JP2000064731A - Holding member for glass panel - Google Patents

Holding member for glass panel

Info

Publication number
JP2000064731A
JP2000064731A JP10234192A JP23419298A JP2000064731A JP 2000064731 A JP2000064731 A JP 2000064731A JP 10234192 A JP10234192 A JP 10234192A JP 23419298 A JP23419298 A JP 23419298A JP 2000064731 A JP2000064731 A JP 2000064731A
Authority
JP
Japan
Prior art keywords
frame member
glass panel
panel
depth direction
groove
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP10234192A
Other languages
Japanese (ja)
Inventor
Masaki Mamiya
昌樹 間宮
Hidemi Nakai
日出海 中井
Shigeki Nagasaka
繁喜 長坂
Toshiaki Kitazoe
敏昭 北添
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Nippon Sheet Glass Co Ltd
Original Assignee
Nippon Sheet Glass Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Nippon Sheet Glass Co Ltd filed Critical Nippon Sheet Glass Co Ltd
Priority to JP10234192A priority Critical patent/JP2000064731A/en
Priority to KR1019990034526A priority patent/KR20000017410A/en
Priority to CN99117994A priority patent/CN1254656A/en
Publication of JP2000064731A publication Critical patent/JP2000064731A/en
Pending legal-status Critical Current

Links

Classifications

    • CCHEMISTRY; METALLURGY
    • C03GLASS; MINERAL OR SLAG WOOL
    • C03BMANUFACTURE, SHAPING, OR SUPPLEMENTARY PROCESSES
    • C03B27/00Tempering or quenching glass products
    • C03B27/04Tempering or quenching glass products using gas
    • C03B27/06Tempering or quenching glass products using gas for glass products other than flat or bent glass plates, e.g. hollow glassware, lenses
    • C03B27/067Controlling or regulating
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A30/00Adapting or protecting infrastructure or their operation
    • Y02A30/24Structural elements or technologies for improving thermal insulation
    • Y02A30/249Glazing, e.g. vacuum glazing
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B80/00Architectural or constructional elements improving the thermal performance of buildings
    • Y02B80/22Glazing, e.g. vaccum glazing
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P40/00Technologies relating to the processing of minerals
    • Y02P40/50Glass production, e.g. reusing waste heat during processing or shaping
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P40/00Technologies relating to the processing of minerals
    • Y02P40/50Glass production, e.g. reusing waste heat during processing or shaping
    • Y02P40/57Improving the yield, e-g- reduction of reject rates

Landscapes

  • Chemical & Material Sciences (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Materials Engineering (AREA)
  • Organic Chemistry (AREA)
  • Securing Of Glass Panes Or The Like (AREA)

Abstract

PROBLEM TO BE SOLVED: To favorably set a holding member for glass panel so that the holding member can be positioned in both the panel periphery and the frame member without the need of a high accuracy for the the external shape of the glass panel or the frame processing of the frame member. SOLUTION: A member body E provided with a recessed groove 5 in which the peripheral edges A1, A2 of a glass panel A can be consecutively inserted is formed so as to freely insert it in a frame member C1 for the glass panel and also the member body E is provided with a closely adhering piece 6 tightly and consecutively adhering to the peripheral edges A1, A2 inserted in the recessed groove 5 from both sides of the thickness direction, a panel-positioning part 8 for the relative position in the groove depth direction of the peripheral edges A1, A2 inserted in the recessed groove 5 against the member body E, and a frame member-positioning part 9 for the relative position in the groove depth direction of the member body E inserted in the frame member C1 against the frame member C1. The relative position in the groove depth direction of the panel-positioning part and the frame member-positioning part 9 is made freely changeable.

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【発明の属する技術分野】本発明は、ガラスパネルの周
縁部を一連に内嵌自在な凹溝部を備えた部材本体をガラ
スパネル用枠部材に内嵌自在に形成し、前記凹溝部に内
嵌した前記周縁部に対して厚み方向の両側から一連に密
着する密着片と、前記凹溝部に内嵌した前記周縁部の前
記部材本体に対する溝深さ方向での相対位置を位置決め
するパネル位置決め部と、前記枠部材に内嵌した前記部
材本体のその枠部材に対する溝深さ方向での相対位置を
位置決めする枠部材位置決め部とを前記部材本体に設け
てあるガラスパネル保持部材に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a glass panel frame member in which a peripheral member of a glass panel is provided with a recessed groove portion that can be internally fitted to the frame member, and the recessed groove portion is internally fitted. And a panel positioning portion that positions the relative position in the groove depth direction of the peripheral portion internally fitted in the recessed groove portion with respect to the member body, in close contact with the peripheral portion in series from both sides in the thickness direction. , A frame member positioning portion for positioning the relative position of the member main body fitted in the frame member in the groove depth direction with respect to the frame member, and a glass panel holding member provided in the member main body.

【0002】[0002]

【従来の技術】上記ガラスパネル保持部材は、サッシュ
等を構成しているガラスパネル用枠部材にガラスパネル
をがたつき無く取り付けることができるように、そのガ
ラスパネルの周縁部と枠部材との間に装着されるもので
ある。
2. Description of the Related Art The above-mentioned glass panel holding member includes a frame member and a peripheral edge portion of the glass panel so that the glass panel can be attached to the frame member for glass panel constituting a sash or the like without rattling. It is to be installed in between.

