JP5014279B2 - Fixture and fixing structure - Google Patents

Fixture and fixing structure Download PDF

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JP5014279B2
JP5014279B2 JP2008191830A JP2008191830A JP5014279B2 JP 5014279 B2 JP5014279 B2 JP 5014279B2 JP 2008191830 A JP2008191830 A JP 2008191830A JP 2008191830 A JP2008191830 A JP 2008191830A JP 5014279 B2 JP5014279 B2 JP 5014279B2
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diameter
flexible ring
anchor portion
mounting hole
male screw
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JP2010031897A (en
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保三 井本
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保三 井本
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16BDEVICES FOR FASTENING OR SECURING CONSTRUCTIONAL ELEMENTS OR MACHINE PARTS TOGETHER, e.g. NAILS, BOLTS, CIRCLIPS, CLAMPS, CLIPS OR WEDGES; JOINTS OR JOINTING
    • F16B13/00Dowels or other devices fastened in walls or the like by inserting them in holes made therein for that purpose
    • F16B13/04Dowels or other devices fastened in walls or the like by inserting them in holes made therein for that purpose with parts gripping in the hole or behind the reverse side of the wall after inserting from the front
    • F16B13/08Dowels or other devices fastened in walls or the like by inserting them in holes made therein for that purpose with parts gripping in the hole or behind the reverse side of the wall after inserting from the front with separate or non-separate gripping parts moved into their final position in relation to the body of the device without further manual operation
    • F16B13/0858Dowels or other devices fastened in walls or the like by inserting them in holes made therein for that purpose with parts gripping in the hole or behind the reverse side of the wall after inserting from the front with separate or non-separate gripping parts moved into their final position in relation to the body of the device without further manual operation with an expansible sleeve or dowel body driven against a tapered or spherical expander plug
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16BDEVICES FOR FASTENING OR SECURING CONSTRUCTIONAL ELEMENTS OR MACHINE PARTS TOGETHER, e.g. NAILS, BOLTS, CIRCLIPS, CLAMPS, CLIPS OR WEDGES; JOINTS OR JOINTING
    • F16B13/00Dowels or other devices fastened in walls or the like by inserting them in holes made therein for that purpose
    • F16B2013/007Dowels or other devices fastened in walls or the like by inserting them in holes made therein for that purpose to be fastened in undercut holes

Description

本発明は、ガラス板等の種々の対象物の表面に設けられた取付け穴に固定される固定具及び該固定具を用いた固定構造に関する。   The present invention relates to a fixture that is fixed to a mounting hole provided on the surface of various objects such as a glass plate, and a fixing structure that uses the fixture.

ガラス板に取っ手、支持部材、スタッドボルト等の部材を固定するための構造が従来から種々採用されている。接着剤を用いたものは最も簡単であるが、強度不足や経年劣化の問題がある。そこで、接着剤を用いず或いは接着剤と併用する機械的な固定構造が種々提案されている。   Various structures for fixing members such as handles, support members, stud bolts, etc. to a glass plate have been conventionally employed. The one using an adhesive is the simplest, but there are problems of insufficient strength and aging deterioration. Therefore, various mechanical fixing structures that do not use an adhesive or are used in combination with an adhesive have been proposed.

例えば、特許文献1には、ガラス板に形成した貫通孔にボルトを通してナットを締結する構造のものが記載されている。これは、裏面側を皿穴とし、該皿穴に適合する形状のヘッドを有したボルトをガラス板の裏面側から貫通孔に通して表面側へ突出させ、表面側からナットを締結し、皿穴とヘッドとの間、ガラス板表面とナットとの間に緩衝材を介在させたものである。この構造においては、ボルトヘッドの端面がガラス板裏面と同一平面となるようにしておくことにより、ガラス板裏面からボルトヘッドが突出しない構造となる。しかしながら、裏面からボルトヘッドが露出して見えることとなり、ガラス板の平滑性や装飾性を損なってしまう。   For example, Patent Document 1 describes a structure in which a nut is tightened through a bolt in a through hole formed in a glass plate. This is because the back side is a countersink, and a bolt having a head shaped to fit the countersink is passed through the through hole from the back side of the glass plate to the front side, and a nut is tightened from the front side. A cushioning material is interposed between the hole and the head, and between the glass plate surface and the nut. In this structure, the bolt head does not protrude from the rear surface of the glass plate by making the end surface of the bolt head flush with the rear surface of the glass plate. However, the bolt head appears to be exposed from the back surface, and the smoothness and decorativeness of the glass plate are impaired.

これに対し、特許文献2には、ガラス板の表面から内側へ広がる形状の穴を形成し、この穴にカップ状のインサートを挿入し、該インサートの凹部に連結部材を結合する構造が記載されている。インサートは穴の開口径より大きい外径を有するが、穴への挿入を可能にするために径方向に複数のスロットが形成されている。また、インサートの凹部には雌ねじ、連結部材の先端部には雄ねじが各々形成されている。したがって、インサートを径方向に縮小させて穴内に挿入し、連結部材の先端をインサートの凹部に螺入することにより、インサートは元の径に広がった状態で穴内に保持される。これにより、連結部材は、ガラス板の表面から突出した状態で固定される。この構造においては、ガラス板に形成する穴は表面から裏面に貫通する必要はなく、これにより、ガラス板裏面の平滑性や装飾性が保持される。
特開平9−13561号公報 特表2006−507453号公報
On the other hand, Patent Document 2 describes a structure in which a hole having a shape extending inward from the surface of a glass plate is formed, a cup-shaped insert is inserted into the hole, and a connecting member is coupled to the recess of the insert. ing. The insert has an outer diameter larger than the opening diameter of the hole, but a plurality of slots are formed in the radial direction to allow insertion into the hole. Moreover, the internal thread is formed in the recessed part of an insert, and the external thread is formed in the front-end | tip part of a connection member, respectively. Therefore, the insert is reduced in the radial direction, inserted into the hole, and the tip of the connecting member is screwed into the recess of the insert, whereby the insert is held in the hole in a state of expanding to the original diameter. Thereby, a connection member is fixed in the state protruded from the surface of the glass plate. In this structure, the hole formed in the glass plate does not need to penetrate from the front surface to the back surface, thereby maintaining the smoothness and decorativeness of the back surface of the glass plate.
JP-A-9-13561 JP-T-2006-507453

