Antenna with reflecting net capable of being assembled and disassembled in sliding mode
By using a sliding and detachable reflector design, the problems of inconvenient connection and high transportation cost of traditional antennas are solved, enabling rapid assembly and disassembly and stable connection, reducing transportation costs and improving the performance stability of the antenna.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2026-03-24
AI Technical Summary
The traditional method of connecting the reflector and the bracket of an antenna is inconvenient and unreliable. Furthermore, antennas with a main and secondary reflector structure suffer from high costs, cumbersome operation, and easy damage to components during transportation and installation.
The design of the sliding and detachable reflector allows for quick assembly and disassembly via the guide groove on the bracket and the connection between the secondary reflector box. The connection stability is improved by using structures such as fixing blocks, guide blocks, and elastic slots. No tools are required to install the main reflector to the bracket or the secondary reflector to the bracket.
This enables rapid assembly and disassembly of antenna products, reduces transportation costs, improves connection stability, avoids component aging and detachment due to long-term use, and ensures the stability of antenna performance.
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Figure CN224036630U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of antenna, especially a kind of antenna of sliding dismounting reflecting net. BACKGROUND
[0002] In modern communication field, as the key equipment of signal transmission and reception, the performance and stability of antenna are very important. The traditional antenna structure exposes some problems to be solved in practical application.
[0003] On the one hand, the connection mode of the reflecting net and the support seat of the traditional antenna is not convenient enough or lacks sufficient reliability. The connection mode of the reflecting net and the support seat of the traditional antenna can be divided into bolt fixing or simple clamping. By adopting bolt fixing mode, the customer needs to be equipped with installation tool and bolt during installation, which increases the product cost, and at the same time, the installation is time-consuming and laborious. The simple clamping mode lacks sufficient limiting and buffering design, and it is difficult to resist external force impact, which can easily affect the performance and service life of the antenna.
[0004] On the other hand, for the antenna with main and auxiliary reflecting net structure, its volume is too large, which often increases transportation cost. Although the main and auxiliary reflecting nets of some products on the market can be disassembled, the assembly and disassembly process is relatively cumbersome, and installation tool is also needed, which not only increases the labor installation and time cost, but also easily causes component damage due to improper operation. SUMMARY
[0005] In order to overcome the shortcomings of the existing technology, the utility model provides a kind of antenna of sliding dismounting reflecting net.
[0006] The technical scheme adopted by the utility model is: a kind of antenna of sliding dismounting reflecting net, characterized by: including support seat and at least one auxiliary reflecting net, wherein one auxiliary net box is fixedly installed on each auxiliary reflecting net;One side opening guide groove is formed at least one end of support seat;Each auxiliary net box is formed with a connecting part, and the connecting part is one-to-one corresponding with each guide groove and directionally slides and embeds under limitation.
[0007] Further, it includes main reflecting net;The support seat is formed with mounting position for accommodating main reflecting net;The main reflecting net is fixedly installed on the mounting position of support seat, and the auxiliary reflecting net is located on one side of main reflecting net;The main reflecting net includes two longitudinal edge rods;Two inner sides of mounting position are respectively formed with at least one fixed block and at least one guide block, one longitudinal edge rod of main reflecting net is pre-clamped into first fixed slot between fixed block and mounting position, and the other longitudinal edge rod of main reflecting net jumps over guide block to be clamped into second fixed slot between guide block and mounting position.
[0008] Further, the main reflection net further comprises a plurality of vertical rods and a plurality of horizontal rods; two inner sides of the mounting position are symmetrically formed with two groups of fixed clamping blocks and guide clamping blocks; two fixed clamping blocks or two guide clamping blocks are located on the same inner side of the mounting position; when the main reflection net is fixedly installed on the mounting position of the support seat, at least two middle horizontal rods of the main reflection net are respectively abutted against one group of fixed clamping blocks and guide clamping blocks.
[0009] Further, the fixed clamping block is in a cuboid or square structure; and the guide clamping block is in a straight face trapezoidal structure with a narrow inner side and a wide outer side.