【0003】図8は、複層ガラス(ガラスパネルの一
例)Aの周縁部(以下、パネル周縁部という)A1,A
4に従来のガラスパネル保持部材(以下、単に保持部材
という)Dを装着して、サッシュCを構成しているガラ
スパネル用枠部材(以下、単に枠部材という)C1に嵌
め込んである状態を示す。
FIG. 8 shows a peripheral portion (hereinafter referred to as a panel peripheral portion) A1 and A of a double glazing (an example of a glass panel) A.
A state in which a conventional glass panel holding member (hereinafter, simply referred to as a holding member) D is attached to 4 and is fitted into a glass panel frame member (hereinafter, simply referred to as a frame member) C1 forming the sash C is shown. Show.

【0004】この保持部材Dは、パネル周縁部A1,A
4を一連に内嵌自在な凹溝部5を備えた軟質塩化ビニル
樹脂等の軟質樹脂製の部材本体Eを枠部材C1に内嵌自
在に形成するとともに、凹溝部5に内嵌したパネル周縁
部A1,A4に対して厚み方向の両側から一連に密着す
る左右の密着片6と、各周縁部A1,A4を厚み方向の
両側から一連に密着して挟持する左右一対の挟持片7と
をその部材本体Eに形成して構成されている。
The holding member D is composed of panel peripheral portions A1 and A.
4 is a series of four inner peripherally-fittable recessed groove portions 5, and a member main body E made of a soft resin such as soft vinyl chloride resin is formed in the frame member C1 so as to be internally fittable, and a panel peripheral edge portion fitted in the recessed groove portions 5 is formed. The left and right contact pieces 6 that are in close contact with A1 and A4 from both sides in the thickness direction, and the pair of left and right contact pieces 7 that are in close contact with and sandwich the peripheral portions A1 and A4 from both sides in the thickness direction. It is formed on the member body E.

【0005】そして、凹溝部5に内嵌したパネル周縁部
A1,A4の部材本体Eに対する溝深さ方向での相対位
置を位置決めするパネル位置決め部としての、パネル周
縁部A1,A4の端面が接当する溝底面8と、枠部材C
1に内嵌した部材本体Eのその枠部材Eに対する溝深さ
方向での相対位置を位置決めする枠部材位置決め部とし
ての、枠部材C1の縁部C3が接当する張り出し片9と
を、その溝深さ方向での相対位置が動かないように設け
てある。
Then, the end faces of the panel peripheral edge portions A1 and A4, which are panel positioning portions for positioning the relative positions of the panel peripheral edge portions A1 and A4 fitted in the concave groove portion 5 with respect to the member main body E in the groove depth direction, are in contact with each other. Groove bottom 8 and frame member C
The overhanging piece 9 with which the edge C3 of the frame member C1 abuts as a frame member positioning portion that positions the relative position in the groove depth direction of the member body E fitted in 1 to the frame member E. The relative position in the groove depth direction is provided so as not to move.

【0006】[0006]

【発明が解決しようとする課題】このため、ガラスパネ
ルAの外形寸法とそのガラスパネルAを取り付けようと
する枠部材C1の枠組み寸法との間に狂いがあると、保
持部材Dをパネル周縁部A1,A4と枠部材C1との双
方に対して位置決めされる状態に上手く装着できない箇
所ができるので、ガラスパネルAの外形や枠部材C1の
枠組みを高い精度で加工しなければならない欠点があ
る。
Therefore, if there is a discrepancy between the outer dimensions of the glass panel A and the frame dimensions of the frame member C1 to which the glass panel A is to be attached, the holding member D is moved to the peripheral portion of the panel. Since there are places that cannot be mounted properly in a state where they are positioned with respect to both A1, A4 and the frame member C1, there is a drawback that the outer shape of the glass panel A and the frame of the frame member C1 must be processed with high accuracy.

【0007】つまり、ガラスパネルAの外形寸法がサッ
シュ寸法に対応して適正な場合は、図8(イ)に示すよ
うに、保持部材Dをパネル周縁部A1,A4と枠部材C
1との双方に対して位置決めされる状態に上手く装着す
ることができるが、ガラスパネルAの外形寸法が枠組み
寸法に比べて大きい場合は、図8(ロ)に示すように、
図中の下側に示すパネル周縁部A4と枠部材C1との間
には保持部材Dを上手く装着できるとしても、図中の上
側に示すパネル周縁部A1と枠部材C1との間では、保
持部材Dの張り出し片9が枠部材C1の縁部C3よりも
枠部材内側に入り込んでしまうことがあり、ガラスパネ
ルAの外形寸法が枠組み寸法に比べて小さい場合は、図
8(ハ)に示すように、図中の下側に示すパネル周縁部
A4と枠部材C1との間には保持部材Dを上手く装着で
きるとしても、図中の上側に示すパネル周縁部A1と枠
部材C1との間では、保持部材Dの張り出し片9と縁部
C3との間に隙間ができてしまうことがあるからであ
る。
That is, when the outer dimensions of the glass panel A are appropriate corresponding to the sash dimensions, as shown in FIG. 8A, the holding member D is replaced with the panel peripheral portions A1 and A4 and the frame member C.
Although it can be mounted well in a state where it is positioned with respect to both of 1 and 1, when the outer dimension of the glass panel A is larger than the frame dimension, as shown in FIG.
Even if the holding member D can be successfully mounted between the panel peripheral edge A4 and the frame member C1 shown on the lower side in the figure, the holding is performed between the panel peripheral edge A1 and the frame member C1 shown on the upper side in the figure. When the overhanging piece 9 of the member D may enter the inside of the frame member more than the edge portion C3 of the frame member C1, and the outer dimension of the glass panel A is smaller than the frame dimension, it is shown in FIG. As described above, even if the holding member D can be successfully mounted between the panel peripheral portion A4 and the frame member C1 shown on the lower side in the drawing, the panel peripheral portion A1 and the frame member C1 shown on the upper side in the drawing are Then, a gap may be formed between the projecting piece 9 of the holding member D and the edge portion C3.

