JP4975578B2 - Packing for lighting equipment - Google Patents

Packing for lighting equipment Download PDF

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JP4975578B2
JP4975578B2 JP2007253963A JP2007253963A JP4975578B2 JP 4975578 B2 JP4975578 B2 JP 4975578B2 JP 2007253963 A JP2007253963 A JP 2007253963A JP 2007253963 A JP2007253963 A JP 2007253963A JP 4975578 B2 JP4975578 B2 JP 4975578B2
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ceiling
packing
lighting fixture
hot melt
moisture
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JP2009087629A (en
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卓弘 笹尾
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Inoac Corp
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Inoac Corp
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本発明は、照明器具用パッキンに関し、特には天井取付型の照明器具における天井側の面に接着されて前記照明器具と前記天井の間で圧縮される照明器具用パッキンに関する。   The present invention relates to a lighting fixture packing, and more particularly to a lighting fixture packing that is bonded to a ceiling-side surface of a ceiling-mounted lighting fixture and compressed between the lighting fixture and the ceiling.

天井取付型の照明器具は、天井の引っ掛けシーリングに照明器具の接続部を差し込み、その状態で照明器具を回転させて引っ掛けシーリングと照明器具の接続部を係合させることより、天井に取り付けられる。   The ceiling-mounted luminaire is attached to the ceiling by inserting a connection portion of the luminaire into the ceiling hook ceiling, and rotating the luminaire in this state to engage the hook ceiling and the luminaire connection portion.

前記天井取付型の照明器具には、天井に接触して取り付けられるタイプがある。前記天井に接触して取り付けられるタイプの天井取付型照明器具においては、天井に照明器具を取り付ける際に照明器具の天井側の面に位置する配線等が、照明器具の回転により天井と接触して破損するのを防止するため、あるいは取付後に照明器具ががたつくのを防ぐためなどの理由から、従来、図3に示すように照明器具60における天井側の面62にパッキン51を接着することが行われている。符号61は照明器具本体、63は照明器具カバ−である。   There is a type in which the ceiling-mounted lighting fixture is mounted in contact with the ceiling. In the ceiling-mounted lighting fixture of the type that is attached in contact with the ceiling, when the lighting fixture is attached to the ceiling, the wiring and the like located on the ceiling-side surface of the lighting fixture are in contact with the ceiling by the rotation of the lighting fixture. Conventionally, the packing 51 is adhered to the ceiling-side surface 62 of the luminaire 60 as shown in FIG. 3 in order to prevent breakage or to prevent the luminaire from rattling after installation. It has been broken. Reference numeral 61 denotes a lighting fixture body, and 63 denotes a lighting fixture cover.

前記パッキン51は、圧縮状態で使用した場合の永久歪み(へたり)が少ないなどの理由から、ポリウレタンフォームからなるものが多い。しかし、ポリウレタンフォームからなるパッキン51を天井取付型の照明器具に接着して長期間使用すると、パッキン51と接触する天井面に変色を生じる問題があった。   The packing 51 is often made of polyurethane foam for the reason that there is little permanent distortion (sagging) when used in a compressed state. However, when the packing 51 made of polyurethane foam is bonded to a ceiling-mounted lighting fixture and used for a long period of time, there is a problem that the ceiling surface in contact with the packing 51 is discolored.

前記天井面の変色は、照明器具の熱によるポリウレタンフォームの加熱によって、ポリウレタンフォームから汚染ガスが揮発し、その揮発した汚染ガスが天井面を構成する塩化ビニル樹脂のクロス等に触れることによって生じる。   The discoloration of the ceiling surface occurs when the polyurethane foam is heated by the heat of the luminaire, and the contaminated gas is volatilized from the polyurethane foam, and the volatilized contaminated gas touches the vinyl chloride resin cloth or the like constituting the ceiling surface.