[0010] Further, the support seat is formed with at least two elastic clamping grooves which are symmetrically arranged along the direction of the vertical rod; the elastic clamping groove is used for being fixedly connected with the main reflection net, so that the main reflection net is clamped and fixed in the mounting position of the support seat; the elastic clamping groove is provided with two symmetrically arranged clamping openings, and the elastic clamping groove is in an opening structure with a narrow outer side and a wide inner side; at least one middle vertical rod of the main reflection net is clamped and fixed in the cavity of the elastic clamping groove through directional extrusion clamping of the clamping opening, so that the vertical rod can be clamped and fixed in the cavity of the elastic clamping groove after passing through the clamping opening.
[0011] Further, the auxiliary net box comprises a first limiting block; the first limiting block is formed above the tail end of the connecting portion; at least one end of the support seat is formed with a buckling block; the buckling block is formed above the side opening direction of the guide groove; when the front end of the connecting portion is directionally and slidingly embedded into the guide groove, the first limiting block can make the buckling block gradually deform outward and jump over the buckling block to be clamped into the guide groove; when the first limiting block is clamped into the guide groove, the buckling block is elastically reset and abuts against the first limiting block to stop, so that the connecting portion cannot directly slide out from the side opening direction of the guide groove.
[0012] Further, the first limiting block is in a straight face trapezoidal structure with a narrow upper side and a wide lower side; and the buckling block is in a straight face trapezoidal structure with a narrow lower side and a wide upper side.
[0013] Further, the auxiliary net box comprises a first limiting block; the first limiting block is formed above the tail end of the connecting portion; at least one end of the support seat is formed with a buckling block; the buckling block is formed above the side opening direction of the guide groove; when the front end of the connecting portion is directionally and slidingly embedded into the guide groove, the first limiting block can make the buckling block gradually deform outward and jump over the buckling block to be clamped into the guide groove; when the first limiting block is clamped into the guide groove, the buckling block is elastically reset and abuts against the first limiting block to stop, so that the connecting portion cannot directly slide out from the side opening direction of the guide groove.
[0014] Further, the auxiliary net box comprises a second limiting block; the second limiting block is formed on the side surface of the tail end of the connecting portion; at least one end of the support seat is formed with a side opening embedded groove; the embedded groove is formed in the middle of the side opening direction of the guide groove; when the first limiting block completely jumps over the buckling block, the second limiting block is directionally and slidingly embedded into the embedded groove in a limited manner.
[0015] The utility model discloses the beneficial effects of:
[0016] The utility model discloses a main reflection net is fixed in the installation position of support seat through clamping. Each vice reflection net is installed with vice net box. Through the connecting portion of each vice net box and the one-to-one corresponding restricted directional sliding embedding of each guide slot of support seat, the main reflection net and vice reflection net of antenna product can be quickly disassembled, and the installation of main reflection net and support seat and support seat and vice net box does not need to install tool to assist, which is quick and simple, and saves effort. When needing to disassemble, the separation of support seat and vice net box can save the packaging space of antenna product as a whole, and reduce transportation cost.
[0017] The utility model discloses a fixed clamping block, guide clamping block, with elastic clamping groove, first limit block and buckle position block, first stop block and first guide slot face and second stop block and embedding slot's design, the fixed effect of main reflection net, vice reflection net is improved greatly, avoids the main reflection net, vice reflection net of antenna product and makes the main reflection net, vice reflection net fall off because of the aging of plastic parts caused by long -term use, ensures the performance stability of antenna product. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is the overall schematic view of support seat and vice net box clamping fixed after example.
[0019] Figure 2 It is the schematic view of the connecting portion and guide slot directional sliding embedding of support seat in example.
[0020] Figure 3 It is the overall schematic view of support seat and vice net box when separating each other in example.
[0021] Figure 4 It is the partial A enlarged schematic view in Figure 3 .
