WO2020007140A1 - 一种用于安装机房空调的风机模块的组合桁架结构 - Google Patents

一种用于安装机房空调的风机模块的组合桁架结构 Download PDF

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Publication number
WO2020007140A1
WO2020007140A1 PCT/CN2019/089141 CN2019089141W WO2020007140A1 WO 2020007140 A1 WO2020007140 A1 WO 2020007140A1 CN 2019089141 W CN2019089141 W CN 2019089141W WO 2020007140 A1 WO2020007140 A1 WO 2020007140A1
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fan
frame
truss structure
fan module
structure according
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PCT/CN2019/089141
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English (en)
French (fr)
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姚晋芳
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维谛技术有限公司
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Publication of WO2020007140A1 publication Critical patent/WO2020007140A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/02Ducting arrangements
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/32Supports for air-conditioning, air-humidification or ventilation units

Definitions

  • the invention relates to the technical field of computer room air conditioners, and more particularly, to a combined truss structure for installing a fan module of a computer room air conditioner.
  • the hot-swappable fan module is a functional module that can fully meet this demand, and it also realizes a modular approach to assembly.
  • multiple fan modules are installed on a large rectangular flat plate, when the fan is running at high speed, a large amount of local vibration may occur in the entire rectangular mounting plate, which may cause a single fan terminal to become loose or have poor contact due to vibration. Failure problem.
  • An object of the present invention is to provide a combined truss structure for installing a fan module of a room air conditioner, which solves the problem that the fan of the room air conditioner in the prior art is liable to cause local large-scale vibrations to cause the fan terminals to loosen and fail when the fan runs at high speed.
  • a combined truss structure for installing a fan module of a room air conditioner comprising a base plate for installing a plurality of fan modules, the base plate including an outer frame, and the outer frame is composed of An upper frame, a lower frame, a left frame, and a right frame are connected end to end. At least one horizontal beam is disposed between the upper frame and the lower frame. At least one frame is disposed between the left frame and the right frame. A vertical beam along the longitudinal direction, and a region in the outer frame is divided by the beam and the vertical beam to form a plurality of installation spaces for one-to-one corresponding installation of each of the fan modules.
  • a fixing seat assembly for fixing a fan terminal is provided near the left side, and two ends of the left side of the fan module are respectively connected to the bottom plate by two fasteners, and the right side of the fan module passes at least one Fasteners are connected to the bottom plate, and the fan module is installed in a corresponding installation space.
  • the number of the fasteners on the right side of the fan module is one and is located in the middle of the right side of the fan module.
  • the number of the fasteners on the right side of the fan module is two and is located at both ends of the right side of the fan module.
  • the fixed seat component is connected to a cross beam and / or an upper frame corresponding to an upper end of the fan module.
  • the fixed seat assembly includes a main body and at least one fan terminal fixed seat connected to the main body for positioning a fan terminal.
  • a lateral stiffener is connected to the back of each of the beams.
  • a vertical stiffener is connected to the back surface of each of the vertical beams.
  • a fan distribution box along the horizontal direction is further provided between the upper frame and the lower frame, and each of the vertical beams is divided by the fan distribution box.
  • the fan distribution box is disposed between the beam adjacent to the upper frame and the upper frame; or the fan distribution box is disposed between the Between the beams adjacent to the lower frame and the lower frame; or the number of the beams is multiple, and the fan distribution box is disposed between two adjacent beams.
  • the number of the vertical beams is one.
  • the combined truss structure of the fan module for installing room air conditioners in the present invention has a compact design, does not waste space on the entire machine, saves costs, and maintains Conveniently, the stress state of the bottom plate is changed through the split thinking, and the maximum deflection of the bottom plate is reduced.
  • the two sides of the fan module are provided with fasteners at specific positions to solve the problem of looseness or poor contact of a single fan terminal due to vibration. , And the problem of vibration during actual operation is solved with only a small number of parts added.
