WO2012058972A1 - 一种中空玻璃内置磁滑块控制的卷帘装置 - Google Patents

一种中空玻璃内置磁滑块控制的卷帘装置 Download PDF

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Publication number
WO2012058972A1
WO2012058972A1 PCT/CN2011/078735 CN2011078735W WO2012058972A1 WO 2012058972 A1 WO2012058972 A1 WO 2012058972A1 CN 2011078735 W CN2011078735 W CN 2011078735W WO 2012058972 A1 WO2012058972 A1 WO 2012058972A1
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Prior art keywords
roller blind
magnetic
glass
built
magnetic slider
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English (en)
French (fr)
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李龙
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TANG HONGYI
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TANG HONGYI
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Classifications

    • 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
    • E06B9/00Screening or protective devices for wall or similar openings, with or without operating or securing mechanisms; Closures of similar construction
    • E06B9/24Screens or other constructions affording protection against light, especially against sunshine; Similar screens for privacy or appearance; Slat blinds
    • E06B9/40Roller blinds
    • 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
    • E06B9/00Screening or protective devices for wall or similar openings, with or without operating or securing mechanisms; Closures of similar construction
    • E06B9/24Screens or other constructions affording protection against light, especially against sunshine; Similar screens for privacy or appearance; Slat blinds
    • E06B2009/2423Combinations of at least two screens
    • E06B2009/2447Parallel screens
    • E06B2009/2452Parallel screens moving independently
    • 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
    • E06B9/00Screening or protective devices for wall or similar openings, with or without operating or securing mechanisms; Closures of similar construction
    • E06B9/24Screens or other constructions affording protection against light, especially against sunshine; Similar screens for privacy or appearance; Slat blinds
    • E06B9/26Lamellar or like blinds, e.g. venetian blinds
    • E06B9/264Combinations of lamellar blinds with roller shutters, screen windows, windows, or double panes; Lamellar blinds with special devices
    • E06B2009/2643Screens between double windows
    • E06B2009/2646Magnetic screen operator
    • 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
    • E06B9/00Screening or protective devices for wall or similar openings, with or without operating or securing mechanisms; Closures of similar construction
    • E06B9/24Screens or other constructions affording protection against light, especially against sunshine; Similar screens for privacy or appearance; Slat blinds
    • E06B9/40Roller blinds
    • E06B2009/405Two rollers

