JP2010104442A - Mirror attaching structure for mirror cabinet - Google Patents

Mirror attaching structure for mirror cabinet Download PDF

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JP2010104442A
JP2010104442A JP2008277392A JP2008277392A JP2010104442A JP 2010104442 A JP2010104442 A JP 2010104442A JP 2008277392 A JP2008277392 A JP 2008277392A JP 2008277392 A JP2008277392 A JP 2008277392A JP 2010104442 A JP2010104442 A JP 2010104442A
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mirror
substrate
back surface
cabinet
insertion ring
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JP2008277392A
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JP5351491B2 (en
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Takashi Nakajima
高志 中島
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Panasonic Electric Works Co Ltd
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Panasonic Electric Works Co Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To prevent a mirror from rattle or falling down during vibrations caused by such as transport, and at the same time, to facilitate the attaching work of a mirror presser, and in addition, to enable the mirror presser to be commonly used even when the thickness of the mirror, or the thickness of the board is changed. <P>SOLUTION: The mirror attaching structure for mirror cabinet is constituted of: the mirror presser 6, where a mirror fastening section 2 which is fastened to the edge 1a of the mirror 1, and an elastically deformable hook section 5 which is fastened to the rear surface 3a side of the board 3 through a through hole 4 installed on the board 3 of a mirror cabinet are integrally installed; and the insertion ring 8 which holds the hook section 5 at a position being away from the rear surface 3a of the board 3 by the insertion into the hook section 5 from the rear surface 3a side of the board 3. The mirror attaching structure for mirror cabinet is equipped with a mirror presser attaching member 7 for which the insertion ring 8 is arranged to be confronted with the rear surface 3a of the board 3. <P>COPYRIGHT: (C)2010,JPO&INPIT

Description

本発明は、ミラーキャビネットの鏡取付構造に関し、詳しくは鏡を取り付ける基板に対して鏡のガタツキ及び落下を防止しようとする技術に関するものである。   The present invention relates to a mirror mounting structure for a mirror cabinet, and more particularly to a technique for preventing the mirror from rattling and dropping with respect to a substrate to which the mirror is mounted.

従来、洗面化粧台のミラーキャビネットの前面に配置される基板に鏡を鏡押え取付部材により押さえて取付けるミラーキャビネットの鏡取付構造が知られている(例えば特許文献1参照)。   2. Description of the Related Art Conventionally, there has been known a mirror mounting structure for a mirror cabinet in which a mirror is attached to a substrate disposed on the front surface of a mirror cabinet of a vanity with a mirror press mounting member (see, for example, Patent Document 1).

その一例として、例えば図5に示すように、鏡押さえ6の前面に設けた鏡係止部2を鏡1の縁1aに係止させた状態で、鏡押さえ6の後部に設けた弾性変形可能なフック部5を基板3に設けた貫通孔4に通して基板3の裏面3aに係合させることで、鏡1を基板3に押さえて取り付けるようにしている。   As an example, as shown in FIG. 5, for example, the mirror locking portion 2 provided on the front surface of the mirror press 6 is locked to the edge 1a of the mirror 1, and the elastic deformation provided on the rear portion of the mirror press 6 is possible. A simple hook portion 5 is passed through a through hole 4 provided in the substrate 3 and engaged with the back surface 3 a of the substrate 3, so that the mirror 1 is pressed and attached to the substrate 3.

ところが、鏡1の厚さEや基板3の厚さF(肉厚)が製品仕様等によって変化することがあり、例えば鏡1の厚さEが5mmから3mmに薄くなった場合は、共通する鏡押さえ6を用いた場合、基板3の裏面3aとフック部5の抜止用凸部17との間の隙間11が広がり、そのため例えば鏡1を基板3に取り付けた状態で工場から現場に輸送する場合、その輸送時の振動によって鏡1に前後方向のガタツキが発生するという問題がある。そのため従来では、鏡1の厚さEや基板3の厚さFに合わせて、鏡押さえ6が基板3から外れないような形状で、且つ前後方向のガタツキを防止できる形状で、新規の鏡押さえ6を個別に製造しており、製造コストが高くつくという問題が生じている。   However, the thickness E of the mirror 1 and the thickness F (thickness) of the substrate 3 may vary depending on product specifications and the like. For example, when the thickness E of the mirror 1 is reduced from 5 mm to 3 mm, it is common. When the mirror retainer 6 is used, a gap 11 between the back surface 3a of the substrate 3 and the projection 17 for preventing the hook portion 5 is widened. For this reason, for example, the mirror 1 is transported from the factory to the site with the substrate 3 attached. In this case, there is a problem that the backlash in the front-rear direction occurs in the mirror 1 due to vibration during transportation. Therefore, in the past, a new mirror retainer having a shape that prevents the mirror retainer 6 from being detached from the substrate 3 in accordance with the thickness E of the mirror 1 and the thickness F of the substrate 3 and that can prevent backlash in the front-rear direction. 6 is manufactured individually, and the manufacturing cost is high.

