WO2017129043A1 - 保温复合玻璃 - Google Patents

保温复合玻璃 Download PDF

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Publication number
WO2017129043A1
WO2017129043A1 PCT/CN2017/071770 CN2017071770W WO2017129043A1 WO 2017129043 A1 WO2017129043 A1 WO 2017129043A1 CN 2017071770 W CN2017071770 W CN 2017071770W WO 2017129043 A1 WO2017129043 A1 WO 2017129043A1
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glass
intermediate interlayer
support member
layer
composite glass
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PCT/CN2017/071770
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English (en)
French (fr)
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冯华国
赵红徳
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金粤幕墙装饰工程有限公司
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Publication of WO2017129043A1 publication Critical patent/WO2017129043A1/zh

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    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B3/00Window sashes, door leaves, or like elements for closing wall or like openings; Layout of fixed or moving closures, e.g. windows in wall or like openings; Features of rigidly-mounted outer frames relating to the mounting of wing frames
    • E06B3/66Units comprising two or more parallel glass or like panes permanently secured together

Definitions

  • the invention relates to a composite glass, in particular to an insulated composite glass.
  • Insulation composite glass is made up of one or more layers of organic polymer interlayer film between two or more pieces of glass. After special high temperature pre-pressing (or vacuuming) and high temperature and high pressure process, the glass and interlayer film are made permanent. A composite glass product that is bonded together.
  • the patent document (Comparative Document 1) of the existing authorization announcement date of December 16, 2015 and the authorization publication number CN204874302 discloses a pre-sealed insulated composite glass structure having two sheets of glass stacked in parallel, The two glasses have chamfers on the peripheral edges of the opposite sides, and the chamfers are positioned such that a V-shaped gap is formed between the edges of the two glasses, and the V-shaped gap is filled with a rubber edge to achieve sealing of the periphery of the glass. A layer of glue surrounded by a rubber edge is provided between the two glasses.
  • the pre-sealed insulating composite glass structure described in the comparative document 1 is designed to fill the "V"-shaped gap between the two layers of glass by designing the frame glue, so that the middle layer of the rubber layer is protected by the frame, but two pieces. The edges of the glass stacked in parallel are too thin to be easily damaged when the insulating composite glass is produced.
  • An insulated composite glass comprising an outer layer glass, an inner layer glass and an intermediate interlayer sandwiched between the outer layer glass and the inner layer glass, and a support member is disposed at an edge between the outer layer glass and the inner layer glass
  • the support member is disposed on the outer ring of the intermediate interlayer, and the outer ring of the intermediate interlayer is provided with a rubber edge layer.
  • the support member provided at the edge of the outer glass and the inner glass at the time of production can prevent the occurrence of the thickness difference of the insulated composite glass, and the edge of the outer glass and the inner glass.
  • the composite glass has the same appearance.
  • the invention is further arranged such that the support member is V-shaped on the side close to the intermediate interlayer.
  • the contact area of the end portion of the support member and the intermediate interlayer is enhanced, thereby enhancing the connection strength between the support member and the intermediate interlayer.
  • the invention is further provided that the support member is disposed in a plane on an end adjacent to the side of the intermediate interlayer.
  • the invention is further provided that the support member and the outer glass and the inner glass are snapped together.
  • the present invention is prevented from being displaced between the outer glass and the inner glass due to the extrusion during the manufacturing process.
  • the inner side of the outer glass is provided with a first groove
  • the inner side of the inner glass is provided with a second groove corresponding to the first groove
  • the support is away from
  • One side of the intermediate interlayer is respectively provided with a first convex body adapted to the first groove and a second convex body adapted to the second groove.
  • the present invention is prevented from being displaced between the outer glass and the inner glass due to the extrusion during the manufacturing process.
  • the invention is further provided that the support member is provided with a through hole communicating with the intermediate interlayer and the rubber edge layer.