[0022] Figure 5 It is the partial B enlarged schematic view in Figure 3 .
[0023] Figure 6 It is the partial F enlarged schematic view in Figure 3 .
[0024] Figure 7 It is the bottom view of support seat and vice net box clamping fixed after example.
[0025] Figure 8 It is the partial C enlarged schematic view in Figure 7 .
[0026] Figure 9 It is the front view of support seat and vice net box clamping fixed after example.
[0027] Figure 10 It is the partial D enlarged schematic view in Figure 9 .
[0028] Figure 11 is a sectional view. Figure 9
[0029] Figure 12 is a partial E enlarged view in the figure. Figure 11
[0030] Figure 13 is a sectional view of the rear side of the bracket seat and the secondary net box after clamping and fixing in the embodiment.
[0031] Figure 14 is a front view of the bracket seat in the embodiment.
[0032] Figure 15 is a left side view of the bracket seat in the embodiment.
[0033] Figure 16 is a right side view of the bracket seat in the embodiment.
[0034] Markings in the figure: 1-bracket seat; 2-secondary reflecting net; 3-secondary net box; 11-guiding groove; 31-connection part; 4-main reflecting net; 41-longitudinal edge rod; 42-transverse edge rod; 43-longitudinal rod; 44-transverse rod; 12-mounting position; 121-fixing clamping block; 122-guiding clamping block; 13-elastic clamping groove; 131-clamping hole; 32-first limiting block; 14-buckling position block; 34-first stop block; 35-second stop block; 111-first guiding groove surface; 15-embedded groove; 36-box upper cover; 37-box base; 126-first bracket seat surface; 127-second bracket seat surface; 128-third bracket seat surface; 1211-first fixing clamping block surface; 1221-first guiding clamping block surface; 124-first fixing groove; 125-second fixing groove position; 21-secondary reflecting net longitudinal edge rod; 22-secondary reflecting net longitudinal edge rod; 23-secondary reflecting net transverse rod. DETAILED DESCRIPTION
[0035] The technical scheme of the present application will be described completely below in combination with specific embodiments of the present application. The described embodiments are only some of the embodiments of the present application, but not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the present application.
[0036] For convenience of explanation, as Figure 1 , Figure 3 , Figure 4 , Figure 5 , Figure 6 As shown, in this embodiment, the antenna of sliding dismounting reflector net comprises a support seat 1, two auxiliary reflector nets 2, two auxiliary net boxes 3 and a main reflector net 4. Wherein, each auxiliary reflector net 2 is fixedly installed with an auxiliary net box 3, and each end of the support seat 1 is respectively and symmetrically formed with a guide slot 11 with horizontally opposite side opening direction. Each auxiliary net box 3 is formed with a connecting part 31, which corresponds to each guide slot 11 and is limitedly and directionally slidably installed. The main reflector net 4 comprises two longitudinal edge rods 41, two horizontal edge rods 42, a plurality of longitudinal rods 43 and a plurality of horizontal rods 44.
[0037] As shown in the drawings, Figure 1 , Figure 7 , Figure 8 , Figure 13 , Figure 14 , Figure 15 , Figure 16 As shown in the drawings, in this embodiment, the support seat 1 is formed with an installation position 12 for accommodating the main reflector net 4; two fixed clamping blocks 121 and two guide clamping blocks 122 are respectively formed on the two inner sides of the installation position 12. Each group of fixed clamping blocks 121 and guide clamping blocks 122 is symmetrically arranged along the horizontal rod 44 direction of the main reflector net 4. Two fixed clamping blocks 121 or two guide clamping blocks 122 are arranged along the longitudinal rod 43 direction of the main reflector net 4. The main reflector net 4 is fixedly installed on the installation position 12 of the support seat 1, and the two auxiliary reflector nets 2 are respectively located on the left and right sides of the main reflector net 4. In this embodiment, the main reflector net 4 is installed on the installation position 12 in the following manner: one longitudinal edge rod 41 of the main reflector net 4 is clamped into the first fixed slot 124 between the two fixed clamping blocks 121 and the installation position 12, and then the other longitudinal edge rod 41 of the main reflector net 4 jumps over the two guide clamping blocks 122 to be clamped into the second fixed slot 125 between the guide clamping blocks 122 and the installation position 12. By clamping the two longitudinal edge rods 41 of the main reflector net 4 into the first fixed slot 124 and the second fixed slot 125 respectively, the horizontal fixing of the main reflector net 4 and the support seat 1 along the horizontal rod 44 direction is realized. At the same time, the two adjacent horizontal rods 44 at the middle position of the main reflector net 4 abut against each group of fixed clamping blocks 121 and guide clamping blocks 122 respectively, realizing the limited clamping fixing of the main reflector net 4 and the support seat 1 along the longitudinal rod 43 direction.
