaging or power distribution
    • G06F1/183Internal mounting support structures, e.g. for printed circuit boards, internal connecting means
    • G06F1/185Mounting of expansion boards
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/18Packaging or power distribution
    • G06F1/183Internal mounting support structures, e.g. for printed circuit boards, internal connecting means
    • G06F1/186Securing of expansion boards in correspondence to slots provided at the computer enclosure
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/18Packaging or power distribution
    • G06F1/183Internal mounting support structures, e.g. for printed circuit boards, internal connecting means
    • G06F1/188Mounting of power supply units
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/18Packaging or power distribution
    • G06F1/189Power distribution
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/26Power supply means, e.g. regulation thereof
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/20Cooling means
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F2200/00Indexing scheme relating to G06F1/04 - G06F1/32
    • G06F2200/20Indexing scheme relating to G06F1/20
    • G06F2200/201Cooling arrangements using cooling fluid

Definitions

  • the present invention relates to a frame structure, in particular, to a frame structure for computing equipment.
  • a computing device is an electronic device used for high-speed computing, for example, an electronic device used to run a specific algorithm and communicate with a remote server to obtain corresponding virtual currency.
  • the progress of the existing industry has promoted the automatic and intelligent development of various equipment to be cooled, including computing equipment.
  • the optimization of computing equipment performance requires the support of more and more computing chips. stage development trend.
  • a modular product that is conducive to integration needs to be designed.
  • the purpose of the present invention is to provide a framework for an integrated computing unit with a compact and lightweight structure.
  • the frame of the present invention includes a frame body and a control module
  • the frame body includes a bottom plate, a top plate and a side plate
  • the side plate is supported between the bottom plate and the top plate
  • the space between the bottom plate and the top plate defines a
  • the bottom plate is provided with a frame slideway.
  • the control module is connected to the top plate.
  • the computing module accommodating area includes a first computing module accommodating area and a second computing module accommodating area, the first computing module accommodating area and the second computing module accommodating area. They are respectively located on both sides of the power module accommodating area.
  • the bottom plate and the top plate are respectively sheet metal parts.
  • the bottom plate includes a first bottom plate portion corresponding to the first computing module accommodating area, a second bottom plate portion corresponding to the power module accommodating area, and a second computing module corresponding to the accommodating area.
  • the third bottom plate part of the accommodating area, the frame slideway includes a bottom plate calculation board slideway, the first bottom plate part and the third bottom plate part respectively have punched elongated holes arranged in pairs, and the punched sides of the adjacent punched elongated holes are
  • the bottom plate computing board slideway is formed between the edges.
  • the frame slideway further includes a bottom plate power supply slideway, and the first bottom plate portion and the third bottom plate portion are adjacent to the punched sides of the punched elongated holes of the second bottom plate portion.
  • the bottom plate power supply slideway is formed between them.
  • the second bottom plate portion has a plurality of liquid discharge ports arranged in a matrix.
  • the top plate includes a first top plate portion corresponding to the first computing module accommodating area, a second top plate portion corresponding to the power module accommodating area, and a second top plate portion corresponding to the second computing module.
  • the third top plate part of the accommodating area, the first top plate part and the third top plate part respectively have punched elongated holes arranged in pairs, and the punched sides of the adjacent punched elongated holes are formed between the punched sides corresponding to the bottom plate calculation board of top-plate computing board slides.
  • the height of the second top plate portion is higher than that of the first top plate portion and the third top plate portion.
  • a handle is also connected to the top plate, and the highest position of the handle is higher than the second top plate portion.
  • the second top plate portion includes a concave power supply positioning groove.
  • the second top plate portion includes a plurality of drain ports.
  • the second top plate portion includes at least one functional opening.
  • control module includes a network cable interface, and the network cable interface is higher than the second top plate portion.
  • the frame further includes a front side plate, the bottom plate includes a bottom plate connection slot, the bottom side of the front side plate is connected through the bottom plate connection slot, and the top of the front side plate is connected to the bottom plate.
  • the top plates are connected by connecting pieces.
  • the frame further includes a control board connection cover, the control module is connected in the control board connection cover, and the control board connection cover is connected to the rear side of the top plate.
  • the frame further includes a rear side cover, the rear side cover includes a side panel connection slot, and the control panel connection cover is connected to the top of the rear side cover through the side panel connection slot. connection, the bottom of the rear side cover is connected with the bottom plate through a connecting piece.
  • the bottom of the rear side cover is provided with a drain port.
  • the side plates are strip-shaped profiles.
  • the beneficial effects of the present invention are that the frame structure of the present invention is simple, the layout is reasonable, and the cost is low.