従来、前記天井面の変色を防ぐため、ポリウレタンフォームの天井側の面に、アクリル系材質からなる柔軟部材を貼り合わせて、ポリウレタンフォームから揮発する汚染ガスが天井面に接触しないようにしたり(特許文献1)、分子内にNCOと反応する官能基を有するアミン系触媒をポリウレタンフォームの生成原料に用いて汚染ガスの揮発を防止したりする(特許文献2)ことが行われている。   Conventionally, in order to prevent discoloration of the ceiling surface, a flexible member made of an acrylic material is bonded to the surface of the polyurethane foam on the ceiling side so that the pollutant gas volatilized from the polyurethane foam does not contact the ceiling surface (patent) Document 1), an amine catalyst having a functional group that reacts with NCO in the molecule is used as a raw material for producing polyurethane foam to prevent volatilization of pollutant gases (Patent Document 2).

ところで、天井取付型の照明器具に接着されるパッキンは、天井に予め取り付けられている電気供給用治具(引っ掛けシーリング)に天井取付型照明器具の接続部(アタッチメント金具)を押さえ込んで照明器具を固定する際に、パッキンの反発弾性により照明器具を固定化すると共に、照明ランプの交換のために照明器具のカバーを回転させる際には、照明器具と天井面間に位置するパッキンの反発弾性による照明器具の保持性が必要とされる。   By the way, the packing to be bonded to the ceiling-mounted lighting fixture is used by pressing the connection portion (attachment fitting) of the ceiling-mounted lighting fixture into the electric supply jig (hanging ceiling) that is previously attached to the ceiling. When fixing, the lighting fixture is fixed by the rebound resilience of the packing, and when rotating the cover of the lighting fixture for replacing the lamp, the rebound resilience of the packing located between the lighting fixture and the ceiling surface is used. Retainability of the luminaire is required.

しかしながら、ポリウレタンフォームの天井側の面にアクリル系材質からなる柔軟部材を貼り合わせたパッキンにおいては、アクリル系材質からなる柔軟部材によって滑りがよくなり過ぎて、天井への固定時における保持性が劣るようになる。また、アクリル自体は塩化ビニル樹脂の可塑剤との相溶性が高いため、塩化ビニル樹脂中に含まれる可塑剤によってアクリル自体が汚染されて軟化し、場合によっては液状化して塩化ビニル樹脂製クロスを破損する危険性がある。また、貼り合わせにより工数が増加するため、パッキンの製造コストが上昇する問題もある。一方、分子内にNCOと反応する官能基を有するアミン系触媒をポリウレタンフォームの生成原料に用いたパッキンにおいては、反応性触媒の効果が充分ではなく、塩化ビニル樹脂製クロスの表面を変色させる問題が生じる場合もある。   However, in a packing in which a flexible member made of an acrylic material is bonded to the surface of the polyurethane foam on the ceiling side, the soft member made of an acrylic material causes slipping too much, and the retainability when fixed to the ceiling is poor. It becomes like this. In addition, the acrylic itself is highly compatible with the plasticizer of the vinyl chloride resin, so the acrylic itself is contaminated and softened by the plasticizer contained in the vinyl chloride resin. Risk of damage. Further, since the number of steps increases due to the bonding, there is a problem that the manufacturing cost of the packing rises. On the other hand, in the packing using an amine-based catalyst having a functional group that reacts with NCO in the molecule as a raw material for producing polyurethane foam, the effect of the reactive catalyst is not sufficient, and the surface of the vinyl chloride resin cloth is discolored. May occur.

特開2005−267882号公報JP 2005-267882 A 特開2002−293862号公報JP 2002-293862 A

本発明は前記の点に鑑みなされたものであって、天井面の変色を防止すると共に、照明器具を天井に取り付ける際に照明器具の回転を容易にし、かつ天井への保持性が良好な照明器具用パッキンの提供を目的とする。   The present invention has been made in view of the above points, and prevents the discoloration of the ceiling surface, facilitates the rotation of the lighting fixture when the lighting fixture is attached to the ceiling, and has good retention on the ceiling. The purpose is to provide packing for appliances.

請求項1の発明は、天井取付型の照明器具における天井側の面に接着されて前記天井取付型の照明器具と天井との間で圧縮される照明器具用パッキンにおいて、ポリウレタンフォームからなるパッキン本体の天井側の面に湿気硬化型ウレタン系ホットメルトが硬化してなる厚みが30〜100μmの表面皮膜を設けたことを特徴とする。 The invention of claim 1 is a packing for a lighting fixture which is bonded to a ceiling-side surface of a ceiling-mounted lighting fixture and is compressed between the ceiling-mounted lighting fixture and the ceiling, and a packing body made of polyurethane foam A surface film having a thickness of 30 to 100 μm formed by curing a moisture-curable urethane-based hot melt is provided on the surface of the ceiling.

