WO2017041529A1 - 一种通讯设备结构 - Google Patents

一种通讯设备结构 Download PDF

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Publication number
WO2017041529A1
WO2017041529A1 PCT/CN2016/083520 CN2016083520W WO2017041529A1 WO 2017041529 A1 WO2017041529 A1 WO 2017041529A1 CN 2016083520 W CN2016083520 W CN 2016083520W WO 2017041529 A1 WO2017041529 A1 WO 2017041529A1
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WO
WIPO (PCT)
Prior art keywords
glued
side panel
frame
base
communication device
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Application number
PCT/CN2016/083520
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English (en)
French (fr)
Inventor
王金娥
路遥
陈伟良
Original Assignee
中兴通讯股份有限公司
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Publication date
Application filed by 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Publication of WO2017041529A1 publication Critical patent/WO2017041529A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B1/00Details of transmission systems, not covered by a single one of groups H04B3/00 - H04B13/00; Details of transmission systems not characterised by the medium used for transmission
    • H04B1/02Transmitters
    • H04B1/03Constructional details, e.g. casings, housings

Definitions

  • the present application relates to, but is not limited to, the field of communication device technologies, and in particular, to a communication device structure.
  • Communication equipment sheet metal housing components have their own disadvantages in accordance with conventional connection assembly structures. If the structure is welded, the following disadvantages exist: 1. The heterogeneous material is difficult to weld; 2. The welding operation environment is bad; 3. The welding part has thermal deformation and grinding after welding, and the welding position is uneven due to uneven organization and composition. After the pinhole, leakage welding and other defects may occur, affecting the mechanical properties of the material; 4, prone to corrosion problems, affecting the appearance. If the structure is mechanically connected, the following disadvantages exist: 1. The number of mechanical connecting parts is large, and the assembly process is inefficient; 2. The mechanical connecting parts are exposed to the outside, which affects the appearance. For conventional connections, whether welded or mechanically connected, localized stress concentrations are easily formed at the joints.
  • the purpose of the embodiments of the present invention is to overcome the problems of the related art described above, and to provide a communication device structure, which adopts a glued joint and a limit connection structure at the joint portion to realize sufficient connection between the structures, improve structural strength, and has a simple structure. Easy to connect.
  • a communication device structure includes: a base, a top frame, a front door panel, a rear door panel, a left side panel, and a right side panel, wherein the left side panel and the right side panel respectively include a front portion connected between the base and the top frame a side panel and a rear side panel; wherein the upper and lower bonding surfaces of the rear side panel respectively glue the bonding surfaces of the top frame and the base, and are positioned between the base and the top frame through the rear side panel connecting member
  • the front side panel is mounted between the base and the top frame by a front side panel adapter and a front side panel lower adapter; the front side panel adapter and the front side panel are turned down
  • the bonding faces of the connectors are respectively glued to the bonding faces of the top frame and the base, and are respectively positioned on the top frame and the base through the adapter connecting members.
  • the front side panel is snapped between the front side panel adapter and the front side panel lower adapter.
  • the rear side panel connector is a snap connection pair and/or a threaded connection pair.
  • the adapter connector is a snap connection pair and/or a threaded connection pair.
  • the base comprises: two U-shaped members that are parallel; two parallel frames and two longitudinal reinforcing members that are parallel; and the glued surfaces at the two ends of each of the two parallel frames are respectively Bonding the bonding faces of the two U-shaped members and positioning between the two U-shaped members through the frame connecting members; the two ends of each of the two longitudinal reinforcing members are respectively adjacent to the two frames Glued.
  • the frame connector is a snap connection pair and/or a threaded connection pair.
  • the top frame comprises: two parallel U-shaped members that are parallel, two horizontal frames that are parallel to each other, and two longitudinal beams that are parallel; one end of each of the two horizontal frames that are parallel to each other
  • the double-sided structural member is connected to one longitudinal U-shaped member, and the bonding surface at the other end of each lateral frame is glued to the bonding surface of the other longitudinal U-shaped member and is positioned on the other longitudinal U-shaped member by the snap-fit connection.
  • Two ends of each of the two longitudinal beams that are parallel are respectively glued to the two lateral frames.
