JP2000008509A - Insulation method - Google Patents
Insulation methodInfo
- Publication number
- JP2000008509A JP2000008509A JP10195061A JP19506198A JP2000008509A JP 2000008509 A JP2000008509 A JP 2000008509A JP 10195061 A JP10195061 A JP 10195061A JP 19506198 A JP19506198 A JP 19506198A JP 2000008509 A JP2000008509 A JP 2000008509A
- Authority
- JP
- Japan
- Prior art keywords
- heat insulating
- insulating material
- molded body
- manufacturing
- inorganic fiber
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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Abstract
(57)【要約】
【課題】 スペーサーを有する断熱材をスペーサー部材
を別個に用意する必要もなく、また長尺物であっても連
続製造できる断熱材の製造方法を提供することを目的と
する。
【解決手段】 成形体10の端部を連続的に裁断し、こ
の端部切断片11を前記成形体10の上面にスペーサー
として積層してスペーサー一体型成形体に形成する断熱
材の製造方法。
(57) [Problem] To provide a method of manufacturing a heat insulating material that does not require a separate spacer member for a heat insulating material having a spacer and that can be manufactured continuously even if it is a long object. . SOLUTION: A method of manufacturing a heat insulating material in which an end of a molded body 10 is continuously cut, and the cut end pieces 11 are laminated as spacers on the upper surface of the molded body 10 to form a spacer-integrated molded body.
Description
【0001】[0001]
【発明の属する技術分野】本発明は、グラスウール等か
ら構成される無機質繊維断熱材、或いは、発泡体等から
構成される有機質断熱材等の断熱材の製造方法に関し、
特に、成形体にスペーサーを一体に形成し、スペーサー
側に背面通気層を備えるようにした、例えば建築物の壁
内に通気層を設けた壁内の断熱材として用いるのに好適
な断熱材の製造方法に関する。BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a method of manufacturing a heat insulating material such as an inorganic fiber heat insulating material made of glass wool or the like, or an organic heat insulating material made of a foam or the like.
In particular, a spacer is integrally formed on the molded body, and a rear ventilation layer is provided on the spacer side. For example, a heat insulating material suitable for use as a heat insulating material in a wall provided with a ventilation layer in a wall of a building. It relates to a manufacturing method.
【0002】[0002]
【従来の技術】従来、この種のスペーサーを備えた断熱
材は、例えば、特開平8−120801号公報の図6に
開示される通り、高密度グラスウールの表面に所定の間
隔をおいて、V溝を形成し、表面に凸凹の波形成をされ
たものとし、平板形状の普通密度のグラスウールと積層
するようにしていた。或いは、同公報の図13に開示さ
れる通り、発泡材に溝を形成し、この発泡材をグラスウ
ールと積層し、発泡材に形成された溝で通気層を形成す
るようにしていた。2. Description of the Related Art Conventionally, as shown in FIG. 6 of Japanese Patent Application Laid-Open No. 8-120801, a heat insulating material provided with such a spacer has a structure in which a predetermined interval is formed on the surface of high-density glass wool. Grooves were formed on the surface, and irregular waves were formed on the surface, and laminated with a flat plate-shaped normal density glass wool. Alternatively, as disclosed in FIG. 13 of the publication, a groove is formed in a foam material, this foam material is laminated with glass wool, and a ventilation layer is formed by the groove formed in the foam material.
【0003】[0003]
【発明が解決しようとする課題】しかしながら、前記従
来の断熱材の製造方法の場合、スペーサー部材を別個に
用意する必要があり、連続製造が難しく、特に長尺物の
連続製造が行えないという不都合を有してした。そこ
で、本発明はスペーサーを有する断熱材をスペーサー部
材を別個に用意する必要もなく、また長尺物であっても
連続製造できる断熱材の製造方法を提供することを目的
とする。However, in the conventional method of manufacturing a heat insulating material, it is necessary to separately prepare a spacer member, which makes continuous manufacturing difficult, and in particular, makes it impossible to continuously manufacture long objects. Had. Therefore, an object of the present invention is to provide a method of manufacturing a heat insulating material that does not require a separate spacer member for a heat insulating material having a spacer, and that can be manufactured continuously even if it is a long object.
