A colored glaze glass translucent dome installation device
Patent Information
- Application Number
- CN202521913116.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-05
- Publication Date
- 2026-09-01
- Estimated Expiration
- 2035-09-05
AI Technical Summary
点支承倒挂安装方式由于不锈钢驳接件外露点数量多,影响饰面装饰效果;现有边框支承安装结构存在可调节性差,边框可视面装饰性差等问题,难以满足彩釉玻璃的艺术装饰效果要求
1、彩釉玻璃的两侧端分别连接于相邻两个龙骨的搭接板,相邻两个彩釉玻璃分别连接于一个龙骨的搭接板位于插接板两侧的两部分,插接板插接并固定连接于连接槽内不同深度处,从而调节搭接板的高度,进而可以调节彩釉玻璃的高度,高度调节便捷,提升饰面组件的安装平整度;2、彩釉玻璃搭接于搭接板,第二个第二橡胶垫的顶面抵接于压条的第二部分、底面抵接于彩釉玻璃的顶面,通过压条压合固定彩釉玻璃,彩釉玻璃固定牢固,安全性高;3、装饰组件采用分体式设计,装饰组件对龙骨的可见部分进行装饰,第一挂接板、第二挂接板分别挂接于搭接板的两端部,第二装饰结构的卡接板卡接于由第一装饰结构和限位结构形成的第一卡接槽,第一装饰结构和第二装饰结构连接稳定,安装结构简单,操作便捷,安装效率较高;4、在相邻两个饰面组件之间设置设备末端安装组件,可以集中布置设备末端点位,第一装饰板为金属装饰板,从而提升造型美观度。
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Figure CN224705373U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of dome installation technology, specifically to a colored glaze glass translucent dome installation device. Background Technology
[0002] Enameled glass, with its superior decorative effect and excellent performance, has become a highly favored material in the construction industry. It offers a rich selection of colors and patterns, supports personalized customization, and can meet the design needs of different architectural styles. Through the fine processing of inorganic enamel, enamel glass exhibits excellent color stability. It is resistant to aging, acids and alkalis, and does not easily fade, ensuring a decorative effect that lasts as long as the building itself. The patterned designs of enamel glass can also effectively reduce glare, further optimizing the visual experience. Enameled glass can be used for interior decoration, such as screens and domes, adding an artistic atmosphere to interior spaces. When enamel glass is used in domes, tempered laminated glass with enamel should be used. This composite glass is heavy, requiring high reliability and safety of the installation structure. Interior glass ceiling installation methods include point-supported inverted installation and frame-supported installation. Point-supported inverted installation suffers from numerous exposed stainless steel connectors, affecting the decorative effect; existing frame-supported installation structures have problems such as poor adjustability and poor decorative appearance of the frame's visible surface, making it difficult to meet the artistic decorative requirements of enamel glass. Utility Model Content
[0003] The purpose of this utility model is to address the shortcomings of the prior art by proposing a colored glaze glass translucent dome installation device.
[0004] This utility model proposes an installation device for a translucent dome made of colored glaze glass, including a surface component and a decorative component. The surface component includes at least one colored glaze glass, multiple keels, multiple connectors corresponding to the multiple keels, and multiple first lifting components corresponding to the multiple connectors. One colored glaze glass is corresponding to two keels. The keel includes a plug-in plate and an overlapping plate connected to the bottom of the plug-in plate in the middle. The decorative component is connected to the overlapping plate. The two ends of the colored glaze glass are respectively connected to the overlapping plates of two adjacent keels, and two adjacent colored glaze glasses are respectively connected to the overlapping plate of one keel located on both sides of the plug-in plate. The bottom of the first lifting component is connected to the first part of the connector, and the top can be fixedly connected to the main structure. The second part of the connector is provided with a connecting groove, and the plug-in plate is inserted and fixedly connected to different depths in the connecting groove to adjust the height of the overlapping plate.
[0005] Furthermore, it also includes a carrier connected to the middle of the first lifting member and a lamp assembly connected to the carrier and located above the colored glaze glass; the lamp assembly includes a first magnesium oxide plate connected to the bottom of the carrier, and LED light strips and reflective films respectively connected to the bottom of the first magnesium oxide plate.
[0006] Furthermore, there are multiple finishing components, including an equipment end mounting component disposed between two adjacent finishing components. The top of the equipment end mounting component can be fixedly connected to the main structure, and the bottom of the equipment end mounting component is respectively connected to two adjacent overlapping plates in the two adjacent finishing components. There are multiple decorative components, and the multiple decorative components are respectively connected to multiple overlapping plates in the multiple finishing components that are not connected to the equipment end mounting component.
[0007] Furthermore, the connector includes a first fastening structure, a fixing plate connected at the top to the bottom of the first lifting member, two first connecting plates respectively connected to the bottom of the fixing plate, and two first connecting holes respectively penetrating the two first connecting plates. A strip-shaped through hole is provided through the plug-in plate. The fixing plate and the two first connecting plates form a vertically arranged connecting groove, and the plug-in plate is inserted into the connecting groove. The first fastening structure is used to connect to the two first connecting holes and the strip-shaped through hole respectively when the plug-in plate is inserted into the connecting groove at a preset height, so as to detachably fix the plug-in plate and the two first connecting plates.
[0008] Furthermore, the connector also includes two first rubber pads respectively disposed between the plug-in plate and the two first connecting plates, and two second connecting holes respectively disposed through the two first rubber pads. The first fastening structure includes a first bolt and a first nut. The two sides of the first rubber pad abut against the plug-in plate and the first connecting plate respectively. One end of the first bolt passes through the first connecting hole on one first connecting plate, the second connecting hole on one first rubber pad, the strip-shaped through hole, the second connecting hole on the other first rubber pad, and the first connecting hole on the other first connecting plate in sequence and is screwed to the first nut. The first bolt and the first nut abut against the two first connecting plates respectively.