さらに、輸送時の振動によって鏡押さえ6が抜けないようにするためには、基板3に対するフック部5の掛かり代12を大きくすればよいが、こうするとフック部5を基板3の貫通孔4に通しにくくなる。そのため鏡押さえ6の取り付け作業を容易にするためにはフック部5の掛かり代12をあまり大きくできず、結果、振動によって鏡押さえ6が貫通孔4から抜けて鏡1が落下してしまうおそれがあった。
特開平8−187195号公報
Furthermore, in order to prevent the mirror retainer 6 from coming off due to vibration during transportation, the hooking margin 12 of the hook portion 5 with respect to the substrate 3 may be increased. In this case, the hook portion 5 is inserted into the through hole 4 of the substrate 3. It becomes difficult to pass. Therefore, in order to facilitate the attachment work of the mirror retainer 6, the hook allowance 12 of the hook portion 5 cannot be made too large. As a result, the mirror retainer 6 may come out of the through hole 4 due to vibration and the mirror 1 may fall. there were.
JP-A-8-187195

本発明は上記の従来の問題点に鑑みて発明したものであって、輸送などの振動時に鏡のガタツキや落下を確実に防止できると共に鏡押さえの取り付け作業が容易となり、さらに鏡の厚さや基板の厚さが変わっても鏡押さえが共通使用可能となるミラーキャビネットの鏡取付構造を提供することにある。   The present invention has been invented in view of the above-described conventional problems, and can reliably prevent the rattling and dropping of the mirror during vibration during transportation and the like, and can facilitate the mounting operation of the mirror presser. The object is to provide a mirror mounting structure for a mirror cabinet that can be used in common even if the thickness of the mirror changes.

前記の課題を解決するために、本発明は、ミラーキャビネット本体の前面に配置される基板3に鏡1を鏡押え取付部材7により押さえて取付けるミラーキャビネットの鏡取付構造であって、上記鏡押え取付部材7は、鏡1の縁1aに係止する鏡係止部2と上記基板3に設けた貫通孔4を貫通して基板3の裏面3a側に係止する弾性変形可能なフック部5とが一体に設けられた鏡押さえ6と、上記基板3の裏面3a側から上記フック部5への差し込みによってフック部5を上記基板3の裏面3aから遠ざける位置に保持する差込リング8とで構成され、上記差込リング8を上記基板3の裏面3aに対向配置してなることを特徴としている。   In order to solve the above-mentioned problems, the present invention is a mirror mounting structure for a mirror cabinet in which the mirror 1 is attached to a substrate 3 disposed on the front surface of the mirror cabinet body by means of a mirror pressing mounting member 7. The mounting member 7 is an elastically deformable hook portion 5 that passes through the mirror locking portion 2 that is locked to the edge 1 a of the mirror 1 and the through hole 4 provided in the substrate 3 and is locked to the back surface 3 a side of the substrate 3. And an insertion ring 8 that holds the hook portion 5 at a position away from the back surface 3a of the substrate 3 by being inserted into the hook portion 5 from the back surface 3a side of the substrate 3. The insertion ring 8 is configured to face the back surface 3 a of the substrate 3.

このような構成とすることで、差込リング8によって鏡押さえ6の鏡係止部2が基板3側に引き寄せられるので、輸送時の振動がかかっても鏡1の前後方向のガタツキを極力防止できるようになる。しかも、差込リング8が基板3の裏面3aに対向配置されるので、差込リング8による鏡押さえ6の抜け防止が確実となり、これにより振動による鏡1の落下を防止できると共に、基板3に対するフック部5の掛かり代12を小さくできて鏡押さえ6の取り付け作業を容易に行なえるようになる。また、鏡1の厚さや基板3の厚さ(肉厚)が薄くなった場合でも、差込リング8による鏡1のガタツキ防止効果及び落下防止効果が得られるので、鏡押さえ6を共通部品として使用できるようになる。   By adopting such a configuration, the mirror locking portion 2 of the mirror retainer 6 is drawn toward the substrate 3 by the insertion ring 8, so that backlash in the front-rear direction of the mirror 1 is prevented as much as possible even when vibration is applied during transportation. become able to. Moreover, since the insertion ring 8 is disposed opposite to the back surface 3 a of the substrate 3, it is possible to prevent the mirror holder 6 from coming off by the insertion ring 8, thereby preventing the mirror 1 from dropping due to vibrations, and to the substrate 3. The hooking portion 12 of the hook portion 5 can be reduced, and the mirror holder 6 can be easily attached. Further, even when the thickness of the mirror 1 or the thickness (wall thickness) of the substrate 3 is reduced, the mirror ring 6 can be prevented from rattling and fall off by the insertion ring 8, so that the mirror holder 6 is used as a common part. Can be used.