【0008】本発明は上記実情に鑑みてなされたもので
あって、ガラスパネルの外形や枠部材の枠組みの加工に
高い精度を要することなく、保持部材をパネル周縁部と
枠部材との双方に対して位置決めされる状態に上手く装
着できるようにすることを目的とする。
The present invention has been made in view of the above circumstances, and the holding member is provided on both the peripheral portion of the panel and the frame member without requiring high precision in processing the outer shape of the glass panel and the frame of the frame member. It is intended to be able to be mounted well in a state of being positioned with respect to it.

【0009】[0009]

【課題を解決するための手段】請求項1記載の発明の特
徴構成は、ガラスパネルの周縁部を一連に内嵌自在な凹
溝部を備えた部材本体をガラスパネル用枠部材に内嵌自
在に形成し、前記凹溝部に内嵌した前記周縁部に対して
厚み方向の両側から一連に密着する密着片と、前記凹溝
部に内嵌した前記周縁部の前記部材本体に対する溝深さ
方向での相対位置を位置決めするパネル位置決め部と、
前記枠部材に内嵌した前記部材本体のその枠部材に対す
る溝深さ方向での相対位置を位置決めする枠部材位置決
め部とを前記部材本体に設けてあるガラスパネル保持部
材であって、前記パネル位置決め部と前記枠部材位置決
め部との溝深さ方向での相対位置を変更自在に設けてあ
る点にある。
According to the characterizing feature of the invention described in claim 1, a member main body having a recessed groove portion in which a peripheral edge portion of a glass panel can be fitted in a series, can be fitted in a frame member for a glass panel. A contact piece that is formed and closely adheres to the peripheral edge portion that is internally fitted to the concave groove portion from both sides in the thickness direction in a series, and in the groove depth direction with respect to the member main body of the peripheral edge portion that is internally fitted to the concave groove portion. A panel positioning unit that positions the relative position,
A glass panel holding member having a frame member positioning portion for positioning the relative position in the groove depth direction of the member main body fitted in the frame member with respect to the frame member, wherein the panel positioning is performed. The relative position of the portion and the frame member positioning portion in the groove depth direction is changeable.

【0010】つまり、図3は、矩形のガラスパネルAの
互いに対向する周縁部A1,A2のうち、図中上側の周
縁部A1に本発明によるガラスパネル保持部材Bを装着
し、図中下側の周縁部A4に従来のガラスパネル保持部
材Dを装着してある状態を示しており、ガラスパネルA
の外形寸法が枠組み寸法に比べて大きい場合は、図3
(イ)に示すように、パネル位置決め部8と枠部材位置
決め部9との溝深さ方向での相対位置をそれらが互いに
離間するように変更して、そのガラスパネルAに装着し
たガラスパネル保持部材Bの枠部材位置決め部9で枠部
材C1に対する相対位置を位置決めすることができる。
That is, in FIG. 3, the glass panel holding member B according to the present invention is attached to the peripheral edge portion A1 on the upper side of the figure among the peripheral edge portions A1 and A2 of the rectangular glass panel A facing each other. The conventional glass panel holding member D is attached to the peripheral edge portion A4 of the glass panel A.
3 is larger than the frame dimensions,
As shown in (a), the relative positions of the panel positioning portion 8 and the frame member positioning portion 9 in the groove depth direction are changed so that they are separated from each other, and the glass panel holding attached to the glass panel A is changed. The frame member positioning portion 9 of the member B can position the relative position with respect to the frame member C1.

【0011】また、ガラスパネルAの外形寸法が枠組み
寸法に比べて小さい場合は、図3(ロ)に示すように、
パネル位置決め部8と枠部材位置決め部9との溝深さ方
向での相対位置をそれらが互いに近接するように変更し
て、そのガラスパネルAに装着したガラスパネル保持部
材Bの枠部材位置決め部9で枠部材C1に対する相対位
置を位置決めすることができる。
When the outer dimensions of the glass panel A are smaller than the frame dimensions, as shown in FIG.
The relative positions of the panel positioning portion 8 and the frame member positioning portion 9 in the groove depth direction are changed so that they are close to each other, and the frame member positioning portion 9 of the glass panel holding member B mounted on the glass panel A is changed. The relative position with respect to the frame member C1 can be positioned with.

【0012】従って、ガラスパネルの外形や枠部材の枠
組みの加工に高い精度を要することなく、保持部材をパ
ネル周縁部と枠部材との双方に対して位置決めされる状
態に上手く装着できる。
Therefore, the holding member can be properly mounted in a state in which it is positioned with respect to both the peripheral portion of the panel and the frame member without requiring high accuracy in processing the outer shape of the glass panel and the frame of the frame member.

【0013】請求項2記載の発明の特徴構成は、前記凹
溝部を形成する側壁部分を溝深さ方向に沿って伸縮自在
な波形に形成して、前記パネル位置決め部と前記枠部材
位置決め部との溝深さ方向での相対位置を変更自在に設
けてある点にある。
According to a second aspect of the present invention, the side wall portion forming the recessed groove portion is formed in a corrugated shape that can expand and contract along the groove depth direction, and the panel positioning portion and the frame member positioning portion are formed. The relative position in the groove depth direction is provided so as to be freely changeable.