  • the two-way structural member has two openings respectively facing the lateral frame and the longitudinal U-shaped member, and the bonding surface of the lateral frame extends into an opening of the double-pass structural member and glues the opening In the inner bonding surface, the bonding surface of the longitudinal U-shaped member extends into the other opening of the double-pass structural member and glues the bonding surface in the other opening.
  • the front door panel includes: a door frame and a door frame upper beam glued to the door frame, a door frame lower beam, a door frame left column, a door frame right column, a rotating shaft mounting member, and a glass; wherein the door frame right column and the door frame Gluing and positioning on the door frame by a snap connection.
  • the two glued surfaces that are glued together are overlapping planes.
  • Embodiments of the present invention enable a sufficient connection between heterogeneous materials.
  • the high-strength structural adhesive used in the bonding part of the embodiment of the present invention can form a barrier film to prevent corrosion caused by contact of different materials.
  • the glue joint can make the whole glue joint have a more uniform stress distribution, reduce the grinding time brought by the welding process construction, reduce the corrosion risk of the solder joint, and improve the working environment of the worker.
  • the embodiment of the present invention enables a thin-plate type housing to achieve a reliable fastening connection.
  • the structural adhesive used in the bonding part of the embodiment of the present invention can play a sealing role, avoid liquid leakage, block condensed water, and prevent corrosion.
  • the embodiment of the utility model is suitable for assembling the structure of a communication device with a large volume on the engineering site, and is convenient for transportation.
  • FIG. 1 is a schematic structural view of a structure of a communication device according to an embodiment of the present invention.
  • Figure 2 is a schematic structural view of the base of Figure 1;
  • 2a, 2b are schematic views showing the connection features of each structural member of the base
  • Figure 3 is a schematic structural view of the top frame of Figure 1;
  • Figure 3a is a schematic view showing the connection features of each structural member of the top frame
  • FIG. 4 is a schematic view showing the connection of the rear side panel and the front side panel adapter to the base and the top frame;
  • Figure 4a is an enlarged view of the local features F, G, H of Figure 4;
  • Figure 4b is a schematic view of the structural member shown by F, G, and H in Figure 4a before being connected;
  • Figure 5 is a schematic structural view of each structure of the front door panel before being connected
  • Fig. 5a is a schematic structural view of each structure of the front door panel after being connected.
  • an embodiment of the present invention provides a communication device structure, including: a base 2, a top frame 3, a front door panel 6, a rear door panel 7, a left side panel, and a right side panel, wherein the left side panel and the right side panel
  • the side panels respectively include a front side panel 5 and a rear side panel 4 connected between the base 2 and the top frame 3.
  • Each structural member of the embodiment of the present invention is connected by a high-strength structural glue.
  • the glue joint surface of the structural part is designed with the glue joint surface and the limit structure feature adapted to the glue joint process.
  • the bonding surface is a lap joint plane or a contact surface between two structural members that are connected to each other for providing a flat space for coating; and the bonding surfaces of the two structural members are connected to each other by gluing;
  • the bit structure feature prevents relative displacement of the two structural members, and the retaining structure features can be retained or removed as needed after the glued portion is fully cured.
  • the connection relationship of each structural member of the embodiment of the present invention will be described in detail below with reference to the accompanying drawings.
  • the "longitudinal, lateral, front, and rear" described below are for the cabinet of the communication device, that is, under normal operating conditions, the operator stands facing the door panel that can be opened, and the door panel for opening is located. The position is defined as the front; the direction perpendicular to the door and parallel to the ground is defined as the longitudinal direction.
  • the base 2 includes a U-shaped member 8, a frame 9 and a longitudinal reinforcement member 10.
  • the two U-shaped members 8 are parallel, and the two frames 9 are parallel, and the bonding faces at the two ends of each frame 9 are respectively glued to the bonding faces of the two U-shaped members 8;
  • the glued faces at the ends of the frame 9 are shown by hatched faces, and the glue faces of the two U-shaped members 8 are overlapping planes that are in contact with the shadow faces.
  • the A position is designed as a positioning hole.
  • the fastener passes through the positioning hole to limit the U-shaped member 8 and the frame 9 of the glue connection; the B position design is connected with the card.