  • FIG. 1 is a schematic structural diagram of a combined truss structure for installing a fan module of a room air conditioner according to an embodiment of the present invention
  • FIG. 2 is a schematic structural diagram of a bottom plate of a combined truss structure for installing a fan module of a room air conditioner according to an embodiment of the present invention
  • FIG. 3 is a schematic rear view of the structure of the bottom plate of the combined truss structure for installing a fan module of a room air conditioner after being connected to a fixing seat component according to an embodiment of the present invention
  • FIG. 4 is a schematic structural diagram of a fan module of a combined truss structure for installing a fan module of a room air conditioner according to an embodiment of the present invention.
  • the present invention relates to a combined truss structure for installing a fan module of an air conditioner in a machine room, which includes a base plate 2 for installing a plurality of fan modules 1.
  • the bottom plate 2 includes an outer frame.
  • the outer frame is formed by an upper frame 21, a lower frame 22, a left frame 23, and a right frame 24.
  • the upper frame 21 and the lower frame 22 have at least one horizontal
  • the area in the outer frame is divided by the beam 25 and the vertical beam 26 to form a one-to-one corresponding installation for each fan module 1 Of multiple installation spaces 3.
  • the number of the horizontal beams 25 and the vertical beams 26 may be determined as needed, and the shape of the bottom plate 2 may be any shape as required.
  • the shape of the bottom plate 2 is rectangular, the number of the cross beams 25 is plural, and the number of the vertical beams 26 is one.
  • the upper frame 21, the lower frame 22, the left frame 23, the right frame 24, the cross beam 25, and the vertical beam 26 may be welded or integrally formed with each other.
  • the above design scheme can approximately regard the fan modules 1 and the base plate 2 which are substantially uniformly distributed as a mathematical model of the base plate 2 receiving uniformly distributed load. According to the analysis of the force of the base plate 2 simply supported by the uniformly distributed load in the surroundings, it can be determined by The size of the bottom plate 2 is effectively divided, and the moment of inertia of the bottom plate 2 is changed, thereby reducing the maximum deflection generated in each zone during the stress process, and reducing the damage to the fan terminals caused by vibration.
  • the fan module 1 is correspondingly installed in the installation space 3, and a fixing seat assembly 5 for fixing a fan terminal is provided above the fan module 1 near the left side.
  • the fan module 1 includes a fan 11 and a mounting plate 12 for mounting the fan 11. Ventilation holes (not labeled) are provided in the mounting plate 12. The two ends of the left side of the fan module 1 are connected to the base plate 2 by two fasteners 13, the right side of the fan module 1 is connected to the base plate 2 by at least one fastener 13, and the fan module 1 is installed at Corresponding installation space 3.
  • the left side of the fan module 1 is connected to the left frame 23 by two fasteners 13; for the fan module 1 installed at another position, the The left side is connected to the vertical beam 26 on the left side of the fan module 1 by two fasteners 13.
  • the right side of the fan module 1 is connected to the right frame 24 by at least one fastener 13; for the fan module 1 installed at other positions, the right side of the fan module 1 is passed through at least A fastener 13 is connected to the vertical beam 26 on the right side of the fan module 1.
  • the number of the fasteners 13 on the right side of the fan module 1 is not limited. However, the preferred solution is that the number of the fasteners 13 on the right side of the fan module 1 is one or two, which can make the fan module 1 be firmly fixed on the base plate 2 and meanwhile, the number of the fasteners 13 can be saved as much as possible and reduced cost.
  • the one fastener 13 is installed in the middle of the right side of the fan module 1; when the number of the fasteners 13 on the right side of the fan module 1 is When there are two or more, two of the fasteners 13 are located at both ends of the right side of the fan module 1.
  • the fastener 13 is preferably a screw, and may be an expansion nail or the like.
  • the fasteners 13 of each fan module 1 are designed on the left and right sides.
  • the installation space 3 is used to enhance the rigidity in the vertical direction.