【0014】従って、材質上の制約を受けにくく、しか
も、相対位置の変更範囲を所望範囲に設定し易い状態
で、パネル位置決め部と枠部材位置決め部との溝深さ方
向での相対位置を変更自在に設けることができる。
Therefore, the relative position of the panel positioning portion and the frame member positioning portion in the groove depth direction is changed in a state where the restriction on the material is less likely to occur and the change range of the relative position is easily set to a desired range. It can be provided freely.

【0015】特に、パネル位置決め部が枠部材位置決め
部よりもパネル外周側に設けられている場合は、伸縮自
在な波形に形成してある側壁部分をガラスパネル用枠部
材の内側に入り込ませることができるので、外観上、ガ
ラスパネルをガラスパネル用枠部材に体裁良く取り付け
ることができる。
In particular, when the panel positioning portion is provided on the outer peripheral side of the panel with respect to the frame member positioning portion, the side wall portion formed in a stretchable corrugated shape may be inserted into the inside of the glass panel frame member. Therefore, it is possible to attach the glass panel to the frame member for glass panel with good appearance.

【0016】請求項3記載の発明の特徴構成は、前記凹
溝部を形成する側壁部分のうちの、前記パネル位置決め
部と前記枠部材位置決め部との間の側壁部分を、残りの
側壁部分よりも伸縮し易い材料で形成して、前記パネル
位置決め部と前記枠部材位置決め部との溝深さ方向での
相対位置を変更自在に設けてある点にある。
According to a third aspect of the present invention, in the side wall portion forming the recessed groove portion, a side wall portion between the panel positioning portion and the frame member positioning portion is formed more than a remaining side wall portion. It is formed of a material that easily expands and contracts, and the relative position in the groove depth direction between the panel positioning portion and the frame member positioning portion is changeable.

【0017】従って、請求項2記載のように凹溝部を形
成する側壁部分を溝深さ方向に沿って伸縮自在な波形に
形成する場合に比べて、全体形状の小型化を図りなが
ら、パネル位置決め部と枠部材位置決め部との溝深さ方
向での相対位置を変更自在に設けることができる。
Therefore, as compared with the case where the side wall portion forming the concave groove portion is formed in a corrugated shape which can expand and contract along the groove depth direction as claimed in claim 2, the overall positioning can be made smaller while the panel positioning is performed. The relative position of the portion and the frame member positioning portion in the groove depth direction can be freely changed.

【0018】[0018]

【発明の実施の形態】以下に本発明の実施の形態を図面
に基づいて説明する。尚、図面において従来例と同一の
符号で表示した部分は、同一又は相当の部分を示してい
る。
BEST MODE FOR CARRYING OUT THE INVENTION Embodiments of the present invention will be described below with reference to the drawings. In the drawings, the parts indicated by the same reference numerals as those in the conventional example indicate the same or corresponding parts.

【0019】〔第1実施形態〕図5は、図4に示すよう
にガラスパネルの一例としての矩形の複層ガラスAの上
側周縁部A1と左右方向の一方の一側周縁部A2とに本
発明による樹脂製のガラスパネル保持部材(以下、単に
保持部材という)Bを装着し、左右方向の他方の他側周
縁部A3と下側周縁部A4とに前述の従来の保持部材D
を装着して、アルミ合金製のサッシュCに嵌め込んであ
る状態を示す。
[First Embodiment] FIG. 5 shows a case in which an upper peripheral edge portion A1 of a rectangular multi-layered glass A as an example of a glass panel and one side peripheral edge portion A2 in the left-right direction are arranged as shown in FIG. A resin glass panel holding member (hereinafter, simply referred to as a holding member) B according to the present invention is mounted, and the above-mentioned conventional holding member D is attached to the other side peripheral edge portion A3 and the lower peripheral edge portion A4 in the left-right direction.
Is attached to the sash C made of aluminum alloy.

【0020】前記サッシュCは、図2に示すように、各
周縁部A1,A2,A3,A4に装着した保持部材B,
Dを内嵌自在な一連の嵌め込み溝C2を備えたチャンネ
ル状の四つのガラスパネル用枠部材(以下、単に枠部材
という)C1を、それらの嵌め込み溝C2どうしが互い
に対向するように矩形に組み付けて構成されている。
As shown in FIG. 2, the sash C has a holding member B attached to each of the peripheral edge portions A1, A2, A3, A4.
Four channel-shaped frame members for glass panels (hereinafter, simply referred to as frame members) C1 having a series of fitting grooves C2 into which D can be freely fitted are assembled in a rectangular shape so that the fitting grooves C2 face each other. Is configured.

【0021】前記複層ガラスAは、図2に示すように、
板面を互いに対向させた一対の板ガラス1間にスぺーサ
2を介在させて、それら両板ガラス1間に空隙部Vを形
成し、スペーサ2を有機系(ブチルゴム系)の一次シー
ル材3にて各板ガラス1に接着するとともに、その空隙
部Vを両板ガラス1間の周縁に沿って設けた有機系(ポ
リサルファイド系)の二次シール材4で密閉して構成さ
れている。尚、一対の板ガラス1のうちの少なくとも一
方の板ガラスは、鋼製の網入りガラスで構成されてい
る。
As shown in FIG. 2, the multi-layer glass A has the following structure.
A spacer 2 is interposed between a pair of plate glasses 1 whose plate surfaces are opposed to each other to form a gap V between the plate glasses 1 so that the spacer 2 serves as an organic (butyl rubber) primary seal material 3. And is adhered to each plate glass 1 and the space V is hermetically sealed with an organic (polysulfide) secondary seal material 4 provided along the peripheral edge between both plate glasses 1. At least one of the pair of glass plates 1 is made of steel net-cored glass.

