But height-adjusting's antenna house combination supporting mechanism

文档序号:1115379 发布日期:2020-09-29 浏览:4次 中文

阅读说明:本技术 一种可调节高度的天线罩组合支撑机构 (But height-adjusting's antenna house combination supporting mechanism ) 是由 张隆 孙健 梁启迪 华彦平 钱军 于 2020-07-22 设计创作,主要内容包括:本发明提供了一种可调节高度的天线罩组合支撑机构,其设计简单、安装方便、结构稳定,并且可以实现支撑高度调节功能。基体的底部设置有用于和发射板固接定位的结构,基体的顶部设置有上凸插头,上凸插头的其中一对相背面上分别设置有第一侧凸卡扣,每个基座具体包括有下层定位连接结构、上层卡扣定位结构,上层卡扣定位结构仿形于上凸插头的形状布置,上层卡扣定位结构具体包括主体部分、第二侧凸卡扣,每个下层定位连接结构的内腔仿形于上凸插头设置,下层定位连接结构的外侧壁对应于第一侧凸卡扣的位置设置有定位槽孔,连接状态下最底层的基座的下层定位连接结构的定位槽孔定位住基体的上凸插头的第一侧凸卡扣。(The invention provides a height-adjustable antenna housing combined supporting mechanism which is simple in design, convenient to install and stable in structure and can realize a supporting height adjusting function. The bottom of base member is provided with the structure that is used for with the transmitting plate rigid coupling location, the top of base member is provided with the epirelief plug, be provided with first side convex buckle on one of them pair of looks backs of epirelief plug respectively, every base specifically is including lower floor's location connection structure, upper buckle location structure profile modeling is arranged in the shape of epirelief plug, upper buckle location structure specifically includes the main part, second side convex buckle, the inner chamber profile modeling of every lower floor's location connection structure is in the epirelief plug setting, the position that the lateral wall of lower floor's location connection structure corresponds to first side convex buckle is provided with the location slotted hole, the first side convex buckle of the epirelief plug of the position location of the lower floor's location connection structure of the base of bottommost under the connection state.)

1. The utility model provides a but height-adjusting's antenna house combination supporting mechanism which characterized in that: it includes base member, base, the bottom of base member is provided with the structure that is used for with the transmitting plate rigid coupling location, the top of base member is provided with the epirelief plug, be provided with first side protruding buckle on one of them looks back of epirelief plug respectively, every the base specifically including lower floor's location connection structure, upper buckle location structure, upper strata buckle location structure profile modeling in the shape of epirelief plug is arranged, upper strata buckle location structure specifically includes main part, second side protruding buckle, every lower floor's location connection structure's inner chamber profile modeling in the epirelief plug setting, lower floor's location connection structure's lateral wall is provided with the location slotted hole corresponding to the position of first side protruding buckle, and the bottom under the connection state the location slotted hole of the lower floor's location connection structure of base fixes a position the epirelief of base inserts the base The convex buckle of first side of head, all the other adjacent be located the upper strata the location slotted hole location of the lower floor location connection structure of base is located the lower floor the upper strata buckle location structure's of base second side convex buckle, the upper strata buckle location structure of the base of the equal buckle connection below of the lower floor location connection structure of all the other every bases of the base of detaching the bottommost, the top height of the base of superiors sets up according to the demand.

2. The radome assembly support mechanism of claim 1, wherein: the periphery of the lower area of the base body is provided with a plurality of reinforcing rib structures.

3. The radome assembly support mechanism of claim 1, wherein: the inner wall of the inner cavity of the lower layer positioning and connecting structure of the base is an inner guide surface, two square positioning slotted holes are respectively formed in the side faces of a pair of long edges of the lower layer positioning and connecting structure of the base, an outer guide surface is arranged on the outer surface of the upper layer buckle positioning structure of the base, and the outer guide surface slides into the inner cavity along the inner guide surface.

4. The radome assembly support mechanism of claim 1, wherein: first side protruding buckle, the protruding buckle of second side include buckle arch, bottom link, the installation of epirelief plug or upper buckle location structure the bellied position of buckle is provided with the indent and dodges the groove for the buckle arch can be to the inboard reentrant when receiving external force.

5. The radome assembly support mechanism of claim 1, wherein: the bottom center position of the base body is provided with a lower protruding shaft, the lower end of the bottom of the lower protruding shaft is provided with a side protruding limiting framework, one pair of angular positions of the bottom of the base body are provided with lower protruding positioning bulges, and the lower protruding positioning bulges are fixedly arranged in corresponding positioning holes of the emission plate in a matched mode.

Technical Field

The invention relates to the technical field of antenna housing structures, in particular to a height-adjustable antenna housing combined supporting mechanism.