  • FIG. 1 is a three-dimensional structural view (1) of an embodiment of the frame of the present invention
  • Figure 2 is an M-direction partial view (display control module) of the frame of Figure 1;
  • FIG. 3 is a perspective structural view of an embodiment of the bottom plate of the frame of the present invention.
  • FIG. 4 is a perspective structural view of an embodiment of the top plate of the frame of the present invention.
  • FIG. 5 is a perspective structural view of an embodiment of the rear side cover of the frame of the present invention.
  • FIG. 6 is a perspective structural view of an embodiment of the front side plate of the frame of the present invention.
  • FIG. 7 is a three-dimensional structural view (2) of an embodiment of the frame of the present invention.
  • FIG. 8 is a perspective structural view (3) of an embodiment of the frame of the present invention.
  • FIG. 9 is a perspective structural view (4) of an embodiment of the frame of the present invention.
  • references in the specification to "an embodiment,” “another embodiment,” “this embodiment,” etc., mean that the described embodiment may include a particular feature, structure, or characteristic, but not every embodiment necessarily includes these specific features, structures or characteristics. Furthermore, such expressions are not referring to the same embodiment. Further, when a particular feature, structure or characteristic is described in conjunction with an embodiment, whether or not explicitly described, it has been shown that it is within the knowledge of those skilled in the art to incorporate such feature, structure or characteristic into other embodiments .
  • connection herein includes any direct and indirect means of connection.
  • the frame 1 of the present invention includes a frame body 10 and a control module 20 .
  • the frame body 10 includes a bottom plate 100 , a top plate 200 and a side plate 300 , and the side plate 300 is supported between the bottom plate 100 and the top plate 200 .
  • the side plates 300 are supported on both sides of the bottom plate 100 and the top plate 200 , so that a power module accommodating area S1 and a computing module accommodating area S2 are defined between the bottom plate 100 and the top plate 200 .
  • the bottom plate 100 is provided with a frame slideway 400, the power module enters and exits through the frame slideway 400 and is fixed in the power module accommodating area S1, the computing module enters and exits through the frame slideway 400 and is fixed in the computing module accommodating area S2, the control module 20 connected to the top plate 200 .
  • the framework of the present invention is particularly suitable for computing units with immersion heat dissipation.
  • the computing module accommodating area S2 may be disposed on one side of the power module accommodating area S1, or the computing module accommodating area S2 may be located on both sides of the power module accommodating area S1.
  • the computing module accommodating area S2 includes a first computing module accommodating area S21 and a second computing module accommodating area S22, and the first computing module accommodating area S21 and the second computing module accommodating area S22 are respectively located in the power supply Both sides of the module accommodating area S1.
  • the computing module accommodating areas S21 and S22 are symmetrically located on both sides of the power module accommodating area S1, and the overall weight of the computing equipment is more reasonable.
  • the frame 1 has an installation direction P
  • the frame slideway 400 extends along the installation direction P
  • the power module and the computing module enter and exit the power module accommodating area S1 and the computing module accommodating area S2 through the installation direction P, respectively.
  • the bottom plate 100 and the top plate 200 of the frame 1 are respectively sheet metal parts, and required functional openings or grooves are formed on the sheet metal parts through processes such as stamping and bending.
  • the side plate 300 is directly made of a profile with raised ribs, which is inexpensive and can ensure support strength.
  • the materials of the bottom plate 100 and the top plate 200 of the present invention are not limited to sheet metal parts, and other materials that can achieve the same function can be used, which are not limited in the present invention.
  • the bottom plate 100 includes a first bottom plate portion 110 , a second bottom plate portion 120 and a third bottom plate portion 130 .
  • the first bottom plate portion 110 corresponds to the first computing module accommodating area S21
  • the second bottom plate portion 120 corresponds to the power module accommodating area S1
  • the third bottom plate portion 130 corresponds to the second computing module accommodating area S22. That is to say, a first computing module accommodating area S21 is formed between the first bottom plate portion 110 and the top plate 200
  • a power module accommodating area S1 is formed between the second bottom plate portion 120 and the top plate 200
  • the third bottom plate portion 130 and the top plate 200 are formed.
  • a second computing module accommodating area S22 is formed therebetween.
  • the frame slideway 400 includes a bottom plate computing board slideway 410 , the first bottom plate portion 110 and the third bottom plate portion 130 respectively have punched elongated holes arranged in pairs, and the bottom plate calculation board slideway is formed between the punched sides of the adjacent punched elongated holes. 410.
  • the first bottom plate portion 110 includes a punched elongated hole 111 and a punched elongated hole 112, the punched elongated hole 111 includes a punched side edge 111a, the punched elongated hole 112 includes a punched side edge 112a, and the punched side edge 111a and The punched side 112a is opposite to and parallel to the installation direction P, and the bottom plate computing board slide 410 is formed between the punched side 111a and the punched side 112a.