請求項2の発明は、請求項1において、前記ポリウレタンフォームが密度15〜40kg/mの軟質ポリウレタンフォームからなることを特徴とする。 The invention of claim 2 is characterized in that, in claim 1 , the polyurethane foam is made of a flexible polyurethane foam having a density of 15 to 40 kg / m 3 .

本発明によれば、湿気硬化型ウレタン系ホットメルトが硬化した表面皮膜により、パッキン本体のポリウレタンフォームから揮発する汚染ガスが天井面と接触して天井面を変色させるのを防ぐことができる。また、湿気硬化型ウレタン系ホットメルトは、通常の熱可塑性ホットメルトと異なり、天井面のクロスを構成する塩化ビニル樹脂等に含まれている可塑剤との親和性が低いため、天井面が塩化ビニル樹脂等のクロスで構成されている場合に、天井面の塩化ビニル樹脂等に含まれている可塑剤が染み出す等によりパッキンの表面皮膜に移行するのを防止でき、天井面から表面皮膜に移行した可塑剤によって天井面を変色させるおそれがない。さらに、本発明のパッキンは、天井に照明器具を取り付ける際に反発弾性を有し、また、照明器具のカバーを回転させる際に照明器具の天井への保持性を、湿気硬化型ウレタン系ホットメルトが硬化した表面皮膜により発揮することができる。   ADVANTAGE OF THE INVENTION According to this invention, it can prevent that the pollutant gas which volatilizes from the polyurethane foam of a packing main body contacts a ceiling surface, and discolors a ceiling surface by the surface film | membrane which the moisture hardening type urethane type hot melt hardened | cured. In addition, unlike ordinary thermoplastic hot melts, moisture-curing urethane hot melts have a low affinity for plasticizers contained in vinyl chloride resins that make up the cloth on the ceiling surface, so the ceiling surface is chlorinated. When the cloth is made of vinyl resin or other cloth, it can prevent the plasticizer contained in the vinyl chloride resin on the ceiling surface from seeping out and so on, so that it can be transferred from the ceiling surface to the surface film. There is no risk of discoloring the ceiling surface due to the transferred plasticizer. Furthermore, the packing according to the present invention has a resilience when attaching the lighting fixture to the ceiling, and the retention of the lighting fixture on the ceiling when the cover of the lighting fixture is rotated. Can be exhibited by a hardened surface film.

また、湿気硬化型ウレタン系ホットメルトは、通常の熱可塑性ホットメルトと異なり、空気中の湿気により反応硬化し、反応が不可逆であると共に反応硬化後の耐熱性が良好である。そのため、照明器具の熱によって、表面皮膜を構成する湿気硬化型ウレタン系ホットメルトが変形・変質することがなく、表面皮膜がパッキン本体から剥がれたりすることがない。それに対して、ポリアミド系やEVA等のオレフィン系等の熱可塑性ホットメルトでパッキンの表面皮膜を構成した場合には、照明器具の熱によって表面皮膜が変形・変質してパッキン本体から剥がれるおそれがある。さらに、塩化ビニル樹脂等のクロスに含まれる可塑剤が熱可塑性ホットメルト皮膜に移行することによって軟化・液化して、逆に塩化ビニル樹脂等のクロスを汚損するおそれもある。   Further, unlike ordinary thermoplastic hot melts, the moisture curable urethane hot melt is reactively cured by moisture in the air, the reaction is irreversible, and the heat resistance after reaction curing is good. Therefore, the moisture curable urethane hot melt constituting the surface film is not deformed or altered by the heat of the lighting fixture, and the surface film is not peeled off from the packing body. On the other hand, when the surface film of the packing is composed of a thermoplastic hot melt such as an olefin such as polyamide or EVA, the surface film may be deformed or deteriorated by the heat of the lighting fixture and peeled off from the packing body. . Furthermore, the plasticizer contained in the cloth such as vinyl chloride resin may be softened and liquefied by shifting to the thermoplastic hot melt film, and conversely, the cloth such as vinyl chloride resin may be soiled.