[0038] For the convenience of description, as shown in the drawings, Figure 13 , Figure 14 , Figure 15 , Figure 16 In this embodiment, the installation position 12 is composed of a cavity of a first support seat surface 126, a second support seat surface 127 and a third support seat surface 128. The fixed clamping blocks 121 are formed on the first support seat surface 126, and the guide clamping blocks 122 are formed on the third support seat surface 128.
[0039] For the convenience of description, as shown in the drawings,Figure 13 、 Figure 14 、 Figure 15 、 Figure 16 As shown in FIG. 12, the first fixed slot 124 in the embodiment is composed of a cavity formed by the first support seat surface 126, the second support seat surface 127 and the first fixed clamping block surface 1211 of the fixed clamping block 121. The second fixed slot 125 in the embodiment is composed of a cavity formed by the third support seat surface 128, the second support seat surface 127 and the first guide clamping block surface 1221 of the guide clamping block 122.
[0040] As shown in FIG. 12, the first fixed slot 124 in the embodiment is composed of a cavity formed by the first support seat surface 126, the second support seat surface 127 and the first fixed clamping block surface 1211 of the fixed clamping block 121. The second fixed slot 125 in the embodiment is composed of a cavity formed by the third support seat surface 128, the second support seat surface 127 and the first guide clamping block surface 1221 of the guide clamping block 122. Figure 1 、 Figure 7 、 Figure 8 、 Figure 13 As shown in FIG. 12, the first fixed slot 124 in the embodiment is composed of a cavity formed by the first support seat surface 126, the second support seat surface 127 and the first fixed clamping block surface 1211 of the fixed clamping block 121. The second fixed slot 125 in the embodiment is composed of a cavity formed by the third support seat surface 128, the second support seat surface 127 and the first guide clamping block surface 1221 of the guide clamping block 122.
[0041] For the convenience of description, the elastic deformation of the clamping port 131 in the outward direction in the embodiment refers to the elastic deformation of the clamping port 131 in the direction away from the opening space of the clamping slot.
[0042] As shown in FIG. 12, the first fixed slot 124 in the embodiment is composed of a cavity formed by the first support seat surface 126, the second support seat surface 127 and the first fixed clamping block surface 1211 of the fixed clamping block 121. The second fixed slot 125 in the embodiment is composed of a cavity formed by the third support seat surface 128, the second support seat surface 127 and the first guide clamping block surface 1221 of the guide clamping block 122. Figure 1 、 Figure 7 、 Figure 8 、 Figure 14 、 Figure 15 、 Figure 16As shown, in this embodiment, two fixing blocks 121 and two guide blocks 122 are respectively formed on the two inner sides of the mounting position 12. The fixing blocks 121 have a cuboid structure and are mainly used to restrict and fix one of the longitudinal edge rods 41 of the main reflector 4 within the first fixing groove 124. The guide blocks 122 have a straight trapezoidal structure that is narrower on the inside and wider on the outside. Through the inclined surface design of the straight trapezoid, the other longitudinal edge rod 41 of the main reflector 4 can be squeezed and deformed to jump over the guide blocks 122 and be inserted into and fixed in the second fixing groove, so that the entire main reflector 4 is fixed in the mounting position 12. In this embodiment, two fixing blocks 121 or two guide blocks 122 arranged symmetrically along the longitudinal rod 43 can simultaneously engage the same outermost longitudinal edge rod 41. In this embodiment, the main reflector 4 is initially fixed in the mounting position 12 by first engaging the two longitudinal side rods 41 with two fixing blocks 121 and two guide blocks 122. Then, the two longitudinal rods 43 in the middle of the main reflector 4 are engaged with four elastic slots 13, causing the two horizontal rods 44 in the middle of the main reflector 4 to abut against the two sets of fixing blocks 121 and two guide blocks 122, further securing the main reflector 4 to the mounting position 12 of the bracket 1. In this embodiment, the structural design of the bracket 1 and the double engagement between the bracket 1 and the main reflector 4 greatly improve the connection stability between the main reflector 4 and the bracket 1, as well as the antenna product's resistance to external impacts, preventing the main reflector 4 from detaching from the antenna product.
