WO2015070819A1 - 一种机柜框架梁、机柜框架及机柜 - Google Patents

一种机柜框架梁、机柜框架及机柜 Download PDF

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Publication number
WO2015070819A1
WO2015070819A1 PCT/CN2014/091414 CN2014091414W WO2015070819A1 WO 2015070819 A1 WO2015070819 A1 WO 2015070819A1 CN 2014091414 W CN2014091414 W CN 2014091414W WO 2015070819 A1 WO2015070819 A1 WO 2015070819A1
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Prior art keywords
cabinet frame
cabinet
wall
side wall
semi
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PCT/CN2014/091414
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English (en)
French (fr)
Inventor
杜磊
王卫周
宋小军
赵学彬
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中兴通讯股份有限公司
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Publication of WO2015070819A1 publication Critical patent/WO2015070819A1/zh

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    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K7/00Constructional details common to different types of electric apparatus
    • H05K7/18Construction of rack or frame
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02BBOARDS, SUBSTATIONS OR SWITCHING ARRANGEMENTS FOR THE SUPPLY OR DISTRIBUTION OF ELECTRIC POWER
    • H02B1/00Frameworks, boards, panels, desks, casings; Details of substations or switching arrangements
    • H02B1/01Frameworks
    • H02B1/013Profiles for cabinet frames

Definitions

  • the present invention relates to the technical field of cabinets and cabinet racks, and in particular to a cabinet frame beam, a cabinet frame and a cabinet.
  • the frame of the cabinet is generally formed by welding of sheet metal bent parts.
  • the cabinet frame has low carrying capacity and few internal interfaces, and cannot flexibly meet the requirements of different devices.
  • the components of the cabinet frame cannot be mutually common.
  • the cabinet frame has low design and processing efficiency, long production cycle and high cost.
  • the present invention provides a cabinet frame beam, a cabinet frame, and a cabinet for solving the above technical problems, in view of the problem that the structure of the cabinet frame beam in the related art cannot flexibly meet the requirements of different equipments.
  • a cabinet frame beam, the cabinet frame beam is a closed profile, comprising a first semi-closed cavity, a second semi-closed cavity, and a first connecting wall and a second connecting wall, wherein:
  • the first semi-closed cavity includes an inner mounting wall, an outer sidewall and an outer sidewall, wherein the inner mounting wall and the outer sidewall are perpendicular to each other, and the outer sidewall and the outer sidewall are perpendicular to each other;
  • the second semi-closed cavity includes an inner side wall, an inner side mounting wall and an outer side wall, wherein the inner side mounting wall and the inner side wall are perpendicular to each other, and the outer side wall and the inner side wall are perpendicular to each other;
  • the first semi-closed cavity and the second semi-closed cavity form a cabinet frame beam of the closed profile with the first connecting wall and the second connecting wall;
  • first connecting wall is formed by bending the inner mounting wall toward the inner cavity of the first semi-closed cavity
  • second connecting wall is the outer sidewall to the first half
  • the cavity of the closed cavity is formed by bending inside the cavity.
  • the angle between the first connecting wall and the inner mounting wall ranges from 90° to 180°.
  • the angle between the second connecting wall and the outer sidewall ranges from 90° to 180°.
  • the inner sidewall and the outer sidewall are connected by laser welding or spot welding.
  • an interface for performing internal installation of the cabinet is disposed on the inner mounting wall and/or the inner mounting wall.
  • a cabinet frame wherein the cabinet frame is a rectangular parallelepiped, comprising: a connecting member, a connecting plate, and any of the above-mentioned cabinet frame beams, wherein
  • the rectangular parallelepiped is formed by the cabinet frame beam and the connecting plate being connected by the connecting member.
  • the front side and the rear side of the rectangular parallelepiped are formed by connecting the two cabinet frame beams and the two connecting plates through the connecting member, and the cabinet frame beam and the connecting plate are adjacent to each other;
  • Both sides of the rectangular parallelepiped are formed by connecting the four cabinet frame beams through the connecting members.
  • connection board is provided with an interface for performing internal installation of the cabinet.
  • the cabinet frame is a square.
  • a cabinet includes a front door, a side door, a top cover, a bottom cover, and any of the above cabinet frames.