しかしながら、特許文献2の記載の構造は、複数のスロットを利用して径を縮小させてガラス板の穴内に挿入したインサートが、再び拡径することにより穴の内面に接触するようになっっているので、インサートが穴内で固定されるためには、インサートの外形と穴の内面とが正確に一致する必要がある。そのために、インサートの外形及び穴の内面の寸法に高い精度が要求され、そのための加工コストが高いものとなる。   However, in the structure described in Patent Document 2, the insert that is inserted into the hole of the glass plate by reducing the diameter using a plurality of slots comes into contact with the inner surface of the hole by expanding the diameter again. Therefore, in order for the insert to be fixed in the hole, the outer shape of the insert must exactly match the inner surface of the hole. Therefore, high accuracy is required for the outer shape of the insert and the inner surface of the hole, and the processing cost for that is high.

また、高い精度でインサートを加工するには、金属製とするのが有利であるが、その場合は一旦穴内に挿入され拡径すると、穴内でインサートを再び縮径させるのは困難である。したがって、インサートを破壊することなく穴内から取り出すことが困難であり、その取り外しや付け替えを行ない難い。   Further, in order to process the insert with high accuracy, it is advantageous to use a metal, but in this case, once the diameter is increased by inserting it into the hole, it is difficult to reduce the diameter of the insert again in the hole. Therefore, it is difficult to remove the insert from the hole without destroying it, and it is difficult to remove or replace it.

一方、引用文献2には、インサートを弾性変形可能な部材としてもよい旨記載されている。その場合は、穴内からの取出しは容易になるが、弾性変形可能な部材に形成された雌ねじ部では、連結部材の雄ねじ部の保持力が十分に得られず、連結部材の固定が不安定になってしまう。   On the other hand, Patent Document 2 describes that the insert may be an elastically deformable member. In that case, it is easy to take out from the hole, but in the female screw part formed on the elastically deformable member, the holding force of the male screw part of the connecting member cannot be obtained sufficiently, and the fixing of the connecting member becomes unstable. turn into.

本発明は、これら従来技術の問題点を解消するものであり、対象物の表面に形成した穴に対して固定することができ、製造の手間及びコストが低く、且つ安定した固定が可能な固定具及び該固定具を用いた固定構造を提供することを目的とする。   The present invention solves these problems of the prior art, and can be fixed to a hole formed on the surface of an object, and can be stably fixed with low manufacturing effort and cost. An object is to provide a fixture and a fixing structure using the fixture.

本発明は、前記目的を達成するため、対象物の表面から内方へ向かう傾斜面により拡径した取付け穴に固定される固定具であって、最大径を有する先端部から基端部側へ縮径するテーパ面を備えたアンカー部、及び該アンカー部の基端側に結合され該アンカー部と同一軸線上に位置する雄ねじ部を備えた取付け部材と、前記アンカー部の最大径に対しより大きい外径及びより小さい内径を有し前記雄ねじ部を通し得る可撓性リングと、前記雄ねじ部に螺合可能であり螺合状態において前記アンカー部に臨む側に締結面を有した締結部材とを備え、前記締結面の外径が前記可撓性リングの内径より大きくされており、前記可撓性リングは、弾性変形可能なゴム或いは樹脂から形成されていることを特徴とする固定具、を提供するものである。 In order to achieve the above-mentioned object, the present invention is a fixture that is fixed to a mounting hole whose diameter is expanded by an inclined surface directed inward from the surface of an object, from a distal end portion having a maximum diameter to a proximal end portion side. An anchor member having a tapered surface that is reduced in diameter, and a mounting member that is coupled to the proximal end side of the anchor portion and has a male screw portion that is positioned on the same axis as the anchor portion, and a maximum diameter of the anchor portion. A flexible ring having a large outer diameter and a smaller inner diameter that can pass through the male screw part; a fastening member that can be screwed into the male screw part and has a fastening surface on the side facing the anchor part in the screwed state; A fixing tool, wherein an outer diameter of the fastening surface is made larger than an inner diameter of the flexible ring, and the flexible ring is made of elastically deformable rubber or resin , Is to provide.

本発明はまた、前記目的を達成するため、上記固定具を用いた固定構造であって、対象物の表面から内方へ向かう傾斜面により拡径した取付け穴に対し請求項1または2に記載の固定具を固定した固定構造であって、前記取付け穴の開口部の径は、前記アンカー部の最大径より大きく、前記可撓性リングの外径及び前記締結面の外径より小さくされており、前記アンカー部は前記取付け穴内に挿入され、該アンカー部のテーパー面と前記取付け穴の傾斜面との間に前記可撓性リングが挟持され、前記締結部材が前記雄ねじ部に螺合され前記締結面を前記表面に接した状態で前記可撓性リングの弾性変形を伴って前記アンカー部を引き寄せるように緊く締結されていることを特徴とする固定構造を提供するものである。   In order to achieve the above object, the present invention is also a fixing structure using the above-mentioned fixing tool, wherein the mounting hole is expanded in diameter by an inclined surface directed inward from the surface of the object. A fixing structure for fixing the fixing tool, wherein the diameter of the opening of the mounting hole is larger than the maximum diameter of the anchor portion and smaller than the outer diameter of the flexible ring and the outer diameter of the fastening surface. The anchor portion is inserted into the mounting hole, the flexible ring is sandwiched between the tapered surface of the anchor portion and the inclined surface of the mounting hole, and the fastening member is screwed into the male screw portion. The present invention provides a fixing structure characterized in that the fastening portion is tightly fastened so as to draw the anchor portion with elastic deformation of the flexible ring in a state where the fastening surface is in contact with the surface.