また上記フック部5は、鏡押さえ6の軸部13の後端側から左右両側に突出した一対の弾性変形可能な腕部14と、各腕部14と軸部13との間にそれぞれ形成される左右の差し込み空間18とを備えており、上記差込リング8は、指で掴む掴み片15と上記左右の差し込み空間18にそれぞれ差し込まれる一対の差込片16とがバネ性を有する線材にて構成されており、上記一対の差込片16は、上記差し込み空間18への差込部位9が上記基板3の裏面3aに対向配置される基板対向部位10よりも内方に湾曲形成されているのが好ましく、この場合、差込片16の湾曲によって差し込み空間18から差込リング8の差込片16が抜け落ちることがなく、そのうえ差込リング8はバネ性を有するので、差し込み空間18に差し込んだ後も簡単に外れることがなく、鏡1の落下防止を確実に図ることができる。   The hook portion 5 is formed between a pair of elastically deformable arm portions 14 projecting from the rear end side of the shaft portion 13 of the mirror presser 6 to the left and right sides, and between each arm portion 14 and the shaft portion 13. Left and right insertion spaces 18, and the insertion ring 8 includes a gripping piece 15 to be gripped by a finger and a pair of insertion pieces 16 respectively inserted into the left and right insertion spaces 18. The pair of insertion pieces 16 are formed such that the insertion portion 9 into the insertion space 18 is curved inward from the substrate facing portion 10 disposed opposite to the back surface 3a of the substrate 3. In this case, the insertion piece 16 of the insertion ring 8 does not fall out of the insertion space 18 due to the bending of the insertion piece 16, and the insertion ring 8 has a spring property. Even after plugging Without simply disengaged, it is possible to reliably prevent dropping mirror 1.

また上記差込リング8の掴み片15を差込片16の差し込み方向に対して屈曲形成するのが好ましく、この場合、掴み片15を指で掴んで差込片16を差し込み空間18に差し込み易くなるので、差込リング8の取り付け時の作業性が一層良くなる。   Further, the grip piece 15 of the insertion ring 8 is preferably bent with respect to the insertion direction of the insertion piece 16. In this case, the insertion piece 16 can be easily inserted into the insertion space 18 by grasping the grip piece 15 with a finger. Therefore, the workability at the time of attaching the insertion ring 8 is further improved.

本発明は、鏡押さえとは別体の差込リングを用いて鏡押さえのフック部を基板の裏面から遠ざけるように保持することにより、輸送時の振動がかかっても鏡の前後方向のガタツキを極力防止できるものであり、また、差込リングの差し込み空間への差込部位以外の部位を基板の裏面に対向配置することにより、差込リングによる鏡押さえの抜け防止が確実となると共に鏡押さえの取り付け作業も容易となる。さらに鏡の厚さや基板の厚さが変わっても鏡押さえを共通使用できるので、従来のように鏡の厚さや基板の厚さに合わせて、鏡押さえを基板から外れないような形状で、且つ前後方向のガタツキを防止できる形状で、新規の鏡押さえを製造する必要がなくなり、鏡押さえのコスト削減を図ることができるものである。   The present invention uses an insertion ring separate from the mirror holder to hold the mirror holder hook part away from the back surface of the substrate, thereby preventing backlash in the front-rear direction of the mirror even when vibration is applied during transportation. It is possible to prevent as much as possible, and by placing the part other than the insertion part into the insertion space of the insertion ring opposite to the back side of the substrate, it is possible to prevent the insertion of the mirror holder from being prevented and to prevent the insertion of the mirror holder. It becomes easy to attach. Furthermore, even if the thickness of the mirror or the thickness of the substrate changes, the mirror holder can be used in common, so that the mirror holder and the thickness of the substrate are matched to the thickness of the mirror and the thickness of the substrate as in the past, With a shape that can prevent backlash in the front-rear direction, there is no need to manufacture a new mirror holder, and the cost of the mirror holder can be reduced.