  • the computing module enters and exits the computing module accommodating area S21 through the bottom computing board slideway 410 .
  • the first bottom plate portion 110 is provided with two sets of punched elongated holes 111 and 112 along the installation direction P, so that the slideway is more stable on the basis of ensuring the strength of the bottom plate.
  • the top plate 200 includes a first top plate portion 210 , a second top plate portion 220 and a third top plate portion 230 .
  • the first top plate portion 210 and the first bottom plate portion 110 A first computing module accommodating area S21 is formed therebetween, a power module accommodating area S1 is formed between the second top plate portion 220 and the second bottom plate portion 120 , and a second computing module is formed between the third top plate portion 230 and the third bottom plate portion 130 The accommodating area S22.
  • the top board computing board slideway 420 corresponding to the bottom board computing board slideway 410 is provided on the top board.
  • the first top plate portion 210 includes a punched elongated hole 211 and a punched elongated hole 212
  • the punched elongated hole 211 includes a punched side edge 211 a
  • the punched elongated hole 212 includes a punched side edge 212 a
  • the punching side 211a corresponds to the punching side 212a and is parallel to the installation direction P
  • the top board computing board slideway 420 is formed between the punching side 211a and the punching side 212a.
  • the computing module enters and exits the computing module accommodating area S21 through the bottom computing board slideway 410 and the top board computing board slideway 420 .
  • the first top plate portion 210 is provided with two sets of punched elongated holes 211 and punched elongated holes 212 along the installation direction P. As shown in FIG.
  • the third bottom plate portion 130 has the same structure as the first bottom plate portion 110
  • the third top plate portion 230 has the same structure as the first top plate portion 210
  • the frame slideway 400 further includes a bottom plate power supply slideway 430 .
  • the bottom plate power supply slideway 430 is formed between the punched sides of the punched long holes of the adjacent second bottom plate portion 120 on the first bottom plate portion 110 and the third bottom plate portion 130 .
  • the punched long holes 112 on the first bottom plate portion 110 have punched side edges 112 b adjacent to the second bottom plate portion 120
  • the punched long holes 132 on the third bottom plate portion 130 have punched long holes 112 adjacent to the second bottom plate portion 120 .
  • the punched side 132 b , the punched side 112 b on the first bottom plate portion 110 and the punched side 132 b on the third bottom plate portion 130 form a bottom plate power supply slideway 430 .
  • FIG. 1 shows the arrangement of the frame in the use state of the present invention, and the top plate 200 is positioned on the bottom plate 100 . 4 , the height of the second top plate portion 220 is higher than that of the first top plate portion 210 and the third top plate 230 on both sides.
  • the punched long holes 111 and 112 on the first bottom plate portion 110 are vertically corresponding to the punched long holes 211 and 212 on the first top plate portion 210 .
  • the punched elongated holes 111 and 112 and the punched elongated holes 211 and 212 correspond to the heat sinks on both sides of the computing module, respectively.
  • the holes form liquid flow channels, and the heat dissipation liquid immersed in heat dissipation flows smoothly.
  • the second bottom plate portion 120 and the second top plate portion 220 are also provided with a plurality of liquid discharge ports 121 and 221.
  • the shape and quantity of the liquid discharge ports are not limited, and can be arranged linearly, in a matrix, or irregularly. Since the heat dissipation requirement of the power module is smaller than the heat dissipation requirement of the computing module, generally speaking, the size of the drain ports 121 and 221 is smaller than the size of the punching slot 111, 112, 211 and 212, which can ensure the load-bearing capacity of the frame and prevent deformability.
  • the second top plate portion 220 includes a recessed power supply positioning slot 222 , and the recessed power supply positioning slot 222 presses the power module to prevent the power module from shifting and shaking.
  • the second top plate portion 220 is further provided with at least one functional opening.
  • the second top plate portion 220 includes a power interface opening 223 and a power switch opening 224, which are respectively used for connecting the power cord and opening and closing the power module.
  • the number of functional openings And the location can be set according to actual needs by those skilled in the art.
  • the top plate 200 is also connected with a handle 500.
  • the highest position of the handle 500 is higher than the highest position of the top plate 200, that is, the highest position of the handle 500 is higher. on the second top plate portion 220 .
  • the handle 500 When the heat dissipation liquid surges from bottom to top, it will not miss the handle 500, which is easy for operators to operate.
  • the frame body 10 further includes a control board connection cover 600 , the control module 20 is connected in the control board connection cover 600 , and the control board connection cover 600 is connected to the rear side of the top plate 200 .
  • the control module 20 includes a network cable interface 21.