以下本発明の実施形態を詳細に説明する。図1は本発明の一実施例に係る照明器具用パッキンの断面図である。図示の照明器具用パッキン10は、図3に示したような天井取付型の照明器具60における天井側の面62に接着されて、前記天井取付型の照明器具60と天井との間で圧縮されるものであり、パッキン本体11とパッキン本体11の天井側の面に設けた表面皮膜21とよりなる。   Hereinafter, embodiments of the present invention will be described in detail. FIG. 1 is a cross-sectional view of a lighting fixture packing according to an embodiment of the present invention. The illustrated lighting fixture packing 10 is bonded to a ceiling-side surface 62 of a ceiling-mounted lighting fixture 60 as shown in FIG. 3 and compressed between the ceiling-mounted lighting fixture 60 and the ceiling. It consists of a packing body 11 and a surface coating 21 provided on the ceiling-side surface of the packing body 11.

前記パッキン本体11は、ポリウレタンフォームからなる。前記パッキン本体11を構成するポリウレタンフォームは、照明器具を天井に取り付けた際に、がたつきなく照明器具を天井に固定できるようにするため、密度15〜40kg/mのものが好ましい。また、前記パッキン本体11を構成するポリウレタンフォームは、エーテル系とエステル系のどちらでもよいが、湿熱劣化を生じ難いエーテル系が好ましい。前記パッキン本体11の断面形状は、特に限定されるものではないが、通常、正方形あるいは長方形とされる。前記パッキン本体11の寸法は、前記パッキン10が取り付けられる照明器具の大きさや、照明器具と天井との間隔等に応じて最適な値が決定される。なお、前記パッキン本体11の高さ(厚み)については、照明器具を天井に取り付けた際にパッキン本体11が圧縮される値に設定される。 The packing body 11 is made of polyurethane foam. The polyurethane foam constituting the packing body 11 preferably has a density of 15 to 40 kg / m 3 so that the lighting apparatus can be fixed to the ceiling without rattling when the lighting apparatus is attached to the ceiling. The polyurethane foam constituting the packing body 11 may be either an ether type or an ester type, but is preferably an ether type that hardly causes wet heat deterioration. The cross-sectional shape of the packing body 11 is not particularly limited, but is usually a square or a rectangle. The dimension of the packing body 11 is determined to be an optimum value according to the size of the lighting fixture to which the packing 10 is attached, the distance between the lighting fixture and the ceiling, and the like. In addition, about the height (thickness) of the said packing main body 11, when a lighting fixture is attached to a ceiling, the packing main body 11 is set to the value compressed.

前記表面皮膜21は、湿気硬化型ウレタン系ホットメルトが硬化した膜で構成される。前記湿気硬化型ウレタン系ホットメルトは、空気中の湿気により反応硬化するものであり、末端にイソシアネート基を有するウレタンプレポリマーを主成分とするものが好ましい。前記湿気硬化型ウレタン系ホットメルトが硬化してなる表面皮膜21の厚みは、20〜100μmが好ましい。前記表面皮膜21が20μmよりも薄いと、ポリウレタンフォームから揮発する汚染ガスの遮蔽性に劣るようになる。また、照明器具を天井に取り付ける際に前記パッキン10の表面皮膜21を天井面に押し付けて行う取付作業時のパッキンの圧縮・反発および照明ランプ交換の際の照明カバーの回転により、前記表面皮膜21が破れたりするおそれがある。一方、前記表面皮膜21が100μmよりも厚いと、照明器具を天井に固定するための保持性が損なわれるおそれがある。さらには、皮膜が硬くなりすぎて柔軟性が損なわれたり、原料コストが嵩むようになる。   The surface film 21 is composed of a film obtained by curing a moisture curable urethane hot melt. The moisture-curable urethane hot melt is one that is reactively cured by moisture in the air, and preferably has a urethane prepolymer having an isocyanate group at the terminal as a main component. The thickness of the surface film 21 formed by curing the moisture curable urethane hot melt is preferably 20 to 100 μm. When the surface film 21 is thinner than 20 μm, the shielding property of the polluting gas volatilized from the polyurethane foam is deteriorated. Further, when the lighting fixture is attached to the ceiling, the surface coating 21 is caused by compression / repulsion of the packing during the mounting operation performed by pressing the surface coating 21 of the packing 10 against the ceiling surface and rotation of the lighting cover when the lighting lamp is replaced. May be torn. On the other hand, if the surface film 21 is thicker than 100 μm, the retainability for fixing the lighting fixture to the ceiling may be impaired. Furthermore, the film becomes too hard and the flexibility is impaired, and the raw material cost increases.