本発明に係る固定具は、可撓性リングが、アンカー部の最大径に対しより大きい外径及びより小さい内径を有し且つ前記雄ねじ部を通し得るようになっている。また、締結部材の締結面の外径が可撓性リングの内径より大きくされている。したがって、対象物表面に形成する取付け穴の径を、アンカー部の最大径より大きく、可撓性リングの外径及び締結面の外径より小さくしておくことにより、次のようにして、固定具を対象物に固定することができる。   In the fixing device according to the present invention, the flexible ring has a larger outer diameter and a smaller inner diameter with respect to the maximum diameter of the anchor portion, and can pass through the male screw portion. Further, the outer diameter of the fastening surface of the fastening member is made larger than the inner diameter of the flexible ring. Therefore, the diameter of the mounting hole formed on the surface of the object is larger than the maximum diameter of the anchor portion and smaller than the outer diameter of the flexible ring and the outer diameter of the fastening surface. The tool can be fixed to the object.

すなわち、アンカー部を取付け穴に挿入し、さらに雄ねじ部に通した可撓性リングを撓ませて取付け穴に押し込むと、アンカー部の最大径に対しより大きい外径及びより小さい内径を有した可撓性リングは、アンカー部のテーパー面と取付け穴の傾斜面との間に位置する。この状態で締結部材を雄ねじ部に螺合し、対象物表面に接するように螺入すれば、締結面は、径の小さい開口部の縁より外側にで対象物表面に接する。この状態で締結部材を締結すれば、可撓性リングの弾性変形を伴ってアンカー部が引き寄せられる。そして、締結部材を緊く締結することにより、対象物に対して固定具が固定される。したがって、対象物の表面に形成した穴に対して固定具を固定することができる。また、固定具は、アンカー部及び雄ねじ部を備えた取付け部材、可撓性リング、及び締結部材を備えた簡単な構造であるので、製造コストを低くすることができる。さらに、締結部材は、アンカー部を引き寄せ可撓性リングを弾性変形させて緊く締結されるので、固定具の固定が安定したものとなる。   In other words, when the anchor part is inserted into the mounting hole, and the flexible ring passed through the male thread part is bent and pushed into the mounting hole, the outer diameter and the inner diameter may be larger than the maximum diameter of the anchor part. The flexible ring is located between the tapered surface of the anchor portion and the inclined surface of the mounting hole. In this state, if the fastening member is screwed into the male screw portion and screwed into contact with the surface of the object, the fastening surface contacts the surface of the object outside the edge of the opening having a small diameter. If the fastening member is fastened in this state, the anchor portion is drawn with the elastic deformation of the flexible ring. And a fixing tool is fixed with respect to a target object by fastening a fastening member tightly. Therefore, the fixture can be fixed to the hole formed on the surface of the object. Further, since the fixture has a simple structure including an attachment member having an anchor portion and a male screw portion, a flexible ring, and a fastening member, the manufacturing cost can be reduced. Furthermore, the fastening member is fastened tightly by pulling the anchor portion and elastically deforming the flexible ring, so that the fixing of the fixture is stable.

本発明に係る固定構造は、前述の開口部の径を有する取付け穴に対して、上記固定具を用い、アンカー部及び可撓性リングを取付け穴内に挿入し、締結部材を雄ねじ部に螺合して締結することにより、アンカー部を引き寄せて堅固に固定される。したがって、前述と同様に、対象物表面に形成した穴に対して固定具を固定することができ、簡単な構造の固定具により製造コストが低く抑えられ、締結部材の緊い締結により固定具の固定が安定したものとなる。   The fixing structure according to the present invention uses the above-mentioned fixture to the mounting hole having the diameter of the opening described above, inserts the anchor portion and the flexible ring into the mounting hole, and screws the fastening member into the male screw portion. As a result, the anchor portion is pulled and fixed firmly. Therefore, as described above, the fixture can be fixed to the hole formed on the surface of the object, and the manufacturing cost can be kept low by the fixture having a simple structure. Fixing becomes stable.

以下、本発明の実施形態について添付図面を参照しつつ説明する。図面中の同一又は同種の部分については、同じ番号を付して説明を省略することがある。図1は本発明の一実施形態に係る固定具をガラス板に取り付けた固定構造を示す縦断面図であり、図2はその固定具及びガラス板を分解して示す断面図である。   Hereinafter, embodiments of the present invention will be described with reference to the accompanying drawings. The same or similar parts in the drawings may be denoted by the same reference numerals and description thereof may be omitted. FIG. 1 is a longitudinal sectional view showing a fixing structure in which a fixture according to an embodiment of the present invention is attached to a glass plate, and FIG. 2 is an exploded sectional view showing the fixture and the glass plate.

この固定具1は、ボルト状の取付け部材10と、可撓性リング50と、締結部材60とを備えている。該取付け部材10は、雄ねじ部20の一端にアンカー部30が結合され、アンカー部30は雄ねじ部20に対して同一軸線上に設けられている。アンカー部30は、最大径の先端部31から基端部側へ縮径するテーパ面32を備え、側面視台形状に形成されている。   The fixture 1 includes a bolt-shaped attachment member 10, a flexible ring 50, and a fastening member 60. In the mounting member 10, an anchor part 30 is coupled to one end of the male screw part 20, and the anchor part 30 is provided on the same axis with respect to the male screw part 20. The anchor portion 30 includes a tapered surface 32 that decreases in diameter from the distal end portion 31 having the maximum diameter toward the proximal end portion, and is formed in a trapezoidal shape as viewed from the side.

可撓性リング50は、部材断面が円形であり、全体形状は平面視において円環状をなす。締結部材60は、この実施形態では、ナット61と中間プレート62との2つの部材からなっている。ナット61には、雄ねじ部20に螺合可能な雌ねじ部611が形成されている。中間プレート62は、雄ねじ部20を緩く通す内径C62の貫通孔621が形成され、雄ねじ部20に通された状態においてアンカー部30に臨む側が締結面622となっている。締結面622の外径は、可撓性リング50の内径C5より大きくされている。中間プレート62にはまた、締結面622から突出した環状突部623が設けられている。環状突部623の外径E623は、可撓性リングの外径E5より小さくその内径C5より大きくされている。   The flexible ring 50 has a circular member cross section, and the overall shape is an annular shape in plan view. The fastening member 60 is composed of two members, a nut 61 and an intermediate plate 62 in this embodiment. The nut 61 is formed with a female screw portion 611 that can be screwed into the male screw portion 20. The intermediate plate 62 is formed with a through hole 621 having an inner diameter C62 through which the male screw portion 20 passes loosely, and the side facing the anchor portion 30 in a state of being passed through the male screw portion 20 is a fastening surface 622. The outer diameter of the fastening surface 622 is larger than the inner diameter C5 of the flexible ring 50. The intermediate plate 62 is also provided with an annular protrusion 623 protruding from the fastening surface 622. The outer diameter E623 of the annular protrusion 623 is smaller than the outer diameter E5 of the flexible ring and larger than the inner diameter C5.