以下、本発明を添付図面に示す実施形態に基いて説明する。   Hereinafter, the present invention will be described based on embodiments shown in the accompanying drawings.

本実施形態の鏡押え取付部材7は、洗面化粧台のミラーキャビネットにおける基板3に鏡1を押さえて取り付けるために用いられる。   The mirror press attachment member 7 of this embodiment is used for pressing and attaching the mirror 1 to the substrate 3 in the mirror cabinet of the vanity.

基板3は、図1(a)(b)に示すように、所定の厚さFを有する合成樹脂成形品からなる。基板3には後述の鏡押さえ6のフック部5が貫通する貫通孔4が形成されている。   The substrate 3 is made of a synthetic resin molded product having a predetermined thickness F as shown in FIGS. The substrate 3 is formed with a through hole 4 through which a hook portion 5 of a later-described mirror presser 6 passes.

鏡押え取付部材7は、鏡押さえ6と、差込リング8とで構成される。   The mirror retainer mounting member 7 includes a mirror retainer 6 and an insertion ring 8.

以下の例では、鏡1の下側の縁1aを押さえて取り付ける構造を説明する。   In the following example, a structure in which the lower edge 1a of the mirror 1 is pressed and attached will be described.

本例の鏡押さえ6は、図3(a)(b)に示すように、板ばね材をL字形に屈曲したものであり、屈曲部により鏡1の縁1aに係止する鏡係止部2が形成され、平板部分により錨形状をしたフック部5付き軸部13が形成される。   As shown in FIGS. 3 (a) and 3 (b), the mirror retainer 6 of this example is obtained by bending a leaf spring material into an L shape, and is a mirror locking portion that is locked to the edge 1a of the mirror 1 by the bent portion. 2 is formed, and a shaft portion 13 with a hook portion 5 having a hook shape is formed by a flat plate portion.

錨形状のフック部5は、軸部13の後端から左右両側に突出する左右一対の腕部14からなり、各腕部14は図3(c)の矢印で示す拡縮する方向に弾性変形可能となっている。ここでは、軸部13の後端側は細く形成され、左右の腕部14は、軸部13の後端と連なる基端部から先端部14b側に行く程軸部13から離れる方向に傾斜した傾斜部14aとなっており、各腕部14の先端部14bは軸部13と略平行に延びており、各腕部14の先端部14bと軸部13との間がそれぞれ差し込み空間18となっている。また、各腕部14の先端部14bと傾斜部14aとの境目の外面部分には、上記差し込み空間18よりも後方に位置する抜止用凸部17が突設されている。ここで、フック部5が基板3の貫通孔4に押し込まれたときは左右の腕部14が弾性収縮(図3(c)の状態)して抜止用凸部17間の外寸Cが基板3の貫通孔4の内寸A(図2)と同じかそれよりも小さくなって(C≦A)、フック部5が貫通孔4を通過可能となり、また通過後に腕部14が拡開(図3(a)の状態)することで、抜止用凸部17間の外寸Bが貫通孔4の内寸A(図2)よりも大きくなり(B>A)、貫通孔4から抜け出ない構造となる。   The hook-shaped hook portion 5 includes a pair of left and right arm portions 14 projecting from the rear end of the shaft portion 13 to the left and right sides, and each arm portion 14 can be elastically deformed in the expanding and contracting direction indicated by the arrows in FIG. It has become. Here, the rear end side of the shaft portion 13 is formed thin, and the left and right arm portions 14 are inclined in a direction away from the shaft portion 13 from the base end portion connected to the rear end of the shaft portion 13 toward the distal end portion 14b side. Each arm portion 14 has an inclined portion 14a, the tip portion 14b of each arm portion 14 extends substantially parallel to the shaft portion 13, and the space between the tip portion 14b of each arm portion 14 and the shaft portion 13 serves as an insertion space 18, respectively. ing. Further, a protruding protrusion 17 is provided on the outer surface portion of the boundary between the distal end portion 14b and the inclined portion 14a of each arm portion 14 and is located behind the insertion space 18. Here, when the hook portion 5 is pushed into the through hole 4 of the substrate 3, the left and right arm portions 14 are elastically contracted (in the state shown in FIG. 3C), and the outer dimension C between the retaining projections 17 is the substrate. 3 is equal to or smaller than the inner dimension A of the through hole 4 (FIG. 2) (C ≦ A), the hook part 5 can pass through the through hole 4, and the arm part 14 is expanded after passing ( 3 (a)), the outer dimension B between the retaining projections 17 becomes larger than the inner dimension A (FIG. 2) of the through hole 4 (B> A), and does not come out of the through hole 4. It becomes a structure.