[0043] like Figure 1 As shown, in this embodiment, the sub-reflector 2 includes a longitudinal side bar 21, a longitudinal bar 22, and a horizontal bar 23. Each sub-reflector 2 is fixedly mounted with a sub-reflector box 3, which includes a top cover 36 and a base 37. A connecting part 31 is formed at one end of the top cover 36 of the sub-reflector box 3. The sub-reflector box 3 engages with one longitudinal side bar 21, one adjacent longitudinal bar 22, and two horizontal bars 23 located in the middle of the sub-reflector 2 through the engagement of the top cover 36 and the base 37. In this embodiment, the sub-reflector box 3 is fixedly mounted on the sub-reflector 2 by engaging the top cover 36 and the base 37 with some of the longitudinal side bars 21, some of the longitudinal bars 22, and some of the horizontal bars 23.
[0044] like Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 9 , Figure 10As shown, in the embodiment, the auxiliary net box 3 comprises a first limiting block 32; the first limiting block 32 is formed above the tail end of the connecting part 31; the support base 1 is respectively formed with a buckling block 14 at both ends; each buckling block 14 is formed above the opening direction of the guide groove 11 at the end; when the front end of the connecting part 31 is oriented and slidably embedded into the guide groove 11, the first limiting block 32 can make the buckling block 14 gradually deform outward and jump over the buckling block 14 and be clamped into the guide groove 11; when the first limiting block 32 is clamped into the guide groove 11, the buckling block 14 is elastically reset and abuts against the first limiting block 32, so that the connecting part 31 cannot directly slide out from the opening direction of the guide groove 11.
[0045] For the convenience of description, the outward deformation or outward bending of the buckling block 14 in the embodiment refers to the deformation or bending of the buckling block 14 away from the guide groove 11.
[0046] For the convenience of description, the upper side of the tail end of the connecting part 31 in the embodiment refers to the direction perpendicular to the auxiliary reflecting net 2 and away from the box base 37 of the box upper cover 36. For the convenience of description, the upper side of the opening direction of the guide groove 11 in the embodiment refers to the direction perpendicular to the auxiliary reflecting net 2 and away from the box base 37 of the guide groove 11 at one end of the support base 1.
[0047] As shown in the embodiment, Figure 9 , Figure 10 , Figure 11 , Figure 12 As shown in the embodiment, each first limiting block 32 is in a straight-faced trapezoidal structure with a narrow upper side and a wide lower side; each buckling block 14 is in a straight-faced trapezoidal structure with a narrow lower side and a wide upper side. Through the straight-faced trapezoidal structures of the first limiting block 32 and the buckling block 14, when the guide groove 11 is slidably embedded with the connecting part 31, the first limiting block 32 can make the buckling block 14 gradually deform outward and more easily jump over the buckling block 14, and when the first limiting block 32 completely jumps over the buckling block 14, the first limiting block 32 abuts against the buckling block 14. After the oriented sliding embedding of the connecting part 31 into the guide groove 11 is completed, the connecting part 31 cannot directly slide out from the opening direction of the guide groove 11.