  • the network cable interface 21 is higher than the highest part of the top plate 200, that is, higher than the second top plate portion 220, so as to dissipate heat. When the liquid surges from bottom to top, it will not pass over the network cable interface 21, which is convenient for operators to operate.
  • the network cable interface 21 is exposed through the interface portion 610 on the top of the control board connection cover 600 , that is, the interface portion 610 is higher than the second top plate portion 220 .
  • the interface portion 610 may be disposed at the same height as the handle 500 .
  • a rear side cover 30 is also included.
  • the rear side cover 30 covers the rear side of the frame body 10 , where the rear side refers to the side where the control module 20 is connected.
  • the rear side cover 30 includes a side plate connection slot 31, the control board connection cover 600 is connected with the top of the rear side cover 30 through the side plate connection slot 31, and the bottom of the rear side cover 30 is connected with the bottom plate 100 through a connecting piece, and the connecting piece For example, screws.
  • the rear side cover 30 closes the control module 20 in the frame, and covers the connection joints of the power module, the control module and the computing module.
  • the bottom of the rear side cover 30 is provided with a liquid discharge port 32, which naturally discharges the accumulated liquid therein when the computing unit is lifted up.
  • a front side panel 40 is also included.
  • the front side panel 40 covers the front side of the frame body 10 , where the front side refers to the opening side where the power module and the computing module slide in and out.
  • the bottom plate 100 includes a bottom plate connecting slot 140 , the bottom side of the front side plate 40 is connected through the bottom plate connecting slot 140 , and the top of the front side plate 40 is connected with the top plate 200 by a connecting member such as a screw.
  • the side plate 300 has various embodiments, such as plate-shaped side walls, X-shaped side walls, and H-shaped side walls, as long as they can play a supporting role, and the present invention is not limited.
  • FIG. 7 to FIG. 9 are three-dimensional structural views of different embodiments of the frame of the present invention.
  • the side plate 300 is an integral side wall with a drain port and is arranged on both sides, which can provide more stable protection for each structure arranged in the frame.