  • the cabinet frame beam is composed of two semi-closed cavities, and the inner side mounting wall, the outer side wall and the outer side wall enclose a semi-closed cavity, and the inner side wall, the inner side mounting wall and the outer side wall are enclosed by the inner side wall.
  • the closed cavity, the semi-closed cavity, the semi-closed cavity and the connecting wall enclose the closed profile, and the structure of the frame frame beam of the related art cannot be flexibly satisfied to meet the requirements of different equipments.
  • the problem is that the cabinet frame beam of the invention has the advantages of simple structure, low production cost, firm structure and no deformation, and can quickly meet the requirements of various high, wide and deep dimension cabinet frames according to actual demand dimensions.
  • FIG. 1 is a three-dimensional structural schematic view of a cabinet frame beam according to an embodiment of the present invention
  • FIG. 2 is a three-dimensional structural diagram of an optional cabinet frame beam according to an embodiment of the present invention.
  • FIG. 3 is a schematic cross-sectional structural view of a cabinet frame beam according to an embodiment of the present invention.
  • FIG. 4 is a schematic cross-sectional structural view of a second cabinet frame beam according to an embodiment of the present invention.
  • FIG. 5 is a schematic cross-sectional structural view of a second cabinet frame beam according to an embodiment of the present invention.
  • FIG. 6 is a schematic diagram of a three-dimensional structure of a cabinet frame according to an embodiment of the present invention.
  • FIG. 7 is a three-dimensional exploded view of a cabinet frame according to an embodiment of the present invention.
  • FIG. 8 is a partial structural schematic view of a cabinet assembled by a cabinet frame beam according to an embodiment of the invention.
  • the embodiment of the present invention provides a cabinet frame beam, a cabinet frame and a cabinet.
  • the present invention is further described in detail below with reference to the accompanying drawings and embodiments. . It is understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
  • Embodiments of the present invention provide a cabinet frame beam, a cabinet frame, and a cabinet.
  • the frame beam of the cabinet can carry a larger load under the same cross-sectional size, and can improve the design and processing efficiency of the cabinet frame, and improve the frame of the cabinet. Modularity and flexibility reduce production costs.
  • the cabinet frame beam comprises two mutually parallel inner mounting walls, and the movable ends of the two inner mounting walls are respectively bent outward to form an outer side wall and an extending wall, and the two lower outer side walls and the lower inner side wall are formed.
  • the lower side semi-closed cavity, the upper side inner side wall and the upper side outer side wall form an upper inverted half-closed cavity, and the two semi-closed cavity bodies are connected together through the connecting wall to form a closed space.
  • FIG. 1 is a three-dimensional structural diagram of a cabinet frame beam according to an embodiment of the present invention.
  • the cabinet frame beam is a closed profile. As shown in FIG. 1 , the cabinet frame beam includes:
  • a semi-closed cavity 10 surrounded by an inner mounting wall 14, an outer side wall 15, and an outer side wall 16; wherein the inner mounting wall 14 and the outer side wall 15 are perpendicular to each other, and the outer side wall 16 and the outer side wall 15 are perpendicular to each other;
  • the semi-closed cavity 10, the semi-closed cavity 19, the connecting wall 13 and the connecting wall 17 enclose the closed profile; wherein the inner mounting wall 14 is bent toward the inside of the cavity of the semi-closed cavity 10 to form the above
  • the connecting wall 13 is bent toward the inside of the cavity of the semi-closed cavity 10 to form the connecting wall 17.
  • the cabinet frame beam is composed of two semi-closed cavities, and the inner side mounting wall 14 , the outer side wall 15 and the outer side wall 16 enclose the semi-enclosed cavity 10 , and the inner side wall 11 and the inner side mounting wall 12 .
  • the outer side wall 18 encloses a semi-closed cavity 19, and the semi-closed cavity 10, the semi-closed cavity 19 and the connecting wall enclose the above-mentioned closed profile, which solves the related art that the structure of the frame frame beam cannot flexibly meet different equipment requirements.
  • the problem of the cabinet frame beam of the invention is simple structure, low production cost, firm structure and not easy to be deformed, and can quickly meet the requirements of various high, wide and deep size cabinet frames according to actual demand dimensions.
  • an interface for installing the interior of the cabinet may be provided on the inner mounting wall 12 and/or the inner mounting wall 14 , such as the optional cabinet frame shown in FIG. 2 .