【0004】[0004]
【課題を解決するための手段】本発明の断熱材の製造方
法は、前記課題を解決するべく、成形体の端部を連続的
に裁断し、この端部切断片を前記成形体の上面にスペー
サーとして積層してスペーサー一体型成形体に形成する
ことを特徴とする断熱材の製造方法である。また、請求
項2記載の断熱材の製造方法は、請求項1記載の断熱材
の製造方法において、前記成形体から裁断された端部切
断片を90度反転させて前記成形体の上面にスペーサー
として積層させることを特徴とする。また、請求項3記
載の断熱材の製造方法は、請求項1または2記載の断熱
材の製造方法において、前記成形体の切断及び積層を複
数回行うことを特徴とする。また、請求項4記載の断熱
材の製造方法は、請求項1乃至3の何れかに記載の断熱
材の製造方法において、前記成形体に対して前記端部切
断片を接着剤を介して固着させることを特徴とする。ま
た、請求項5記載の断熱材の製造方法は、請求項1乃至
4の何れかに記載の断熱材の製造方法において、前記成
形体が無機質繊維成形体であることを特徴とする。ま
た、請求項6記載の断熱材の製造方法は、請求項5記載
の断熱材の製造方法において、前記端部切断片を積層し
た状態の無機質繊維成形体の表裏両面に熱可塑性樹脂シ
ートを配置し、これら熱可塑性樹脂シートの周縁部を熱
融着して前記無機質繊維成形体を被覆するようにしたこ
とを特徴とする。In order to solve the above-mentioned problems, the method for manufacturing a heat insulating material according to the present invention continuously cuts an end portion of a formed body and cuts the cut end portion on the upper surface of the formed body. A method for manufacturing a heat insulating material, comprising laminating as a spacer to form a spacer-integrated molded body. According to a second aspect of the present invention, there is provided a method for manufacturing a heat insulating material according to the first aspect, wherein the end cut piece cut from the molded body is turned by 90 degrees to form a spacer on the upper surface of the molded body. It is characterized by being laminated as. According to a third aspect of the present invention, there is provided a method for manufacturing a heat insulating material according to the first or second aspect, wherein the cutting and laminating of the molded body are performed a plurality of times. According to a fourth aspect of the present invention, in the method of manufacturing a heat insulating material according to any one of the first to third aspects, the cut end piece is fixed to the molded body via an adhesive. It is characterized by making it. According to a fifth aspect of the present invention, in the method for manufacturing a heat insulating material according to any one of the first to fourth aspects, the formed body is an inorganic fiber formed body. According to a sixth aspect of the present invention, in the method for manufacturing a heat insulating material according to the fifth aspect, thermoplastic resin sheets are arranged on both front and back surfaces of the inorganic fiber molded body in a state where the cut end pieces are laminated. The thermoplastic resin sheet is characterized in that the peripheral edge portion is thermally fused to cover the inorganic fiber molded body.
【0005】[0005]
【実施例】次に、図面に従って、本発明断熱材の製造方
法を説明する。 (実施例1)平均繊維径7μmのガラス短繊維をフェノ
ール樹脂バインダーで結着して加熱加圧成形された密度
24kg/m3、厚さ50mm、全巾910mmのグラ
スウールからなる無機質繊維成形体10の長尺物を得
た。次に、図1(a),(b)に示すように、この無機
質繊維成形体10の両端部をローターカッター20でそ
れぞれ100mm巾で裁断し、同時にこのようにして得
られた端部切断片11の載置予定箇所にバインダー噴霧
器30から接着剤31を噴霧し、次いで、前記端部切断
片11,11を前記無機質繊維成形体10の上面に図略
の任意の搬送手段を用いて積層し、前記接着剤31を介
して無機質繊維成形体10の上面に結着させてスペーサ
ーを一体に備えた長尺の無機質繊維断熱材1を得た。得
られた無機質繊維断熱材1は、所望の大きさに適宜切断
して使用すればよい。本実施例によれば、任意の巾に調
整された端部切断片11によるスペーサーを一体に備え
た無機質繊維断熱材1を連続的に製造することができ
る。BRIEF DESCRIPTION OF THE DRAWINGS FIG. (Example 1) An inorganic fiber molded body 10 made of glass wool having a density of 24 kg / m 3 , a thickness of 50 mm, and a total width of 910 mm formed by binding short glass fibers having an average fiber diameter of 7 μm with a phenol resin binder and heating and pressing. Was obtained. Next, as shown in FIGS. 1 (a) and 1 (b), both ends of the inorganic fiber molded body 10 are cut by a rotor cutter 20 to a width of 100 mm, and at the same time, the cut end pieces obtained in this manner are obtained. The adhesive 31 is sprayed from the binder sprayer 30 to the place where 11 is to be placed, and then the end cut pieces 11 are laminated on the upper surface of the inorganic fiber molded body 10 by using an arbitrary conveying means (not shown). A long inorganic fiber heat insulating material 1 integrally provided with a spacer was bound to the upper surface of the inorganic fiber molded body 10 via the adhesive 31. The obtained inorganic fiber heat insulating material 1 may be used by appropriately cutting it into a desired size. According to the present embodiment, it is possible to continuously manufacture the inorganic fiber heat insulating material 1 integrally provided with the spacer by the end cut pieces 11 adjusted to an arbitrary width.