  • the invention is further provided that the outer glass and the inner glass are both provided as tempered glass.
  • the tempered glass is a safety glass, and the tempered glass is a kind of prestressed glass.
  • a chemical or physical method is generally used to form a compressive stress on the surface of the glass, and the glass is subjected to an external force first.
  • the surface stress is offset, thereby improving the bearing capacity, enhancing the wind resistance of the glass itself, cold and heat, impact, etc., thereby enhancing the performance of the present invention.
  • the invention is further provided that the intermediate interlayer is provided as a polycarbonate layer.
  • the polycarbonate layer is made of polycarbonate.
  • Polycarbonate is a new type of thermoplastic with a transparency of 90%. It is known as transparent metal, rigid and tough, and has high impact resistance.
  • the high dimensional stability and wide range of use temperatures, good insulation and heat resistance and non-toxicity, the invention has the advantages of high strength, light transmission, explosion protection and energy saving.
  • the intermediate interlayer has a thickness of 4 to 8 mm.
  • the amount of polycarbonate is minimized under the premise of ensuring the advantages of high strength, light transmission, explosion proof and energy saving of the present invention.
  • the present invention has the following beneficial effects: the outer glass and the inner glass are not easily damaged during the production, and the intermediate interlayer is also protected by the frame.
  • Figure 1 is a schematic structural view of an embodiment
  • Figure 2 is a schematic view showing the structure of the support member in the embodiment.
  • Reference numerals 1, outer glass; 11, first groove; 2, inner glass; 21, second groove; 3, intermediate interlayer; 4, support member; 41, first convex body; Two convex bodies; 43, through holes; 5, glue edge layer.
  • Insulating composite glass as shown in FIGS. 1 to 2, comprises an outer layer glass 1, an inner layer glass 2, and an intermediate interlayer 3 sandwiched between the outer layer glass 1 and the inner layer glass 2.
  • a support member 4 is provided at an edge between the outer layer glass 1 and the inner layer glass 2.
  • the support member 4 is V-shaped on the side close to the intermediate interlayer 3, which can enhance the contact area of the end portion of the support member 4 and the intermediate interlayer 3, thereby enhancing the joint strength of the support member 4 and the intermediate interlayer 3. Further, in order to enhance the safety of the present invention in the manufacturing process, The ends of the struts 4 on the side close to the intermediate interlayer 3 are arranged in a plane.
  • the inner side of the outer layer glass 1 is provided with a first groove 11
  • the inner side of the inner glass 2 is provided with a second recess 21 corresponding to the first recess 11
  • the support member 4 is respectively disposed on the side away from the intermediate interlayer 3 and the first recess 11 is adapted to the first protrusion 41 and the second protrusion 42 adapted to the second groove 21.
  • the outer side of the support member 4 is further provided with a rubber edge layer 5 for sealing the edge of the present invention, and has the functions of filling and protecting.
  • the support member 4 is provided with a through hole communicating with the intermediate interlayer 3 and the rubber edge layer 5.
  • the purpose of designing the through hole 43 is: if the amount of adhesive added in the intermediate interlayer 3 is too high, excess adhesive can flow out through the through hole 43; The amount of the adhesive added in the intermediate interlayer 3 is too low, and the adhesive can be added through the through hole 43.
  • the outer glass 1 and the inner glass 2 are all set as tempered glass. This is because the tempered glass belongs to safety glass.
  • the tempered glass is a kind of prestressed glass. In order to increase the strength of the glass, chemical or physical methods are usually used on the glass surface. The compressive stress is formed, and when the glass is subjected to an external force, the surface stress is first offset, thereby improving the bearing capacity, enhancing the wind resistance of the glass itself, cold and heat, impact, etc., thereby enhancing the performance of the present invention.
  • the intermediate interlayer 3 was provided as a polycarbonate layer in which the polycarbonate layer was made of polycarbonate (manufactured by Bayer, Germany). This is because polycarbonate is a new type of thermoplastic with a transparency of 90%. It is known as a transparent metal, rigid and tough, with high impact resistance, high dimensional stability and a wide range of operating temperatures. The invention has good insulation and heat resistance and is non-toxic, so that the invention has the advantages of high strength, light transmission, explosion proof and energy saving. Further, the intermediate interlayer 3 has a thickness of 4 to 8 mm.