[0048] As shown in the embodiment, Figure 1 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 11 , Figure 12As shown, in this embodiment, the secondary mesh box 3 includes a first stop block 34; the first stop block 34 is formed below the tail end of the connecting portion 31; the guide groove 11 includes a first guide groove surface 111; the first guide groove surface 111 is formed below the side opening direction of the guide groove 11; when the first limiting block 32 completely passes over the locking block 14, the first stop block 34 stops and abuts against the first guide groove surface 111. In this embodiment, by stopping and abutting the first stop block 34 against the first guide groove surface 111, the connecting portion 31 is prevented from continuing to slide directionally into the guide groove 11.
[0049] For ease of explanation, in this embodiment, "below the tail end of the connecting part 31" refers to the opposite direction from the top of the tail end of the connecting part 31. For ease of explanation, in this embodiment, "below the side opening direction of the guide groove 11" refers to the direction perpendicular to the sub-reflective mesh 2, and the direction of the guide groove 11 at one end of the bracket 1 near the box base 37.
[0050] In this embodiment, the first limiting block 32 and the locking block 14 stop each other to prevent the connecting part 31 from sliding directly out from the side opening of the guide groove 11. The first stop block 34 and the first guide groove surface 111 stop each other to prevent the connecting part 31 from continuing to slide in the guide groove 11. After the connecting part 31 and the guide groove 11 are directionally slid and installed, the connecting part 31 and the guide groove 11 are restricted and fixed in the directional sliding direction, thereby fixing the spatial position of the sub-net box 3 and the sub-reflective mesh 2.
[0051] like Figure 1 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 9 , Figure 10 As shown, in this embodiment, the secondary mesh box 3 includes a second stop block 35; the second stop block 35 is formed on the side of the tail end of the connecting part 31; each end of the bracket base 1 has an embedded groove 15 with a side opening; the embedded groove 15 is formed in the middle of the side opening direction of the guide groove 11; when the first limiting block 32 completely jumps over the latching block 14, the second stop block 35 is slidably embedded in the embedded groove 15 in a restricted direction.
[0052] For ease of explanation, the side of the tail end of the connecting part 31 in this embodiment refers to the direction horizontal to the sub-reflector 2, with the connecting part 31 moving closer to the end of the main reflector 4.
[0053] In this embodiment, after the connecting part 31 and the guide groove 11 are directionally slidably fitted, the second stop block 35 is directionally slidably fitted into the embedding groove 15, so that the connecting part 31 and the guide groove 11 are restricted and fixed in a direction perpendicular to the directional sliding direction, thereby fixing the spatial position of the sub-mesh box 3 and the sub-reflective mesh 2.
[0054] In the embodiment, the spatial position of the sub-reflection net 2 and the sub-net box 3 along the horizontal directional sliding direction is fixed by the first limiting block 32 and the buckling block 14 and the first stop block 34 and the first guide groove surface 111, and the spatial position of the sub-reflection net 2 and the sub-net box 3 along the direction perpendicular to the directional sliding direction is fixed by the second stop block 35 and the embedded groove 15, so that the installation stability of the sub-reflection net 2 and the sub-net box 3 is ensured, and meanwhile, the overall position of the sub-reflection net 2 is ensured to be unchanged with the overall position of the main reflection net 4, and the antenna performance is ensured.
[0055] As shown in Figure 3 , it is the antenna product just unpacked in the embodiment. When it is needed to assemble the antenna product, the connecting part 31 can be correspondingly and limitingly directionally slid and embedded into the guide groove 11 in a manner as shown in Figure 2 , until the first limiting block 32 jumps over the buckling block 14 and is stopped and abuts against, the first stop block 34 is stopped and abuts against the first guide groove surface 111, and the second stop block 35 is directionally slid and embedded into the embedded groove 15, so that the directionally sliding and embedding of the connecting part 31 and the guide groove 11 is completed.