[0009] Furthermore, the cladding assembly also includes multiple second fastening structures, multiple pressure strips, and multiple second rubber pads. The second fastening structures are used to detachably fix the first part of the pressure strip and the interlocking plate. The two sides of the first second rubber pad abut against the side of the enamel glass and the side of the interlocking plate, respectively. The top surface of the second second rubber pad abuts against the second part of the pressure strip and the bottom surface abuts against the top surface of the enamel glass. The top surface of the third second rubber pad abuts against the bottom surface of the enamel glass and the bottom surface abuts against the top surface of the portion of the overlapping plate located on one side of the interlocking plate.
[0010] Furthermore, the decorative component includes a first decorative structure, a second decorative structure, and a limiting structure. The first part of the first decorative structure and the first part of the second decorative structure are respectively connected to the two ends of the plug-in plate. The first part of the limiting structure is connected to the first decorative structure. A first snap-fit groove is formed between the second part of the first decorative structure and the second part of the limiting structure. The second part of the second decorative structure snaps into the first snap-fit groove.
[0011] Further, the first decorative structure includes a first hanging plate, a first limiting plate, and a second connecting plate whose two ends are respectively connected to the first hanging plate and the first limiting plate; the second decorative structure includes a second hanging plate, a snap-fit plate, and a third connecting plate whose two ends are respectively connected to the second hanging plate and the snap-fit plate; the limiting structure includes a fourth connecting plate and a second limiting plate whose one end is connected to one end of the fourth connecting plate; the second limiting plate includes a first curved portion disposed away from the fourth connecting plate; the snap-fit plate includes a second curved portion matching the first curved portion; the first snap-fit groove is formed by the first limiting plate and the second limiting plate; the first hanging plate and the second hanging plate are respectively hung on the two ends of the overlapping plate; at least one of the first hanging plate and the second hanging plate abuts against the colored glaze glass; the two sides of the fourth connecting plate abut against one side of the overlapping plate and the side of the third connecting plate; the third connecting plate abuts against the other side of the overlapping plate; the snap-fit plate snaps into the first snap-fit groove.
[0012] Furthermore, the equipment end-mounted assembly includes a second lifting member, a support member, a first decorative panel, multiple second magnesium oxide boards, and multiple third magnesium oxide boards. The top of the second lifting member can be connected to the main structure, and the bottom of the second lifting member can be connected to the top of the support member. The multiple second magnesium oxide boards are respectively connected to the sides of the second lifting member. The multiple third magnesium oxide boards are respectively detachably connected to the left side, right side, and bottom of the support member. The first decorative panel is respectively detachably connected to the multiple second magnesium oxide boards. The first part and the second part of the first decorative panel abut against the two opposite sides of the two adjacent overlapping plates of two adjacent decorative components.
[0013] Furthermore, the colored glaze glass is colored glaze tempered laminated composite glass; the first lifting component is a galvanized square tube; the keel is a galvanized steel keel; the second lifting component includes multiple first galvanized angle steels welded together; the support component includes second galvanized angle steels with their tops welded to the bottoms of the multiple first galvanized angle steels, and two third galvanized angle steels respectively welded to the two ends of the second galvanized angle steels; the first decorative panel is a metal decorative panel; and the decorative components are metal decorative components.
[0014] The installation device for a translucent dome made of colored glaze glass according to this utility model has the following beneficial effects: 1. The two ends of the enamel glass are respectively connected to the overlapping plates of two adjacent keels. Two adjacent enamel glass pieces are each connected to the overlapping plate of one keel, located on both sides of the insert plate. The insert plates are inserted and fixed at different depths within the connecting groove, thereby adjusting the height of the overlapping plates and consequently the height of the enamel glass. Height adjustment is convenient and improves the flatness of the decorative components during installation. 2. The enamel glass overlaps with the overlapping plate. The top surface of the second rubber pad abuts against the second part of the pressure strip, and the bottom surface abuts against the top surface of the enamel glass. The enamel glass is fixed by pressing it together with the pressure strip. 3. The decorative components adopt a split design, decorating the visible part of the keel. The first and second hanging plates are respectively hung on the two ends of the overlapping plate. The snap-fit plate of the second decorative structure snaps into the first snap-fit groove formed by the first decorative structure and the limiting structure. The connection between the first and second decorative structures is stable, the installation structure is simple, the operation is convenient, and the installation efficiency is high. 4. Equipment end installation components are set between two adjacent decorative components, which can centrally arrange the equipment end points. The first decorative plate is a metal decorative plate, thereby improving the aesthetics of the shape. Attached Figure Description
[0015] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments of the present invention and, together with the description, serve to explain the principles of the present invention. The drawings described below are some embodiments of the present invention, but not all embodiments. Other drawings will be readily available to those skilled in the art based on these drawings without any inventive effort.
[0016] Figure 1 This is a partial structural diagram of an installation device for a translucent dome made of colored glaze glass according to the present invention; Figure 2 This is a cross-sectional node structure diagram of a colored glaze glass translucent dome installation device according to the present invention; Figure 3 This is a cross-sectional node structure diagram of the lamp assembly in a colored glaze glass translucent dome installation device of this utility model. Figure 4 This is a cross-sectional node structure diagram of the decorative component in a colored glaze glass translucent dome installation device of this utility model. Figure 5 This is a cross-sectional schematic diagram of the installation component at the end of the equipment in a colored glaze glass translucent dome installation device of this utility model. Figure 6 This is a side view of the keel in a colored glaze glass translucent dome installation device according to the present invention; Figure 7 This is a front view of the keel in a colored glaze glass translucent dome installation device of this utility model; Figure 8 This is a top view of the keel in a colored glaze glass translucent dome installation device of this utility model; Figure 9 This is a side view of the connector in the installation device for a colored glaze glass translucent dome according to the present invention; Figure 10 This is a front view of the connector in the installation device for a colored glaze glass translucent dome according to this utility model; Figure 11 This is a bottom view of the connector in the installation device for a colored glaze glass translucent dome according to this utility model; Figure 12 This is a schematic diagram of the structure of the decorative component in the installation device for a colored glaze glass translucent dome according to this utility model; Figure 13 This is a schematic diagram of the first decorative structure in a colored glaze glass translucent dome installation device of this utility model; Figure 14 This is a schematic diagram of the second decorative structure in a colored glaze glass translucent dome installation device of this utility model; Figure 15 This is a schematic diagram of the limiting structure in the installation device for a translucent dome made of colored glaze glass according to this utility model.