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  • Engineering & Computer Science (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Laminated Bodies (AREA)
  • Joining Of Glass To Other Materials (AREA)

Abstract

一种保温复合玻璃,包括外层玻璃(1)、内层玻璃(2)以及夹在所述外层玻璃(1)和内层玻璃(2)之间的中间夹层(3),其特征在于:所述外层玻璃(1)和内层玻璃(2)之间的边缘处设置有支撑件(4),所述支撑件(4)设置于所述中间夹层(3)的外圈,所述中间夹层(3)的外圈设置有胶边层(5)。其在制作时外层玻璃(1)和内层玻璃(2)的边缘不易损坏,且中间夹层(3)也得到了边框的保护。

Description

保温复合玻璃 技术领域
本发明涉及一种复合玻璃,特别涉及一种保温复合玻璃。
背景技术
保温复合玻璃是由两片或多片玻璃之间夹了一层或多层有机聚合物中间膜,经过特殊的高温预压(或抽真空)及高温高压工艺处理后,使玻璃和中间膜永久粘合为一体的复合玻璃产品。
现有授权公告日为2015年12月16日、授权公告号为CN204874302的专利文献(对比文件1)公开了一种预封边的保温复合玻璃结构,具有两片平行叠放的玻璃,所述两玻璃在相向一侧的四周边缘具有倒角,所述倒角的位置相对使得两玻璃的边缘之间形成V型的间隙,所述V型间隙填充有胶边从而实现玻璃周边的密封,所述两玻璃之间设有由胶边包围的胶层。
对比文件1中所述预封边的保温复合玻璃结构虽然通过设计边框胶,填平两层玻璃之间的“V”形间隙,使得两层中间的胶层得到了边框的保护,但是两片平行叠放的玻璃的边缘太薄,在制作保温复合玻璃时,容易损坏。
发明内容
本发明的目的在于提供一种保温复合玻璃,其在制作时外层玻璃和内层玻璃的边缘不易损坏,且中间夹层也得到了支撑件的保护。
本发明的上述技术目的是通过以下技术方案得以实现的:
一种保温复合玻璃,包括外层玻璃、内层玻璃以及夹在所述外层玻璃和内层玻璃之间的中间夹层,所述外层玻璃和内层玻璃之间的边缘处设置有支撑件,所述支撑件设置于所述中间夹层的外圈,所述中间夹层的外圈设置有胶边层。
通过采用上述技术方案,其在制作时在外层玻璃和内层玻璃的边缘设置的支撑件,可以防止制作出的保温复合玻璃薄厚不一的情况发生,并且外层玻璃和内层玻璃的边缘的具有 足够的厚度,使在本发明制作的过程中受到挤压不易损坏,且中间夹层也得到了支撑件的保护;此外胶边层由于具有填平和保护的作用,使本发明的外观和一般的保温复合玻璃的外观相同。
本发明进一步设置为:所述支撑件于靠近所述中间夹层一侧为V型设置。
通过采用上述技术方案,增强了支撑件的端部和中间夹层的接触面积,进而增强了支撑件和中间夹层的连接强度。
本发明进一步设置为:所述支撑件于靠近所述中间夹层一侧的端部为平面设置。
通过采用上述技术方案,避免了由于支撑件的端部尖尖的而导致本发明在制作过程中划伤工作人员的情况发生,提高安全性。
本发明进一步设置为:所述支撑件和所述外层玻璃以及内层玻璃卡接。
通过采用上述技术方案,防止本发明在制作过程中由于受到挤压而导致支撑件在外层玻璃和内层玻璃之间发生位移。
本发明进一步设置为:所述外层玻璃的内侧设置有第一凹槽,所述内层玻璃的内侧设有与所述第一凹槽相对应的第二凹槽,所述支撑件于远离所述中间夹层的一侧分别设置有与所述第一凹槽相适配的第一凸体以及与所述第二凹槽相适配的第二凸体。
通过采用上述技术方案,防止本发明在制作过程中由于受到挤压而导致支撑件在外层玻璃和内层玻璃之间发生位移。