  • the three-dimensional structure of the beam, the two inner side mounting walls 12, 14 of the cabinet frame beam are respectively provided with a plurality of interfaces 121, 141, 142 for internal installation of the cabinet, through which the internal structural components of the cabinet frame can be conveniently and flexibly installed.
  • FIG. 3 is a schematic cross-sectional structural view of a cabinet frame beam according to an embodiment of the present invention, as shown in FIG.
  • the cabinet frame beam includes two inner mounting walls 12, 14, outer side walls 15, 16, 18 and connecting walls 13, 17. Wherein, the outer side wall 18 and the inner side wall 11 are vertically butted together.
  • the extending ends of the inner mounting wall extend outwardly and the inner side walls respectively form two semi-closed cavities 10, 19, and the two semi-closed cavities are connected by connecting edges 13, 17 to form a closed space. Since the cabinet frame beam is a closed cavity structure surrounded by the inner side mounting walls 12, 14, the outer side walls 15, 16, 18, the inner side wall 11 and the connecting walls 13, 18, the frame beam has good strength and high torsion resistance. In the case of the same material, it can carry a larger load.
  • the frame beam of the cabinet can be mass-produced by special equipment such as rolling line, and the processing efficiency is high and the cost is low.
  • the abutting area formed by the inner side wall 11 and the outer side wall 18 of the cabinet frame beam may be laser welded or spot welded, and the strength is higher than that of the open sheet metal bending beam. Based on this, the embodiment provides an alternative embodiment in which the inner sidewall 11 and the outer sidewall 18 are connected by laser welding or spot welding.
  • the angle between the connecting wall 13 and the inner mounting wall 14 between the two inner mounting walls of the frame frame beam is ⁇
  • the angle between the connecting wall 17 and the outer side wall 16 between the outer side walls of the frame beam is ⁇ .
  • the angles ⁇ and ⁇ are from 90° to 180°.
  • the embodiment provides an alternative embodiment, that is, the angle between the connecting wall 13 and the inner mounting wall 14 ranges from 90° to 180°, and the angle between the connecting wall 17 and the outer side wall 16 ranges from 90° to 180 degrees. °. This angle can be arbitrarily selected according to actual needs.
  • FIG. 6 is a three-dimensional structure diagram of the cabinet frame according to an embodiment of the present invention
  • FIG. 7 is a three-dimensional decomposition of the cabinet frame according to an embodiment of the present invention. As shown in FIG. 6 and FIG.
  • the cabinet frame includes: a front frame and a connecting plate 3; the front frame includes any of the above-mentioned cabinet frame beams 1 and connecting members 2; wherein, 8 cabinet frame beams 1 and 8 are connected
  • the second frame is built into the front frame of the square frame; in the front frame, one connecting plate 3 is respectively mounted on two cabinet frame beams 1 which are located on the same plane and parallel to each other, and the other two are parallel with the two cabinet frame beams 1.
  • One connecting plate 3 is respectively mounted on the frame beam 1 of the cabinet.
  • the height and width dimensions of the cabinet frame can meet various requirements by cutting the corresponding length of the frame beam 1.
  • the depth dimension of the cabinet frame can meet different requirements by adjusting the length dimension of the connecting plate 3.
  • the cabinet frame with the cabinet frame beam 1 introduced by the present invention can be applied to cabinet frames of various equipments, such as a communication equipment cabinet frame.
  • the cabinet frame beam of the present invention is a closed cavity surrounded by two inner mounting walls, an outer side wall and a connecting wall, in the design of the cabinet frame, only the frame beams of the required length need to be intercepted, and then connected together through the connecting members.
  • the front frame of the frame is formed, and the front frame of the two frames and the connecting plates of the required length are connected to form a cabinet frame.
  • the frame connecting plate of the cabinet is a common part.
  • a series of mounting ports are reserved on the connecting plate.
  • this embodiment provides an optional implementation manner, that is, the interface board 3 is provided with an interface for performing internal installation of the cabinet.
  • the present invention further provides a cabinet including the cabinet frame, the front door, the side door, the top cover, the bottom cover, and the like, which are described in the foregoing embodiments.
  • 8 is a partial structural diagram of a cabinet assembled by a cabinet frame beam according to an embodiment of the present invention. As shown in FIG. 8, components such as a cabinet frame, a front door 4, a hinge 5, a side door 6, a top cover, and a bottom cover are provided.