  • the side plate 300 is, for example, a sheet metal part, on which a required liquid drain port or a concave-convex structure is formed by processes such as stamping and bending.
  • the structure of the top plate 200 is different, and the different positions of the power positioning slot, the power interface opening, and the power switch opening provide adaptation for different types of power supplies.
  • the frame of the present invention includes a frame body and a control module, the frame body includes a bottom plate, a top plate and a side plate, the side plate is supported between the bottom plate and the top plate, and a power module accommodating area and a computing module accommodating area are defined between the bottom plate and the top plate,
  • the bottom plate is provided with a frame slideway, the power module and the computing module enter and exit through the frame slideway respectively and are fixed in the power module accommodating area and the calculation module accommodating area, and the control module is connected on the top plate.
  • the frame of the present invention is used for an integrated computing unit, which is small and light.
  • the frame structure of the present invention is simple, the layout is reasonable, and the cost is low.

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  • Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • General Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • General Physics & Mathematics (AREA)
  • Human Computer Interaction (AREA)
  • Computer Hardware Design (AREA)
  • Electromagnetism (AREA)
  • Casings For Electric Apparatus (AREA)

Abstract

本发明公开一种框架,其包括框体和控制模块,框体包括底板、顶板以及侧板,侧板支撑于底板和顶板之间,底板和顶板之间定义有电源模块容置区和计算模块容置区,并底板设置有框架滑道,电源模块和计算模块分别通过框架滑道进出以及固定于电源模块容置区和计算模块容置区,控制模块连接在顶板上,本发明的目的是提供一种框架,用于集成化的计算单元,结构小巧轻便,布局合理,成本低廉。

Description

框架 技术领域
本发明涉及一种框架结构,具体地说,是涉及一种用于计算设备的框架结构。
背景技术
计算设备是一种用于高速计算的电子设备,例如是用于运行特定演算法,与远方服务器通讯后以得到相应虚拟货币的电子设备。现有工业的进步促进了包括计算设备在内的各种待散热设备向自动化、智能化发展,计算设备性能的优化需要越来越多的计算芯片的支持,为此,计算设备集成化是现阶段的发展趋势。为实现集成化,需设计出一种利于集成的模块化产品。
发明公开
本发明的目的是提供一种框架,用于集成化的计算单元,结构小巧轻便。
为了实现上述目的,本发明的框架包括框体和控制模块,所述框体包括底板、顶板以及侧板,所述侧板支撑于所述底板和顶板之间,所述底板和顶板之间定义有电源模块容置区和计算模块容置区,并所述底板设置有框架滑道,电源模块和计算模块分别通过所述框架滑道进出以及固定于所述电源模块容置区和计算模块容置区,所述控制模块连接在所述顶板上。
上述的框架的一实施例中,所述计算模块容置区包括第一计算模块容置区和第二计算模块容置区,所述第一计算模块容置区和第二计算模块容置区分别位于所述电源模块容置区的两侧。
上述的框架的一实施例中,所述底板和顶板分别为钣金件。
上述的框架的一实施例中,所述底板包括对应所述第一计算模块容置区的第一底板部、对应所述电源模块容置区的第二底板部以及对应所述第二计算模块容置区的第三底板部,所述框架滑道包括底板计算板滑道,所述第一底板部和第三底板部分别具有成对设置的冲压长孔,相邻冲压长孔的冲压侧边之间形成所述底板计算板滑道。