  • the card-connecting pair limits the U-shaped member 8 and the frame 9 of the glue connection.
  • FIG. 2a the two ends of the longitudinal reinforcing member 10 are respectively glued to the two frames 9, and the bonding surfaces of the two ends of the longitudinal reinforcing member 10 are shown by the shadow surface, and the bonding surfaces of the two frames 9 are connected with the shadow surface.
  • the top frame 3 includes a longitudinal U-shaped member 12, a lateral frame 13 and a longitudinal beam 14.
  • the two longitudinal U-shaped members 12 are parallel, and the two lateral frames 13 are parallel.
  • One end of each of the lateral frames 13 is connected to a longitudinal U-shaped member 12 through a double-passing structural member 15, each lateral frame.
  • the glued surface of the other end of the 13 is glued to the bonding surface of the other longitudinal U-shaped member 12.
  • the D-position design double-pass structural member 15, the double-pass structural member 15 has two openings respectively facing the lateral frame 13 and the longitudinal U-shaped member 12, and the bonding surface of the lateral frame 13 extends into the double-pass structural member.
  • An adhesive opening in the opening is glued into the opening of the opening, and the adhesive surface of the longitudinal U-shaped member 12 is inserted into the other opening of the double-way structural member 15 and glued to the adhesive surface in the opening.
  • the bonding faces of the lateral frame 13 and the longitudinal U-shaped member 12 are shown by hatching, and the bonding faces of the two openings of the double-passing structural member 15 are The overlapping plane that is contacted when the shadow plane is connected.
  • the D position is designed to be connected to the connection pair. After the glued surface of the D position is connected, the card connection connection limits the longitudinal U-shaped member 12 and the lateral frame 13 of the glue connection.
  • the two ends of the longitudinal beam 14 are respectively glued to the two lateral frames 13.
  • the glued surface of one end of the longitudinal beam 14 is shown by the shaded surface of FIG. 3a, the other end is not shown, and the bonding surfaces of the two lateral frames 13 are The overlapping plane that is in contact with the glued faces at both ends of the longitudinal beam 14.
  • the upper and lower bonding faces of the rear side panel 4 are respectively glued to the bonding faces of the top frame 3 and the base 2.
  • the F position shows that the upper bonding surface of the rear side panel 4 is glued to the bonding surface of the top frame 3, as shown in FIGS. 4a and 4b, the upper bonding surface of the rear side panel 4 is shown by a hatched surface, and the top frame 3 is shown.
  • the glued surface is the overlapping plane that is in contact with the shadow surface.
  • the F position design is connected to the connection pair, and after the glued surface of the F position is connected, the card connection pair limits the rear side plate 4 and the top frame 3 of the glue connection.
  • the G position shows that the lower bonding surface of the rear side panel 4 is glued to the bonding surface of the base 2, as shown in FIGS. 4a and 4b, the lower bonding surface of the rear side panel 4 is shown by a hatched surface, and the glue of the base 2 is shown.
  • the junction is the overlapping plane that is in contact with the shadow plane.
  • the G position is designed to locate the hole, and after the glued surface of the G position is connected, the fastener passes through the positioning hole to limit the rear side plate 4 and the base 2 of the glue connection.
  • the front side panel 5 is snapped between the front side panel adapter 16a and the front side panel lower adapter 16b; the front side panel adapter 16a and the front side lower panel adapter 16b.
  • the glued faces of the top frame 3 and the base 2 are respectively glued.
  • the H position shows that the glued surface of the front side lower plate adapter 16b is glued to the glued surface of the base 2, as shown in Figures 4a and 4b, the glued surface of the front side lower plate adapter 16b is shown by a hatched surface.
  • the bonding surface of the base 2 is an overlapping plane that is in contact with the shadow surface.
  • the H position is designed with a positioning hole and a card connection pair.
  • the fastener passes through the positioning hole to limit the front side plate lower adapter 16b and the base 2 of the glue connection; the card connection The front side lower plate adapter 16b of the pair of glued joints and the base 2 are limited.