【0022】前記本発明による保持部材Bは、図1に示
すように、上側周縁部A1と一側周縁部A2の各々を一
連に内嵌自在な凹溝部5を備えた部材本体Eを軟質塩化
ビニル樹脂等の軟質樹脂で長尺状に形成して構成され、
部材本体Eの外周面は枠部材C1に内嵌自在に形成して
ある。
In the holding member B according to the present invention, as shown in FIG. 1, a member main body E provided with a concave groove portion 5 into which each of the upper peripheral edge portion A1 and one side peripheral edge portion A2 can be fitted in series is softly chlorided. Made of a soft resin such as vinyl resin and formed into a long shape,
The outer peripheral surface of the member main body E is formed so that it can be fitted inside the frame member C1.

【0023】前記部材本体Eには、凹溝部5に内嵌した
各周縁部A1,A2に対して厚み方向の両側から一連に
密着する左右一対の密着片6と、各周縁部A1,A2を
厚み方向の両側から一連に密着して挟持する左右一対の
挟持片7と、凹溝部5に内嵌した各周縁部A1,A2の
部材本体Eに対する溝深さ方向での相対位置を位置決め
するパネル位置決め部8と、枠部材C1に内嵌した部材
本体Eのその枠部材Eに対する溝深さ方向での相対位置
を位置決めする枠部材位置決め部9とが一体形成され、
凹溝部5の底部には水抜き孔11が形成されている。
The member main body E is provided with a pair of left and right contact pieces 6 which are in close contact with the peripheral edge portions A1 and A2 fitted in the concave groove portion 5 from both sides in the thickness direction, and the peripheral edge portions A1 and A2. A pair of left and right sandwiching pieces 7 that closely sandwich and closely sandwich from both sides in the thickness direction, and a panel that positions relative positions in the groove depth direction with respect to the member main body E of each of the peripheral edge portions A1 and A2 fitted in the recessed groove portion 5. The positioning portion 8 and the frame member positioning portion 9 for positioning the relative position of the member main body E fitted in the frame member C1 in the groove depth direction with respect to the frame member E are integrally formed,
A drain hole 11 is formed in the bottom of the groove 5.

【0024】前記左右の密着片6どうしの間隔、及び、
左右の挟持片7どうしの間隔は、複層ガラスAの厚みよ
りも狭い間隔になるように形成されている。
The space between the left and right contact pieces 6, and
The interval between the left and right sandwiching pieces 7 is formed to be narrower than the thickness of the double glazing A.

【0025】前記パネル位置決め部8は、各周縁部A
1,A2の端面に接当する凹溝部5の溝底面にて構成さ
れ、前記枠部材位置決め部9は、保持部材Bを枠部材C
1の嵌め込み溝C2に嵌め込むに伴って、その嵌め込み
溝C2の縁部C3が一連に接当して密着する張り出し片
を各密着片6の外側方に延設して構成されている。
The panel positioning portion 8 has a peripheral edge portion A.
1 and A2 are configured by the groove bottom surface of the concave groove portion 5 that abuts on the end surface of the frame member, and the frame member positioning portion 9 connects the holding member B to the frame member C
When the fitting groove C2 is fitted into the fitting groove C2, the edge portion C3 of the fitting groove C2 is in contact with the fitting groove C2 in series, and a protruding piece is provided so as to extend outward of each contact piece 6.

【0026】前記凹溝部5の溝底面8と張り出し片9と
の間の部分を形成する側壁部分10を溝深さ方向に沿っ
て伸縮自在な波形に形成して、溝底面8と張り出し片9
との溝深さ方向での相対位置を変更自在に設けてある。
A side wall portion 10 forming a portion between the groove bottom surface 8 of the recessed groove portion 5 and the overhanging piece 9 is formed in a corrugable waveform along the groove depth direction so that the groove bottom surface 8 and the overhanging piece 9 are formed.
And the relative position in the groove depth direction are freely changeable.

【0027】尚、保持部材Dは、従来と同様に構成され
ているので、その詳細な説明は省略する。
Since the holding member D has the same structure as the conventional one, its detailed description will be omitted.

【0028】そして、図4に示すように、保持部材Bを
複層ガラスAの上側周縁部A1と一側周縁部A2の各々
の長さに対応させた寸法で、かつ、切断端部が約45度
の切り口角度になるように切断し、その切断した保持部
材Bの凹溝部5に各周縁部A1,A2を一連に内嵌する
とともに、左右の密着片6と左右の挟持片7とで各周縁
部A1,A2を挟み付けて、対応する周縁部A1,A2
に装着するようにしてある。
Then, as shown in FIG. 4, the holding member B has a size corresponding to the length of each of the upper peripheral edge A1 and the one peripheral edge A2 of the double glazing A, and the cut end is approximately It cuts so as to have a cut angle of 45 degrees, and the peripheral portions A1 and A2 are fitted in series in the cut groove portion 5 of the cut holding member B, and at the same time, the left and right contact pieces 6 and the left and right holding pieces 7 are used. The peripheral portions A1 and A2 are sandwiched and the corresponding peripheral portions A1 and A2 are sandwiched.
It is attached to.

【0029】また、保持部材Dは、複層ガラスAの他側
周縁部A3と下側周縁部A4の各々の長さに対応させた
寸法で、かつ、切断端部が約45度の切り口角度になる
ように切断して、保持部材Bと同様に、対応する周縁部
A3,A4に装着するようにしてある。
The holding member D has a dimension corresponding to the length of each of the other peripheral edge portion A3 and the lower peripheral edge portion A4 of the double glazing A, and the cut end has a cut angle of about 45 degrees. It is cut so that it becomes like this, and like the holding member B, it is attached to the corresponding peripheral portions A3 and A4.