本发明进一步设置为:所述支撑件设有连通所述中间夹层和所述胶边层的通孔。
通过采用上述技术方案,若中间夹层中聚氧酯树酯添加量过高,过量的聚氧酯树酯可以通过通孔流出;若中间夹层中聚氧酯树酯添加量过低,可以通过通孔添加聚氧酯树酯。
本发明进一步设置为:所述外层玻璃、内层玻璃均设置为钢化玻璃。
通过采用上述技术方案,钢化玻璃属于安全玻璃,钢化玻璃是一种预应力玻璃,为提高玻璃的强度,通常使用化学或物理的方法,在玻璃表面形成压应力,玻璃承受外力时首先 抵消表层应力,从而提高了承载能力,增强玻璃自身抗风压性,寒暑性,冲击性等,进而增强了本发明的使用性能。
本发明进一步设置为:所述中间夹层设置为聚碳酸酯层。
通过采用上述技术方案,聚碳酸酯层是由聚碳酸酯制成,聚碳酸酯是一种新型的热塑性塑料,透明度达90%,被誉为透明金属,刚硬而有韧性,具有高抗冲击性,高度的尺寸稳定性和范围很宽的使用温度,良好的绝缘性及耐热性和无毒性,从而本发明具有强度高、透光、防爆和节能的优点。
本发明进一步设置为:所述中间夹层的厚度为4~8mm。
通过采用上述技术方案,在确保本发明具有强度高、透光、防爆和节能的优点的前提下,使聚碳酸酯的用量最低。
综上所述,本发明具有以下有益效果:其在制作时外层玻璃和内层玻璃不易损坏,且中间夹层也得到了边框的保护。
附图说明
图1为实施例的结构示意图;
图2为实施例中支撑件的结构示意图。
附图标记:1、外层玻璃;11、第一凹槽;2、内层玻璃;21、第二凹槽;3、中间夹层;4、支撑件;41、第一凸体;42、第二凸体;43、通孔;5、胶边层。
具体实施方式
以下结合附图对本发明作进一步详细说明。
实施例:保温复合玻璃,如图1至图2所示,包括外层玻璃1、内层玻璃2以及夹在所述外层玻璃1和内层玻璃2之间的中间夹层3。
外层玻璃1和内层玻璃2之间的边缘处设置有支撑件4。支撑件4于靠近所述中间夹层3一侧为V型设置,这样可以增强了支撑件4的端部和中间夹层3的接触面积,进而增强了支撑件4和中间夹层3的连接强度。进一步地,为了增强本发明在制作过程的安全性,支 撑件4于靠近所述中间夹层3一侧的端部为平面设置。
进一步地,为了防止本发明在制作过程中由于受到挤压而导致支撑件4在外层玻璃1和内层玻璃2之间发生位移,外层玻璃1的内侧设置有第一凹槽11,所述内层玻璃2的内侧设有与所述第一凹槽11相对应的第二凹槽21,所述支撑件4于远离所述中间夹层3的一侧分别设置有与所述第一凹槽11相适配的第一凸体41以及与所述第二凹槽21相适配的第二凸体42。进一步地,支撑件4的外侧还设置有胶边层5,对本发明的边缘进行密封,具有填平和保护的作用。
支撑件4设有连通中间夹层3和胶边层5的通孔,设计通孔43的目的是:若中间夹层3中黏结胶添加量过高,过量的黏结胶可以通过通孔43流出;若中间夹层3中黏结胶添加量过低,可以通过通孔43添加黏结胶。
外层玻璃1、内层玻璃2均设置为钢化玻璃,这是由于钢化玻璃属于安全玻璃,钢化玻璃是一种预应力玻璃,为提高玻璃的强度,通常使用化学或物理的方法,在玻璃表面形成压应力,玻璃承受外力时首先抵消表层应力,从而提高了承载能力,增强玻璃自身抗风压性,寒暑性,冲击性等,进而增强了本发明的使用性能。
中间夹层3设置为聚碳酸酯层,其中聚碳酸酯层是由聚碳酸酯(由德国拜耳公司生产)制成。这是由于聚碳酸酯是一种新型的热塑性塑料,透明度达90%,被誉为透明金属,刚硬而有韧性,具有高抗冲击性,高度的尺寸稳定性和范围很宽的使用温度,良好的绝缘性及耐热性和无毒性,从而本发明具有强度高、透光、防爆和节能的优点。进一步地,中间夹层3的厚度为4~8mm。
本具体实施例仅仅是对本发明的解释,其并不是对本发明的限制,本领域技术人员在阅读完本说明书后可以根据需要对本实施例做出没有创造性贡献的修改,但只要在本发明的权利要求范围内都受到专利法的保护。