一方、差込リング8は、鏡押さえ6のフック部5を基板3の裏面3aから遠ざけるように保持することで、鏡1のガタツキ防止機能と抜け防止機能とを併せ持つ。本例の差込リング8は、図4に示すように、バネ性を有する線材を略U字形に折り曲げて構成されており、その頭部が手で掴む掴み片15とされ、両脚部が上記フック部5の差し込み空間18に差し込まれる差込片16とされる。ここでは掴み片15は、差込片16の差し込み方向に対して略直角に屈曲形成されていて、指で掴み易くしてある。また左右の差込片16は、左右対称的に形成され、各差込片16の中間部がそれぞれ内方に湾曲した差込部位9となっており、差込部位9の上下両側はそれぞれ外方に突曲した基板対向部位10となっている。差込片16の差込部位9を上記フック部5の差し込み空間18に差し込んだ状態で、上下両側の基板対向部位10が基板3の裏面3aにそれぞれ対向した状態となり且つこの状態で差込片16はフック部5の抜止用凸部17よりも前方(基板3の裏面3a側)に寄った位置に配置されるようになっている。   On the other hand, the insertion ring 8 has both a backlash prevention function and a dropout prevention function of the mirror 1 by holding the hook portion 5 of the mirror retainer 6 away from the back surface 3 a of the substrate 3. As shown in FIG. 4, the insertion ring 8 of this example is formed by bending a wire material having a spring property into a substantially U shape, and its head portion is a grip piece 15 that is gripped by hand, and both leg portions are as described above. The insertion piece 16 is inserted into the insertion space 18 of the hook portion 5. Here, the gripping piece 15 is bent at a substantially right angle with respect to the insertion direction of the insertion piece 16 so that it can be easily gripped with a finger. Further, the left and right insertion pieces 16 are formed symmetrically, and an intermediate portion of each insertion piece 16 is an insertion portion 9 that is curved inward. It becomes the board | substrate opposing site | part 10 which curved to the direction. In a state where the insertion portion 9 of the insertion piece 16 is inserted into the insertion space 18 of the hook portion 5, the substrate facing portions 10 on both the upper and lower sides are opposed to the back surface 3 a of the substrate 3, and in this state, the insertion piece Reference numeral 16 is arranged at a position closer to the front side (the back surface 3a side of the substrate 3) than the protruding convex portion 17 of the hook portion 5.

次に、鏡1を基板3に取り付けるにあたっては、図1(a)(b)の矢印Dで示す前方から鏡押さえ6の鏡係止部2を鏡1の下側の縁1aに位置合わせしながら、鏡押さえ6のフック部5を鏡1の縁1aの下側から基板3の貫通孔4に押し込む。このとき、フック部5の左右の腕部14が弾性収縮(図3(c)の状態)して貫通孔4を通過し、その後、拡開(図1(a)の状態)することで腕部14の抜止用凸部17が貫通孔4よりも大径となって貫通孔4に対して抜け止め状態となる。なおこの抜け止め状態では、基板3の裏面3aと抜止用凸部17との前後方向の隙間11によって鏡1は前後方向のガタツキが発生しやすい状態にある。   Next, when the mirror 1 is attached to the substrate 3, the mirror locking portion 2 of the mirror holder 6 is aligned with the lower edge 1a of the mirror 1 from the front indicated by the arrow D in FIGS. While, the hook portion 5 of the mirror holder 6 is pushed into the through hole 4 of the substrate 3 from below the edge 1 a of the mirror 1. At this time, the left and right arm portions 14 of the hook portion 5 are elastically contracted (in the state shown in FIG. 3C) and pass through the through-hole 4 and then expanded (in the state shown in FIG. 1A). The protruding protrusion 17 of the portion 14 has a diameter larger than that of the through hole 4 and is in a state of preventing the through hole 4 from coming off. In this retaining state, the mirror 1 is likely to be loose in the front-rear direction due to the front-rear gap 11 between the back surface 3 a of the substrate 3 and the retaining projection 17.