  • the fastener 13 is installed to divide the area passing through the above divisions so that each horizontal The area is again divided into multiple areas.
  • the fasteners 13 are provided on the left and right sides of the fan module 1 to prevent the fasteners 13 from colliding with the fixing seat assembly 5 above the fan module 1 when the fasteners 13 are on the upper and lower sides, and the fasteners 13 are not Easy to install.
  • Two fasteners 13 are provided on the left side of the fan module 1 and are located at both ends because the fixing base assembly 5 is close to the left side. This not only makes the fan module 1 more stable, but also further makes the fixing base assembly 5 more stable.
  • a fastener 13 is provided on the right side of the fan module 1, the one fastener 13 is located in the middle, and the three ends of the two fasteners 13 on the left side roughly form the three ends of an isosceles triangle.
  • the fan module 1 The force is more uniform, making the fan module 1 more firm and not easy to loosen.
  • the two fasteners 13 are provided on the right side of the fan module 1, the two fasteners 13 are located at both ends of the right side, and the four ends of the quadrilateral are formed with the two fasteners 13 on the left side, The same is to make the force of the fan module 1 more uniform, to make the fan module 1 more firm and not easy to loosen.
  • a fan distribution box 4 is also provided between the upper frame 21 and the lower frame 22 in the horizontal direction, and is used for accommodating the electric wires and the like of the plurality of fans 11.
  • each vertical beam 26 is divided by the fan junction box 4.
  • the fan junction box 4 and the bottom plate 2 can be welded or integrally formed with each other.
  • the fan junction box 4 may be disposed between the beam 25 adjacent to the upper frame 21 and the upper frame 21; or, the fan junction box 4 may be disposed between the beam 25 adjacent to the lower frame 22 and the lower frame 22. Or, when the number of the beams 25 is plural, the fan distribution box 4 may be disposed between two adjacent beams 25.
  • a fixed seat assembly 5 for fixing the fan terminal is provided above the fan module 1.
  • the fixed seat assembly 5 includes a main body 51 and at least one fan terminal fixing seat 52 for positioning the fan terminal connected to the main body 51.
  • the number of fan terminal fixing bases 52 provided on each body 51 is determined according to the number of fan modules 1 arranged in the horizontal direction, that is, the same as the number of fan modules 1 arranged in the horizontal direction.
  • the fan terminal fixing base 52 is disposed on the lower surface of the main body 51.
  • the fan terminal fixing base 52 may also be disposed on a surface of the main body 51 facing away from the bottom plate 2.
  • the main body 51 and the bottom plate 2 may be welded or integrally formed with each other, and the fan terminal fixing seat 52 and the main body 51 may be welded or integrally formed with each other.
  • the main body 51 includes a main board (not shown) and protruding boards (not shown) protruding from the upper and lower sides of the main board, respectively.
  • the fan terminal fixing base 52 is connected to the lower protruding board. On the lower surface, the fan terminal fixing base 52 is adapted to the fan terminal.
  • the main body 51 may be just a frame.
  • the fixed seat assembly 5 is connected to the upper frame 21 corresponding to the upper end of the fan module 1.
  • the fixed seat assembly 5 is connected to the cross beam 25 corresponding to the upper end of the fan module 1.
  • the fixing base assembly 5 is installed on the front of the upper frame 21; in other embodiments, the fixing base assembly 5 may also be installed on the side of the upper frame 21.
  • the fixing seat assembly 5 may be installed on the front side of the cross beam 25 or on the side.
  • the above-mentioned bottom plate 2 is connected to a plurality of fixed seat assemblies 5 and fan distribution boxes 4, and the long side of the bottom plate 2 is divided into several parts, which is helpful for distributing the force.
  • a lateral stiffener (not shown in the figure) is connected to the back of each beam 25 to enhance the stability. Further, a vertical stiffener (not shown in the figure) is connected to the back of each vertical beam 26.