  • the front door panel 6 includes a door frame 17, a door frame upper beam 18 glued to the door frame 17, a door frame lower beam 19, a door frame left column 20, a door frame right column 22, a hinge mounting member 21, and a glass 23.
  • the C-position design is connected to the connection pair, and after the bonding surface of the C-position is connected, the card-connecting pair limits the door frame right column 22 and the door frame 17 of the glue connection.
  • front door panel 6 is hinged to the front side panel 5; the rear door panel 7 is attached to the rear side panel 4 by fasteners.
  • the embodiment of the present invention enables a sufficient connection between the heterogeneous materials; the high-strength structural adhesive used in the bonding portion of the embodiment of the present invention can form a barrier film to prevent corrosion caused by contact of different materials;
  • the use of the glue connection can make the entire glue joint have a more uniform stress distribution, reduce the grinding time brought by the welding process construction, reduce the corrosion risk of the solder joint, and improve the working environment of the worker;
  • the embodiment of the utility model makes the thin shell shell reliable.
  • the fastening structure used in the bonding part of the embodiment of the present invention can play a sealing function, avoid liquid leakage, block condensed water, and prevent corrosion; the embodiment of the present invention is applicable to a communication equipment structure with a large volume on the engineering site. Assembled for easy transportation.

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  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Securing Of Glass Panes Or The Like (AREA)
  • Joining Of Corner Units Of Frames Or Wings (AREA)

Abstract