  • the cabinet is composed.
  • the front door 4 of the cabinet is provided with a sealing strip 43 matched with the frame beam 1 of the cabinet, so that the cabinet has good sealing performance.
  • the weather strip 43 is mounted on the front door reinforcement beam 42 which is joined to the front door panel 41 by welding or screwing to enhance the overall strength of the front door.
  • the front door is connected to the cabinet frame beam 1 by a hinge 5.
  • the side door 6 is connected to the frame reinforcing beam by screwing.
  • the cabinet frame beam of the invention has the advantages of simple structure, low production cost, firm structure and no deformation, and can quickly meet the requirements of various high, wide and deep size cabinet frames according to actual demand dimensions.
  • the technical solution of the invention solves the problem that the structure of the frame frame beam of the related art cannot flexibly meet different
  • the cabinet frame beam of the invention has the advantages of simple structure, low production cost, firm structure and deformation, and can quickly meet the requirements of various high, wide and deep size cabinet frames according to actual demand dimensions. Therefore, the present invention has strong industrial applicability.

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  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Casings For Electric Apparatus (AREA)

Abstract

本发明提供了一种机柜框架梁(1)、机柜框架及机柜。该机柜框架梁(1)为封闭型材,包括:由内侧安装壁(14)、外侧壁(15)和外侧壁(16)围成的第一半封闭腔体(10),其中,内侧安装壁(14)与外侧壁(15)相互垂直,外侧壁(16)与外侧壁(15)相互垂直;由内侧壁(11)、内侧安装壁(12)和外侧壁(18)围成的第二半封闭腔体(19),其中,内侧安装壁(12)与内侧壁(11)相互垂直,外侧壁(18)与内侧壁(11)相互垂直;第一半封闭腔体(10)、第二半封闭腔体(19)与第一连接壁(13)、第二连接壁(17)围成封闭型材。本发明解决了机柜框架梁的结构不能灵活满足不同设备需求的问题。本发明的机柜框架梁结构简单、生产成本低、结构牢固不易变形,且可根据实际需求尺寸快速满足各种高、宽、深尺寸机柜框架的要求。

Description

一种机柜框架梁、机柜框架及机柜 技术领域