Background

In the mobile communication technology, the antenna housing supporting mechanism is required to be fixed on the reflecting plate to achieve the effect of supporting the antenna housing inside, and deformation generated when the antenna housing meets overlarge wind resistance is avoided. The antenna housing supporting mechanism on the current market is only suitable for the antenna housing with one height, the antenna is various, the heights of the antenna housings are different, the antenna housing supporting mechanisms with different heights are required to be matched, and the cost of the mold is increased invisibly.

Disclosure of Invention

Aiming at the problems, the invention provides the height-adjustable antenna housing combined supporting mechanism which is simple in design, convenient to install and stable in structure, and can realize the function of adjusting the supporting height.

The utility model provides a but height-adjusting's antenna house combination supporting mechanism which characterized in that: the base comprises a base body and bases, wherein the bottom of the base body is provided with a structure for fixedly connecting and positioning with a transmitting plate, the top of the base body is provided with an upper convex plug, one pair of opposite back surfaces of the upper convex plug are respectively provided with a first side convex buckle, each base comprises a lower layer positioning connection structure and an upper layer buckle positioning structure, the upper layer buckle positioning structure is arranged in a shape of the upper convex plug in a copying manner, the upper layer buckle positioning structure comprises a main body part and a second side convex buckle, the inner cavity of each lower layer positioning connection structure is arranged in a shape of the upper convex plug in a copying manner, the outer side wall of the lower layer positioning connection structure is provided with a positioning slot hole corresponding to the first side convex buckle, and the positioning slot hole of the lower layer positioning connection structure of the base at the bottommost layer in a connection state positions the first side convex buckle of the upper convex plug of the, all the other adjacent positioning slotted holes of the lower layer positioning and connecting structures of the base are positioned on the lower layer and positioned on the second side convex buckles of the upper layer buckle positioning structures of the base, the upper layer buckle positioning structures of the base below the lower layer positioning and connecting structures of all the other bases except the base at the bottommost layer are buckled and connected, and the top height of the base at the topmost layer is set according to requirements.

It is further characterized in that: the periphery of the lower area of the base body is provided with a plurality of reinforcing rib structures, and the reinforcing rib structures are used for improving the stability and reliability of the whole structure;

the inner wall of the inner cavity of the lower layer positioning and connecting structure of the base is an inner guide surface, two square positioning slotted holes are respectively formed in the side surfaces of a pair of long sides of the lower layer positioning and connecting structure of the base, an outer layer guide surface is arranged on the outer surface of the upper layer buckle positioning structure of the base, and the outer layer guide surface slides into the inner cavity along the inner guide surface, so that smooth and reliable installation is ensured;

the first side convex buckle and the second side convex buckle comprise buckle bulges and bottom connecting ends, and the positions of the upper convex plug or the upper layer buckle positioning structure, which are provided with the buckle bulges, are provided with concave avoiding grooves, so that the buckle bulges can be concave inwards when being subjected to external force, and the whole assembly and disassembly are convenient;

the bottom center position of the base body is provided with a lower protruding shaft, the lower end of the bottom of the lower protruding shaft is provided with a side protruding limiting framework, one pair of angular positions of the bottom of the base body are provided with lower protruding positioning bulges, and the lower protruding positioning bulges are fixedly arranged in corresponding positioning holes of the emission plate in a matched mode.

After the structure is adopted, the positioning slotted hole of the lower layer positioning connecting structure of the bottommost base in a connecting state positions the first side convex buckle of the upper convex plug of the base body, the positioning slotted hole positioning columns of the lower layer positioning connecting structures of the rest adjacent bases positioned on the upper layer are positioned on the second side convex buckles of the upper layer buckle positioning structure of the lower layer base, the lower layer positioning connecting structures of the rest bases except the bottommost base are all in buckle connection with the upper layer buckle positioning structure of the base below, the top height of the base on the uppermost layer is set according to requirements, the base body can be added in any number, and therefore the supporting height of the radome combined supporting mechanism is changed; when the antenna housing combination supporting mechanism needs to be disassembled, the second side convex buckle and the first side convex buckle of the base body are pressed to relatively move towards the opposite installation method, and the corresponding base is pulled out, so that the base body can be deleted in any number, and the height adjustment of the antenna housing combination supporting mechanism is realized; the support device is simple in design, convenient to install and stable in structure, and can realize the function of adjusting the support height.