[0017] In the diagram: 1-Enameled glass, 2-Decorative component, 21-First decorative structure, 211-First hanging plate, 212-First limiting plate, 213-Second connecting plate, 22-Second decorative structure, 221-Second hanging plate, 222-Snap-fit plate, 223-Third connecting plate, 224-Second bending part, 23-Limiting structure, 231-Fourth connecting plate, 232-Second limiting plate, 233-First bending part, 3-Equipment end mounting component, 31-Second lifting component, 32-Support component, 33-Second glass magnesium oxide 34-Third magnesium oxide board, 35-First decorative board, 41-Bearing component, 42-First magnesium oxide board, 43-LED light strip, 44-Reflective film, 5-Connector, 51-Fixing plate, 52-First connecting plate, 521-First connecting hole, 53-Connecting groove, 54-First fastening structure, 55-First rubber pad, 6-First lifting component, 7-Keel, 71-Plug-in plate, 711-Strip through hole, 72-Overlap plate, 8-Pressure strip, 91-Second fastening structure, 92-Second rubber pad, 93-Spraying equipment. Detailed Implementation
[0018] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without creative effort are within the scope of protection of this utility model. It should be noted that, unless otherwise specified, the embodiments and features in the embodiments of this application can be arbitrarily combined with each other.
[0019] Please see Figures 1 to 15 An embodiment of the present invention provides a translucent dome installation device for colored glaze glass, comprising a decorative component and a decorative component 2. The decorative component includes at least one colored glaze glass 1, multiple keels 7, multiple connectors 5 corresponding to the multiple keels 7, and multiple first lifting components 6 corresponding to the multiple connectors 5. One colored glaze glass 1 is correspondingly arranged with two keels 7. The keel 7 includes a plug plate 71 and an overlapping plate 72 connected to the bottom of the plug plate 71 in the middle. The decorative component 2 is connected to the overlapping plate 72. The two ends of the colored glaze glass 1 are respectively connected to the overlapping plates 72 of two adjacent keels 7, and two adjacent colored glaze glass 1 are respectively connected to the overlapping plate 72 of one keel 7 located on both sides of the plug plate 71. The bottom of the first lifting component 6 is connected to the first part of the connector 5, and the top can be fixedly connected to the main structure. The second part of the connector 5 is provided with a connecting groove 53, and the plug plate 71 is inserted and fixedly connected to different depths in the connecting groove 53 to adjust the height of the overlapping plate 72.
[0020] Here, the top of the first lifting member 6 can be connected to the main structure, and the bottom can be connected to the first part of the connector 5, thereby lifting the connector 5; the insertion plate 71 of the keel 7 is inserted into the connecting groove 53 at different depths, which can adjust the height of the overlapping plate 72. After the height adjustment is completed, the insertion plate 71 is fixedly connected to the inner wall of the connecting groove 53 to ensure the stability of the keel 7; the two ends of a colored glaze glass 1 are respectively connected to the overlapping plates 72 of two adjacent keels 7, thereby fixing the two ends of the colored glaze glass 1. The height of the overlapping plates 72 of two adjacent keels 7 can be adjusted, thereby adjusting the height of the side end of the colored glaze glass 1 connected to the overlapping plate 72, thereby realizing the adjustment of the flatness of the colored glaze glass 1; when the decorative component includes multiple colored glaze glass 1, the two adjacent colored glaze glass 1 are mutually The two adjacent ends are respectively connected to the overlapping plate 72 of a keel 7, located on two parts on both sides of the corresponding insertion plate 71. That is, the right end of one colored glaze glass 1 is connected to the overlapping plate 72 of the keel 7, located on the first part on the left side of the corresponding insertion plate 71; the left end of the other colored glaze glass 1 is connected to the overlapping plate 72 of the keel 7, located on the second part on the right side of the corresponding insertion plate 71. The keel 7 fixes the two adjacent ends of the two colored glaze glass 1 together. At the same time, adjusting the height of the overlapping plate 72 of the keel 7 can adjust the height of the two adjacent ends of the two colored glaze glass 1, thus adjusting the flatness of the two colored glaze glass 1. The decorative component 2 is connected to the overlapping plate 72 to decorate the visible part of the keel 7 and improve the aesthetics. The colored glaze glass 1 can be curved colored glaze glass.
[0021] Specifically, when the decorative component includes one glazed glass 1, there are two keels 7. The two ends of the glazed glass 1 are respectively connected to the overlapping plates 72 of the two keels 7. There are two connectors 5 corresponding to the two keels 7, and two first lifting members 6 corresponding to the two connectors 5. When the decorative component includes two glazed glass 1s, there are three keels 7. The first keel 7, the third keel 7, and the second keel 7 are arranged sequentially from left to right. One end of the first glazed glass 1 is connected to the overlapping plate 72 of the first keel 7, and one end of the second glazed glass 1 is connected to the overlapping plate 72 of the second keel 7. The other ends of the first glazed glass 1 and the other ends of the second glazed glass 1 are respectively connected to the two parts on both sides of the insertion plate 71 on the overlapping plate 72 of the third keel 7. There are three connectors 5 corresponding to the three keels 7, and three first lifting members 6 corresponding to the three connectors 5. When the decorative component includes N colored glaze glass 1s, where N is an integer greater than 2, and there are N+1 keels 7, arranged sequentially from left to right, the left end of the first colored glaze glass 1 located at the left end of the decorative component is connected to the right side of the interlocking plate 71 of the first keel 7 via the overlapping plate 72. The right end of the Nth colored glaze glass 1 located at the right end of the decorative component is connected to the left side of the interlocking plate 71 of the overlapping plate 72 of the N+1th keel 7. The overlapping plates 72 of the keels 7 located in the middle of the decorative component are respectively connected to the adjacent two sides of two adjacent colored glaze glass 1s. The colored glaze glass 1s can be arranged horizontally. The main structure is a floor slab, and the top of the first lifting member 6 is fixedly connected to the floor slab.