対象物であるガラス板80には、表面から内方へ向かう傾斜面82により拡径した取付け穴81が形成されている。取付け穴81の開口部83の径C8は、アンカー部30の最大径D3及び中間プレート62の環状突部623の外径E623より大きく、可撓性リング50の外径E5及び締結面622の外径E62より小さくされている。この実施形態では、取付け穴81の開口部83は僅かな高さ部分が垂直壁84とされ、開口縁の強度が高められている。   A glass plate 80 as an object is formed with a mounting hole 81 whose diameter is increased by an inclined surface 82 directed inward from the surface. The diameter C8 of the opening 83 of the mounting hole 81 is larger than the maximum diameter D3 of the anchor portion 30 and the outer diameter E623 of the annular protrusion 623 of the intermediate plate 62, and is outside the outer diameter E5 of the flexible ring 50 and the fastening surface 622. It is smaller than the diameter E62. In this embodiment, the opening 83 of the attachment hole 81 has a slight height as a vertical wall 84, and the strength of the opening edge is increased.

取付け穴81の奥端面とアンカー部30の最大径側の端面との間には、取付け穴の奥端面の内径より小さくアンカー部30の最大径側の端面より大きい径の緩衝板90が介在している。   Between the back end surface of the mounting hole 81 and the end surface on the maximum diameter side of the anchor portion 30, a buffer plate 90 having a diameter smaller than the inner diameter of the back end surface of the mounting hole and larger than the maximum diameter side end surface of the anchor portion 30 is interposed. ing.

以上の部材の主な部分の寸法は、以下の通りである。尤も、本発明はこれらの寸法に限定されるものではない。
・取付け部材10
アンカー部30の最大径D3:13mm
雄ねじ部20の外径D2:8mm
アンカー部30の高さH3:5mm
雄ねじ部軸線方向に対するテーパ面32の傾斜角θ3:55度
・可撓性リング50
外径E5:16mm
内径C5:10mm
部材断面の径D5:3mm
・ナット61
外径E61:19mm
・中間プレート62
外径E62:22mm
内径C62:8mm
環状突部623の外径E623:14.6mm
環状突部623の高さH623:1.6mm
・ガラス板80の取付け穴81
開口部83の径C8:15mm
底部85の径E8:17mm
深さH8:6mm
傾斜面82の傾斜角θ8:80度
・緩衝板90
外径D90:16mm
厚さT90:1.2mm
この固定具1は、次のようにしてガラス板80に取り付けられる。先ず、ガラス板80に形成した取付け穴81に緩衝板90を挿入し、奥端面上に敷く。次に、取付け穴81内に取付け部材10のアンカー部30を挿入する。取付け穴81の開口部83の径C8は、アンカー部30の最大径D3より大きくされているので、アンカー部30は抵抗なく挿入され、緩衝板90上に位置する。
The dimensions of the main parts of the above members are as follows. However, the present invention is not limited to these dimensions.
-Mounting member 10
Maximum diameter D3 of anchor portion 30: 13 mm
External diameter D2 of male screw part 20: 8 mm
Anchor portion 30 height H3: 5 mm
Inclination angle θ3 of the taper surface 32 with respect to the axial direction of the male screw portion: 55 degrees, flexible ring 50
Outer diameter E5: 16mm
Inner diameter C5: 10mm
Diameter of member cross section D5: 3 mm
Nut 61
Outer diameter E61: 19mm
Intermediate plate 62
Outer diameter E62: 22mm
Inner diameter C62: 8mm
Outer diameter E623 of the annular protrusion 623: 14.6 mm
The height H623 of the annular protrusion 623: 1.6 mm
Glass plate 80 mounting hole 81
Diameter of opening 83 C8: 15 mm
Diameter of bottom 85 E8: 17mm
Depth H8: 6mm
Inclination angle θ8 of inclined surface 82: 80 degrees, buffer plate 90
Outer diameter D90: 16mm
Thickness T90: 1.2mm
The fixture 1 is attached to the glass plate 80 as follows. First, the buffer plate 90 is inserted into the mounting hole 81 formed in the glass plate 80 and laid on the back end surface. Next, the anchor portion 30 of the attachment member 10 is inserted into the attachment hole 81. Since the diameter C8 of the opening 83 of the attachment hole 81 is larger than the maximum diameter D3 of the anchor portion 30, the anchor portion 30 is inserted without resistance and is positioned on the buffer plate 90.

次に、可撓性リング50を雄ねじ部20の上から通してガラス板80上まで下ろし、雄ねじ部20と開口部83との隙間から取付け穴81内に押し込む。可撓性リング50の外径E5は開口部83の径C8より大きいが、その可撓性に基づき弾性変形させて取付け穴81内に押し込むことができる。また可撓性リング50は、アンカー部30の最大径D3に対しより大きい外径E5及びより小さい内径C5を有しているので、取付け穴81内では、アンカー部30のテーパ面32と取付け穴81の傾斜面82との間に位置する。   Next, the flexible ring 50 is passed down from above the male screw portion 20 to the glass plate 80 and pushed into the mounting hole 81 through the gap between the male screw portion 20 and the opening 83. The outer diameter E5 of the flexible ring 50 is larger than the diameter C8 of the opening 83, but can be elastically deformed based on the flexibility and pushed into the mounting hole 81. Further, since the flexible ring 50 has a larger outer diameter E5 and a smaller inner diameter C5 with respect to the maximum diameter D3 of the anchor portion 30, in the mounting hole 81, the tapered surface 32 and the mounting hole of the anchor portion 30 are provided. It is located between 81 inclined surfaces 82.