上述的框架的一实施例中,所述框架滑道还包括底板电源滑道,所述第一底板部、第三底板部上相邻所述第二底板部的冲压长孔的冲压侧边之间形成所 述底板电源滑道。
上述的框架的一实施例中,所述第二底板部具有多个呈矩阵排列的排液口。
上述的框架的一实施例中,所述顶板包括对应所述第一计算模块容置区的第一顶板部、对应所述电源模块容置区的第二顶板部以及对应所述第二计算模块容置区的第三顶板部,所述第一顶板部和第三顶板部分别具有成对设置的冲压长孔,相邻冲压长孔的冲压侧边之间形成对应所述底板计算板滑道的顶板计算板滑道。
上述的框架的一实施例中,所述第二顶板部的高度高于所述第一顶板部以及第三顶板部。
上述的框架的一实施例中,所述顶板上还连接有提手,所述提手的最高位置高于所述第二顶板部。
上述的框架的一实施例中,所述第二顶板部包括下凹的电源定位槽。
上述的框架的一实施例中,所述第二顶板部包括多个排液口。
上述的框架的一实施例中,所述第二顶板部包括至少一个功能开口。
上述的框架的一实施例中,所述控制模块包括网络线接口,所述网络线接口高于所述第二顶板部。
上述的框架的一实施例中,还包括前侧板,所述底板包括底板连接插槽,所述前侧板的底部侧边通过所述底板连接插槽连接,所述前侧板的顶部与所述顶板通过连接件连接。
上述的框架的一实施例中,还包括控制板连接罩,所述控制模块连接在所述控制板连接罩内,所述控制板连接罩连接在所述顶板的后侧。
上述的框架的一实施例中,还包括后侧罩,所述后侧罩包括侧板连接插槽,所述控制板连接罩通过所述侧板连接插槽与所述后侧罩的顶部相连接,所述后侧罩的底部与所述底板通过连接件连接。
上述的框架的一实施例中,所述后侧罩的底部设置有排液口。
上述的框架的一实施例中,所述侧板为条状型材件。
本发明的有益功效在于,本发明的框架结构简单,布局合理,成本低廉。
以下结合附图和具体实施例对本发明进行详细描述,但不作为对本发明的限定。
附图简要说明
图1为本发明的框架的一实施例的立体结构图(一);
图2为图1的框架的M向局部视图(显示控制模块);
图3为本发明的框架的底板的一实施例的立体结构图;
图4为本发明的框架的顶板的一实施例的立体结构图;
图5为本发明的框架的后侧罩的一实施例的立体结构图;
图6为本发明的框架的前侧板的一实施例的立体结构图;
图7为本发明的框架的一实施例的立体结构图(二);
图8为本发明的框架的一实施例的立体结构图(三);
图9为本发明的框架的一实施例的立体结构图(四)。
其中,附图标记
1:框架
10:框体
20:控制模块
21:网络线接口
30:后侧罩
31:侧板连接插槽
32:排液口
40:前侧板
100:底板
110:第一底板部
111、112:冲压长孔
111a、112a、112b:冲压侧边
120:第二底板部
121:排液口
130:第三底板部
132:冲压长孔
132b:冲压侧边
140:底板连接插槽
200:顶板
210:第一顶板部
211、212:冲压长孔
211a、212a:冲压侧边
220:第二顶板部
221:排液口
222:电源定位槽
223:电源接口开口
224:电源开关开口
230:第三顶板部
300:侧板
400:框架滑道
410:底板计算板滑道
420:顶板计算板滑道
430:底板电源滑道
440:顶板电源滑道
500:提手
600:控制板连接罩
610:接口部
S1:电源模块容置区
S2:计算模块容置区
S21:第一计算模块容置区
S22:第二计算模块容置区
P:安装方向
实现本发明的最佳方式
下面结合附图和具体实施例对本发明技术方案进行详细的描述,以更进一步了解本发明的目的、方案及功效,但并非作为本发明所附权利要求保护范围的限制。
说明书中针对“实施例”、“另一实施例”、“本实施例”等的引用,指的是描述的该实施例可包括特定的特征、结构或特性,但是不是每个实施例必须包含这些特定特征、结构或特性。此外,这样的表述并非指的是同一个实施 例。进一步,在结合实施例描述特定的特征、结构或特性时,不管有没有明确的描述,已经表明将这样的特征、结构或特性结合到其它实施例中是在本领域技术人员的知识范围内的。
在说明书及后续的权利要求书中使用了某些词汇来指称特定组件或部件,本领域普通技术人员应可理解,技术使用者或制造商可以不同的名词或术语来称呼同一个组件或部件。本说明书及后续的权利要求书并不以名称的差异来作为区分组件或部件的方式,而是以组件或部件在功能上的差异来作为区分的准则。在通篇说明书及后续的权利要求项中所提及的“包括”和“包含”为一开放式的用语,故应解释成“包含但不限定于”。以外,“连接”一词在此包含任何直接及间接的连接手段。
需要说明的是,在本发明的描述中,如出现术语“横向”、“纵向”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”、“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明和简化描述,并不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。为便于清楚说明,本文述及的“第一”、“第二”、“第三”、“第四”等次序用语是用于将元件、区域、部分与另一个相同或相似的元件、区域、部分区分开来,而非用以限定特定的元件、区域、部分。
如图1和图2所示,本发明的框架1包括框体10和控制模块20,框体10包括底板100、顶板200以及侧板300,侧板300支撑于底板100和顶板200之间,其中,侧板300支撑于底板100以及顶板200的两侧,从而,底板100和顶板200之间定义有电源模块容置区S1和计算模块容置区S2。并底板100设置有框架滑道400,电源模块通过框架滑道400进出以及固定于电源模块容置区S1中,计算模块通过框架滑道400进出以及固定于计算模块容置区S2,控制模块20连接在顶板200上。本发明的框架尤其适用于沉浸式散热的计算单元。