[0022] As an example of a colored glaze glass translucent dome installation device in this embodiment, it may also include a support member 41 connected to the middle of the first lifting member 6 and a lamp assembly connected to the support member 41 and located above the colored glaze glass 1; the lamp assembly includes a first magnesium oxide plate 42 connected to the bottom of the support member 41, and an LED light strip 43 and a reflective film 44 respectively connected to the bottom of the first magnesium oxide plate 42.
[0023] Specifically, the carrier 41 can be connected to the middle of one first lifting member 6, or it can be connected to the middle of multiple first lifting members 6. A first magnesium oxide board 42 is detachably fixed to the bottom of the carrier 41, a reflective film 44 is adhered to the first magnesium oxide board 42, and LED light strips 43 are fixed to the first magnesium oxide board 42. Multiple LED light strips 43 can be spaced apart, and the reflective film 44 is connected to the portion of the first magnesium oxide board 42 located between two adjacent LED light strips 43. Multiple LED light strips 43 can be equidistantly spaced. If the carrier 41 is a galvanized square tube, the lamp assembly consists of a supporting frame made of galvanized square tubes. The first magnesium oxide board 42 is connected and fixed to the galvanized square tubes using self-tapping screws. The LED light strips 43 are fixed to the magnesium oxide board base layer, and an aluminum foil reflective film 44 is adhered to the first magnesium oxide board 42 to enhance light reflection. Both the first lifting component 6 and the carrier component 41 can be galvanized square tubes. The first lifting component 6 is a vertically arranged galvanized square tube, and the carrier component 41 is a horizontally arranged galvanized square tube. The carrier component 41 is welded to the first lifting component 6, that is, the horizontally arranged galvanized square tube is welded to the vertically arranged galvanized square tube. The carrier component 41 is horizontally arranged, and the LED light strip 43 is horizontally arranged. The reflective film 44 can be an aluminum foil reflective film.
[0024] There can be multiple decorative components, including an equipment end mounting component 3 disposed between two adjacent decorative components. The top of the equipment end mounting component 3 can be fixedly connected to the main structure, and the bottom of the equipment end mounting component 3 is respectively connected to two overlapping plates 72 that are close to each other in the two adjacent decorative components. There are multiple decorative components 2, and the multiple decorative components 2 are respectively connected to multiple overlapping plates 72 in the multiple decorative components that are not connected to the equipment end mounting component 3.
[0025] Specifically, two adjacent decorative components are arranged side-by-side. On the right end of the overlapping plate 72 of the left decorative component, a portion of the left side of its corresponding insert plate 71 is connected to a colored glaze glass 1, while the other portion on the right side of the corresponding insert plate 71 remains empty. On the left end of the overlapping plate 72 of the right decorative component, a portion of the right side of its corresponding insert plate 71 is connected to another colored glaze glass 1, while the other portion on the left side of its corresponding insert plate 71 remains empty. In other words, there is no connection of colored glaze glass 1 between the two adjacent portions of the two overlapping plates 72 on the two adjacent decorative components, thus leaving space between the two adjacent decorative components for installing the equipment end-mounting component 3. The equipment end-mounting component 3 is designed between the two adjacent decorative components to centrally arrange the equipment end points.
[0026] The connector 5 may include a first fastening structure 54, a fixing plate 51 connected to the bottom of the first lifting member 6, two first connecting plates 52 respectively connected to the bottom of the fixing plate 51, and two first connecting holes 521 respectively provided through the two first connecting plates 52. A strip-shaped through hole 711 is provided through the plug-in plate 71. The fixing plate 51 and the two first connecting plates 52 form a vertically arranged connecting groove 53. The plug-in plate 71 is inserted into the connecting groove 53. The first fastening structure 54 is used to connect to the two first connecting holes 521 and the strip-shaped through hole 711 respectively when the plug-in plate 71 is inserted into the connecting groove 53 at a preset height, so as to detachably fix the plug-in plate 71 and the two first connecting plates 52.
[0027] Specifically, the first lifting component 6 is a galvanized square tube, and the fixing plate 51 is welded to the galvanized square tube. The plug plate 71 and the overlapping plate 72 are integrally formed, and the fixing plate 51 and the two first connecting plates 52 are integrally formed. The fixing plate 51 is horizontally set, and the two first connecting plates 52 are vertically set. The two first connecting plates 52 are vertically connected to the middle of the bottom surface of the fixing plate 51. The connecting groove 53 is vertically set. The plug plate 71 is vertically set, and the overlapping plate 72 is horizontally set. The plug plate 71 is vertically connected to the middle of the top surface of the overlapping plate 72, and a part of the overlapping plate 72 located on the left side of the plug plate 71 and another part of the overlapping plate 72 located on the right side of the plug plate 71 are symmetrically set about the axis of the plug plate 71. After the plug-in plate 71 is aligned with the connecting groove 53, the plug-in plate 71 is inserted upward into the connecting groove 53. The top of the plug-in plate 71 is inserted into the connecting groove 53 at different heights, that is, at different depths. The plug-in plate 71 drives the overlapping plate 72 to move up and down, and the height of the overlapping plate 72 can be adjusted by inserting the plug-in plate 71 into the connecting groove 53 at different heights. The axis of the strip-shaped through hole 711 is perpendicular to the axis of the plug-in plate 71. The first connecting hole 521 can be a circular hole. The two first connecting holes 521 are symmetrically arranged. When the plug-in plate 71 moves in the connecting groove 53, the first connecting hole 521 can be partially aligned with the position of the strip-shaped through hole 711. When the plug plate 71 is inserted into the connection groove 53 at a preset height, the two first connection holes 521 can be aligned with the preset position of the strip through hole 711. The first fastening structure 54 is connected to the two first connection holes 521 and the strip through hole 711 respectively, thereby fixing the plug plate 71 and the two first connection plates 52.