次に、中間プレート62を雄ねじ部20の上から通してガラス板80上まで下ろす。取付け穴81の開口部83の径C8は、締結面622の外径E62より小さくされているので、締結面622はガラス板80の表面に当接する。また、取付け穴81の開口部83の径C8は、中間プレート62の環状突部623の外径E623より大きくされているので、締結面622をガラス板表面に当接させると、環状突部623は開口部83内に挿入される。そして、環状突部623の外径は、可撓性リング50の外径より小さくその内径より大きくされているので、開口部83内に挿入された開口部83は、可撓性リング50に接触することとなる。   Next, the intermediate plate 62 is passed from above the male screw portion 20 and lowered onto the glass plate 80. Since the diameter C8 of the opening 83 of the attachment hole 81 is smaller than the outer diameter E62 of the fastening surface 622, the fastening surface 622 contacts the surface of the glass plate 80. Further, since the diameter C8 of the opening 83 of the mounting hole 81 is larger than the outer diameter E623 of the annular protrusion 623 of the intermediate plate 62, the annular protrusion 623 is brought into contact with the surface of the glass plate. Is inserted into the opening 83. Since the outer diameter of the annular protrusion 623 is smaller than the outer diameter of the flexible ring 50 and larger than the inner diameter, the opening 83 inserted into the opening 83 contacts the flexible ring 50. Will be.

次に、ナット61を雄ねじ部20の上から螺合し、回転させながら下降させ、中間プレート62上に至らせる。そして、ナット61を雄ねじ部20に対し緊く締結すれば、アンカー部30が引き寄せられ、取付け穴81の傾斜面82との間で可撓性リング50を弾性変形させる。これにより、固定具1はガラス板80に対して堅固に固定される。   Next, the nut 61 is screwed onto the male screw portion 20 and is lowered while being rotated to reach the intermediate plate 62. Then, when the nut 61 is tightly fastened to the male screw portion 20, the anchor portion 30 is drawn and the flexible ring 50 is elastically deformed between the inclined surface 82 of the attachment hole 81. Thereby, the fixture 1 is firmly fixed to the glass plate 80.

取り付け部材10、中間プレート62、ナット61は、機械的強度の点から金属製とするのが望ましく、硬質樹脂製とすることもできる。   The mounting member 10, the intermediate plate 62, and the nut 61 are preferably made of metal from the viewpoint of mechanical strength, and may be made of hard resin.

可撓性リング50は、その外径より小さいガラス板80の開口部83を通すために弾性変形が可能であり、且つ取り付け部材10の固定が堅固になるように締結部材60による締結時の弾性変形量が小さいものが望ましい。そのような材料として、ニトリルゴム、フッ素ゴム、シリコーンゴム、フロロシリコーンゴム、エチレンプロピレンゴム、スチレンブタジエンゴム、アクリルゴム等のゴム、或いは同様の機械的性質を有する樹脂を使用することができる。   The flexible ring 50 can be elastically deformed to pass through the opening 83 of the glass plate 80 smaller than the outer diameter thereof, and the fastening member 60 can be firmly fixed so that the fastening of the mounting member 10 is firm. A small amount of deformation is desirable. As such a material, rubbers such as nitrile rubber, fluorine rubber, silicone rubber, fluorosilicone rubber, ethylene propylene rubber, styrene butadiene rubber, and acrylic rubber, or resins having similar mechanical properties can be used.

緩衝板90は、取付け穴81内においてガラス板80とアンカー部30との間の緩衝作用をなすように、柔軟性のある合成樹脂、ゴム等の材料で作成される。緩衝板90を介在させることにより、ナット61の過度な締め付けや組立て後に受ける衝撃によってガラス板80が損傷を受けるのが防止される。このためには、ナット61の締め付けによって、取付け穴81の奥端面とアンカー部30との間に隙間ができないように、緩衝板90、アンカー部30及び可撓性リング50を取付け穴81内に挿入したときに、緩衝板90が厚さ方向に弾性的に圧縮されるように厚さが決められるのが望ましい。 ガラス板80の取付け穴81は、例えば、図3に示すようにして形成することができる。先ず図3(a) に示すように開口部83に相当する径の下穴81aをドリルDR1によって必要な深さに穿孔する。次に径の細いドリルDR2を下穴81aの側面に当てがい、旋回させながら次第に傾斜させて行き、これにより下穴81aの下部を径方向に拡げる。こうして傾斜面82が形成され、取付け穴81が完成する。この他、刃部が径方向に進退するドリルを用い、穿孔が進むに従って刃部を径方向により大きく突出させることによっても、取付け穴81を形成することができる。或いは、対象物がモールド成形可能な材料であれば、対象物の成形時に開口部83を型成形することもできる。   The buffer plate 90 is made of a material such as a flexible synthetic resin or rubber so as to provide a buffering action between the glass plate 80 and the anchor portion 30 in the mounting hole 81. By interposing the buffer plate 90, the glass plate 80 is prevented from being damaged by excessive tightening of the nut 61 or an impact received after assembly. For this purpose, the buffer plate 90, the anchor portion 30 and the flexible ring 50 are placed in the mounting hole 81 so that there is no gap between the deep end surface of the mounting hole 81 and the anchor portion 30 by tightening the nut 61. It is desirable that the thickness be determined so that the buffer plate 90 is elastically compressed in the thickness direction when inserted. The mounting hole 81 of the glass plate 80 can be formed as shown in FIG. 3, for example. First, as shown in FIG. 3A, a pilot hole 81a having a diameter corresponding to the opening 83 is drilled to a required depth by a drill DR1. Next, the drill DR2 with a small diameter is applied to the side surface of the pilot hole 81a and gradually tilted while turning, thereby expanding the lower part of the pilot hole 81a in the radial direction. In this way, the inclined surface 82 is formed, and the mounting hole 81 is completed. In addition, the attachment hole 81 can also be formed by using a drill whose blade portion advances and retreats in the radial direction and causing the blade portion to protrude larger in the radial direction as drilling proceeds. Alternatively, if the object is a material that can be molded, the opening 83 can be molded when the object is molded.