本申请公开了一种通讯设备结构,包括:底座、顶框、前门板、后门板、左侧板和右侧板,所述左侧板和右侧板分别包括连接在所述底座与顶框之间的前侧板和后侧板;其中,所述后侧板的上、下胶接面分别胶接顶框和底座的胶接面,并通过后侧板连接件定位在所述底座与顶框之间;其中,所述前侧板通过前侧板上转接件和前侧板下转接件安装在所述底座和顶框之间;所述前侧板上转接件和前侧板下转接件的胶接面分别胶接顶框和底座的胶接面,并通过转接件连接件分别定位在顶框和底座上。

Description

一种通讯设备结构 技术领域
本申请涉及但不限于通讯设备技术领域,尤其涉及一种通讯设备结构。
背景技术
通讯设备钣金外壳结构件按照传统的连接装配结构存在着各自的缺点。如采用焊接连接的结构存在以下缺点:1、异质材料难以焊接;2、焊接操作环境恶劣;3、焊接部位存在热变形及焊后打磨的问题,且焊接位置因组织、成分不均匀,打磨后可能出现针孔、漏焊等缺陷,影响材料机械性能;4、容易产生腐蚀问题,影响外观。如采用机械连接的结构存在以下缺点:1、机械连接零件连接件数量多,装配过程效率低;2、机械连接零件暴露于外部,影响美观。对于传统的连接方式,无论是焊接或者是机械连接,连接部位都容易形成局部应力集中。
发明内容
以下是对本文详细描述的主题的概述。本概述并非是为了限制权利要求的保护范围。
本实用新型实施例的目的就是为了克服上述相关技术存在的问题,提供一种通讯设备结构,在连接部位采用胶接配合限位连接结构,实现结构之间的充分连接,提高结构强度,结构简单,连接方便。
一种通讯设备结构,包括:底座、顶框、前门板、后门板、左侧板和右侧板,所述左侧板和右侧板分别包括连接在所述底座与顶框之间的前侧板和后侧板;其中,所述后侧板的上、下胶接面分别胶接顶框和底座的胶接面,并通过后侧板连接件定位在所述底座与顶框之间;其中,所述前侧板通过前侧板上转接件和前侧板下转接件安装在所述底座和顶框之间;所述前侧板上转接件和前侧板下转接件的胶接面分别胶接顶框和底座的胶接面,并通过转接件连接件分别定位在顶框和底座上。
可选地,所述前侧板卡装在前侧板上转接件和前侧板下转接件之间。
可选地,所述后侧板连接件为卡接连接副和/或螺纹连接副。
可选地,所述转接件连接件为卡接连接副和/或螺纹连接副。
可选地,所述底座包括:相平行的两个U形件;相平行的两个边框和相平行的两个纵向加强件;相平行的两个边框中每个边框两端的胶接面分别胶接两个U形件的胶接面,并通过边框连接件定位在两个U形件之间;相平行的两个纵向加强件中每个纵向加强件的两端分别与两个边框相胶接。
可选地,所述边框连接件为卡接连接副和/或螺纹连接副。
可选地,所述顶框包括:相平行的两个纵向U形件、相平行的两个横向边框和相平行的两个纵向梁;相平行的两个横向边框中每个横向边框的一端通过双通结构件与一个纵向U形件连接,每个横向边框另一端的胶接面胶接另一个纵向U形件的胶接面并通过卡接连接副定位在另一个纵向U形件上;相平行的两个纵向梁中每个纵向梁的两端分别与两个横向边框相胶接。
可选地,所述双通结构件具有两个分别朝向横向边框和纵向U形件的开口,所述横向边框的胶接面伸入双通结构件的一个开口内并胶接所述一个开口内的胶接面,所述纵向U形件的胶接面伸入双通结构件的另一个开口内并胶接所述另一个开口内的胶接面。
可选地,所述前门板包括:门框以及与所述门框胶接的门框上横梁、门框下横梁、门框左立柱、门框右立柱、转轴安装件以及玻璃;其中,所述门框右立柱与门框胶接并通过卡接连接副定位在所述门框上。
可选地,相胶接的两个所述胶接面是搭接平面。
本实用新型实施例的有益效果体现在以下方面:
1)本实用新型实施例使异质材料之间实现充分连接。
2)本实用新型实施例的胶接部位采用的高强度结构胶可以形成阻隔膜,防止不同材料接触时带来的腐蚀。
3)本实用新型实施例采用胶接连接可以使整个胶接面具有更均匀的应力分布,减少焊接工艺施工带来的打磨时间、降低焊点的腐蚀风险,改善工人工作环境。
4)本实用新型实施例使得薄板类外壳实现可靠的紧固连接。
5)本实用新型实施例胶接部位采用的结构胶可以起到密封作用,避免液体泄漏,阻隔冷凝水,防止腐蚀。
6)本实用新型实施例适用于工程现场体积较大的通讯设备结构的拼装,方便运输。
附图概述
图1是本实用新型实施例通讯设备结构的结构示意图;
图2是图1中的底座的结构示意图;
图2a、2b是底座的每个结构件连接特征示意图;
图3是图1中的顶框的结构示意图;
图3a是顶框的每个结构件连接特征示意图;
图4是后侧板、前侧板转接件分别与底座和顶框的连接示意图;
图4a是图4中的局部特征F、G、H的放大图;