[0028] The connector 5 may also include two first rubber pads 55 respectively disposed between the plug plate 71 and the two first connecting plates 52, and two second connecting holes respectively disposed through the two first rubber pads 55. The first fastening structure 54 includes a first bolt and a first nut. The two sides of the first rubber pads 55 abut against the plug plate 71 and the first connecting plates 52 respectively. One end of the first bolt passes through the first connecting hole 521 on one first connecting plate 52, the second connecting hole on one first rubber pad 55, the strip-shaped through hole 711, the second connecting hole on the other first rubber pad 55 and the first connecting hole 521 on the other first connecting plate 52 in sequence and is screwed to the first nut. The first bolt and the first nut abut against the two first connecting plates 52 respectively.
[0029] Specifically, when the plug plate 71 is inserted into the connecting slot 53, a first insertion gap is provided between the left side of the plug plate 71 and the first connecting plate 52 located on the left side of the plug plate 71, and a second insertion gap is provided between the right side of the plug plate 71 and the first connecting plate 52 located on the right side of the plug plate 71. In order to improve the stability of the connection between the plug plate 71 and the first connecting plate 52, a first rubber pad 55 is installed on each of the two first connecting plates 52. The two first connecting plates 52 are vertically arranged, and the two first rubber pads 55 are vertically arranged. The two first rubber pads 55 can be fixedly connected to the corresponding first connecting plate 52, that is, the first rubber pad 55 located on the left side is fixedly connected to the first connecting plate 52 located on the left side, and the first rubber pad 55 located on the right side is fixedly connected to the first connecting plate 52 located on the right side. When the plug plate 71 is inserted into the connecting groove 53, the left side of the first rubber pad 55 located on the left abuts against the first connecting plate 52 located on the left side of the plug plate 71, and the right side abuts against the left side of the plug plate 71. The left side of the first rubber pad 55 located on the right abuts against the right side of the plug plate 71, and the right side abuts against the first connecting plate 52 located on the right side of the plug plate 71. The two first rubber pads 55, the two first connecting plates 52 and the plug plate 71 can be interference-fitted. The second connecting hole on the first rubber pad 55 on the left side is aligned with the first connecting hole 521 on the first connecting plate 52 on the left side, and the second connecting hole on the first rubber pad 55 on the right side is aligned with the first connecting hole 521 on the first connecting plate 52 on the right side. When the plug-in plate 71 is inserted into the connecting groove 53, the two first connecting holes 521, the two second connecting holes, and the strip-shaped through hole 711 are aligned at their preset positions. One end of the first bolt passes through the first connecting hole 521 on one first connecting plate 52, the second connecting hole on one first rubber pad 55, the strip-shaped through hole 711, the second connecting hole on another first rubber pad 55, and the first connecting hole 521 on another first connecting plate 52 in sequence, and is screwed onto the first nut. The first bolt and the first nut abut against the two mutually distant sides of the two first connecting plates 52, and the plug-in plate 71 is fixed in the connecting groove 53 by the cooperation of the first bolt and the first nut. The first bolt is horizontally positioned. The first rubber pad 55 can be a high-strength rubber pad. The connector 5 also includes two reinforcing plates to increase strength. The two reinforcing plates are respectively connected to the two opposite sides of the two first connecting plates 52. A third connecting hole is provided through the reinforcing plate. One end of the first bolt passes through the third connecting hole of one reinforcing plate, the first connecting hole 521 on one first connecting plate 52, the second connecting hole on one first rubber pad 55, the strip-shaped through hole 711, the second connecting hole on another first rubber pad 55, the first connecting hole 521 on another first connecting plate 52, and the third connecting hole of the other reinforcing plate in sequence and is screwed to the first nut. The first bolt and the first nut abut against the opposite sides of the two reinforcing plates.
[0030] Specifically, there can be multiple strip-shaped through holes 711 on the plug-in plate 71, multiple first connecting holes 521 on a first connecting plate 52 corresponding to the multiple strip-shaped through holes 711, multiple second connecting holes on a first rubber pad 55 corresponding to the multiple first connecting holes 521 on a first connecting plate 52, and multiple first fastening structures 54 corresponding to the multiple strip-shaped through holes 711. Two first connecting plates 52 are vertically connected to the fixing plate 51, forming a Π-shaped structure. The two first connecting plates 52 are connected to the bottom of the fixing plate 51. The left and right ends of the fixing plate 51 are widened, so that the left end of the fixing plate 51 protrudes from one side of the first connecting plate 52 on the left, and the right end of the fixing plate 51 protrudes from one side of the first connecting plate 52 on the right. The first lifting member 6 is a galvanized square tube, and the fixing plate 51 is welded and fixed to the galvanized square tube. The keel 7 is a galvanized steel keel. The plug plate 71 is vertically connected to the middle of the lap plate 72, so the keel 7 is a T-shaped galvanized steel keel. The upper part of the T-shaped galvanized steel keel is inserted into the connecting groove 53 and fixed by fastening bolts. The upper insertion part of the T-shaped galvanized steel keel has an elongated hole to facilitate the vertical adjustment of the installation position of the T-shaped galvanized steel keel 7. A high-strength rubber pad is provided between the connector 5 and the T-shaped galvanized steel keel, which can effectively prevent the T-shaped galvanized steel keel from sliding after the bolts are tightened.
[0031] The decorative component may also include multiple second fastening structures 91, multiple pressure strips 8, and multiple second rubber pads 92. The second fastening structures 91 are used to detachably fix the first part of the pressure strip 8 and the plug plate 71. The two sides of the first second rubber pad 92 abut against the side of the colored glaze glass 1 and the side of the plug plate 71, respectively. The top surface of the second second rubber pad 92 abuts against the second part of the pressure strip 8 and the bottom surface abuts against the top surface of the colored glaze glass 1. The top surface of the third second rubber pad 92 abuts against the bottom surface of the colored glaze glass 1 and the bottom surface abuts against the top surface of the portion of the overlapping plate 72 located on one side of the plug plate 71.