Definitions

  • the invention relates to a roller blind device controlled by a magnetic sliding block built in an insulating glass, in particular to a roller blind device which can be sealed in an insulating glass and controlled by a magnetic sliding block, and belongs to a built-in sunshade insulating glass product.
  • the built-in curtains basically have venetian blinds, pleated blinds and roller blinds.
  • Direct control and magnet non-contact transmission control two types, in the existing technology, such as Chinese patent application number 200510065390.1, the name is “a type of production method for rolling rolling curtains in hollow glass”, Chinese patent application number 03205764.4, the name It is a "built-in adjustable film insulating glass", and Chinese patent application No. 03144041.X, entitled “Manufacturing method and transmission structure of built-in adjustable film insulating glass”, introduces a class of magnetic control roller blinds arranged in insulating glass.
  • the utility model relates to a roller blind device controlled by a magnetic slider built in an insulating glass, which comprises a magnetic magnetic non-contact transmission device composed of two magnetic sliders inside and outside the insulating glass, a roller blind sealed in the hollow glass, and the roller blind is downwardly deployed through the lower crossbar The gravity pulls, the roller blind is folded upwards, and the roller shaft is rotated by the inner magnetic slider by the drawstring, so as to control the unfolding or folding of the roller blind.
  • the basic technical solution is: inside an insulating glass, an inner frame is provided, and the roller blind is wound on the roller blind shaft, and both ends of the roller blind shaft are fixed to both ends of the top of the frame by bearings, wherein the roller blind shaft One end edge is fixed with a rope pulley, one rope, one end of which is wound and fixed on the rope pulley, and the other end is fixed on the inner magnetic slider, and an outer magnetic slider is arranged at a corresponding position outside the hollow glass.
  • two sets of magnetic control slider roller blind systems which do not interfere with each other can be arranged in the insulating glass, which are composed of two sets of inner and outer magnetic sliders, drawstrings and roller blinds, and the two roller blind shafts are installed side by side.
  • the two sets of magnetic sliders are arranged on the left and right sides of the hollow glass to achieve the purpose of loading a double magnetically controlled roller blind in a hollow glass.
  • the drawstring can be replaced with a drawstring, and the take-up reel is replaced by a take-up reel;
  • the rope can be replaced by a chain, and the rope pulley is replaced by a sprocket;
  • a weight matching the weight of the roller under the roller can be added to the bottom of the inner magnetic slider;
  • the diameter of the reel is smaller than the diameter of the roller blind shaft
  • the inner magnetic slider can be mounted with a pulley, so that one end of the pulling rope is fixed on the rope pulley, and the other end is bypassed by the pulley of the inner magnetic slider and fixed at a specified position of the inner frame.
  • the outer magnetic slider slides on the sliding rail outside the hollow glass, and two positioning blocks are arranged on the sliding rail to respectively limit the upper position and the lower position of the outer sliding block;
  • the roller blind is made of an organic film, in particular, a coating film having selective light transmission;
  • the two upper and lower roller blind shafts are arranged in a staggered manner in the vertical direction, so that the two roller blind shafts do not contact each other when they respectively retract the respective roller blinds;
  • two parallel rails are formed by two U-shaped grooves in one beam in the two side frames of the hollow glass inner frame, so that the two roller blind lower rails slide on their own tracks;
  • the device of the invention has the advantages that the structure is simple, the roller blind deployment depends on the gravity of the roller blind itself, and the winding of the roller blind provides the inner magnetic slider to be pulled by the drawstring, and the working stroke of the magnetic slider is smaller than the unfolding height of the roller blind.
  • two sets of roller blinds can be installed in one hollow glass, but since each roller blind system is completely independent, the two roller blinds do not interfere with each other when they are unfolded or folded separately, which ensures the normal operation of the roller blind.
  • Fig. 1 is a basic structural view of a roller blind device controlled by a magnetic slide with a built-in magnetic slider.
  • 1 the weight of the inner magnetic slider 2 the outer magnetic slider 3 the magnetic slider 4 the drawstring 5 the insulating glass 6 Rolling shaft 7 Rolling sheave S Rolling shutter 9 Rolling shutter.
  • FIG. 2 is a basic structural view of a double curtain controlled by a built-in magnetic slider of an insulating glass.
  • 10 an outer magnetic slider 11 of the first roller blind, an inner magnetic slider 12 of the first roller blind, a first roller blind Pull cord 13 Roller sheave 14 on the first roller blind shaft First roller blind shaft 15 First roller blind 16 Roller sheave 17 on the second roller blind shaft Second roller blind shaft 18 Pull cord 19 of the second roller blind Second roller blind 20
  • the lower crossbar 21 of the first roller blind The lower crossbar 22 of the second roller blind 22
  • the inner magnetic slider of the second roller blind 23 The outer magnetic slider of the second roller blind. detailed description
  • the outer side of the hollow glass 5 is provided with an outer magnetic slider 2
  • the inner magnetic slider 3 is at a corresponding position in the hollow glass 5
  • the bottom of the inner magnetic slider 3 has a corresponding weight 1
  • a drawstring 4 which is wound on the roller blind shaft 6 at one end, and the other end is fixed at a designated position of the inner magnetic slider 3
  • one end of the roller blind 8 is wound on the roller blind shaft 6, and the other end is fixed on the roller On the lower crossbar 9 of the curtain 8.
  • the outer magnetic slider 2 is slid by hand, and the inner magnetic slider 3 slides under the action of the magnetic force line.
  • the reel shaft 6 is driven to rotate counterclockwise by the reel 7
  • the roller blind 8 is wound, whereas the inner magnetic slider 3 is upward, the cable 3 is loosened, and the roller blind 8 is unfolded downward by the gravity of the lower crossbar 9, and the cable 4 is wound around the rope pulley 7.
  • FIG. 2 the basic structure diagram of the double curtain controlled by the magnetic glass built-in magnetic slider, because of the double curtain structure, the first roller blind shaft 14 and the second roller blind shaft 17 at the upper end of the hollow glass are juxtaposed.
  • On both sides of the insulating glass are an inner magnetic slider 11 and an outer magnetic slider 10 of the first roller group, an inner magnetic slider 22 and an outer magnetic slider 23 of the second roller group.
  • the first roller blind group is composed of an inner magnetic slider 11 of the first roller blind, an outer magnetic slider 10, a first roller blind rope 12, a rope pulley 13 on the first roller blind shaft, and a first roller blind shaft 14
  • the first roller blind 15 is composed of a first roller blind lower rail 20.
  • the second roller blind group consists of an inner magnetic slider 22 of the second roller blind, an outer magnetic slider 23, a second roller blind rope 18, a winding sheave 16 on the second roller blind shaft, and a second roller blind shaft 17
  • the second roller blind 19 is composed of a second roller blind crossbar 21.