图4b是图4a中F、G、H示出的结构件未连接前的示意图;
图5是前门板的每个结构连接前的结构示意图;
图5a是前门板的每个结构连接后的结构示意图。
附图标记说明:2-底座;3-顶框;4-后侧板;5-前侧板;6-前门板;7-后门板;8-U形件;9-边框;10-纵向加强件;12-纵向U形件;13-横向边框;14-纵向梁;15-双通结构件;16a-前侧板上转接件;16b-前侧板下转接件;17-门框;18-门框上横梁;19-门框下横梁;20-门框左立柱;21-转轴安装件;22-门框右立柱;23-玻璃。
本发明的实施方式
下文中将参考附图并结合实施例来详细说明本申请。需要说明的是,在不冲突的情况下,本申请中的实施例及实施例中的特征可以相互组合。
如图1所示,本实用新型实施例提供一种通讯设备结构,包括:底座2、顶框3、前门板6、后门板7、左侧板和右侧板,其中,左侧板和右侧板分别包括连接在底座2与顶框3之间的前侧板5和后侧板4。
本实用新型实施例的每个结构件之间采用高强度结构胶胶接连接。胶接连接时,在结构件的胶接连接部位设计有适应胶接工艺的胶接面以及限位结构特征。其中,胶接面是搭接平面或者是为涂胶提供平面空间的相互连接的两个结构件之间的接触面;在将两个结构件的胶接面通过涂胶相互连接后,通过限位结构特征防止两个结构件的相对位移,在胶接部位完全固化后,限位结构特征可以根据需要保留或拆除。
下面结合附图对本实用新型实施例每个结构件的连接关系进行详细说明。下文中叙述的“纵向、横向、前、后”是针对通讯设备的柜体而言的,即通讯设备在正常运行状态下,操作者面向可供开启的门板站立,可供开启的门板所处位置定义为前;垂直于门且平行于地面的方向定义为纵向。
如图2所示,底座2包括:U形件8、边框9以及纵向加强件10。如图2a和2b所示,两个U形件8相平行,两个边框9相平行,每个边框9两端的胶接面分别胶接两个U形件8的胶接面;如图2b所示,边框9两端的胶接面通过阴影面示出,两个U形件8的胶接面为与阴影面连接时接触的搭接平面。如图2b所示,A位置设计定位孔,A位置的胶接面连接以后,紧固件穿过定位孔对胶接连接的U形件8和边框9进行限位;B位置设计卡接连接副,B位置的胶接面连接以后,卡接连接副对胶接连接的U形件8和边框9进行限位。如图2a所示,纵向加强件10两端分别与两个边框9相胶接,纵向加强件10两端的胶接面通过阴影面示出,两个边框9的胶接面为与阴影面连接时接触的搭接平面。
如图3所示,顶框3包括:纵向U形件12、横向边框13和纵向梁14。如图3a所示,两个纵向U形件12相平行,两个横向边框13相平行,每个横向边框13的一端通过双通结构件15与一个纵向U形件12连接,每个横向边框13另一端的胶接面胶接另一个纵向U形件12的胶接面。如图3a所示,D位置设计双通结构件15,双通结构件15具有两个分别朝向横向边框13和纵向U形件12的开口,横向边框13的胶接面伸入双通结构件15的一个开口内并胶接该开口内的胶接面,纵向U形件12的胶接面伸入双通结构件15的另一个开口内并胶接该开口内的胶接面,其中,横向边框13和纵向U形件12的胶接面通过阴影面示出,双通结构件15两个开口的胶接面为与 阴影面连接时接触的搭接平面。D位置设计卡接连接副,D位置的胶接面连接以后,卡接连接副对胶接连接的纵向U形件12和横向边框13进行限位。纵向梁14的两端分别与两个横向边框13相胶接,纵向梁14一端的胶接面通过图3a的阴影面示出,另一端未示出,两个横向边框13的胶接面为与纵向梁14两端的胶接面连接时接触的搭接平面。
如图4所示,后侧板4的上、下胶接面分别胶接顶框3和底座2的胶接面。F位置示出后侧板4的上胶接面与顶框3的胶接面胶接,如图4a和4b所示,后侧板4的上胶接面通过阴影面示出,顶框3的胶接面为与阴影面连接时接触的搭接平面。F位置设计卡接连接副,F位置的胶接面连接以后,卡接连接副对胶接连接的后侧板4与顶框3进行限位。G位置示出后侧板4的下胶接面与底座2的胶接面胶接,如图4a和4b所示,后侧板4的下胶接面通过阴影面示出,底座2的胶接面为与阴影面连接时接触的搭接平面。G位置设计定位孔,G位置的胶接面连接以后,紧固件穿过定位孔对胶接连接的后侧板4与底座2进行限位。