なお、前記照明器具用パッキン10は、前記表面皮膜21とは反対側の面が粘着剤等により、天井取付型の照明器具における天井側の面に接着される。   Note that the surface of the lighting fixture packing 10 opposite to the surface coating 21 is bonded to a ceiling side surface of a ceiling-mounted lighting fixture with an adhesive or the like.

次に、前記照明器具用パッキン10の製造方法の一例を示す。図2は前記パッキン10を製造するための製造装置30を簡略に示す図である。   Next, an example of the manufacturing method of the said lighting fixture packing 10 is shown. FIG. 2 is a diagram schematically showing a manufacturing apparatus 30 for manufacturing the packing 10.

前記製造装置30を用いるパッキンの製造方法においては、ニップロール31,31へ離型紙41を供給すると共にニップロール31,31の手前の位置で前記離型紙41の表面に公知のダイコーター方式により湿気硬化型ウレタン系ホットメルト21Aを所定厚みで塗布する。前記離型紙41としてはPPコーティングされた紙、PEコート紙等の材質を挙げることができる。前記ダイコーター方式では、アプリケーター35からダイコーターヘッド32に湿気硬化型ウレタン系ホットメルト21Aを供給し、湿気硬化型ウレタン系ホットメルト21Aをダイコーターヘッド32で加圧して離型紙41に塗布する。ダイコーター方式は、ロールコーター方式、マルチロール方式と異なり、前記離型紙41に塗布した湿気硬化型ウレタン系ホットメルト21Aに波打ちを生じ難いため、好ましい方法である。もし、塗布された湿気硬化型ウレタン系ホットメルト21Aに波打ちを生じると、湿気硬化型ウレタン系ホットメルト21Aがパッキン10の表面皮膜21となった場合に、表面皮膜21に塗膜の厚みのバラツキが発生して移染防止効果のバラツキや照明器具を天井に固定するための保持力がバラツクおそれがある。前記湿気硬化型ウレタン系ホットメルト21Aの塗布厚みは、前記表面皮膜21の厚みと等しくされる。前記塗布厚みの調整は、ダイコーターヘッド32からの湿気硬化型ウレタン系ホットメルト21Aの吐出量をギアポンプの回転数やギアポンプの容量で制御することにより行う。符号37はバックアップロール、39はコンベアベルトである。   In the packing manufacturing method using the manufacturing apparatus 30, the release paper 41 is supplied to the nip rolls 31, 31 and the surface of the release paper 41 is placed on the surface of the release paper 41 at a position before the nip rolls 31, 31 by a known die coater method. Urethane hot melt 21A is applied with a predetermined thickness. Examples of the release paper 41 include materials such as PP-coated paper and PE-coated paper. In the die coater method, the moisture curable urethane hot melt 21A is supplied from the applicator 35 to the die coater head 32, and the moisture curable urethane hot melt 21A is pressurized by the die coater head 32 and applied to the release paper 41. The die coater method is a preferable method because unlike the roll coater method and the multi-roll method, the moisture curing urethane hot melt 21 </ b> A applied to the release paper 41 is less likely to be waved. If the applied moisture-curing urethane hot melt 21A is wavy, when the moisture-curing urethane hot melt 21A becomes the surface film 21 of the packing 10, the surface film 21 has a coating thickness variation. May occur, and there may be variations in the anti-transfer effect and the holding force for fixing the lighting fixture to the ceiling. The coating thickness of the moisture curable urethane hot melt 21 </ b> A is made equal to the thickness of the surface film 21. The application thickness is adjusted by controlling the discharge amount of the moisture curable urethane hot melt 21A from the die coater head 32 by the rotational speed of the gear pump and the capacity of the gear pump. Reference numeral 37 is a backup roll, and 39 is a conveyor belt.