[0056] In addition, when it is needed to unpack the antenna product, the buckling block 14 can be bent outward, so that the first limiting block 32 is no longer stopped and abuts against the buckling block 14, and meanwhile, the sub-reflection net 2 or the sub-net box 3 is pulled in the opposite direction along the direction of the directionally sliding and embedding of the connecting part 31 and the guide groove 11, so that the connecting part 31 and the guide groove 11 are directionally slid until completely separated, so that a state as shown in Figure 3 is formed. The design can reduce the overall packaging volume of the antenna product, so as to reduce the transportation cost.
[0057] In the embodiment, the main reflection net 4 is clamped and fixed in the mounting position 12 of the support seat 1. The sub-net box 3 is mounted on each sub-reflection net 2. The connecting part 31 of each sub-net box 3 is correspondingly and limitingly directionally slid and embedded into each guide groove 11 of the support seat 1, so that the main reflection net 4 and the sub-reflection net 2 of the antenna product can be quickly disassembled and assembled, and the installation of the main reflection net 4 and the support seat 1 and the installation of the support seat 1 and the sub-net box 3 do not need to be assisted by tools, which is quick, simple, labor-saving and time-saving. When it is needed to disassemble and assemble, the support seat 1 and the sub-net box 3 can be separated, so that the overall packaging space of the antenna product is saved, and the transportation cost is reduced. In addition, in the embodiment, the fixing clamping block 121, the guide clamping block 122, the elastic clamping groove 13, the first limiting block 32 and the buckling block 14, the first stop block 34 and the first guide groove surface 111, and the second stop block 35 and the embedded groove 15 are designed, so that the fixing effect of the main reflection net 4 and the sub-reflection net 2 is greatly improved, the main reflection net 4 and the sub-reflection net 2 are prevented from falling off due to aging of plastic parts caused by long-term use, and the performance stability of the antenna product is ensured.
[0058] The above-described embodiments are only preferred embodiments of the present application, and do not limit the present application in any form. Any skilled person in the art, without departing from the technical scheme of the present application, can make more possible changes, modifications and refinements to the technical scheme of the present application by using the disclosed technical content, or modifications, which are equivalent embodiments of the present application. Therefore, any equivalent changes within the technical scheme of the present application, according to the idea of the present application, should be covered within the protection scope of the present application.
Claims
1. An antenna of the type having a reflector which is slidably removable, characterized in that: The application relates to a reflector, which comprises a support seat (1) and at least one auxiliary reflector net (2), wherein each auxiliary reflector net (2) is fixedly provided with an auxiliary net box (3); at least one end of the support seat (1) is formed with a side-opening guide groove (11); each auxiliary net box (3) is formed with a connecting part (31), the connecting part (31) corresponds to each guide groove (11) and is limitedly and directionally slidably embedded.
2. An antenna of claim 1 wherein: The application relates to a reflector, which comprises a support seat (1) and at least one auxiliary reflector net (2), wherein each auxiliary reflector net (2) is fixedly provided with an auxiliary net box (3); at least one end of the support seat (1) is formed with a side-opening guide groove (11); each auxiliary net box (3) is formed with a connecting part (31), the connecting part (31) corresponds to each guide groove (11) and is limitedly and directionally slidably embedded.
3. An antenna of claim 2 wherein: The application relates to a reflector, which comprises a support seat (1) and at least one auxiliary reflector net (2), wherein each auxiliary reflector net (2) is fixedly provided with an auxiliary net box (3); at least one end of the support seat (1) is formed with a side-opening guide groove (11); each auxiliary net box (3) is formed with a connecting part (31), the connecting part (31) corresponds to each guide groove (11) and is limitedly and directionally slidably embedded.