本发明涉及机柜及机柜架技术领域,特别是涉及一种机柜框架梁、机柜框架及机柜。
背景技术
随着通讯设备的发展,对机柜框架结构的承载能力、机柜的通用性能、机柜设计和加工效率有了越来越高的要求。相关技术中一般由钣金折弯零部件通过焊接组成机柜框架。这种机柜框架的承载能力较低、结构内部接口少,不能灵活满足不同设备的需求、机柜框架的零部件不能相互通用。同时,该机柜框架的设计和加工效率较低、生产周期长、成本高。
针对相关技术中机柜框架梁的结构不能灵活满足不同设备需求的问题,目前尚未提出有效的解决方案。
发明内容
针对相关技术中机柜框架梁的结构不能灵活满足不同设备需求的问题,本发明提供了一种机柜框架梁、机柜框架及机柜,用以解决上述技术问题。
为解决上述技术问题,采用如下技术方案:
一种机柜框架梁,所述机柜框架梁为封闭型材,包括第一半封闭腔体、第二半封闭腔体及第一连接壁和第二连接壁,其中:
所述第一半封闭腔体包括内侧安装壁、外侧壁和外侧壁,其中,所述内侧安装壁与所述外侧壁相互垂直,所述外侧壁与所述外侧壁相互垂直;
所述第二半封闭腔体包括内侧壁、内侧安装壁和外侧壁,其中,所述内侧安装壁与所述内侧壁相互垂直,所述外侧壁与所述内侧壁相互垂直;
所述第一半封闭腔体及所述第二半封闭腔体与所述第一连接壁和第二连接壁形成封闭型材的所述机柜框架梁;
其中,所述第一连接壁是所述内侧安装壁向所述第一半封闭腔体的腔体内部方向折弯形成的,所述第二连接壁是所述外侧壁向所述第一半封闭腔体的腔体内部方向折弯形成的。
可选地,所述第一连接壁与所述内侧安装壁的夹角范围为90°~180°。
可选地,所述第二连接壁与所述外侧壁的夹角范围为90°~180°。
可选地,所述内侧壁与所述外侧壁通过激光焊接或点焊的方式连接。
可选地,所述内侧安装壁和/或所述内侧安装壁上设置有用于进行机柜内部安装的接口。
一种机柜框架,所述机柜框架为长方体,包括:连接件、连接板和上述任意的的机柜框架梁,其中,
所述长方体是由所述机柜框架梁和所述连接板通过所述连接件连接形成的。
可选地,所述长方体的正面和后面是由两个所述机柜框架梁和两个所述连接板通过所述连接件连接形成的,且所述机柜框架梁和所述连接板接邻;
所述长方体的两个侧面均是由四个所述机柜框架梁通过所述连接件连接形成的。
可选地,所述连接板上设置有用于进行机柜内部安装的接口。
可选地,所述机柜框架为正方体。
一种机柜,所述机柜包括前门、侧门、顶盖板、底盖板以及上述任意的机柜框架。
通过本发明,机柜框架梁由两个半封闭腔体构成封闭型材,其中,由内侧安装壁、外侧壁、外侧壁围成半封闭腔体,由内侧壁、内侧安装壁、外侧壁围成半封闭腔体,上述半封闭腔体、上述半封闭腔体与连接壁围成上述封闭型材,解决了相关技术中机柜框架梁的结构不能灵活满足不同设备需求的 问题,本发明所述的机柜框架梁结构简单、生产成本低、结构牢固不易变形,且可根据实际需求尺寸快速满足各种高、宽、深尺寸机柜框架的要求。
上述说明仅是本发明技术方案的概述,为了能够更清楚了解本发明的技术手段,而可依照说明书的内容予以实施,并且为了让本发明的上述和其它目的、特征和优点能够更明显易懂,以下特举本发明的具体实施方式。
附图概述
图1是根据本发明实施例的机柜框架梁的三维结构示意图;
图2是根据本发明实施例的可选机柜框架梁的三维结构示意图;
图3是根据本发明实施例的机柜框架梁的截面结构示意图;
图4是根据本发明实施例的第二种机柜框架梁的截面结构示意图;
图5是根据本发明实施例的第二种机柜框架梁的截面结构示意图;
图6是根据本发明实施例的机柜框架的三维结构示意图;
图7是根据本发明实施例的机柜框架的三维分解示意图;
图8是根据本发明实施例的机柜框架梁安装组成的机柜的局部结构示意图。
本发明的较佳实施方式
为了解决相关技术中机柜框架梁的结构不能灵活满足不同设备需求的问题,本发明实施例提供了一种机柜框架梁、机柜框架及机柜,以下结合附图以及实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不限定本发明。
本发明实施例提供了一种机柜框架梁、机柜框架及机柜,该机柜框架梁在相同截面尺寸的情况下,能够承载更大载荷,同时能够提高机柜框架的设计和加工效率,提高机柜框架的模块化程度和灵活度,降低生产成本。