Drawings

FIG. 1 is a schematic perspective view of the present invention;

fig. 2 is a schematic structural view of a front view of the reflector and the radome of the present invention;

FIG. 3 is a perspective exploded view of the present invention;

FIG. 4 is a bottom perspective view of the base of the present invention;

FIG. 5 is a first perspective view of the base of the present invention;

FIG. 6 is a second perspective view of the base of the present invention;

the names corresponding to the sequence numbers in the figure are as follows:

the antenna comprises a base body 1, a base 2, an upper convex plug 3, a first side convex buckle 4, a lower layer positioning connecting structure 5, an inner cavity 51, an inner guide surface 52, an upper layer buckle positioning structure 6, an outer layer guide surface 61, a second side convex buckle 7, a positioning groove hole 8, a reinforcing rib structure 9, a buckle bulge 10, a bottom connecting end 11, an inner concave avoiding groove 12, a lower convex shaft 13, a side convex limiting framework 14, a lower convex positioning bulge 15, a transmitting plate 16 and an antenna cover 17.

Detailed Description

A height-adjustable radome combined supporting mechanism, see fig. 1-6: the base comprises a base body 1 and bases 2, wherein the bottom of the base body 1 is provided with a structure for fixedly connecting and positioning with a transmitting plate, the top of the base body 1 is provided with an upward convex plug 3, one pair of opposite sides of the upward convex plug 3 are respectively provided with a first side convex buckle 4, each base 2 specifically comprises a lower layer positioning connecting structure 5 and an upper layer buckle positioning structure 6, the upper layer buckle positioning structure 6 is arranged in a shape of the upward convex plug 3 in a copying manner, the upper layer buckle positioning structure 6 specifically comprises a main body part and a second side convex buckle 7, an inner cavity 51 of each lower layer positioning connecting structure 5 is arranged in the shape of the upward convex plug 3 in a copying manner, the outer side wall of the lower layer positioning connecting structure 5 is provided with a positioning slotted hole 8 corresponding to the position of the first side convex buckle 4, the positioning slotted hole 8 of the lower layer positioning connecting structure 5 of the base 2 at the bottommost layer in a connecting state positions the, the positioning slot holes 8 of the lower positioning connecting structures 5 of the rest adjacent bases 2 positioned on the upper layer position the second side convex buckles 7 of the upper buckle positioning structures 6 of the bases 2 positioned on the lower layer, the lower positioning connecting structures 5 of the rest bases 2 except the bottommost base 2 are buckled and connected with the upper buckle positioning structures 6 of the bases 2 below, and the top height of the base 2 on the topmost layer is set according to requirements.

The periphery of the lower area of the base body 1 is provided with a plurality of reinforcing rib structures 9, and the reinforcing rib structures 9 are used for improving the stability and reliability of the whole structure;

the inner wall of the inner cavity of the lower positioning connecting structure 5 of the base 2 is an inner guide surface 52, two square positioning slotted holes are respectively arranged on the side surfaces of a pair of long sides of the lower positioning connecting structure 5 of the base 2, an outer guide surface 61 is arranged on the outer surface of the upper clamping and positioning structure 6 of the base 2, and the outer guide surface 61 slides into the inner cavity 51 along the inner guide surface 52, so that smooth and reliable installation is ensured;

the first side convex buckle 4 and the second side convex buckle 7 comprise buckle bulges 10 and a bottom connecting end 11, and the positions of the upper convex plug 3 or the upper layer buckle positioning structure 6, which are provided with the buckle bulges 10, are provided with concave avoidance grooves 12, so that the buckle bulges 10 can be recessed inwards when external force is applied, and the whole assembly and disassembly are convenient;

a lower protruding shaft 13 is arranged at the center of the bottom of the base body 1, a side protruding limiting framework 14 is arranged at the lower end of the bottom of the lower protruding shaft 13, a lower protruding positioning protrusion 15 is arranged at one pair of angular positions of the bottom of the base body 1, and the lower protruding positioning protrusion 15 is fixedly arranged in a corresponding positioning hole of the emission plate 16 in a matching manner.

After the structure is adopted, the positioning slotted hole of the lower layer positioning connecting structure of the bottommost base in a connecting state positions the first side convex buckle of the upper convex plug of the base body, the positioning slotted hole positioning columns of the lower layer positioning connecting structures of the rest adjacent bases positioned on the upper layer are positioned on the second side convex buckles of the upper layer buckle positioning structure of the lower layer base, the lower layer positioning connecting structures of the rest bases except the bottommost base are all in buckle connection with the upper layer buckle positioning structure of the base below, the top height of the base on the uppermost layer is set according to requirements, the base body can be added in any number, and therefore the supporting height of the radome combined supporting mechanism is changed; when the antenna housing combination supporting mechanism needs to be disassembled, the second side convex buckle and the first side convex buckle of the base body are pressed to relatively move towards the opposite installation method, and the corresponding base is pulled out, so that the base body can be deleted in any number, and the height adjustment of the antenna housing combination supporting mechanism is realized; the support device is simple in design, convenient to install and stable in structure, and can realize the function of adjusting the support height.

It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

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