また、ポリウレタンフォームからなるパッキン本体11を前記ニップロール31,31に供給する。前記ニップロール31,31では前記離型紙41の湿気硬化型ウレタン系ホットメルト21Aの表面に前記パッキン本体11を押し付けて、前記離型紙41上に湿気硬化型ウレタン系ホットメルト21Aとパッキン本体11を積層する。前記ニップロール31,31の間隔は、前記パッキン本体11を湿気硬化型ウレタン系ホットメルト21Aにニップロール31、31で押し付けることができるようにするため、目的とするパッキンの厚みと離型紙41の厚みの合計よりも小、例えば1〜5mm程度小さくするが好ましい。前記離型紙41上に湿気硬化型ウレタン系ホットメルト21Aとパッキン本体11が積層された状態で離型紙41を所定時間前方へ移送し、その間に前記湿気硬化型ウレタン系ホットメルト21Aを空気中の湿気で硬化させ、前記湿気硬化型ウレタン系ホットメルト21Aが硬化した前記表面皮膜21を前記パッキン本体11の離型紙側表面に形成する。これにより、前記照明器具用パッキン10が前記離型紙41上に積層された積層体10Aを得る。このようにして得られた前記積層体10Aから、前記離型紙41を剥がすことにより前記照明器具用パッキン10が得られる。なお、前記照明器具用パッキン10は、前記離型紙41が付着した状態であるいは離型紙41を剥がした後に所定寸法に裁断される。   A packing body 11 made of polyurethane foam is supplied to the nip rolls 31 and 31. In the nip rolls 31, the packing body 11 is pressed against the surface of the moisture curable urethane hot melt 21 A of the release paper 41, and the moisture curable urethane hot melt 21 A and the packing body 11 are laminated on the release paper 41. To do. The gap between the nip rolls 31 and 31 is such that the packing body 11 can be pressed against the moisture-curing urethane hot melt 21A with the nip rolls 31 and 31, so that the thickness of the target packing and the thickness of the release paper 41 can be reduced. The total is preferably smaller than the total, for example, about 1 to 5 mm. In a state where the moisture-curable urethane hot melt 21A and the packing body 11 are laminated on the release paper 41, the release paper 41 is transferred forward for a predetermined time, and the moisture-curable urethane hot melt 21A is in the air in the meantime. The surface film 21 cured by moisture and cured by the moisture curable urethane hot melt 21A is formed on the release paper side surface of the packing body 11. Thereby, the laminate 10 </ b> A in which the lighting fixture packing 10 is laminated on the release paper 41 is obtained. The lighting device packing 10 is obtained by peeling the release paper 41 from the laminate 10A thus obtained. The lighting device packing 10 is cut into a predetermined size in a state where the release paper 41 is attached or after the release paper 41 is peeled off.