4. An antenna of claim 2 wherein: The application relates to a reflector, which comprises a support seat (1) and at least one auxiliary reflector net (2), wherein each auxiliary reflector net (2) is fixedly provided with an auxiliary net box (3); at least one end of the support seat (1) is formed with a side-opening guide groove (11); each auxiliary net box (3) is formed with a connecting part (31), the connecting part (31) corresponds to each guide groove (11) and is limitedly and directionally slidably embedded.
5. An antenna of claim 3 wherein: The application relates to a reflector, which comprises a support seat (1) and at least one auxiliary reflector net (2), wherein each auxiliary reflector net (2) is fixedly provided with an auxiliary net box (3); at least one end of the support seat (1) is formed with a side-opening guide groove (11); each auxiliary net box (3) is formed with a connecting part (31), the connecting part (31) corresponds to each guide groove (11) and is limitedly and directionally slidably embedded. The application relates to a reflector, which comprises a support seat (1) and at least one auxiliary reflector net (2), wherein each auxiliary reflector net (2) is fixedly provided with an auxiliary net box (3); at least one end of the support seat (1) is formed with a side-opening guide groove (11); each auxiliary net box (3) is formed with a connecting part (31), the connecting part (31) corresponds to each guide groove (11) and is limitedly and directionally slidably embedded. The application relates to a reflector, which comprises a support seat (1) and at least one auxiliary reflector net (2), wherein each auxiliary reflector net (2) is fixedly provided with an auxiliary net box (3); at least one end of the support seat (1) is formed with a side-opening guide groove (11); each auxiliary net box (3) is formed with a connecting part (31), the connecting part (31) corresponds to each guide groove (11) and is limitedly and directionally slidably embedded.
6. An antenna having a reflector netting which is slidably removable, according to claim 1, characterized in that: The auxiliary net box (3) comprises a first limiting block (32); the first limiting block (32) is formed above the tail end of the connecting part (31); at least one end of the support base (1) is formed with a buckling block (14), and the buckling block (14) is formed above the opening direction of the guide groove (11); when the front end of the connecting part (31) is directionally and slidingly embedded into the guide groove (11), the first limiting block (32) can make the buckling block (14) gradually deform outward and jump over the buckling block (14) and be clamped into the guide groove (11); when the first limiting block (32) is clamped into the guide groove (11), the buckling block (14) is elastically reset and abuts against the first limiting block (32), so that the connecting part (31) cannot directly slide out of the opening direction of the guide groove (11).
7. An antenna of claim 6 wherein: The first limiting block (32) is in a straight-faced trapezoidal structure with a narrow upper part and a wide lower part; and the buckling block (14) is in a straight-faced trapezoidal structure with a narrow lower part and a wide upper part.
8. An antenna of claim 6 wherein: The auxiliary net box (3) comprises a first limiting block (32); the first limiting block (32) is formed above the tail end of the connecting part (31); at least one end of the support base (1) is formed with a buckling block (14), and the buckling block (14) is formed above the opening direction of the guide groove (11); when the front end of the connecting part (31) is directionally and slidingly embedded into the guide groove (11), the first limiting block (32) can make the buckling block (14) gradually deform outward and jump over the buckling block (14) and be clamped into the guide groove (11); when the first limiting block (32) is clamped into the guide groove (11), the buckling block (14) is elastically reset and abuts against the first limiting block (32), so that the connecting part (31) cannot directly slide out of the opening direction of the guide groove (11).
9. An antenna of claim 6 wherein: The auxiliary net box (3) comprises a first limiting block (32); the first limiting block (32) is formed above the tail end of the connecting part (31); at least one end of the support base (1) is formed with a buckling block (14), and the buckling block (14) is formed above the opening direction of the guide groove (11); when the front end of the connecting part (31) is directionally and slidingly embedded into the guide groove (11), the first limiting block (32) can make the buckling block (14) gradually deform outward and jump over the buckling block (14) and be clamped into the guide groove (11); when the first limiting block (32) is clamped into the guide groove (11), the buckling block (14) is elastically reset and abuts against the first limiting block (32), so that the connecting part (31) cannot directly slide out of the opening direction of the guide groove (11).