  • the combined truss structure for installing a fan module of a room air conditioner of the present invention has a compact structure design, does not waste space of the entire machine, saves costs, and is convenient for maintenance.
  • the division of the floor changes the stress state of the floor, reduces the maximum deflection of the floor, It is easy for the single fan terminal to be affected by vibration, causing problems such as loosening or poor contact, and to solve the problem of vibration during actual operation without adding extra parts.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Structures Of Non-Positive Displacement Pumps (AREA)

Abstract

一种用于安装机房空调的风机模块(1)的组合桁架结构,包括用于安装多个风机模块(1)的底板(2),底板(2)包括外框,外框由上边框(21)、下边框(22)、左边框(23)和右边框(24)首尾相接形成,上边框(21)与下边框(22)之间设置有至少一沿横向的横梁(25),左边框(23)和右边框(24)之间设置有至少一沿纵向的竖梁(26),外框内的区域由横梁(25)和竖梁(26)分割形成有用于供每一风机模块(1)一一对应安装的多个安装空间(3),风机模块(1)的上方靠近左侧处设置有用于固定风机端子的固定座组件(5),风机模块(1)的左侧的两端分别通过两个紧固件(13)连接在底板(2)上,风机模块(1)的右侧的通过至少一紧固件(13)连接在底板(2)上,且风机模块(1)安装在相对应的安装空间(3)。该组合桁架结构解决了单个风机端子受震动影响出现松动或接触不良的问题。

Description

一种用于安装机房空调的风机模块的组合桁架结构
本申请要求于2018年7月4日提交中国专利局、申请号为201821057148.9、发明名称为“一种用于安装机房空调的风机模块的组合桁架结构”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明涉及机房空调技术领域,更具体地说,涉及一种用于安装机房空调的风机模块的组合桁架结构。
背景技术
业界目前许多机房空调选用一种小型轴流风机,在较宽机柜中使用时,如果出现个例风机故障的情况,需要在不停机的情况下进行维护,更换。热拔插形式的风机组件是一种完全可以满足该需求的功能性模块,而且对于装配也实现了模块化的思路。但是由于多个风机模块安装在一个较大矩形平板上,在风机高速运转时会出现整个矩形安装板局部产生较大幅度的震动的情形,这会造成单个风机端子受震动影响出现松动或接触不良的失效问题。
发明内容
本发明的目的在于提供一种用于安装机房空调的风机模块的组合桁架结构,解决了现有技术中机房空调的风机高速运转时容易出现局部较大幅度震动导致风机端子松动而失效的问题。
本发明解决技术问题所采用的技术方案是:一种用于安装机房空调的风机模块的组合桁架结构,包括用于安装多个风机模块的底板,所述底板包括外框,所述外框由上边框、下边框、左边框和右边框首尾相接形成,所述上边框与所述下边框之间设置有至少一沿横向的横梁,所述左边框和所述右边框之间设置有至少一沿纵向的竖梁,所述外框内的区域由所述横梁和所述竖梁分割形成有用于供每一所述风机模块一一对应安装的多个安装空间,所述风机模块的上方靠近左侧处设置有用于固定风机端子的固定座组件,所述风机模块的左侧的两端分别通过两个紧固件连接在所述底板上,所述风机模块的右侧的通过至少一紧固件连接在所述底板上,且所述风机模块安装在相对应的安装空间。