其中,计算模块容置区S2可以设置于电源模块容置区S1的一侧,也可以计算模块容置区S2位于电源模块容置区S1的两侧。
本实施例中,计算模块容置区S2包括第一计算模块容置区S21和第二计算模块容置区S22,第一计算模块容置区S21和第二计算模块容置区S22分别位于电源模块容置区S1的两侧。计算模块容置区S21、S22对称位于电源模块容 置区S1的两侧,计算设备整体配重更合理。
另,框架1具有安装方向P,框架滑道400沿安装方向P延伸,电源模块以及计算模块分别通过安装方向P进出电源模块容置区S1以及计算模块容置区S2。
本发明中,框架1的底板100、顶板200分别为钣金件,于钣金件上通过冲压、弯折等工艺形成需要的功能开口或凹槽。侧板300为直接使用带有凸棱的型材,价格低廉且能够保证支撑强度。当然,以上仅为举例,本发明的底板100、顶板200的材料不仅限于钣金件,其它可实现相同功能的材料均可,本发明不对其进行限定。
如图3所示,底板100包括第一底板部110、第二底板部120以及第三底板部130,结合图1,第一底板部110对应第一计算模块容置区S21,第二底板部120对应电源模块容置区S1,第三底板部130对应第二计算模块容置区S22。也就是说,第一底板部110与顶板200之间形成第一计算模块容置区S21,第二底板部120与顶板200之间形成电源模块容置区S1,第三底板部130与顶板200之间形成第二计算模块容置区S22。
框架滑道400包括底板计算板滑道410,第一底板部110和第三底板部130分别具有成对设置的冲压长孔,相邻冲压长孔的冲压侧边之间形成底板计算板滑道410。
以第一底板部110为例,第一底板部110包括冲压长孔111和冲压长孔112,冲压长孔111包括冲压侧边111a,冲压长孔112包括冲压侧边112a,冲压侧边111a和冲压侧边112a相对并与安装方向P平行,冲压侧边111a和冲压侧边112a之间即形成底板计算板滑道410。计算模块通过底板计算板滑道410进出计算模块容置区S21。本实施例中,第一底板部110沿安装方向P设置有两组冲压长孔111和冲压长孔112,在保证底板强度的基础上使滑道更稳固。
相对应的,如图4所示,顶板200包括第一顶板部210、第二顶板部220以及第三顶板部230,结合图1和图3,第一顶板部210与第一底板部110之间形成第一计算模块容置区S21,第二顶板部220与第二底板部120之间形成电源模块容置区S1,第三顶板部230与第三底板部130之间形成第二计算模块容置区S22。
为了使滑道固定结构更稳固,顶板上设置有相对应的底板计算板滑道410 的顶板计算板滑道420。
以第一顶板部210为例,如图4所示,第一顶板部210包括冲压长孔211和冲压长孔212,冲压长孔211包括冲压侧边211a,冲压长孔212包括冲压侧边212a,冲压侧边211a和冲压侧边212a对应并与安装方向P平行,冲压侧边211a和冲压侧边212a之间即形成顶板计算板滑道420。计算模块通过底板计算板滑道410、顶板计算板滑道420进出计算模块容置区S21。与第一底板部110相同,第一顶板部210沿安装方向P设置有两组冲压长孔211和冲压长孔212。
第三底板部130与第一底板部110具有相同的结构,第三顶板部230与第一顶板部210具有相同的结构,亦具有形成计算板滑道的多个对称设置的冲压长孔,此处不再赘述。
框架滑道400还包括底板电源滑道430,第一底板部110、第三底板部130上相邻第二底板部120的冲压长孔的冲压侧边之间形成底板电源滑道430。如图3所示,第一底板部110上冲压长孔112具有相邻第二底板部120的冲压侧边112b,第三底板部130上的冲压长孔132具有相邻第二底板部120的冲压侧边132b,第一底板部110上的冲压侧边112b与第三底板部130上的冲压侧边132b之间形成底板电源滑道430。
另,图1所示的为本发明的框架的使用状态的放置方式,顶板200位于底板100之上。结合图4,第二顶板部220的高度高于两侧的第一顶板部210以及第三顶板230,第二顶板部220处形成的凹槽对应底板电源滑道430形成顶板电源滑道440。
结合图3和图4,第一底板部110上的冲压长孔111、112与第一顶板部210上的冲压长孔211、212竖向对应。于计算模块安装后,冲压长孔111、112与冲压长孔211、212分别对应计算模块两侧的散热片,散热片竖向延伸,即散热片的鳍片间隙结合上下底板部上的冲压长孔形成液体流道,沉浸散热的散热液体流动通畅。
第二底板部120以及第二顶板部220上也布设多个排液口121、221,排液口的形状不限、数量不限,可线性排列、可矩阵排列,也可不规则排列。由于电源模块的散热需求小于计算模块的散热需求,一般来说,排液口121、221的尺寸小于冲压长孔111、112、211、212的尺寸,一定程度上可以保证框架的承重能力以及防变形能力。
复参照图1,进一步地,第二顶板部220包括下凹的电源定位槽222,下凹的电源定位槽222压紧电源模块,避免电源模块移位晃动。第二顶板部220上还设置有至少一个功能开口,本实施例中,第二顶板部220包括电源接口开口223以及电源开关开口224,分别用于连接电源线以及启闭电源模块,功能开口数量以及位置本领域技术人员可根据实际需要进行设置。
顶板200上还连接有提手500,于图1所示的本发明的框架的使用状态的放置方式下,提手500的最高位置高于顶板200的最高位置,即提手500的最高位置高于第二顶板部220。散热液体由下至上涌动时不会没过提手500,易于操作人员操作。
如图1、图2以及图5所示,框体10还包括控制板连接罩600,控制模块20连接在控制板连接罩600内,控制板连接罩600连接在顶板200的后侧。