【0030】前記保持部材B,Dは、いずれも、周縁部
A1,A2,A3,A4に装着した状態では、左右張り
出し片9の基部間の間隔がサッシュCの嵌め込み溝C2
の溝幅よりも広くなっており、周縁部A1,A2,A
3,A4に装着した状態の各保持部材B,Dを嵌め込み
溝C2に内嵌すると、張り出し片9が嵌め込み溝C2の
縁部C3に圧接されて、保持部材B,DとサッシュCと
が水密に密着するとともに、左右の密着片6及び左右の
挟持片7が周縁部A1,A2,A3,A4に圧接され
て、保持部材B,Dと周縁部A1,A2,A3,A4と
が水密に密着するようにしてある。
When the holding members B and D are mounted on the peripheral edge portions A1, A2, A3 and A4, the space between the base portions of the left and right overhanging pieces 9 is a fitting groove C2 of the sash C.
Is wider than the groove width of the peripheral edges A1, A2, A
When the holding members B and D mounted on the fitting grooves 3 and A4 are fitted in the fitting groove C2, the overhanging piece 9 is pressed against the edge portion C3 of the fitting groove C2, and the holding members B and D and the sash C are watertight. And the left and right contact pieces 6 and the left and right holding pieces 7 are pressed against the peripheral portions A1, A2, A3, A4, so that the holding members B, D and the peripheral portions A1, A2, A3, A4 are watertight. It is designed to be in close contact.

【0031】そして、複層ガラスAの外形寸法がサッシ
ュ寸法に対応して適正な場合は、図2(ロ)に示すよう
に、保持部材Bの側壁部分10を設定量だけ伸張させた
状態で枠部材C1に装着し、複層ガラスAの外形寸法が
サッシュ寸法に比べて大きい場合は、図3(イ)に示す
ように、保持部材Bの側壁部分10を設定量よりも大き
く伸張させて、溝底面8と張り出し片9との溝深さ方向
での相対位置をそれらが互いに大きく離間するように変
更し、また、複層ガラスAの外形寸法がサッシュ寸法に
比べて小さい場合は、図3(ロ)に示すように、保持部
材Bの側壁部分10を設定量よりも小さく伸張させて、
溝底面8と張り出し片9との溝深さ方向での相対位置を
それらが互いに近接するように変更して、複層ガラスA
の外形や枠部材C1の枠組みの加工に高い精度を要する
ことなく、保持部材Bをパネル周縁部A1,A2と枠部
材C1との双方に対して位置決めされる状態に上手く装
着できるようにしてある。
When the outer dimensions of the double glazing A are appropriate corresponding to the sash dimensions, the side wall portion 10 of the holding member B is stretched by a set amount as shown in FIG. When mounted on the frame member C1 and the outer dimension of the double glazing A is larger than the sash dimension, the side wall portion 10 of the holding member B is extended more than the set amount as shown in FIG. , The relative positions of the groove bottom surface 8 and the overhanging piece 9 in the groove depth direction are changed so that they are largely separated from each other, and when the outer dimension of the double-glazing unit A is smaller than the sash dimension, As shown in FIG. 3B, the side wall portion 10 of the holding member B is expanded to be smaller than the set amount,
The relative positions of the groove bottom surface 8 and the overhanging piece 9 in the groove depth direction are changed so that they are close to each other,
The holding member B can be properly mounted in a state where it is positioned with respect to both the panel peripheral portions A1 and A2 and the frame member C1 without requiring high accuracy in processing the outer shape of the frame member and the frame of the frame member C1. .

【0032】〔第2実施形態〕図6は、第1実施形態で
示した保持部材Bの本体部材Eに代えて、凹溝部5を形
成する側壁部分10のうちの、溝底面8と張り出し片9
との間の側壁部分12を、残りの側壁部分13よりも伸
縮し易い材料で形成して、溝底面8と張り出し片9との
溝深さ方向での相対位置を変更自在に設けてある本体部
材Eの実施形態を示す。
[Second Embodiment] FIG. 6 illustrates a groove bottom surface 8 and an overhanging piece in a side wall portion 10 forming a groove portion 5 in place of the main body member E of the holding member B shown in the first embodiment. 9
A main body formed by forming a side wall portion 12 between the groove bottom surface 8 and the protruding side piece 9 in a groove depth direction so that the relative position in the groove depth direction can be freely changed. 7 shows an embodiment of member E.

【0033】つまり、図6(イ)に示すように、溝底面
8を形成する底部分14と、凹溝部5を形成する左右の
側壁部分10のうちの、密着片6と挟持片7と張り出し
片9を形成している縁部側壁部分13と、底部分14と
縁部側壁部分13との間を形成している中間側壁部分1
2とを一体に接着して部材本体Eを構成してあり、縁部
側壁部分13を軟質塩化ビニル樹脂で形成し、底部分1
4を硬質塩化ビニル樹脂で形成し、中間側壁部分12
を、縁部側壁部分13や底部分14を形成している樹脂
よりも伸縮し易い合成ゴム等のエラストマーで形成して
ある。
That is, as shown in FIG. 6A, of the bottom portion 14 forming the groove bottom surface 8 and the left and right side wall portions 10 forming the concave groove portion 5, the sticking piece 6, the sandwiching piece 7, and the overhanging piece 7. The edge side wall portion 13 forming the piece 9 and the intermediate side wall portion 1 forming between the bottom portion 14 and the edge side wall portion 13.
2 is integrally bonded to form the member main body E, the edge side wall portion 13 is formed of soft vinyl chloride resin, and the bottom portion 1
4 is made of hard vinyl chloride resin, and the intermediate side wall portion 12
Are formed of an elastomer such as synthetic rubber that is more easily expanded and contracted than the resin forming the edge side wall portion 13 and the bottom portion 14.