その後、基板3の裏面3a側から差込リング8の左右の差込片16を指で内方に押し挟んで鏡押さえ6の軸部13を跨ぐようにして左右の差し込み空間18に上方から差し込む。このとき図2のように差込片16の差込部位9を差し込み空間18まで差し込むことによって、上下両側の外方に突曲した基板対向部位10がそれぞれ基板3の裏面3aに対向するようになり、これにより、鏡押さえ6が基板3の貫通孔4から抜け出ない状態となる。またこのとき差込片16は腕部14の傾斜部14a(図2)によって後方への移動が阻止され、これにより差込片16は差し込み空間18内の抜止用凸部17よりも前方(基板3の裏面3a側)に寄った位置で掛かり止めされるようになる(図1(a)(b)の状態)。   Thereafter, the right and left insertion pieces 16 of the insertion ring 8 are pressed inward with fingers from the back surface 3a side of the substrate 3 so as to straddle the shaft portion 13 of the mirror holder 6 and inserted into the left and right insertion spaces 18 from above. . At this time, by inserting the insertion portion 9 of the insertion piece 16 into the insertion space 18 as shown in FIG. 2, the substrate facing portions 10 that protrude outwardly on both the upper and lower sides respectively face the back surface 3 a of the substrate 3. As a result, the mirror retainer 6 does not come out of the through hole 4 of the substrate 3. Further, at this time, the insertion piece 16 is prevented from moving rearward by the inclined portion 14a (FIG. 2) of the arm portion 14, whereby the insertion piece 16 is forward of the retaining projection 17 in the insertion space 18 (substrate). 3 (on the back surface 3a side) 3 (the state shown in FIGS. 1A and 1B).

しかして、上記基板3の貫通孔4を貫通したフック部5側に設けた差し込み空間18に基板3の裏面3a側から差込リング8を差し込んで、フック部5を基板3の裏面3aから遠ざけるように保持することにより、基板3と差込リング8との間の前後方向の隙間11a(<隙間11)が狭まり、結果、差込リング8によって鏡押さえ6の鏡係止部2が基板3側に引き寄せられるので、輸送時の振動がかかっても鏡1の前後方向のガタツキを極力防止できるようになる。   Thus, the insertion ring 8 is inserted from the back surface 3 a side of the substrate 3 into the insertion space 18 provided on the hook portion 5 side that penetrates the through hole 4 of the substrate 3, and the hook portion 5 is moved away from the back surface 3 a of the substrate 3. By holding in this way, the front-rear direction gap 11 a (<gap 11) between the substrate 3 and the insertion ring 8 is narrowed, and as a result, the mirror locking portion 2 of the mirror holder 6 is made to move to the substrate 3 by the insertion ring 8. Since it is attracted to the side, it is possible to prevent backlash in the front-rear direction of the mirror 1 as much as possible even if vibration during transportation is applied.

また、差込リング8の基板対向部位10が基板3の裏面3aに対向配置されるので、差込リング8による鏡押さえ6の抜け防止が確実に行なわれ、これにより輸送時の振動による鏡1の落下を防止できると共に、基板3に対するフック部5の掛かり代12を小さくできるので鏡押さえ6の取り付け作業も容易となる。つまり、鏡押さえ6が抜けないようにフック部5の掛かり代12を大きくすると貫通孔4への通過が困難となり、鏡押さえ6の取り付け作業に支障をきたすため、フック部5の掛かり代12をあまり大きくできず、この場合、輸送の振動によってフック部5が貫通孔4から抜けやすくなり、鏡1が落下するという問題があるが、本発明では差込リング8を用いることでかかる問題はなく、鏡押さえ6の取り付けが容易にできると共に鏡1の落下防止を確実に図ることができるものである。   In addition, since the substrate facing portion 10 of the insertion ring 8 is disposed opposite to the back surface 3a of the substrate 3, the mirror holder 6 can be reliably prevented from coming off by the insertion ring 8, and thus the mirror 1 caused by vibration during transportation can be prevented. Can be prevented, and the hooking portion 12 of the hook portion 5 with respect to the substrate 3 can be reduced, so that the mirror holder 6 can be easily attached. That is, if the hooking allowance 12 of the hook part 5 is increased so that the mirror retainer 6 is not pulled out, it will be difficult to pass through the through hole 4 and hinder the attaching work of the mirror retainer 6. In this case, there is a problem that the hook portion 5 is easily pulled out of the through hole 4 due to vibration of transportation and the mirror 1 falls, but in the present invention, there is no such problem by using the insertion ring 8. The mirror holder 6 can be easily attached and the mirror 1 can be reliably prevented from falling.

また、鏡1の厚さEや基板3の厚さFが薄くなった場合でも、差込リング8による鏡1のガタツキ防止効果及び落下防止効果が得られるので、本発明の鏡押さえ6を共通部品として使用できるようになる。これにより従来のように鏡1の厚さや基板3の厚さに合わせて、鏡押さえ6を基板3から外れないような形状で、且つ前後方向のガタツキを防止できる形状で、新規の鏡押さえ6を製造する必要がなくなり、鏡押さえ6のコスト削減を図ることができる。   Further, even when the thickness E of the mirror 1 and the thickness F of the substrate 3 are reduced, the effect of preventing the backlash and dropping of the mirror 1 by the insertion ring 8 can be obtained. It can be used as a part. As a result, the new mirror retainer 6 is shaped so as to prevent the mirror retainer 6 from being detached from the substrate 3 in accordance with the thickness of the mirror 1 and the thickness of the substrate 3 as in the prior art, and to prevent backlash in the front-rear direction. It is not necessary to manufacture the mirror holder 6 and the cost of the mirror holder 6 can be reduced.