図2に示した製造装置30を用い、前記コンベアベルト39により、速度10m/minで離型紙(材質PPコート紙、厚み100μm)41を前方へ搬送し、前記ニップロール31,31の手前で、ジフェニルメタンジイソシアネートMDIタイプからなる湿気硬化型ウレタン系ホットメルト21Aを、120℃でダイコーターヘッド32から厚み40μmとなるように離型紙41表面に吐出した。また、前記ニップロール31,31へ、厚み20mmの軟質ポリウレタンフォーム(密度:39kg/m、エーテル系、品名:ESH−2、株式会社イノアックコーポレーション製)からなるパッキン本体11を供給して、前記ニップロール31,31により前記湿気硬化型ウレタン系ホットメルト21A上にパッキン本体11を積層した。前記ニップロール31,31間の間隔は、18mmである。前記離型紙41上に湿気硬化型ウレタン系ホットメルト21Aとパッキン本体11を積層した状態で前記離型紙41をニップロール31,31の位置からさらに前方へ搬送し、その搬送中に空気中の湿気で前記湿気硬化型ウレタン系ホットメルト21Aを反応硬化させて前記表面皮膜21とし、照明器具用パッキン10が離型紙41上に積層された積層体10Aを形成し、前記ニップロール31,31から15m前方の位置で記積層体10Aを巻き取った。 Using the manufacturing apparatus 30 shown in FIG. 2, a release paper (material PP coated paper, thickness 100 μm) 41 is conveyed forward by the conveyor belt 39 at a speed of 10 m / min, and before the nip rolls 31, 31, diphenylmethane A moisture curable urethane hot melt 21A made of diisocyanate MDI type was discharged from the die coater head 32 onto the surface of the release paper 41 at 120 ° C. to a thickness of 40 μm. Further, a packing body 11 made of a flexible polyurethane foam having a thickness of 20 mm (density: 39 kg / m 3 , ether type, product name: ESH-2, manufactured by Inoac Corporation) is supplied to the nip rolls 31, 31, and the nip roll 31 and 31, the packing body 11 was laminated on the moisture-curable urethane hot melt 21A. The distance between the nip rolls 31 is 31 mm. The release paper 41 is conveyed further forward from the position of the nip rolls 31 and 31 in a state where the moisture-curable urethane hot melt 21A and the packing body 11 are laminated on the release paper 41, and the moisture in the air is conveyed during the conveyance. The moisture curable urethane hot melt 21A is reaction-cured to form the surface film 21 to form a laminate 10A in which the lighting fixture packing 10 is laminated on the release paper 41, and 15 m ahead of the nip rolls 31 and 31. The laminated body 10A was wound up at the position.

このようにして得られた積層体10Aを、35℃、85%RHで72時間放置して前記湿気硬化型ウレタン系ホットメルトの反応硬化を完全にした後、幅25mm、長さ120mmに裁断し、その後に前記離型紙41を剥がして前記照明器具用パッキン10の実施例を得た。   The laminated body 10A thus obtained was allowed to stand at 35 ° C. and 85% RH for 72 hours to complete the reaction curing of the moisture-curable urethane hot melt, and then cut into a width of 25 mm and a length of 120 mm. Then, the release paper 41 was peeled off to obtain an example of the packing 10 for lighting equipment.

このようにして得られた実施例の照明器具用パッキン10において前記表面皮膜21とは反対側の面に粘着剤(材質アクリル溶剤系)を塗布し、図3に示すような天井取付型照明器具における天井側の面62に4箇所、前記実施例の照明器具用パッキン10を前記粘着剤で接着した。まず、塩化ビニル樹脂のクロスからなる天井面に設けられている引っ掛けシーリングに天井取付型照明器具の接続部を挿入し、取り付ける。次に、前記天井取付型照明器具を天井面に押し付けて前記照明器具用パッキン10の表面皮膜21を天井面に当接させると共に前記パッキン本体11を圧縮し、その状態で前記照明器具を押圧して接続部を介して引っ掛けシーリングに固定した。その際、前記照明器具の取付作業は、スムーズに行うことができた。なお、天井に取り付けられた照明器具は、照明器具用パッキン10が取り付けられた天井側の面と天井面間の間隔が10mmであり、前記照明器具は照明器具用パッキン10が圧縮された状態で天井面に固定され、がたつきのない良好な固定状態であった。   In the lighting fixture packing 10 of the embodiment obtained in this way, an adhesive (material acrylic solvent) is applied to the surface opposite to the surface coating 21, and the ceiling-mounted lighting fixture as shown in FIG. 4 were bonded to the ceiling-side surface 62 with the pressure-sensitive adhesive. First, a connecting portion of a ceiling-mounted lighting fixture is inserted and attached to a hook ceiling provided on a ceiling surface made of a polyvinyl chloride resin cloth. Next, the ceiling-mounted lighting fixture is pressed against the ceiling surface to bring the surface coating 21 of the lighting fixture packing 10 into contact with the ceiling surface, and the packing body 11 is compressed, and the lighting fixture is pressed in this state. And hooked through the connection and fixed to the ceiling. At that time, the attaching operation of the lighting fixture could be performed smoothly. In addition, the lighting fixture attached to the ceiling has a space between the ceiling side surface to which the lighting fixture packing 10 is attached and the ceiling surface is 10 mm, and the lighting fixture is in a state where the lighting fixture packing 10 is compressed. It was fixed to the ceiling surface and was in a good fixed state without rattling.