【0034】そして、複層ガラスAの外形寸法がサッシ
ュ寸法に対応して適正な場合は、図6(ロ)に示すよう
に、中間側壁部12を設定量だけ伸張させた状態で枠部
材C1に装着し、複層ガラスAの外形寸法がサッシュ寸
法に比べて大きい場合は、図7(イ)に示すように、中
間側壁部分12を設定量よりも大きく伸張させて、溝底
面8と張り出し片9との溝深さ方向での相対位置をそれ
らが互いに大きく離間するように変更し、また、複層ガ
ラスAの外形寸法がサッシュ寸法に比べて小さい場合
は、図7(ロ)に示すように、中間側壁部分12を設定
量よりも小さく伸張させて、溝底面8と張り出し片9と
の溝深さ方向での相対位置をそれらが互いに近接するよ
うに変更して、複層ガラスAの外形や枠部材C1の枠組
みの加工に高い精度を要することなく、保持部材Bをパ
ネル周縁部Aと枠部材C1との双方に対して位置決めさ
れる状態に上手く装着できるようにしてある。その他の
構成は第1実施形態と同様である。
When the outer dimensions of the double glazing A are appropriate corresponding to the sash dimensions, as shown in FIG. 6B, the frame member C1 is extended with the intermediate side wall portion 12 extended by a set amount. When the outer dimension of the double glazing unit A is larger than the sash dimension, the intermediate side wall portion 12 is extended more than the set amount, and the groove bottom surface 8 and the protruding portion are protruded, as shown in FIG. The relative position in the groove depth direction with respect to the piece 9 is changed so that they are largely separated from each other, and when the outer dimension of the double glazing A is smaller than the sash dimension, it is shown in FIG. As described above, the intermediate side wall portion 12 is expanded to be smaller than the set amount, and the relative positions of the groove bottom surface 8 and the overhanging piece 9 in the groove depth direction are changed so that they are close to each other. High accuracy for machining the outer shape of the frame and the frame of the frame member C1 Without requiring, it is as well be mounted in a state that is positioned the holding member B against both the panel peripheral portion A and the frame member C1. Other configurations are similar to those of the first embodiment.

【0035】〔その他の実施形態〕 1.上記実施形態では、ガラスパネルとして複層ガラス
を示したが、単板の板ガラスや金属網入り板ガラス等で
あっても良い。 2.上記実施形態で示した複層ガラスは、空間部が真空
引きされている複層ガラスであっても良い。 3.上記実施形態では、パネル位置決め部として、凹溝
部5の溝底面8を示したが、凹溝部の溝深さ方向途中箇
所に、ガラスパネルの端面に接当して位置決めする接当
部を設けて構成しても良い。 4.上記実施形態では、枠部材位置決め部として、枠部
材C1の縁部C3が溝深さ方向から接当する接当部9を
示したが、枠部材C1の縁部C3が嵌まり込んで係止す
る係止溝を設けて構成しても良い。
Other Embodiments 1. In the above-described embodiment, the double-layer glass is shown as the glass panel, but it may be a single plate glass, a plate glass with metal mesh, or the like. 2. The double glazing shown in the above embodiment may be a double glazing in which the space is evacuated. 3. Although the groove bottom surface 8 of the concave groove portion 5 is shown as the panel positioning portion in the above-described embodiment, a contact portion for contacting with the end surface of the glass panel for positioning is provided at an intermediate position in the groove depth direction of the concave groove portion. It may be configured. 4. In the above-described embodiment, the abutting portion 9 in which the edge portion C3 of the frame member C1 abuts from the groove depth direction is shown as the frame member positioning portion, but the edge portion C3 of the frame member C1 is fitted and locked. It may be configured by providing a locking groove for performing.

【図面の簡単な説明】[Brief description of drawings]

【図1】本発明によるガラスパネル保持部材の斜視図FIG. 1 is a perspective view of a glass panel holding member according to the present invention.

【図2】要部断面図FIG. 2 is a sectional view of a main part

【図3】要部断面図FIG. 3 is a sectional view of a main part

【図4】装着方法の説明図FIG. 4 is an explanatory diagram of a mounting method.

【図5】使用状態を示す斜視図FIG. 5 is a perspective view showing a usage state.

【図6】第2実施形態を示す要部断面図FIG. 6 is a sectional view of an essential part showing a second embodiment.

【図7】要部断面図FIG. 7 is a sectional view of an essential part.

【図8】従来例を示す要部断面図FIG. 8 is a sectional view of a main part showing a conventional example.