在本发明的实施例的组合桁架结构中,所述风机模块的右侧的紧固件的数量为一个且位于所述风机模块的右侧的中间。
在本发明的实施例的组合桁架结构中,所述风机模块的右侧的紧固件的数量为两个个且位于所述风机模块的右侧的两端。
在本发明的实施例的组合桁架结构中,所述固定座组件连接在所述风机模块上端所对应的横梁和/或上边框。
在本发明的实施例的组合桁架结构中,所述固定座组件包括主体和连接在所述主体上的至少一用于定位风机端子的风机端子固定座。
在本发明的实施例的组合桁架结构中,在每一所述横梁的背面连接有横向加强筋。
在本发明的实施例的组合桁架结构中,在每一所述竖梁的背面连接有竖向加强筋。
在本发明的实施例的组合桁架结构中,所述上边框与所述下边框之间还设置有沿横向的风机分线盒,且每一所述竖梁被所述风机分线盒分割开。
在本发明的实施例的组合桁架结构中,所述风机分线盒设置在与所述上边框相邻的所述横梁和所述上边框之间;或者,所述风机分线盒设置在与所述下边框相邻的所述横梁与所述下边框之间;或者,所述横梁的数量为多个,所述风机分线盒设置在相邻的两个所述横梁之间。
在本发明的实施例的组合桁架结构中,所述竖梁的数量为一个。
实施本发明的用于安装机房空调的风机模块的组合桁架结构,具有以下有益效果:本发明的用于安装机房空调的风机模块的组合桁架结构设计紧凑,不浪费整机空间,节约成本,维护方便,通过分割的思路改变了底板的受力状态,降低了底板的最大挠度,同时风机模块两侧通过在特定位置设置紧固件,解决了单个风机端子受震动影响出现松动或接触不良的问题,而且在仅增加少量零件的情况下解决了实际运行过程中的震动问题。
附图说明
图1为本发明的实施例的用于安装机房空调的风机模块的组合桁架结构的结构示意图;
图2为本发明的实施例的用于安装机房空调的风机模块的组合桁架结构的底板的结构示意图;
图3为本发明的实施例的用于安装机房空调的风机模块的组合桁架结构的底板连接固定座组件后的结构后视示意图;
图4为本发明的实施例的用于安装机房空调的风机模块的组合桁架结构 的风机模块的结构示意图。
具体实施方式
下面结合附图和实施例,对本发明的用于安装机房空调的风机模块的组合桁架结构的结构作进一步说明:
在本发明的描述中,需要理解的是,术语“中心”、“纵向”、“横向”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”、“内”、“外”、“顺时针”、“逆时针”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,而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。
如图1-2所示,本发明涉及一种用于安装机房空调的风机模块的组合桁架结构,包括用于安装多个风机模块1的底板2。如图2所示,底板2包括外框,外框由上边框21、下边框22、左边框23和右边框24首尾相接形成,上边框21与下边框22之间设置有至少一沿横向的横梁25,左边框23和右边框24之间设置有至少一沿纵向的竖梁26,外框内的区域由横梁25和竖梁26分割形成有用于供每一个风机模块1一一对应安装的多个安装空间3。其中,横梁25和竖梁26的数量可以根据需要而定,底板2的形状也可以根据需要为任何形状。优选地,在本实施例中,底板2的形状为矩形,横梁25的数量为多个,竖梁26的数量为一个。其中,上边框21、下边框22、左边框23、右边框24、横梁25、竖梁26之间可以相互焊接或一体成型。
上述设计的方案可以将基本均匀分布的风机模块1与底板2近似看作底 板2受均布载荷的数学模型,根据弹性力学中四周简支受均布载荷的底板2的受力分析,可以通过有效分割底板2的大小,改变底板2的惯性矩,从而减小各分区在受力过程中产生的最大挠度,达到降低震动对风机端子的损坏的效果。