上述机柜框架梁包含两个相互平行的内侧安装壁,该两内部安装壁的活动端分别向外侧折弯形成外侧壁和延伸壁,两下侧外侧壁和下侧内侧壁形成 下侧的半封闭形腔体,两上侧内侧壁和上侧外侧壁形成上侧的倒置半封闭形腔体,两半封闭形腔体通过连接壁连接在一起,形成一个封闭空间。下面结合附图进行具体介绍。
图1是根据本发明实施例的机柜框架梁的三维结构示意图,机柜框架梁为封闭型材,如图1所示,机柜框架梁包括:
由内侧安装壁14、外侧壁15、外侧壁16围成的半封闭腔体10;其中,上述内侧安装壁14与上述外侧壁15相互垂直,上述外侧壁16与上述外侧壁15相互垂直;
由内侧壁11、内侧安装壁12、外侧壁18围成的半封闭腔体19;其中,上述内侧安装壁12与上述内侧壁11相互垂直,上述外侧壁18与上述内侧壁11相互垂直;
上述半封闭腔体10、上述半封闭腔体19与连接壁13、连接壁17围成上述封闭型材;其中,上述内侧安装壁14向半封闭腔体10的腔体内部方向折弯,形成上述连接壁13,上述外侧壁16向半封闭腔体10的腔体内部方向折弯,形成上述连接壁17。
通过本发明,机柜框架梁由两个半封闭腔体构成封闭型材,其中,由内侧安装壁14、外侧壁15、外侧壁16围成半封闭腔体10,由内侧壁11、内侧安装壁12、外侧壁18围成半封闭腔体19,上述半封闭腔体10、上述半封闭腔体19与连接壁围成上述封闭型材,解决了相关技术中机柜框架梁的结构不能灵活满足不同设备需求的问题,本发明所述的机柜框架梁结构简单、生产成本低、结构牢固不易变形,且可根据实际需求尺寸快速满足各种高、宽、深尺寸机柜框架的要求。
可选地,为了方便灵活的安装机柜框架内部结构件,可以在内侧安装壁12和/或上述内侧安装壁14上设置有用于进行机柜内部安装的接口,如图2所示的可选机柜框架梁的三维结构示意图,机柜框架梁的两内侧安装壁12、14上分别开设有多个用于机柜内部安装的接口121、141、142,通过这些接口可以方便灵活的安装机柜框架内部结构件。
图3是根据本发明实施例的机柜框架梁的截面结构示意图,如图3所示, 机柜框架梁包括两个内侧安装壁12、14、外侧壁15、16、18和连接壁13、17。其中,外侧壁18与内侧壁11相互垂直对接在一起。内侧安装壁的延伸端分别向外侧延伸和内侧壁一起形成两个半封闭形腔体10、19,两半封闭形腔体通过连接边13、17连接,围成一封闭空间。由于该机柜框架梁是由内侧安装壁12、14、外侧壁15、16、18、内侧壁11和连接壁13、18一起围成的封闭腔结构,所以该框架梁强度好、抗扭性能高、在相同材料的情况下,可承载更大的载荷。该机柜框架梁可利用专门设备如滚轧线大批量生产,加工效率高,成本低。机柜框架梁的内侧壁11与外侧壁18形成的对接区域可采用激光焊接或点焊连接,其强度比开放式钣金折弯梁更高。基于此,本实施例提供一种可选实施方式,即内侧壁11与外侧壁18通过激光焊接或点焊的方式连接。
机柜框架梁两内侧安装壁之间的连接壁13与内侧安装壁14之间的夹角为α、框架梁两外侧壁之间的连接壁17与外侧壁16之间的夹角为β,夹角α、β为90°~180°。基于此,本实施例提供一种可选实施方式,即连接壁13与内侧安装壁14的夹角范围为90°~180°,连接壁17与外侧壁16的夹角范围为90°~180°。该角度可以根据实际需求任意选择。
当机柜框架梁的内侧安装壁14与连接壁13之间的夹角α为180°时,两内侧安装壁相互平行且在同一平面内,如图4所示的第二种机柜框架梁的截面结构示意图。
当机柜框架梁的外侧壁16与连接壁17之间的夹角β为180°时,两外侧壁相互平行且在同一个平面上内,如图5所示的第二种机柜框架梁的截面结构示意图。
基于上述实施例介绍的机柜框架梁,本发明还提供了一种机柜框架,图6是根据本发明实施例的机柜框架的三维结构示意图,图7是根据本发明实施例的机柜框架的三维分解示意图,如图6和图7所示,该机柜框架包括:前框和连接板3;前框包括上述任意的机柜框架梁1和连接件2;其中,8个机柜框架梁1与8个连接件2搭建成正方体框架的前框;在前框中,在位于同一平面且相互平行的2个机柜框架梁1上分别安装1个连接板3,与2个机柜框架梁1平行的另外2个机柜框架梁1上分别安装1个连接板3。
在实际应用过程中,机柜框架的高度、宽度尺寸可以通过截取对应长度的框架梁1满足各种不同的需求,机柜框架的深度尺寸可以通过调节连接板3的长度尺寸满足不同的需求。
本发明介绍的具有机柜框架梁1的机柜框架可以适用于多种设备的机柜框架,如通讯设备机柜框架等。