次に本発明の他の実施形態に係る固定具を用いた固定構造について説明する。図4は、その固定構造の縦断面図である。この固定具1は、先の実施形態と基本的な形態は同じであるが、取り付け部材10及び中間プレート62の形態が以下の点において異なっている。   Next, a fixing structure using a fixing tool according to another embodiment of the present invention will be described. FIG. 4 is a longitudinal sectional view of the fixing structure. The fixture 1 has the same basic form as the previous embodiment, but the form of the attachment member 10 and the intermediate plate 62 is different in the following points.

取り付け部材10のアンカー部30は、テーパ面32と雄ねじ部20との間に中間部35を備えている。中間部35はテーパ面32上端の最小径部分から同一の径で円柱状に短く延びている。これにより、テーパ面32の傾斜角θ3は、先の実施形態のものより大きくなっている。これに伴って、締結部材60による締結時に、可撓性リング50に作用する押圧力がより強くなる。   The anchor portion 30 of the attachment member 10 includes an intermediate portion 35 between the tapered surface 32 and the male screw portion 20. The intermediate portion 35 is shortly extended in a cylindrical shape with the same diameter from the minimum diameter portion at the upper end of the tapered surface 32. As a result, the inclination angle θ3 of the tapered surface 32 is larger than that of the previous embodiment. Accordingly, the pressing force acting on the flexible ring 50 becomes stronger when the fastening member 60 is fastened.

締結部材60の中間プレート62は、平らな円板状であり、先の実施形態に存在した環状突部623が省略されている。この場合にも、可撓性リング50の太さ、またはアンカー部30と取付け穴81との間隙の大きさを変更する等により、可撓性リング50が中間プレート62下面に接触し、或いは接触しなくても、締結により可撓性リング50の位置を保持して適切な固定力が得られる。   The intermediate plate 62 of the fastening member 60 has a flat disk shape, and the annular protrusion 623 existing in the previous embodiment is omitted. Also in this case, the flexible ring 50 contacts or contacts the lower surface of the intermediate plate 62 by changing the thickness of the flexible ring 50 or the size of the gap between the anchor portion 30 and the mounting hole 81. Even if not, an appropriate fixing force can be obtained by holding the position of the flexible ring 50 by fastening.

次に、図1に示した固定具を用いた試験例について説明する。   Next, a test example using the fixture shown in FIG. 1 will be described.

(引張り強度試験)
取付け穴を形成したガラス板に固定具を取り付けてナットを締結し図1に示した状態とし、これを図5に示す引張り試験用治具に固定した。図5の(a) は取付け状態の正面図、(b) はその側面図、(c) は固定具付きガラス及び治具を分解して示す斜視図である。
(Tensile strength test)
A fixing tool was attached to the glass plate in which the attachment hole was formed, and the nut was fastened to obtain the state shown in FIG. 1, and this was fixed to the tensile test jig shown in FIG. FIG. 5A is a front view of the attached state, FIG. 5B is a side view thereof, and FIG. 5C is an exploded perspective view of the glass with fixture and the jig.

治具は、直方体状の箱体A1の下部に突片A2、上部に貫通孔A3を備え、対向する側面が開口A4とされた支持体Aと、雌ねじ付き穴を形成した金属棒Bとからなっている。固定具付きガラス板を開口A4から箱体A1内に挿入し、貫通孔A3から雄ねじ部20を上方へ突出させ、金属棒Bの雌ねじに螺合させる。そして、インストロン万能試験機5528型の上下のつかみ部で金属棒B及び突片A2を各々つかむ。この状態で、上下つかみ部間に引っ張り荷重を掛け、荷重−変位曲線と最大荷重を求めた。試験速度は2mm/分、試験温度は23℃であった。   The jig comprises a support A having a projecting piece A2 at the bottom of a rectangular box A1, a through hole A3 at the top, and an opening A4 on the opposite side, and a metal bar B having a female threaded hole. It has become. A glass plate with a fixture is inserted into the box A1 from the opening A4, the male screw portion 20 is protruded upward from the through hole A3, and is screwed into the female screw of the metal bar B. Then, the metal rod B and the projecting piece A2 are respectively grasped by the upper and lower grip portions of the Instron universal testing machine 5528 type. In this state, a tensile load was applied between the upper and lower gripping portions to obtain a load-displacement curve and a maximum load. The test speed was 2 mm / min and the test temperature was 23 ° C.

その荷重−変位曲線を図7に示す。図7のグラフから明らかなとおり、固定具は、最大荷重1.48kNという大きな荷重に至るまで、安定してガラス板に固定されていた。   The load-displacement curve is shown in FIG. As is apparent from the graph of FIG. 7, the fixture was stably fixed to the glass plate until a maximum load of 1.48 kN was reached.

(剪断強度試験)
取付け穴を形成したガラス板に固定具を取り付けてナットを締結し図1に示した状態とし、これを図6に示す剪断試験用治具Aに固定した。図6の(a) は取付け状態の正面図、(b) はその側面図、(c) は固定具付きガラス及び治具を分解して示す斜視図である。
(Shear strength test)
A fixing tool was attached to the glass plate in which the attachment hole was formed, and the nut was fastened to obtain the state shown in FIG. 1, and this was fixed to the shear test jig A shown in FIG. 6A is a front view of the mounted state, FIG. 6B is a side view thereof, and FIG. 6C is an exploded perspective view of the glass with fixture and the jig.