如图1所示,风机模块1对应地安装在安装空间3,风机模块1的上方靠近左侧处设置有用于固定风机端子的固定座组件5。如图4所示,风机模块1包括风机11和用于安装风机11的安装板12,在安装板12上开设有通风孔(图中未标示)。其中,风机模块1的左侧的两端分别通过两个紧固件13连接在底板2上,风机模块1的右侧通过至少一个紧固件13连接在底板2上,且风机模块1安装在相对应的安装空间3。具体地,对于安装在最左侧的风机模块1,该风机模块1的左侧通过两个紧固件13连接在左边框23上;对于安装在其它位置的风机模块1,则风机模块1的左侧通过两个紧固件13连接在该风机模块1左侧的竖梁26上。对于安装在最右侧的风机模块1,该风机模块1的右侧通过至少一个紧固件13连接在右边框24上;对于安装在其它位置的风机模块1,风机模块1的右侧通过至少一个紧固件13连接在该风机模块1右侧的竖梁26上。
需要说明的是,风机模块1的右侧的紧固件13的数量不限。但优选方案是风机模块1的右侧的紧固件13的数量为一个或两个,这足可以使风机模块1牢固地固定在底板2上,同时可以尽量节省紧固件13的数量,降低成本。
当风机模块1的右侧的紧固件13的数量为一个时,该一个紧固件13安装在风机模块1的右侧的中间;当风机模块1的右侧的紧固件13的数量为两个或两个以上时,那么其中两个紧固件13位于风机模块1的右侧的两端。紧 固件13优选为螺钉,也可以为膨胀钉等。
每个风机模块1的紧固件13设计在左右两侧,利用该安装空间3,增强竖直方向的刚性,通过紧固件13安装的方式,再次分割经过上述分割的区域,使得每个横向区域再次分割为多个区域。
需要说明的是,紧固件13设置在风机模块1的左右两侧是为了避免紧固件件13在上下两侧时与风机模块1上方的固定座组件5发生冲突而导致紧固件13不易于安装。风机模块1的左侧设置两个紧固件13且位于两端是由于固定座组件5靠近左侧,这样不仅可以使风机模块1更稳定,也进一步使固定座组件5更稳定。而在风机模块1的右侧设置一个紧固件13时,使这一个紧固件13位于中间,与左侧的两个紧固件13大致形成等腰三角形的三个端点,这样风机模块1的受力更加均匀些,使风机模块1更加牢固,不容易松动。在风机模块1的右侧设置两个紧固件13时,则使这两个紧固件13位于右侧的两端,与左侧的两个紧固件13形成了四边形的四个端点,同样是为了使风机模块1的受力更加均匀些,使风机模块1更加牢固,不容易松动。
如图1所示,上边框21与下边框22之间还设置有沿横向的风机分线盒4,用于收纳多个风机11的电线等。且同时每一个竖梁26被风机分线盒4分割开。风机分线盒4与底板2之间可以相互焊接或一体成型。
具体地,风机分线盒4可以设置在与上边框21相邻的横梁25和上边框21之间;或者,风机分线盒4设置在与下边框22相邻的横梁25与下边框22之间;或者,横梁25的数量为多个时,风机分线盒4可以设置在相邻的两个横梁25之间。
如图3所示,风机模块1的上方设置有用于固定风机端子的固定座组件5,固定座组件5包括主体51和连接在主体51上的至少一个用于定位风机端子的风机端子固定座52。其中,在每一个主体51上设置的风机端子固定座52数量根据横向所设置的风机模块1的数量而定,即与横向设置的风机模块1的数量相同。具体地,风机端子固定座52设置在主体51的下表面,在其它实施例中,风机端子固定座52也可以设置在主体51背离底板2的一侧表面。其中,主体51与底板2之间可以是相互焊接或一体成型,风机端子固定座52与主体51之间可以是相互焊接或一体成型。
在本实施例中,主体51包括主板(图中未标示)以及从主板上下两侧分别凸伸的凸伸板(图中未标示),风机端子固定座52连接在位于下侧的凸伸板的下表面上,风机端子固定座52与风机端子相适配。在其它实施例中,主体51也可以是仅仅就是框体。