如图4所示,前侧板5卡装在前侧板上转接件16a和前侧板下转接件16b之间;前侧板上转接件16a和前侧板下转接件16b的胶接面分别胶接顶框3和底座2的胶接面。H位置示出前侧板下转接件16b的胶接面与底座2的胶接面胶接,如图4a和4b所示,前侧板下转接件16b的胶接面通过阴影面示出,底座2的胶接面为与阴影面连接时接触的搭接平面。H位置设计定位孔和卡接连接副,H位置的胶接面连接以后,紧固件穿过定位孔对胶接连接的前侧板下转接件16b与底座2进行限位;卡接连接副对胶接连接的前侧板下转接件16b与底座2进行限位。
如图5所示,前门板6包括:门框17;与门框17胶接的门框上横梁18、门框下横梁19、门框左立柱20、门框右立柱22、转轴安装件21以及玻璃23。如图5b所示,C位置设计卡接连接副,C位置的胶接面连接以后,卡接连接副对胶接连接的门框右立柱22与门框17进行限位。
此外,前门板6与前侧板5铰接;后门板7通过紧固件连接在后侧板4上。
尽管上述对本实用新型实施例做了详细说明,但本实用新型实施例不限 于此,本技术领域的技术人员可以根据本实用新型实施例的原理进行修改,因此,凡按照本实用新型实施例的原理进行的各种修改都应当理解为落入本实用新型实施例的保护范围。
工业实用性
本实用新型实施例使异质材料之间实现充分连接;本实用新型实施例的胶接部位采用的高强度结构胶可以形成阻隔膜,防止不同材料接触时带来的腐蚀;本实用新型实施例采用胶接连接可以使整个胶接面具有更均匀的应力分布,减少焊接工艺施工带来的打磨时间、降低焊点的腐蚀风险,改善工人工作环境;本实用新型实施例使得薄板类外壳实现可靠的紧固连接;本实用新型实施例胶接部位采用的结构胶可以起到密封作用,避免液体泄漏,阻隔冷凝水,防止腐蚀;本实用新型实施例适用于工程现场体积较大的通讯设备结构的拼装,方便运输。

Claims (10)

  1. 一种通讯设备结构,包括:底座、顶框、前门板、后门板、左侧板和右侧板,所述左侧板和右侧板分别包括连接在所述底座与顶框之间的前侧板和后侧板;
    其中,所述后侧板的上、下胶接面分别胶接顶框和底座的胶接面,并通过后侧板连接件定位在所述底座与顶框之间;
    其中,所述前侧板通过前侧板上转接件和前侧板下转接件安装在所述底座和顶框之间;所述前侧板上转接件和前侧板下转接件的胶接面分别胶接顶框和底座的胶接面,并通过转接件连接件分别定位在顶框和底座上。
  2. 如权利要求1所述的通讯设备结构,其中,所述前侧板卡装在前侧板上转接件和前侧板下转接件之间。
  3. 如权利要求2所述的通讯设备结构,其中,所述后侧板连接件为卡接连接副和/或螺纹连接副。
  4. 如权利要求3所述的通讯设备结构,其特征在于,所述转接件连接件为卡接连接副和/或螺纹连接副。
  5. 如权利要求4所述的通讯设备结构,其中,所述底座包括:
    相平行的两个U形件、相平行的两个边框和相平行的两个纵向加强件;
    相平行的两个边框中每个边框两端的胶接面分别胶接两个U形件的胶接面,并通过边框连接件定位在两个U形件之间;
    相平行的两个纵向加强件中每个纵向加强件的两端分别与两个边框相胶接。
  6. 如权利要求5所述的通讯设备结构,其中,所述边框连接件为卡接连接副和/或螺纹连接副。
  7. 如权利要求6所述的通讯设备结构,其中,所述顶框包括:
    相平行的两个纵向U形件、相平行的两个横向边框和相平行的两个纵向梁;
    相平行的两个横向边框中每个横向边框的一端通过双通结构件与一个 纵向U形件连接,每个横向边框另一端的胶接面胶接另一个纵向U形件的胶接面并通过卡接连接副定位在另一个纵向U形件上;
    相平行的两个纵向梁中每个纵向梁的两端分别与两个横向边框相胶接。
  8. 如权利要求7所述的通讯设备结构,其中,所述双通结构件具有两个分别朝向横向边框和纵向U形件的开口,所述横向边框的胶接面伸入双通结构件的一个开口内并胶接所述一个开口内的胶接面,所述纵向U形件的胶接面伸入双通结构件的另一个开口内并胶接所述另一个开口内的胶接面。
  9. 如权利要求8所述的通讯设备结构,其特征在于,所述前门板包括:
    门框以及与所述门框胶接的门框上横梁、门框下横梁、门框左立柱、门框右立柱、转轴安装件以及玻璃;
    其中,所述门框右立柱与门框胶接并通过卡接连接副定位在所述门框上。
  10. 如权利要求9所述的通讯设备结构,其中,相胶接的两个所述胶接面是搭接平面。
PCT/CN2016/083520 2015-09-08 2016-05-26 一种通讯设备结构 WO2017041529A1 (zh)

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