由于本发明的上述机柜框架梁是由两内侧安装壁、外侧壁和连接壁一起围成的封闭腔,在机柜框架设计时,只需要截取所需长度的框架梁,然后通过连接件连接在一起组成框架前框,两框架前框和所需长度尺寸的连接板连接组成机柜框架。机柜框架连接板为通用件,为满足机柜顶板、底板等零部件的安装需求,在连接板上预留一系列安装口。可选地,本实施例提供了一种可选实施方式,即连接板3上设置有用于进行机柜内部安装的接口。
基于上述实施例介绍的机柜框架梁和机柜框架,本发明还提供了一种机柜,该机柜包括上述实施例介绍的机柜框架、前门、侧门、顶盖板、底盖板等。图8是根据本发明实施例的机柜框架梁安装组成的机柜的局部结构示意图,如图8所示,由机柜框架、前门4、铰链5、侧门6、顶盖板、底盖板等零部件组成的机柜。机柜前门4上装有与机柜框梁1相配合的密封条43,从而使得机柜具有良好的密封性能。密封条43安装在前门加强梁42上,前门加强梁通过焊接或螺钉固定的方式连接在前门门板41上,增强前门整体强度。前门通过铰链5与机柜框架梁1连接。侧门6通过螺钉固定的方式与机架加强梁连接。
本发明所述机柜框架梁结构简单、生产成本低、结构牢固不易变形,且可根据实际需求尺寸快速满足各种高、宽、深尺寸机柜框架的要求。
尽管为示例目的,已经公开了本发明的可选实施例,本领域的技术人员将意识到各种改进、增加和取代也是可能的,因此,本发明的范围应当不限于上述实施例。
工业实用性
本发明技术方案解决了相关技术中机柜框架梁的结构不能灵活满足不同 设备需求的问题,本发明所述的机柜框架梁结构简单、生产成本低、结构牢固不易变形,且可根据实际需求尺寸快速满足各种高、宽、深尺寸机柜框架的要求。因此本发明具有很强的工业实用性。

Claims (10)

  1. 一种机柜框架梁,所述机柜框架梁为封闭型材,包括第一半封闭腔体(10)、第二半封闭腔体(19)及第一连接壁(13)和第二连接壁(17),其中:
    所述第一半封闭腔体(10)包括内侧安装壁(14)、外侧壁(15)和外侧壁(16),其中,所述内侧安装壁(14)与所述外侧壁(15)相互垂直,所述外侧壁(16)与所述外侧壁(15)相互垂直;
    所述第二半封闭腔体(19)包括内侧壁(11)、内侧安装壁(12)和外侧壁(18),其中,所述内侧安装壁(12)与所述内侧壁(11)相互垂直,所述外侧壁(18)与所述内侧壁(11)相互垂直;
    所述第一半封闭腔体(10)及所述第二半封闭腔体(19)与所述第一连接壁(13)和第二连接壁(17)形成封闭型材的所述机柜框架梁;
    其中,所述第一连接壁(13)是所述内侧安装壁(14)向所述第一半封闭腔体(10)的腔体内部方向折弯形成的,所述第二连接壁(17)是所述外侧壁(16)向所述第一半封闭腔体(10)的腔体内部方向折弯形成的。
  2. 如权利要求1所述的机柜框架梁,其中,所述第一连接壁(13)与所述内侧安装壁(14)的夹角范围为90°~180°。
  3. 如权利要求1所述的机柜框架梁,其中,所述第二连接壁(17)与所述外侧壁(16)的夹角范围为90°~180°。
  4. 如权利要求1所述的机柜框架梁,其中,所述内侧壁(11)与所述外侧壁(18)通过激光焊接或点焊的方式连接。
  5. 如权利要求1所述的机柜框架梁,其中,所述内侧安装壁(12)和/或所述内侧安装壁(14)上设置有用于进行机柜内部安装的接口。
  6. 一种机柜框架,所述机柜框架为长方体,包括:连接件(2)、连接板(3)和权利要求1至5中任一项所述的机柜框架梁(1),其中,
    所述长方体是由所述机柜框架梁(1)和所述连接板(3)通过所述连接件(2)连接形成的。
  7. 如权利要求6所述的机柜框架,其中:
    所述长方体的正面和后面是由两个所述机柜框架梁(1)和两个所述连接 板(3)通过所述连接件(2)连接形成的,且所述机柜框架梁(1)和所述连接板(3)接邻;
    所述长方体的两个侧面均是由四个所述机柜框架梁(1)通过所述连接件(2)连接形成的。
  8. 如权利要求6所述的机柜框架,其中,所述连接板(3)上设置有用于进行机柜内部安装的接口。
  9. 如权利要求6所述的机柜框架,其中,所述机柜框架为正方体。
  10. 一种机柜,所述机柜包括前门、侧门、顶盖板、底盖板以及权利要求6-9中任一项所述的机柜框架。
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