また、本実施例の照明器具用パッキン10における天井面に対する変色を調べるため、以下の試験を行った。試験方法は、耐湿熱老化性移染評価:50×50mmの試験片(厚み:20mm)の皮膜加工面を塩化ビニル樹脂製クロス生地に密着させて、試験片を50%圧縮し、80℃・90%RHで1ヶ月放置し、変色性を評価する。比較のため、前記表面皮膜を設けていないポリウレタンフォームのみからなる比較例1の照明器具用パッキンと、前記湿気硬化型ウレタン系ホットメルトの表面皮膜に代えて熱可塑性ホットメルト(ポリオレフィンEVA系、品名:ハイボン9880L、日立化成ポリマー(株)製)からなる表面皮膜(厚み40μm)を設けた比較例2の照明器具用パッキンをそれぞれ作成し、実施例と同様にして比較例1および比較例2の天井面に対する変色を調べた。その結果、実施例では天井面に変色が見られなかったのに対し、比較例1及び比較例2では天井面に変色が見られた。このことから、本発明の照明器具用パッキンは、天井面の変色を防止する効果があるのがわかる。   Moreover, in order to investigate the discoloration with respect to the ceiling surface in the packing 10 for lighting fixtures of a present Example, the following tests were done. Test method: Moisture and heat aging resistance transfer evaluation: 50 × 50 mm test piece (thickness: 20 mm) with the coated surface in close contact with a cloth cloth made of vinyl chloride resin, compress the test piece by 50%, Leave at 90% RH for 1 month to evaluate discoloration. For comparison, instead of the packing for lighting equipment of Comparative Example 1 consisting only of polyurethane foam without the surface coating, and the surface coating of the moisture curable urethane hot melt, a thermoplastic hot melt (polyolefin EVA type, product name) : Packing for lighting equipment of Comparative Example 2 provided with a surface coating (thickness 40 μm) made of Hybon 9880L, manufactured by Hitachi Chemical Polymer Co., Ltd. The discoloration on the ceiling surface was examined. As a result, no discoloration was observed on the ceiling surface in the examples, whereas discoloration was observed on the ceiling surface in Comparative Examples 1 and 2. From this, it turns out that the packing for lighting fixtures of this invention has the effect which prevents discoloration of a ceiling surface.

本発明の一実施例に係る照明器具用パッキンの斜視図である。It is a perspective view of packing for lighting fixtures concerning one example of the present invention. 本発明の照明器具用パッキンを製造する装置の例を示す図である。It is a figure which shows the example of the apparatus which manufactures the packing for lighting fixtures of this invention. 照明器具用パッキンを取り付けた状態の照明器具の斜視図である。It is a perspective view of the lighting fixture of the state which attached the packing for lighting fixtures.

符号の説明Explanation of symbols

10 照明器具用パッキン
11 パッキン本体
21 表面皮膜
10 Packing for lighting equipment 11 Packing body 21 Surface coating

Claims (2)

天井取付型の照明器具における天井側の面に接着されて前記天井取付型の照明器具と天井との間で圧縮される照明器具用パッキンにおいて、
ポリウレタンフォームからなるパッキン本体の天井側の面に湿気硬化型ウレタン系ホットメルトが硬化してなる厚みが30〜100μmの表面皮膜を設けたことを特徴とする照明器具用パッキン。
In the packing for lighting fixtures, which is bonded between the ceiling-side lighting fixture and the ceiling and bonded to the ceiling-side surface of the ceiling-mounting lighting fixture,
A packing for lighting equipment, wherein a surface film having a thickness of 30 to 100 μm formed by curing a moisture-curable urethane-based hot melt is provided on a ceiling-side surface of a packing body made of polyurethane foam.
前記ポリウレタンフォームが密度15〜40kg/m の軟質ポリウレタンフォームからなることを特徴とする請求項1に記載の照明器具用パッキン。 The packing for lighting equipment according to claim 1, wherein the polyurethane foam is made of a flexible polyurethane foam having a density of 15 to 40 kg / m 3 .
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