对于位于最上端的风机模块1,固定座组件5连接在风机模块1上端所对应的上边框21。对于位于其它位置的风机模块1,固定座组件5连接在风机模块1上端所对应的横梁25。另外,需要说明的是,在本实施例中,固定座组件5安装在上边框21正面;在其它实施例中,固定座组件5也可以安装在上边框21的侧面。同样地,固定座组件5可以安装在横梁25的正面,也可以安装在侧面。
上述的底板2与多个固定座组件5及风机分线盒4连接,使底板2的长边分割成数个部分,有助于分布受力。
在每一个横梁25的背面连接有横向加强筋(图中未标示),以增强稳固性。进一步地,在每一个竖梁26的背面连接有竖向加强筋(图中未标示)。
本发明的用于安装机房空调的风机模块的组合桁架结构设计紧凑,不浪费整机空间,节约成本,维护方便,通过分割的思路改变了底板的受力状态,降低了底板的最大挠度,解决了单个风机端子容易受震动影响出现松动或接触不良的问题,而且在未增加多余零件的情况下解决了实际运行过程中的震动问题。
应当理解的是,对本领域技术人员来说,可以根据上述说明加以改进或变换,但这些改进或变换都应属于本发明所附权利要求的保护范围之内。

Claims (10)

  1. 一种用于安装机房空调的风机模块的组合桁架结构,包括用于安装多个风机模块(1)的底板(2),其特征在于,所述底板(2)包括外框,所述外框由上边框(21)、下边框(22)、左边框(23)和右边框(24)首尾相接形成,所述上边框(21)与所述下边框(22)之间设置有至少一沿横向的横梁(25),所述左边框(23)和所述右边框(24)之间设置有至少一沿纵向的竖梁(26),所述外框内的区域由所述横梁(25)和所述竖梁(26)分割形成有用于供每一所述风机模块(1)一一对应安装的多个安装空间(3),所述风机模块(1)的上方靠近左侧处设置有用于固定风机端子的固定座组件(5),所述风机模块(1)的左侧的两端分别通过两个紧固件(13)连接在所述底板(2)上,所述风机模块(1)的右侧的通过至少一紧固件(13)连接在所述底板(2)上,且所述风机模块(1)安装在相对应的安装空间(3)。
  2. 根据权利要求1所述的组合桁架结构,其特征在于,所述风机模块(1)的右侧的紧固件(13)的数量为一个且位于所述风机模块(1)的右侧的中间。
  3. 根据权利要求1所述的组合桁架结构,其特征在于,所述风机模块(1)的右侧的紧固件(13)的数量为两个个且位于所述风机模块(1)的右侧的两端。
  4. 根据权利要求1所述的组合桁架结构,其特征在于,所述固定座组件(5)连接在所述风机模块(1)上端所对应的横梁(25)和/或上边框(21)。
  5. 根据权利要求4所述的组合桁架结构,其特征在于,所述固定座组件(5)包括主体(51)和连接在所述主体(51)上的至少一用于定位风机端子 的风机端子固定座(52)。
  6. 根据权利要求1所述的组合桁架结构,其特征在于,在每一所述横梁(25)的背面连接有横向加强筋。
  7. 根据权利要求6所述的组合桁架结构,其特征在于,在每一所述竖梁(26)的背面连接有竖向加强筋。
  8. 根据权利要求1所述的组合桁架结构,其特征在于,所述上边框(21)与所述下边框(22)之间还设置有沿横向的风机分线盒(4),且每一所述竖梁(26)被所述风机分线盒(4)分割开。
  9. 根据权利要求8所述的组合桁架结构,其特征在于,所述风机分线盒(4)设置在与所述上边框(21)相邻的所述横梁(25)和所述上边框(21)之间;或者,所述风机分线盒(4)设置在与所述下边框(22)相邻的所述横梁(25)与所述下边框(22)之间;或者,所述横梁(25)的数量为多个,所述风机分线盒(4)设置在相邻的两个所述横梁(25)之间。
  10. 根据权利要求1所述的组合桁架结构,其特征在于,所述竖梁(26)的数量为一个。
PCT/CN2019/089141 2018-07-04 2019-05-30 一种用于安装机房空调的风机模块的组合桁架结构 WO2020007140A1 (zh)

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