控制模块20包括网络线接口21,于图1所示的本发明的框架的使用状态的放置方式下,网络线接口21高于顶板200的最高部分,亦即高于第二顶板部220,散热液体由下至上涌动时不会没过网络线接口21,便于操作人员操作。网络线接口21通过控制板连接罩600顶部的接口部610裸露出,也就是说,接口部610高于第二顶板部220。例如,接口部610可设置成与提手500同一高度。
如图1和图5所示,还包括后侧罩30,后侧罩30覆盖于框体10的后侧,此处后侧指的是连接有控制模块20的一侧。
后侧罩30包括侧板连接插槽31,控制板连接罩600通过侧板连接插槽31与后侧罩30的顶部相连接,后侧罩30的底部与底板100通过连接件连接,连接件例如为螺钉。后侧罩30封闭控制模块20于框体内,并覆盖住电源模块、控制模块与计算模块的各连接接头。另,后侧罩30的底部设置有排液口32,于计算单元提起时自然排出其中积液。
如图1和图6所示,还包括前侧板40,前侧板40覆盖于框体10的前侧,此处前侧指的是电源模块和计算模块滑入滑出的开口侧。
底板100包括底板连接插槽140,前侧板40的底部侧边通过底板连接插槽140连接,前侧板40的顶部与顶板200通过连接件连接,连接件例如为螺钉。
需要说明的是,本发明中,侧板300的实施方式多种多样,例如板状侧壁,X型侧壁、H型侧壁,只要能够起到支撑作用即可,本发明没有限制。
如图7至图9所示,图7至图9为本发明的框架的不同实施例的立体结构图。侧板300为带排液口的并设置在两侧的整体侧壁,能够对设置于框架中的各结构提供更为稳妥的保护作用,侧板300也可以制成凹凸结构以加强强度。侧板300例如为钣金件,于钣金件上通过冲压、弯折等工艺形成需要的排液口或凹凸结构。并,顶板200的结构有差异,电源定位槽、电源接口开口、电源开关开口的不同位置设置为不同类型的电源提供了适配。
当然,本发明还可有其它多种实施例,在不背离本发明精神及其实质的情况下,熟悉本领域的技术人员当可根据本发明作出各种相应的改变和变形,但这些相应的改变和变形都应属于本发明所附的权利要求的保护范围。
工业应用性
本发明的框架包括框体和控制模块,框体包括底板、顶板以及侧板,侧板支撑于底板和顶板之间,底板和顶板之间定义有电源模块容置区和计算模块容置区,并底板设置有框架滑道,电源模块和计算模块分别通过框架滑道进出以及固定于电源模块容置区和计算模块容置区,控制模块连接在顶板上。本发明框架用于集成化的计算单元,小巧轻便。并且本发明的框架结构简单,布局合理,成本低廉。

Claims (18)

  1. 一种框架,包括框体和控制模块,所述框体包括底板、顶板以及侧板,所述侧板支撑于所述底板和顶板之间,其特征在于,所述底板和顶板之间定义有电源模块容置区和计算模块容置区,并所述底板设置有框架滑道,电源模块和计算模块分别通过所述框架滑道进出以及固定于所述电源模块容置区和计算模块容置区,所述控制模块连接在所述顶板上。
  2. 根据权利要求1所述的框架,其特征在于,所述计算模块容置区包括第一计算模块容置区和第二计算模块容置区,所述第一计算模块容置区和第二计算模块容置区分别位于所述电源模块容置区的两侧。
  3. 根据权利要求2所述的框架,其特征在于,所述底板和顶板分别为钣金件。
  4. 根据权利要求3所述的框架,其特征在于,所述底板包括对应所述第一计算模块容置区的第一底板部、对应所述电源模块容置区的第二底板部以及对应所述第二计算模块容置区的第三底板部,所述框架滑道包括底板计算板滑道,所述第一底板部和第三底板部分别具有成对设置的冲压长孔,相邻冲压长孔的冲压侧边之间形成所述底板计算板滑道。
  5. 根据权利要求4所述的框架,其特征在于,所述框架滑道还包括底板电源滑道,所述第一底板部、第三底板部上相邻所述第二底板部的冲压长孔的冲压侧边之间形成所述底板电源滑道。
  6. 根据权利要求4所述的框架,其特征在于,所述第二底板部具有多个呈矩阵排列的排液口。
  7. 根据权利要求4所述的框架,其特征在于,所述顶板包括对应所述第一计算模块容置区的第一顶板部、对应所述电源模块容置区的第二顶板部以及对应所述第二计算模块容置区的第三顶板部,所述第一顶板部和第三顶板部分别具有成对设置的冲压长孔,相邻冲压长孔的冲压侧边之间形成对应所述底板计算板滑道的顶板计算板滑道。
  8. 根据权利要求7所述的框架,其特征在于,所述第二顶板部的高度高于所述第一顶板部以及第三顶板部。
  9. 根据权利要求7所述的框架,其特征在于,所述顶板上还连接有提手,所述提手的最高位置高于所述第二顶板部。
  10. 根据权利要求7所述的框架,其特征在于,所述第二顶板部包括下凹的电源定位槽。
  11. 根据权利要求7所述的框架,其特征在于,所述第二顶板部包括多个排液口。
  12. 根据权利要求7所述的框架,其特征在于,所述第二顶板部包括至少一个功能开口。
  13. 根据权利要求7所述的框架,其特征在于,所述控制模块包括网络线接口,所述网络线接口高于所述第二顶板部。
  14. 根据权利要求1至13任一项所述的框架,其特征在于,还包括前侧板,所述底板包括底板连接插槽,所述前侧板的底部侧边通过所述底板连接插槽连接,所述前侧板的顶部与所述顶板通过连接件连接。
  15. 根据权利要求1至13任一项所述的框架,其特征在于,还包括控制板连接罩,所述控制模块连接在所述控制板连接罩内,所述控制板连接罩连接在所述顶板的后侧。
  16. 根据权利要求15所述的框架,其特征在于,还包括后侧罩,所述后侧罩包括侧板连接插槽,所述控制板连接罩通过所述侧板连接插槽与所述后侧罩的顶部相连接,所述后侧罩的底部与所述底板通过连接件连接。
  17. 根据权利要求16所述的框架,其特征在于,所述后侧罩的底部设置有排液口。
  18. 根据权利要求1至13任一项所述的框架,其特征在于,所述侧板为条状型材件。
PCT/CN2021/105784 2020-07-14 2021-07-12 框架 WO2022012470A1 (zh)

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