Landscapes

  • Engineering & Computer Science (AREA)
  • Structural Engineering (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Blinds (AREA)
  • Operating, Guiding And Securing Of Roll- Type Closing Members (AREA)

Description

一种中空玻璃内置磁滑块控制的卷帘装置 技术领域
本发明涉及一种中空玻璃内置磁滑块控制的卷帘装置, 特别一种可密封在中空玻璃内, 通过磁滑块控制的卷帘装置, 属内置遮阳中空玻璃产品类。 背景技术
在目前市场中, 已存在各种的中空玻璃内置可调窗帘产品, 内置窗帘的形式基本上有百 叶帘、 百褶帘及卷帘等, 对于这些窗帘的控制, 有两种基本控制方式: 电机直接控制和磁铁 不接触传动控制两类,在现有的技术中,如中国专利申请号 200510065390.1,名称为《一 类用于中空玻璃内滚动卷帘的制作方法》, 中国专利申请号 03205764.4, 名称为《内置可调薄 膜中空玻璃》, 以及中国专利申请号 03144041.X, 名称为 《内置可调薄膜中空玻璃的制作方 法及传动结构》, 介绍了一类在中空玻璃内设置磁控卷帘的基本结构, 从实用效果来看, 这类 结构存在一些缺陷, 如外置磁传动件尽管是固定在中空玻璃外指定的地方, 但外形体积需占 用一定的空间, 当采用手驱动结构使用时, 在安装和使用时有一些不方便, 例如安装在推拉 窗或推拉门时, 会影响到这些窗、 门的正常使用。 为避免这一问题, 在中国专利申请 200810122157.6, , 名称为《带窗帘的夹层玻璃》, 提出 种采用磁滑块控制的夹层玻璃卷帘结 构。 从实用的角度来看, 这种结构有可能存在两点不足, 一是卷帘轴内部采用弹簧复位, 二 是在工作时磁滑块传动件工作行程太长。 为此, 有必要发展一种在中空玻璃内置磁滑块控制 的卷帘装置, 使内置卷帘的磁滑块控制卷帘系统和中空玻璃合为一体, 在外观上更简洁, 在 各种结构的窗、 门上使用, 特别是用手驱动时更方便。 发明内容
本发明一种中空玻璃内置磁滑块控制的卷帘装置, 由中空玻璃内外两块磁滑块组成磁力 不接触传动装置, 密封在中空玻璃内的卷帘, 卷帘向下展开通过下横杆的重力拉动, 卷帘向 上收拢通过内磁滑块用拉绳使卷帘轴旋转, 达到控制卷帘展开或收拢的目的。
其基本技术方案为: 在一块中空玻璃的内部, 设有一内框架, 卷帘卷绕在卷帘轴上, 卷 帘轴的两端通过轴承固设在框架顶部的两端, 其中在卷帘轴的一端边缘固设有卷绳轮, 一条 拉绳, 其一端卷绕并固定在卷绳轮上, 另一端固定在内磁滑块上, 中空玻璃外对应的位置有 外磁滑块。 为了扩大使用范围, 可以在中空玻璃内设置两套互不干扰的磁控滑块卷帘系统, 由两组内外磁滑块, 拉绳, 卷帘组成, 两个卷帘轴采用上下并列方式安装在中空玻璃内框架 上端, 两组磁滑块采用在中空玻璃两侧左右排列布置, 便可以达到在一块中空玻璃内装入双 磁控卷帘的目的。
其中, 可以将拉绳换成拉带, 卷绳轮换成卷带轮使用;
其中, 可以将拉绳换成链条, 卷绳轮换成链轮使用;
其中, 为了保持内磁滑块拉绳和卷帘的平衡力, 减少驱动力, 可在内磁滑块的底部加上 与卷帘下横杆重量相匹配的配重;