[0032] Specifically, the pressure strip 8 can be an L-shaped pressure strip, with the first part of the pressure strip 8 set vertically and the second part set horizontally. The two sides of the first second rubber pad 92 abut against the sides of the enamel glass 1 and the side of the insertion plate 71, respectively, protecting the sides of the enamel glass 1 and the insertion plate 71. The top surface of the second second rubber pad 92 abuts against the second part of the pressure strip 8, and the bottom surface abuts against the top surface of the enamel glass 1, protecting the top surface of the enamel glass 1. The top surface of the third second rubber pad 92 abuts against the bottom surface of the enamel glass 1, and the bottom surface abuts against the top surface of the portion of the overlapping plate 72 located on one side of the insertion plate 71, protecting the bottom surface of the enamel glass 1. The second fastening structure 91 can be a bolt. The first second rubber pad 92 can be set vertically, while the second and third second rubber pads 92 can be set horizontally. The second rubber pad 92 can be an elastic rubber pad. The perimeter of the enamel-coated tempered laminated glass overlaps the lower flange of the T-shaped galvanized steel keel, and the upper part is pressed and fixed with an L-shaped pressure strip, which is then secured to the T-shaped galvanized steel keel with fastening bolts. Elastic rubber pads are installed between the enamel-coated tempered laminated glass and the T-shaped galvanized steel keel, and between the enamel-coated tempered laminated glass and the L-shaped pressure strip, to prevent a rigid connection between the enamel-coated tempered laminated glass and the fixed structure.
[0033] Decorative component 2 may include a first decorative structure 21, a second decorative structure 22, and a limiting structure 23. The first part of the first decorative structure 21 and the first part of the second decorative structure 22 are respectively connected to the two ends of the plug plate 71. The first part of the limiting structure 23 is connected to the first decorative structure 21. A first snap-fit groove is formed between the second part of the first decorative structure 21 and the second part of the limiting structure 23. The second part of the second decorative structure 22 is snapped into the first snap-fit groove.
[0034] The first decorative structure 21 may include a first mounting plate 211, a first limiting plate 212, and a second connecting plate 213 connected to the first mounting plate 211 and the first limiting plate 212 at both ends respectively. The second decorative structure 22 includes a second mounting plate 221, a snap-fit plate 222, and a third connecting plate 223 connected to the second mounting plate 221 and the snap-fit plate 222 at both ends respectively. The limiting structure 23 includes a fourth connecting plate 231 and a second limiting plate 232 connected to one end of the fourth connecting plate 231. The second limiting plate 232 includes a first curved portion 233 disposed away from the fourth connecting plate 231. The snap-fit plate 222 includes a second curved portion 224 that matches the first curved portion 233. The first snap-fit groove is formed by the first limiting plate 212 and the second limiting plate 232. The first hanging plate 211 and the second hanging plate 221 are respectively hung on the two ends of the overlapping plate 72, and at least one of the first hanging plate 211 and the second hanging plate 221 abuts against the colored glaze glass 1. The two sides of the fourth connecting plate 231 abut against one side of the overlapping plate 72 and the side of the third connecting plate 223, respectively. The third connecting plate 223 abuts against the other side of the overlapping plate 72. The snap-fit plate 222 is snapped into the first snap-fit groove.
[0035] Specifically, the first mounting plate 211 is horizontally positioned, the first limiting plate 212 is parallel to the first mounting plate 211, and the second connecting plate 213 is vertically connected to the first mounting plate 211. The second mounting plate 221 is horizontally positioned, and the third connecting plate 223 can be an L-shaped plate. The first part of the third connecting plate 223 is vertically connected to the second mounting plate 221, and the second part is parallel to the second mounting plate 221. The fourth connecting plate 231 is parallel to the second connecting plate 213. The second limiting plate 232 also includes a third curved portion and a first base portion connected at one end to the fourth connecting plate 231. One end of the first curved portion 233 is connected to the other end of the first base portion, and the third curved portion is connected to the other end of the second curved portion 224. The first base portion is vertically connected to the fourth connecting plate 231, and the third curved portion curves upwards away from the first limiting plate 212. The first snap-fit portion also includes a second base and a third base connected to the third connecting plate 223. The two ends of the second bent portion 224 are respectively connected to the second base and the third base. The second base and the third base are parallel to the first limiting plate 212. The fourth connecting plate 231 is welded to the second connecting plate 213. The decorative component 2 can be a decorative metal component. The first decorative structure 21 and the second decorative structure 22 can both be decorative metal plates. The limiting structure 23 can be a pressure plate. The decorative metal component adopts a split snap-fit technology and consists of a left decorative metal plate, a right decorative metal plate, and an internal pressure plate. The left decorative metal plate and the internal pressure plate are connected and fixed by welding. A snap-fit groove is formed between the left decorative metal plate and the internal pressure plate. One end of the right decorative metal plate is inserted into the snap-fit groove and connected to the left decorative metal plate by snap-fit fixing. The internal pressure plate is provided with a first bending part 233, and the right decorative metal plate is provided with a second bending part 224. The third bending part facilitates the insertion of the right decorative metal plate into the snap-fit groove, and after the decorative metal plate assembly is installed, the second bending part 224 of the right decorative metal plate is snap-fitted and fixed.
[0036] The equipment end-mounting assembly 3 may include a second lifting member 31, a support member 32, a first decorative panel 35, a plurality of second magnesium oxide boards 33, and a plurality of third magnesium oxide boards 34. The top of the second lifting member 31 may be connected to the main structure and the bottom of the support member 32. The plurality of second magnesium oxide boards 33 are respectively connected to the sides of the second lifting member 31. The plurality of third magnesium oxide boards 34 are respectively detachably connected to the left side, right side, and bottom of the support member 32. The first decorative panel 35 is respectively detachably connected to the plurality of second magnesium oxide boards 33. The first part and the second part of the first decorative panel 35 respectively abut against the two far apart ends of two adjacent overlapping plates 72 in two adjacent decorative components.