そのうえ、差込リング8は基板3の裏面3aに圧接するものではないので、基板3に対して無理な力がかからず、成形品である基板3を保護できる利点もある。   In addition, since the insertion ring 8 is not pressed against the back surface 3a of the substrate 3, an excessive force is not applied to the substrate 3, and there is an advantage that the substrate 3 as a molded product can be protected.

また本例では、差込片16の差込部位9が内方に湾曲しているので、差し込み空間18から差込片16が抜け落ちることがなく、さらに加えて差込リング8はバネ性を有するので、鏡押さえ6の差し込み空間18に差し込んだ後も簡単に外れることがなく、従って、輸送時の振動によって鏡1のガタツキが発生した場合でも、差込リング8が鏡押さえ6から簡単に外れることがなくなり、鏡1の落下防止をより確実に図ることができる利点がある。   Moreover, in this example, since the insertion site | part 9 of the insertion piece 16 is curving inward, the insertion piece 16 does not fall out from the insertion space 18, Furthermore, the insertion ring 8 has spring property. Therefore, it does not easily come off after being inserted into the insertion space 18 of the mirror holder 6, and therefore the insertion ring 8 can be easily detached from the mirror holder 6 even when the mirror 1 is rattled due to vibration during transportation. There is an advantage that the mirror 1 can be more reliably prevented from falling.

さらに本例では、差込リング8の掴み片15を差込片16の差し込み方向に対して略直角に屈曲させることで、掴み片15を指で掴んで差込片16を差し込み空間18に差し込み易くなり、差込リング8の取り付け時の作業性が一層良好となる。   Further, in this example, the gripping piece 15 of the insertion ring 8 is bent at a substantially right angle with respect to the insertion direction of the insertion piece 16, so that the gripping piece 15 is grasped with a finger and the insertion piece 16 is inserted into the insertion space 18. It becomes easy and workability | operativity at the time of attachment of the insertion ring 8 becomes still better.

前記実施形態では、鏡押え取付部材7を鏡1の下側の縁1aに取り付ける場合を説明したが、鏡1の上側の縁に取り付ける場合も同様に実施可能である。   In the above-described embodiment, the case where the mirror holding member 7 is attached to the lower edge 1a of the mirror 1 has been described, but the case where it is attached to the upper edge of the mirror 1 is also possible.

本発明の一実施形態の鏡押え取付部材を示し、(a)は鏡押え取付部材によって鏡を基板に押さえて取り付けた状態を示す平面断面図、(b)は側面断面図である。The mirror pressing attachment member of one Embodiment of this invention is shown, (a) is a plane sectional view which shows the state which pressed and attached the mirror to the board | substrate with the mirror pressing mounting member, (b) is side sectional drawing. 同上の基板の裏面側から見た差込リングの取り付け状態の説明図である。It is explanatory drawing of the attachment state of the insertion ring seen from the back surface side of the board | substrate same as the above. (a)は同上の鏡押さえの正面図、(b)は側面図、(c)はフック部が弾性収縮する方向を説明する図である。(A) is a front view of the same mirror holder, (b) is a side view, and (c) is a diagram for explaining the direction in which the hook portion is elastically contracted. (a)は同上の差込リングの正面図、(b)は側面図、(c)は斜視図である。(A) is a front view of an insertion ring same as the above, (b) is a side view, (c) is a perspective view. 従来例の説明図であり、(a)は平面断面図、(b)は側面断面図である。It is explanatory drawing of a prior art example, (a) is a plane sectional view, (b) is a side sectional view.