其中, 为了减少磁滑块的工作行程, 卷绳轮的直径小于卷帘轴的直径;
其中, 为了减少磁滑块的工作行程, 内磁滑块可装上滑轮, 使拉绳的一端固定在卷绳轮 上, 另一端绕过内磁滑块的滑轮后固定在内框架的指定位置;
其中, 外磁滑块在中空玻璃外的滑轨滑动, 滑轨上设有两个定位块, 分别限制外滑块的 上位和下位;
其中, 卷帘采用有机薄膜制作, 特别是具有选择性透光的镀膜功能膜制作;
其中, 采用双帘布置时, 上下的两根卷帘轴在垂直方向错开排列, 使两根卷帘轴在分别 收放各自的卷帘时不会相互接触摩擦;
其中, 采用双帘布置时, 在中空玻璃内框架的两边侧框内, 用一条梁内的两个 U型槽形 成两条平行轨道, 使两个卷帘下横杆各自在自己的轨道滑动;
其中, 采用双帘布置时, 两个卷帘轴展开卷帘的旋转方向正好相反。
本发明装置的优点在于结构简单, 卷帘展开依靠卷帘自身下垂杆重力拉动, 卷帘的收卷 提供内磁滑块用拉绳拉动, 同时磁滑块的工作行程小于卷帘的展开高度。 并且, 可以在一个 中空玻璃内装有两套卷帘, 但由于每套卷帘系统完全独立, 两个卷帘在分别展开或收拢时完 全不会相互干扰, 保证了卷帘的正常运行。 附图说明
图 1为一种中空玻璃内置磁滑块控制的卷帘装置的基本结构图, 在图中, 1 内磁滑块的 配重 2 外磁滑块 3 内磁滑块 4 拉绳 5 中空玻璃 6 卷帘轴 7 卷绳轮 S 卷帘 9 卷帘下横杆。
图 2为一种中空玻璃内置磁滑块控制的双帘的基本结构图, 在图中, 10 第一卷帘的外磁 滑块 11 第一卷帘的内磁滑块 12 第一卷帘的拉绳 13 第一卷帘轴上的卷绳轮 14 第一 卷帘轴 15 第一卷帘 16 第二卷帘轴上的卷绳轮 17 第二卷帘轴 18 第二卷帘的拉绳 19 第二卷帘 20 第一卷帘的下横杆 21 第二卷帘的下横杆 22 第二卷帘的内磁滑块 23 第二卷帘的外磁滑块。 具体实施方式
在图 1中, 中空玻璃 5—边外侧装有外磁滑块 2, 内磁滑块 3在中空玻璃 5内相应的位 置, 内磁滑块 3的底部有相应的配重 1, 一条拉绳 4, 其一头卷绕在卷帘轴 6上的卷绳轮 7, 另一头固定在内磁滑块 3的指定位置, 卷帘 8的一端卷绕在卷帘轴 6上, 另一端固定在卷帘 8的下横杆 9上。
工作时, 用手滑动外磁滑块 2, 在磁力线的带动下内磁滑块 3—起滑动, 当向下拉动拉 绳 4时, 通过卷绳轮 7带动卷帘轴 6反时钟旋转, 将卷帘 8收卷, 反之内磁滑块 3向上, 放 松拉绳 4, 卷帘 8在其下横杆 9的重力拉动下向下展开, 同时拉绳 4被卷绕在卷绳轮 7上。
在图 2中, 为中空玻璃内置磁滑块控制的双帘的基本结构图, 由于是双帘结构, 在中空 玻璃内上端的第一卷帘轴 14和第二卷帘轴 17为上下并列, 在中空玻璃的两侧分别为第一卷 帘组的内磁滑块 11和外磁滑块 10, 第二卷帘组的内磁滑块 22和外磁滑块 23。其中第一卷帘 组由第一卷帘的内磁滑块 11, 外磁滑块 10, 第一卷帘拉绳 12, 第一卷帘轴上的卷绳轮 13, 第一卷帘轴 14, 第一卷帘 15, 第一卷帘下横杆 20组成。 第二卷帘组由由第二卷帘的内磁滑 块 22, 外磁滑块 23, 第二卷帘拉绳 18, 第二卷帘轴上的卷绳轮 16, 第二卷帘轴 17, 第二卷 帘 19, 第二卷帘下横杆 21组成。
以上结构虽然为双帘结构, 但运行时完全独立互不干扰, 使用时简单方便。