[0037] Specifically, the equipment end-mounting assembly 3 is used to centrally arrange equipment end points. The second magnesium oxide board 33 is connected to the second lifting member 31 using screws or bolts. The third magnesium oxide board 34 is connected to the support member 32 using screws or bolts. The first decorative panel 35 is connected to the second magnesium oxide board 33 using screws or bolts. Both the second lifting member 31 and the support member 32 can be galvanized angle steel. The equipment end-mounting assembly 3 uses galvanized angle steel as its internal support structure. The first decorative panel 35 can be a decorative metal panel. The second magnesium oxide board 33 is fixedly connected to the galvanized angle steel using self-tapping screws. The third magnesium oxide board 34 is also fixedly connected to the galvanized angle steel using self-tapping screws. The decorative metal panel is fixed to the third magnesium oxide board 34 using countersunk screws. The first decorative panel 35 can be a decorative metal panel. The first decorative panel 35 can have a U-shaped structure. The second lifting member 31 can include two first angle steels, which are vertically arranged. The two adjacent ends of the two first angle steels are welded together. The second magnesium oxide board 33 is installed on one side of each of the two vertically arranged first angle steels. The support member 32 may include three second angle steels disposed below; one of the second angle steels is located in the middle, and its top is connected to the bottom of two vertically disposed first angle steels above it. A third magnesium oxide board 34 is installed on the bottom surface of the second angle steel; one side of the second angle steel located to the left of the middle second angle steel is connected to one side of the first angle steel, and a third magnesium oxide board 34 is installed on one side of the second angle steel; one side of the second angle steel located to the right of the middle second angle steel is connected to the other side of the middle second angle steel, and a third magnesium oxide board 34 is installed on one side of the second angle steel; decorative metal plates are installed on the outside of the three third magnesium oxide boards 34, and the left second angle steel, the right second angle steel, and the decorative metal plates are respectively connected to the overlapping plates 72 of the two keels 7. This application also includes a spraying device 93 connected to the equipment end mounting assembly 3. The spraying device 93 can be an automatic spraying device, and the spraying device 93 is an electromechanical device placed in the equipment end mounting assembly 3. The sprinkler system 93 includes a sprinkler head and a sprinkler pipe. The sprinkler head is connected to one end of the sprinkler pipe, and the other end of the sprinkler pipe is connected to a fire water pipe.
[0038] The colored glaze glass 1 can be colored glaze tempered laminated composite glass; the first lifting member 6 is a galvanized square tube; the keel 7 is a galvanized steel keel 7; the second lifting member 31 includes multiple first galvanized angle steels welded to each other; the support member 32 includes second galvanized angle steels with their tops welded to the bottoms of the multiple first galvanized angle steels, and two third galvanized angle steels respectively welded to the two ends of the second galvanized angle steels; the first decorative panel 35 is a metal decorative panel; the decorative component 2 is a metal decorative component.
[0039] Specifically, the overlapping and adjustment technology of connecting groove 53 and keel 7 is adopted, which facilitates the adjustment of the base height, improves the flatness of the enamel glass 1 installation, reduces the installation stress of the enamel glass 1, and reduces the risk of spontaneous breakage of the enamel glass 1. The perimeter of the enamel glass 1 overlaps with the lower flange of the T-shaped galvanized steel keel and is pressed and fixed with L-shaped pressure strips. The L-shaped pressure strips and the lower flange of the T-shaped galvanized steel keel form a variable-size frame to accommodate enamel glass 1 of different thicknesses. The use of variable frame technology to fix the enamel glass 1 results in strong component versatility and overall base structure load-bearing capacity. The glazed glass 1 is firmly fixed and highly safe; the decorative metal panel assembly has a split design, decorating the visible part of the T-shaped galvanized steel keel. The upper part of the decorative component 2 is inserted into the installation groove between the T-shaped galvanized steel keel and the curved glazed glass 1, and the lower left and right decorative metal panels are connected and fixed to each other by a buckle structure. The installation structure is simple, convenient to operate, and has high installation efficiency; in order to centrally arrange the equipment end points, an equipment end installation strip is designed between two adjacent decorative components and decorated with metal finish to enhance the aesthetics of the design.
[0040] The above description can be implemented individually or in various combinations, and all these variations are within the protection scope of this utility model. It should be noted that in the description of this application, the terms "upper end," "lower end," and "bottom end" indicating orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship commonly used when the product is in use. These terms are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model.
Claims
1. A device for installing a translucent dome made of colored glaze glass, characterized in that: The system includes a finishing component and a decorative component (2); the finishing component includes at least one colored glaze glass (1), multiple keels (7), multiple connectors (5) corresponding to the multiple keels (7), and multiple first lifting components (6) corresponding to the multiple connectors (5), with one colored glaze glass (1) corresponding to two keels (7); the keel (7) includes a plug plate (71) and an overlapping plate (72) connected in the middle to the bottom of the plug plate (71); the decorative component (2) is connected to the overlapping plate (72); the two colored glaze glass (1) The side ends are respectively connected to the overlapping plates (72) of two adjacent keels (7), and the two adjacent colored glaze glass (1) are respectively connected to the two parts on both sides of the overlapping plate (72) of one keel (7); the bottom of the first lifting member (6) is connected to the first part of the connector (5), and the top can be fixedly connected to the main structure; the second part of the connector (5) is provided with a connecting groove (53), and the insert plate (71) is inserted and fixedly connected to different depths in the connecting groove (53) to adjust the height of the overlapping plate (72).
2. The installation device for a translucent dome made of colored glaze glass as described in claim 1, characterized in that: It also includes a support member (41) connected to the middle of the first lifting member (6) and a lamp assembly connected to the support member (41) and located above the colored glaze glass (1); the lamp assembly includes a first glass magnesium plate (42) connected to the bottom of the support member (41), and an LED light strip (43) and a reflective film (44) respectively connected to the bottom of the first glass magnesium plate (42).