治具Cは、水平台C1上に垂直壁C2を立設し、補強部C3を設けて一体的に構成されたものである。垂直壁C2は、中央に開口部C5が形成され、その両側の起立部C4に内向きの縦溝C6が形成されている。補強部C3は1対備えられ、各々起立部C4と水平台C1とに結合されている。固定具付きガラス板を縦溝C6に通し、開口部C5に取付け部材10を位置させる。そして、インストロン万能試験機5528型の荷重金具で取付け部材10の雄ねじ部20を上方から押し下げ、荷重−変位曲線と最大荷重を求めた。試験速度は2mm/分、試験温度は23℃であった。   The jig C is formed integrally with a vertical wall C2 standing on a horizontal base C1 and a reinforcing portion C3. The vertical wall C2 has an opening C5 at the center, and inward vertical grooves C6 are formed at the standing portions C4 on both sides thereof. A pair of reinforcing portions C3 are provided, and are respectively coupled to the standing portion C4 and the horizontal base C1. The glass plate with a fixture is passed through the longitudinal groove C6, and the attachment member 10 is positioned in the opening C5. Then, the male screw portion 20 of the mounting member 10 was pushed down from above with an Instron universal testing machine 5528 type load fitting, and a load-displacement curve and a maximum load were obtained. The test speed was 2 mm / min and the test temperature was 23 ° C.

その荷重−変位曲線を図8に示す。図8のグラフから明らかなとおり、固定具は、最大荷重3.24KkNという大きな荷重に至るまで、安定してガラス板に固定されていた。なお、途中で0.67kNのピーク荷重を示したのは、取付け部材10の雄ねじ部20のねじ山部に当接していた試験機の荷重金具の先端部が、荷重の増加に伴ってねじの谷部へ移動したことによる。   The load-displacement curve is shown in FIG. As is apparent from the graph of FIG. 8, the fixture was stably fixed to the glass plate until a maximum load of 3.24 KkN was reached. In addition, the peak load of 0.67 kN was shown on the way because the tip of the load fitting of the testing machine that was in contact with the thread portion of the male screw portion 20 of the mounting member 10 By moving to the valley.

本発明は、上記実施形態に限定されるものではなく、種々の変形が可能である。例えば、締結部材60は、雌ねじを備えたナット61と雄ねじ部20を緩く通す貫通孔を備えた中間プレート62とを一体的に形成することもできる。また、中間プレート62を省略してもよく、その場合は、ナット61の下端を平らな面にし、或いは、環状突部623に相当する突部を形成することもできる。   The present invention is not limited to the above embodiment, and various modifications can be made. For example, the fastening member 60 can integrally form a nut 61 provided with a female screw and an intermediate plate 62 provided with a through hole through which the male screw part 20 passes loosely. Further, the intermediate plate 62 may be omitted. In this case, the lower end of the nut 61 may be a flat surface, or a protrusion corresponding to the annular protrusion 623 may be formed.

固定具の一部をなす取付け部材は、少なくともアンカー部と雄ねじ部とを備えるが、これに種々の構造物を結合することができる。図9は、図の右側に位置する固定具1Aの雄ねじ部20の先端にアングル金具101を溶接部102により溶接した例を示している。固定具1Aは、ガラス板80Aの取付け穴81Aに固定されている。図の左側に位置する固定具1Bは、ガラス板80Bの取付け穴81Bに固定され、アングル金具101の貫通孔103に雄ねじ部20が通され、ワッシャ104及びナット105によりアングル金具101に固定されている。ガラス板80A、80Bは図の紙面に対して垂直方向に長く延び、アングル金具101は同方向に複数配置されており、これにより、ガラス板80Aとガラス板80Bが固定されている。   The attachment member forming a part of the fixture includes at least an anchor portion and a male screw portion, and various structures can be coupled thereto. FIG. 9 shows an example in which the angle fitting 101 is welded to the tip of the male screw portion 20 of the fixture 1A located on the right side of the drawing by the welding portion 102. The fixing tool 1A is fixed to the mounting hole 81A of the glass plate 80A. The fixture 1B located on the left side of the figure is fixed to the mounting hole 81B of the glass plate 80B, the male screw portion 20 is passed through the through hole 103 of the angle fitting 101, and is fixed to the angle fitting 101 by the washer 104 and the nut 105. Yes. The glass plates 80A and 80B extend long in the direction perpendicular to the paper surface of the figure, and a plurality of angle fittings 101 are arranged in the same direction, whereby the glass plate 80A and the glass plate 80B are fixed.

本発明に係る固定具は、ガラス板以外の板材、その他種々の対象物に取り付けることができる。図10は、ブロック状の対象物107に固定具1を取り付けた状態を示している。図示のように取付け面は曲面であってもよく、その場合は、取付け面に中間プレート62の接触面の形状を合わせるのが望ましい。   The fixture according to the present invention can be attached to plate materials other than glass plates and other various objects. FIG. 10 shows a state in which the fixture 1 is attached to the block-shaped object 107. As illustrated, the mounting surface may be a curved surface. In this case, it is desirable to match the shape of the contact surface of the intermediate plate 62 with the mounting surface.

本発明の一実施形態に係る固定具をガラス板に取り付けた固定構造を示す縦断面図である。It is a longitudinal cross-sectional view which shows the fixing structure which attached the fixing tool which concerns on one Embodiment of this invention to the glass plate. 図1に示した固定具及びガラス板を分解して示す断面図である。It is sectional drawing which decomposes | disassembles and shows the fixing tool and glass plate which were shown in FIG. 図1に示した固定構造のための取付け穴の形成工程を示す断面図である。It is sectional drawing which shows the formation process of the attachment hole for the fixing structure shown in FIG. 本発明の他の実施形態に係る固定具をガラス板に取り付けた固定構造を示す縦断面図である。It is a longitudinal cross-sectional view which shows the fixing structure which attached the fixing tool which concerns on other embodiment of this invention to the glass plate. 図1の固定構造の引張り強度試験に使用する治具の説明図である。It is explanatory drawing of the jig | tool used for the tensile strength test of the fixed structure of FIG. 図1の固定構造の剪断強度試験に使用する治具の説明図である。It is explanatory drawing of the jig | tool used for the shear strength test of the fixed structure of FIG. 図5に示した治具による引張り強度試験の結果を示すグラフである。It is a graph which shows the result of the tensile strength test by the jig | tool shown in FIG. 図6に示した治具による剪断強度試験の結果を示すグラフである。It is a graph which shows the result of the shear strength test by the jig | tool shown in FIG. 本発明に係る固定具を用いた固定構造の他の例の断面図である。It is sectional drawing of the other example of the fixing structure using the fixing tool which concerns on this invention. 本発明に係る固定具を用いた固定構造のさらに他の例の断面図である。It is sectional drawing of the further another example of the fixing structure using the fixing tool which concerns on this invention.