Claims

权 利 要 求 书
1、一种中空玻璃内置磁滑块控制的卷帘装置, 由内外磁滑块, 拉绳, 卷帘组成, 其特征在于: 卷帘卷绕在卷帘轴上, 卷帘轴的两端通过轴承固设在框架顶部的两端, 其中在卷帘轴的一端 边缘固设有卷绳轮, 一条拉绳, 其一端卷绕并固定在卷绳轮上, 另一端固定在内磁滑块上。
2、根据权利要求 1所述的一种中空玻璃内置磁滑块控制的卷帘装置, 其特征在于: 拉绳换成 拉带, 卷绳轮换成卷带轮。
3、根据权利要求 1所述的一种中空玻璃内置磁滑块控制的卷帘装置, 其特征在于: 拉绳换成 链条, 卷绳轮换成链轮。
4、根据权利要求 1所述的一种中空玻璃内置磁滑块控制的卷帘装置, 其特征在于: 卷绳轮的 直径小于卷帘轴的直径。
5、根据权利要求 1所述的一种中空玻璃内置磁滑块控制的卷帘装置, 其特征在于: 内磁滑块 装上滑轮, 使拉绳的一端固定在卷绳轮上, 另一端绕过内磁滑块的滑轮后固定在内框架的指
6、根据权利要求 1所述的一种中空玻璃内置磁滑块控制的卷帘装置, 其特征在于: 可在内磁 滑块的底部加上与卷帘下横杆重量相匹配的配重。
7、 一种中空玻璃内置磁滑块控制的卷帘装置, 由两组内外磁滑块, 拉绳, 卷帘组成, 其特征 在于: 两个卷帘轴采用上下并列方式安装在中空玻璃内框架上端, 两组磁滑块采用在中空玻 璃两侧左右排列布置。
8、根据权利要求 7所述的一种中空玻璃内置磁滑块控制的卷帘装置, 其特征在于: 上下的两 根卷帘轴在垂直方向错开排列。
9、根据权利要求 7所述的一种中空玻璃内置磁滑块控制的卷帘装置, 其特征在于: 在中空玻 璃内框架的两边侧框内, 用一条梁内的两个 U型槽形成两条平行轨道, 使两个卷帘下横杆各 自在自己的轨道滑动。
10、 根据权利要求 7所述的一种中空玻璃内置磁滑块控制的卷帘装置, 其特征在于: 两个卷 帘轴展开卷帘的旋转方向正好相反。
PCT/CN2011/078735 2010-11-05 2011-08-23 一种中空玻璃内置磁滑块控制的卷帘装置 Ceased WO2012058972A1 (zh)

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Application Number Priority Date Filing Date Title
CN201010533468.9A CN102052048A (zh) 2010-11-05 2010-11-05 一种中空玻璃内置磁滑块控制的卷帘装置
CN201010533468.9 2010-11-05

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