3. The installation device for a translucent dome made of colored glaze glass as described in claim 1 or 2, characterized in that: The finishing components are multiple, and also include a device end mounting component (3) disposed between two adjacent finishing components. The top of the device end mounting component (3) can be fixedly connected to the main structure, and the bottom of the device end mounting component (3) is respectively connected to two overlapping plates (72) that are close to each other in the two adjacent finishing components. The decorative components (2) are multiple, and the multiple decorative components (2) are respectively connected to multiple overlapping plates (72) of the multiple finishing components that are not connected to the device end mounting component (3).
4. The installation device for a translucent dome made of colored glaze glass as described in claim 1 or 2, characterized in that: The connector (5) includes a first fastening structure (54), a fixing plate (51) connected to the bottom of the first lifting member (6) at the top, two first connecting plates (52) respectively connected to the bottom of the fixing plate (51), and two first connecting holes (521) respectively provided through the two first connecting plates (52). The plug-in plate (71) is provided with a strip-shaped through hole (711). The fixing plate (51) and the two first connecting plates (52) form a vertically arranged connecting groove (53). The plug-in plate (71) is inserted into the connecting groove (53). The first fastening structure (54) is used to connect to the two first connecting holes (521) and the strip-shaped through hole (711) respectively when the plug-in plate (71) is inserted into the connecting groove (53) at a preset height, so as to detachably fix the plug-in plate (71) and the two first connecting plates (52).
5. The installation device for a translucent dome made of colored glaze glass as described in claim 4, characterized in that: The connector (5) further includes two first rubber pads (55) respectively disposed between the plug plate (71) and the two first connecting plates (52), and two second connecting holes respectively disposed through the two first rubber pads (55). The first fastening structure (54) includes a first bolt and a first nut. The two sides of the first rubber pad (55) abut against the plug plate (71) and the first connecting plate (52) respectively. One end of the first bolt passes through the first connecting hole (521) on one first connecting plate (52), the second connecting hole on one first rubber pad (55), the strip-shaped through hole (711), the second connecting hole on the other first rubber pad (55) and the first connecting hole (521) on the other first connecting plate (52) in sequence and is screwed to the first nut. The first bolt and the first nut abut against the two first connecting plates (52) respectively.
6. The installation device for a translucent dome made of colored glaze glass as described in claim 1 or 2, characterized in that: The finishing assembly also includes a plurality of second fastening structures (91), a plurality of pressure strips (8), and a plurality of second rubber pads (92). The second fastening structures (91) are used to detachably fix the first part of the pressure strip (8) and the plug plate (71). The two sides of the first second rubber pad (92) abut against the side of the colored glaze glass (1) and the side of the plug plate (71), respectively. The top surface of the second second rubber pad (92) abuts against the second part of the pressure strip (8) and the bottom surface abuts against the top surface of the colored glaze glass (1). The top surface of the third second rubber pad (92) abuts against the bottom surface of the colored glaze glass (1) and the bottom surface abuts against the top surface of the portion of the overlapping plate (72) located on one side of the plug plate (71).
7. The installation device for a translucent dome made of colored glaze glass as described in claim 1 or 2, characterized in that: The decorative component (2) includes a first decorative structure (21), a second decorative structure (22), and a limiting structure (23). The first part of the first decorative structure (21) and the first part of the second decorative structure (22) are respectively connected to the two ends of the plug plate (71). The first part of the limiting structure (23) is connected to the first decorative structure (21). A first snap-fit groove is formed between the second part of the first decorative structure (21) and the second part of the limiting structure (23). The second part of the second decorative structure (22) is snapped into the first snap-fit groove.
8. The installation device for a translucent dome made of colored glaze glass as described in claim 7, characterized in that: The first decorative structure (21) includes a first hanging plate (211), a first limiting plate (212), and a second connecting plate (213) whose two ends are respectively connected to the first hanging plate (211) and the first limiting plate (212). The second decorative structure (22) includes a second hanging plate (221), a snap-fit plate (222), and a third connecting plate (223) whose two ends are respectively connected to the second hanging plate (221) and the snap-fit plate (222). The limiting structure (23) includes a fourth connecting plate (231) and a second limiting plate (232) whose one end is connected to one end of the fourth connecting plate (231). The second limiting plate (232) includes a portion of the ... The plate (231) is provided with a first curved portion (233), and the snap-fit plate (222) includes a second curved portion (224) that matches the first curved portion (233). The first snap-fit groove is surrounded by a first limiting plate (212) and a second limiting plate (232). The first hanging plate (211) and the second hanging plate (221) are respectively hung on the two ends of the overlapping plate (72). The two sides of the fourth connecting plate (231) abut against one side of the overlapping plate (72) and the side of the third connecting plate (223). The third connecting plate (223) abuts against the other side of the overlapping plate (72). The snap-fit plate (222) is snapped into the first snap-fit groove.
9. The installation device for a translucent dome made of colored glaze glass as described in claim 3, characterized in that: The device end mounting assembly (3) includes a second lifting member (31), a support member (32), a first decorative panel (35), a plurality of second magnesium oxide boards (33) and a plurality of third magnesium oxide boards (34). The top of the second lifting member (31) can be connected to the main structure and the bottom is connected to the top of the support member (32). The plurality of second magnesium oxide boards (33) are respectively connected to the side of the second lifting member (31). The plurality of third magnesium oxide boards (34) are respectively detachably connected to the left side, right side and bottom of the support member (32). The first decorative panel (35) is respectively detachably connected to the plurality of second magnesium oxide boards (33). The first part and the second part of the first decorative panel (35) respectively abut against the two opposite sides of the two overlapping plates (72) that are close to each other in two adjacent decorative components.
10. The installation device for a translucent dome made of colored glaze glass as described in claim 9, characterized in that: The colored glaze glass (1) is colored glaze tempered laminated composite glass; the first lifting member (6) is a galvanized square tube; the keel (7) is a galvanized steel keel (7); the second lifting member (31) includes multiple first galvanized angle steels welded to each other; the support member (32) includes a second galvanized angle steel with its top welded to the bottom of multiple first galvanized angle steels, and two third galvanized angle steels welded to both sides of the second galvanized angle steels respectively; the first decorative panel (35) is a metal decorative panel; the decorative component (2) is a metal decorative component.