符号の説明Explanation of symbols

1 鏡
1a 縁
2 鏡係止部
3 基板
3a 裏面
4 貫通孔
5 フック部
6 鏡押さえ
7 鏡押え取付部材
8 差込リング
9 差込部位
10 基板対向部位
13 軸部
14 腕部
15 掴み片
16 差込片
18 差し込み空間
DESCRIPTION OF SYMBOLS 1 Mirror 1a Edge 2 Mirror latching | locking part 3 Board | substrate 3a Back surface 4 Through-hole 5 Hook part 6 Mirror retainer 7 Mirror retainer attachment member 8 Insertion ring 9 Insertion part 10 Substrate facing part 13 Shaft part 14 Arm part 15 Grasping piece 16 Difference Insert 18 Insertion space

Claims (3)

ミラーキャビネット本体の前面に配置される基板に鏡を鏡押え取付部材により押さえて取付けるミラーキャビネットの鏡取付構造であって、上記鏡押え取付部材は、鏡の縁に係止する鏡係止部と上記基板に設けた貫通孔を貫通して基板の裏面側に係止する弾性変形可能なフック部とが一体に設けられた鏡押さえと、上記基板の裏面側から上記フック部への差し込みによってフック部を上記基板の裏面から遠ざける位置に保持する差込リングとで構成され、上記差込リングを上記基板の裏面に対向配置してなることを特徴とするミラーキャビネットの鏡取付構造。   A mirror mounting structure for a mirror cabinet in which a mirror is pressed and mounted on a substrate disposed on the front surface of the mirror cabinet body by a mirror pressing mounting member, and the mirror pressing mounting member includes a mirror locking portion locked to an edge of the mirror, and A mirror holder integrally provided with an elastically deformable hook portion that passes through a through-hole provided in the substrate and is engaged with the back surface side of the substrate, and a hook by being inserted into the hook portion from the back surface side of the substrate A mirror mounting structure for a mirror cabinet, comprising: an insertion ring that holds the portion at a position away from the back surface of the substrate; and the insertion ring is disposed opposite to the back surface of the substrate. 上記フック部は、鏡押さえの軸部の後端側から左右両側に突出した一対の弾性変形可能な腕部と、各腕部と軸部との間に形成される左右の差し込み空間とを備えており、上記差込リングは、指で掴む掴み片と上記左右の差し込み空間にそれぞれ差し込まれる一対の差込片とがバネ性を有する線材にて構成されており、上記一対の差込片は、上記差し込み空間への差込部位が上記基板の裏面に対向配置される基板対向部位よりも内方に湾曲形成されていることを特徴とする請求項1記載のミラーキャビネットの鏡取付構造。   The hook portion includes a pair of elastically deformable arm portions projecting left and right from the rear end side of the shaft portion of the mirror presser, and left and right insertion spaces formed between the arm portions and the shaft portion. The insertion ring is composed of a wire having spring properties and a pair of insertion pieces respectively inserted into the left and right insertion spaces, and the pair of insertion pieces, 2. The mirror mounting structure for a mirror cabinet according to claim 1, wherein the insertion portion into the insertion space is curved inward from a substrate facing portion disposed opposite to the back surface of the substrate. 上記差込リングの掴み片を差込片の差し込み方向に対して屈曲形成したことを特徴とする請求項2記載のミラーキャビネットの鏡取付構造。   3. A mirror mounting structure for a mirror cabinet according to claim 2, wherein the grip piece of the insertion ring is bent with respect to the insertion direction of the insertion piece.
JP2008277392A 2008-10-28 2008-10-28 Mirror cabinet mirror mounting structure Expired - Fee Related JP5351491B2 (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2015073723A (en) * 2013-10-09 2015-04-20 株式会社ノーリツ Mirror cabinet
CN108308966A (en) * 2017-12-30 2018-07-24 浙江亚厦装饰股份有限公司 A kind of silver mirror mounting assembly and its installation method
CN113503591A (en) * 2021-07-13 2021-10-15 宁波康韩瑞电器有限公司 Partition plate structure, installation method of partition plate structure and air conditioner outdoor unit

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6134937U (en) * 1984-07-31 1986-03-04 松下電工株式会社 Mirror mounting structure of mirror cabinet
JPH0237386Y2 (en) * 1985-10-14 1990-10-09

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6134937U (en) * 1984-07-31 1986-03-04 松下電工株式会社 Mirror mounting structure of mirror cabinet
JPH0237386Y2 (en) * 1985-10-14 1990-10-09

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2015073723A (en) * 2013-10-09 2015-04-20 株式会社ノーリツ Mirror cabinet
CN108308966A (en) * 2017-12-30 2018-07-24 浙江亚厦装饰股份有限公司 A kind of silver mirror mounting assembly and its installation method
CN108308966B (en) * 2017-12-30 2023-08-08 浙江亚厦装饰股份有限公司 Silver mirror mounting assembly and mounting method thereof
CN113503591A (en) * 2021-07-13 2021-10-15 宁波康韩瑞电器有限公司 Partition plate structure, installation method of partition plate structure and air conditioner outdoor unit

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