Claims (9)

  1. 一种保温复合玻璃,包括外层玻璃(1)、内层玻璃(2)以及夹在所述外层玻璃(1)和内层玻璃(2)之间的中间夹层(3),其特征在于:所述外层玻璃(1)和内层玻璃(2)之间的边缘处设置有支撑件(4),所述支撑件(4)设置于所述中间夹层(3)的外圈,所述中间夹层(3)的外圈设置有胶边层(5)。
  2. 根据权利要求1所述的保温复合玻璃,其特征在于:所述支撑件(4)于靠近所述中间夹层(3)一侧为V型设置。
  3. 根据权利要求2所述的保温复合玻璃,其特征在于:所述支撑件(4)于靠近所述中间夹层(3)一侧的端部为平面设置。
  4. 根据权利要求3所述的保温复合玻璃,其特征在于:所述支撑件(4)和所述外层玻璃(1)以及内层玻璃(2)卡接。
  5. 根据权利要求4所述的保温复合玻璃,其特征在于:所述外层玻璃(1)的内侧设置有第一凹槽(11),所述内层玻璃(2)的内侧设有与所述第一凹槽(11)相对应的第二凹槽(21),所述支撑件(4)于远离所述中间夹层(3)的一侧分别设置有与所述第一凹槽(11)相适配的第一凸体(41)以及与所述第二凹槽(21)相适配的第二凸体(42)。
  6. 根据权利要求5所述的保温复合玻璃,其特征在于:所述支撑件(4)设有连通所述中间夹层(3)和所述胶边层(5)的通孔(43)。
  7. 根据权利要求1所述的保温复合玻璃,其特征在于:所述外层玻璃(1)、内层玻璃(2)均设置为钢化玻璃。
  8. 根据权利要求1所述的保温复合玻璃,其特征在于:所述中间夹层(3)设置为聚碳酸酯层。
  9. 根据权利要求8所述的保温复合玻璃,其特征在于:所述中间夹层(3)的厚度为4~8mm。
PCT/CN2017/071770 2016-01-29 2017-01-19 保温复合玻璃 WO2017129043A1 (zh)

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CN107816297A (zh) * 2017-11-29 2018-03-20 重庆市国宇钢化玻璃有限公司 中空玻璃
CN109650750A (zh) * 2018-12-20 2019-04-19 六盘水鑫瑞达钢化玻璃有限公司 一种防边角破裂的钢化玻璃

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Publication number Priority date Publication date Assignee Title
CN205502897U (zh) * 2016-01-29 2016-08-24 金粤幕墙装饰工程有限公司 保温复合玻璃
CN111959079B (zh) * 2020-08-06 2022-07-19 山东圣鲁轻工集团有限公司 一种银行用防砸复合玻璃

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