【符号の説明】[Explanation of symbols]

5 凹溝部 6 密着片 8 パネル位置決め部 9 枠部材位置決め部 10 側壁部分 12 側壁部分 13 残りの側壁部分 A ガラスパネル A1,A2 周縁部 C1 ガラスパネル用枠部材 E 部材本体 5 groove 6 Contact piece 8 Panel positioning section 9 Frame member positioning part 10 Side wall 12 Side wall 13 Remaining side wall A glass panel A1, A2 peripheral part Frame member for C1 glass panel E member body

フロントページの続き (72)発明者 長坂 繁喜 大阪府大阪市中央区道修町三丁目5番11号 日本板硝子株式会社内 (72)発明者 北添 敏昭 大阪府大阪市中央区道修町三丁目5番11号 日本板硝子株式会社内 Fターム(参考) 2E016 DA03 DB03 DB09 DC01 DD09 DE01 Continued front page    (72) Inventor Shigeki Nagasaka             3-5-11 Doshomachi, Chuo-ku, Osaka-shi, Osaka               Within Nippon Sheet Glass Co., Ltd. (72) Inventor Toshiaki Kitazoe             3-5-11 Doshomachi, Chuo-ku, Osaka-shi, Osaka               Within Nippon Sheet Glass Co., Ltd. F-term (reference) 2E016 DA03 DB03 DB09 DC01 DD09                       DE01

Claims (3)

【特許請求の範囲】[Claims] 【請求項1】 ガラスパネルの周縁部を一連に内嵌自在
な凹溝部を備えた部材本体をガラスパネル用枠部材に内
嵌自在に形成し、 前記凹溝部に内嵌した前記周縁部に対して厚み方向の両
側から一連に密着する密着片と、前記凹溝部に内嵌した
前記周縁部の前記部材本体に対する溝深さ方向での相対
位置を位置決めするパネル位置決め部と、前記枠部材に
内嵌した前記部材本体のその枠部材に対する溝深さ方向
での相対位置を位置決めする枠部材位置決め部とを前記
部材本体に設けてあるガラスパネル保持部材であって、 前記パネル位置決め部と前記枠部材位置決め部との溝深
さ方向での相対位置を変更自在に設けてあるガラスパネ
ル保持部材。
1. A member main body having a recessed groove portion in which the peripheral edge portion of a glass panel can be fitted in series is formed in a frame member for a glass panel so as to be fittable therein, and the peripheral edge portion fitted in the recessed groove portion is And a panel positioning portion for positioning the relative position in the groove depth direction of the peripheral edge portion fitted in the concave groove portion with respect to the member main body, and A glass panel holding member having a frame member positioning portion for positioning the relative position of the fitted member main body in the groove depth direction with respect to the frame member, wherein the panel positioning portion and the frame member are provided. A glass panel holding member provided so that the relative position in the groove depth direction with respect to the positioning portion can be changed.
【請求項2】 前記凹溝部を形成する側壁部分を溝深さ
方向に沿って伸縮自在な波形に形成して、前記パネル位
置決め部と前記枠部材位置決め部との溝深さ方向での相
対位置を変更自在に設けてある請求項1記載のガラスパ
ネル保持部材。
2. A relative position in the groove depth direction between the panel positioning portion and the frame member positioning portion, wherein a side wall portion forming the recessed groove portion is formed into a corrugated shape that can expand and contract along the groove depth direction. The glass panel holding member according to claim 1, wherein the glass panel holding member is provided so as to be changeable.
【請求項3】 前記凹溝部を形成する側壁部分のうち
の、前記パネル位置決め部と前記枠部材位置決め部との
間の側壁部分を、残りの側壁部分よりも伸縮し易い材料
で形成して、前記パネル位置決め部と前記枠部材位置決
め部との溝深さ方向での相対位置を変更自在に設けてあ
る請求項1記載のガラスパネル保持部材。
3. A sidewall portion between the panel positioning portion and the frame member positioning portion, of the sidewall portion forming the recessed groove portion, is formed of a material that is more easily expanded and contracted than the remaining sidewall portions, The glass panel holding member according to claim 1, wherein the relative position of the panel positioning portion and the frame member positioning portion in the groove depth direction is changeable.
JP10234192A 1998-08-20 1998-08-20 Holding member for glass panel Pending JP2000064731A (en)

Priority Applications (3)

Application Number Priority Date Filing Date Title
JP10234192A JP2000064731A (en) 1998-08-20 1998-08-20 Holding member for glass panel
KR1019990034526A KR20000017410A (en) 1998-08-20 1999-08-20 Glass panel holder
CN99117994A CN1254656A (en) 1998-08-20 1999-08-20 Holder of inlaid glass plate

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP10234192A JP2000064731A (en) 1998-08-20 1998-08-20 Holding member for glass panel

Publications (1)

Publication Number Publication Date
JP2000064731A true JP2000064731A (en) 2000-02-29

Family

ID=16967134

Family Applications (1)

Application Number Title Priority Date Filing Date
JP10234192A Pending JP2000064731A (en) 1998-08-20 1998-08-20 Holding member for glass panel

Country Status (3)

Country Link
JP (1) JP2000064731A (en)
KR (1) KR20000017410A (en)
CN (1) CN1254656A (en)

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105370148A (en) * 2013-05-16 2016-03-02 一禾科技发展(上海)有限公司 Adjusting bolt of installation bottom plate for finished vertical hinged door and window frame
CN105257158A (en) * 2013-05-16 2016-01-20 一禾科技发展(上海)有限公司 Position limiting structure of double-layer glass door and window body
CN104453577B (en) * 2014-12-13 2017-01-04 安徽高德铝业有限公司 A kind of four sides forms hand section bar casement window
CN106988647A (en) * 2017-04-21 2017-07-28 安徽嘉伟新材料科技有限责任公司 A kind of sound insulating and absorbing casement window profile
JP7063740B2 (en) * 2018-06-18 2022-05-09 日本板硝子株式会社 Vacuum glass panel

Also Published As

Publication number Publication date
CN1254656A (en) 2000-05-31
KR20000017410A (en) 2000-03-25

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