符号の説明Explanation of symbols

1,1A,1B 固定具
10 取付け部材
20 雄ねじ部
30 アンカー部
31 最大径の先端部
32 テーパ面
50 可撓性リング
60 締結部材
61 ナット
62 中間プレート
80,80A,80B ガラス板
81 取付け穴
82 傾斜面
83 開口部
62 中間プレート
107 対象物
622 締結面
623 環状突部
1, 1A, 1B Fixing tool 10 Mounting member 20 Male thread portion 30 Anchor portion 31 Maximum diameter tip portion 32 Tapered surface 50 Flexible ring 60 Fastening member 61 Nut 62 Intermediate plate 80, 80A, 80B Glass plate 81 Mounting hole 82 Inclined Surface 83 Opening portion 62 Intermediate plate 107 Object 622 Fastening surface 623 Annular protrusion

Claims (4)

対象物の表面から内方へ向かう傾斜面により拡径した取付け穴に固定される固定具であって、
最大径を有する先端部から基端部側へ縮径するテーパ面を備えたアンカー部、及び該アンカー部の基端側に結合され該アンカー部と同一軸線上に位置する雄ねじ部を備えた取付け部材と、
前記アンカー部の最大径に対しより大きい外径及びより小さい内径を有し前記雄ねじ部を通し得る可撓性リングと、
前記雄ねじ部に螺合可能であり螺合状態において前記アンカー部に臨む側に締結面を有した締結部材とを備え、
前記締結面の外径が前記可撓性リングの内径より大きくされており、
前記可撓性リングは、弾性変形可能なゴム或いは樹脂から形成されていることを特徴とする固定具。
A fixture that is fixed to a mounting hole whose diameter is increased by an inclined surface directed inward from the surface of the object,
Mounting with an anchor portion having a tapered surface that is reduced in diameter from the distal end portion having the maximum diameter toward the proximal end portion, and a male screw portion that is coupled to the proximal end side of the anchor portion and is positioned on the same axis as the anchor portion Members,
A flexible ring having a larger outer diameter and a smaller inner diameter with respect to the maximum diameter of the anchor portion and capable of passing the male screw portion;
A fastening member capable of being screwed to the male screw part and having a fastening surface on the side facing the anchor part in the screwed state;
The outer diameter of the fastening surface is larger than the inner diameter of the flexible ring;
The flexible ring is made of elastically deformable rubber or resin .
前記締結部材が、前記締結面から突出し前記雄ねじ部への螺合状態において前記テーパー面上の前記可撓性リングに接し得る環状突部を備え、該環状突部の外径は、前記可撓性リングの外径より小さくその内径より大きくされていることを特徴とする請求項1に記載の固定具。 The fastening member includes an annular protrusion that protrudes from the fastening surface and can contact the flexible ring on the tapered surface in a screwed state with the male screw portion. The fixing tool according to claim 1, wherein the fixing tool is smaller than an outer diameter of the sex ring and larger than an inner diameter thereof. 前記取付け穴の奥端面と前記アンカー部の最大径側の端面との間に緩衝板が介在していることを特徴とする請求項1または2に記載の固定具。 The fixture according to claim 1 or 2, wherein a buffer plate is interposed between a back end face of the mounting hole and an end face on the maximum diameter side of the anchor portion. 請求項1から3のいずれかに記載の固定具を用いた固定構造であって、
対象物の表面から内方へ向かう傾斜面により拡径した取付け穴に対し請求項1または2に記載の固定具を固定した固定構造であって、
前記取付け穴の開口部の径は、前記アンカー部の最大径より大きく、前記可撓性リングの外径及び前記締結面の外径より小さくされており、
前記アンカー部は前記取付け穴内に挿入され、該アンカー部のテーパー面と前記取付け穴の傾斜面との間に前記可撓性リングが挟持され、前記締結部材が前記雄ねじ部に螺合され前記締結面を前記表面に接した状態で前記可撓性リングの弾性変形を伴って前記アンカー部を引き寄せるように緊く締結されていることを特徴とする固定構造。
A fixing structure using the fixture according to any one of claims 1 to 3,
A fixing structure in which the fixture according to claim 1 or 2 is fixed to a mounting hole whose diameter is increased by an inclined surface directed inward from the surface of the object,
The diameter of the opening of the mounting hole is larger than the maximum diameter of the anchor part, and smaller than the outer diameter of the flexible ring and the outer diameter of the fastening surface,
The anchor portion is inserted into the mounting hole, the flexible ring is sandwiched between a tapered surface of the anchor portion and an inclined surface of the mounting hole, and the fastening member is screwed into the male screw portion and fastened. A fixing structure characterized in that the anchor portion is tightly fastened so as to pull the anchor portion with elastic deformation of the flexible ring in a state where a surface is in contact with the surface.
JP2008191830A 2008-07-25 2008-07-25 Fixture and fixing structure Expired - Fee Related JP5014279B2 (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108843833A (en) * 2018-06-13 2018-11-20 鹤山市波士顿卫浴实业有限公司 A kind of control water valve housing and its installation method

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HU183796B (en) * 1982-01-28 1984-05-28 Beton Es Vasbetonipari Muevek Method for producing and using concrete, reinforced concrete slabs respectively constructions exposed to dynamic or static action secured flexible or rigid quickconnection provided with sunk armatures
DE59004341D1 (en) * 1990-01-30 1994-03-03 Fischer Artur Werke Gmbh Fastener.
JP2000110285A (en) * 1998-10-01 2000-04-18 Central Glass Co Ltd Tabular material support structure
DE20008684U1 (en) * 2000-05-13 2001-09-20 Fischer Artur Werke Gmbh Fastening element for a multi-pane glass and arrangement in the fastening element anchored in a plate-shaped multi-layer body

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108843833A (en) * 2018-06-13 2018-11-20 鹤山市波士顿卫浴实业有限公司 A kind of control water valve housing and its installation method

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