【0006】(実施例2)前記実施例1と同様にして得
られた無機質繊維成形体10の長尺物を用い、図2
(a),(b)に示すように、この無機質繊維成形体1
0の両端部をローターカッター20でそれぞれ30mm
巾で裁断し、同時にこのようにして得られた端部切断片
11の載置予定箇所にバインダー噴霧器30から接着剤
31を噴霧し、次いで、前記端部切断片11,11を前
記無機質繊維成形体10の上面に図略の任意の搬送手段
を用いて90度だけ反転させてスペーサーとして積層
し、前記接着剤31を介して無機質繊維成形体10の上
面に結着させてスペーサーを一体に備えた長尺の無機質
繊維断熱材1を得た。得られた無機質繊維断熱材1は、
所望の大きさに適宜切断して使用すればよい。本実施例
によれば、任意の高さに調整された端部切断片11によ
るスペーサーを一体に備えた無機質繊維断熱材1を連続
的に製造することができる。(Example 2) Using a long article of the inorganic fiber molded body 10 obtained in the same manner as in Example 1, FIG.
As shown in (a) and (b), this inorganic fiber molded body 1
0 both ends 30 mm with rotor cutter 20
An adhesive 31 is sprayed from a binder sprayer 30 onto a portion where the cut end piece 11 obtained in this way is to be placed, and then the cut end piece 11 is cut into the inorganic fiber. The upper surface of the body 10 is turned upside down by 90 degrees using an arbitrary conveying means (not shown), laminated as a spacer, and attached to the upper surface of the inorganic fiber molded body 10 via the adhesive 31, and the spacer is integrally provided. A long inorganic fiber heat insulating material 1 was obtained. The obtained inorganic fiber heat insulating material 1 is
What is necessary is just to cut | disconnect suitably to a desired size, and to use it. According to the present embodiment, it is possible to continuously manufacture the inorganic fiber heat insulating material 1 integrally provided with the spacer by the end cut pieces 11 adjusted to an arbitrary height.
【0007】(実施例3)前記実施例1と同様にして得
られた無機質繊維成形体10の長尺物を用い、この無機
質繊維成形体10の両端部をローターカッター20でそ
れぞれ30mm巾で裁断し、同時にこのようにして得ら
れた端部切断片11の載置予定箇所にバインダー噴霧器
30から接着剤31を噴霧し、次いで、前記端部切断片
11,11を前記無機質繊維成形体10の上面に図略の
任意の搬送手段を用いて90度だけ反転させてスペーサ
ーとして積層し、前記接着剤31を介して無機質繊維成
形体10の上面に結着させた。次いで、図3に示すよう
に、このようにして端部切断片11,11を2本固着さ
れた無機質繊維成形体10の両端部を、前記と同様にし
て、ローターカッター20でそれぞれ30mm巾で裁断
し、同時にこのようにして得られた端部切断片11の載
置予定箇所にバインダー噴霧器30から接着剤31を噴
霧し、次いで、前記端部切断片11,11を前記無機質
繊維成形体10の上面に図略の任意の搬送手段を用いて
90度だけ反転させてスペーサーとして積層し、前記接
着剤31を介して無機質繊維成形体10の上面に結着さ
せ、4本の端部切断片11,11,11,11からなる
スペーサーが固着された無機質繊維断熱材1を得た。得
られた無機質繊維断熱材1は、所望の大きさに適宜切断
して使用すればよい。本実施例によれば、任意の本数の
端部切断片11によるスペーサーを一体に備えた無機質
繊維断熱材1を連続的に製造することができる。(Embodiment 3) Using a long article of the inorganic fiber molded body 10 obtained in the same manner as in the first embodiment, both ends of the inorganic fiber molded body 10 were cut by a rotor cutter 20 to a width of 30 mm each. At the same time, the adhesive 31 is sprayed from the binder sprayer 30 onto the place where the cut end piece 11 thus obtained is to be placed, and then the cut end piece 11 is attached to the inorganic fiber molded body 10. The upper surface was turned upside down by 90 degrees by using an arbitrary conveying means (not shown), laminated as a spacer, and bound to the upper surface of the inorganic fiber molded body 10 via the adhesive 31. Next, as shown in FIG. 3, both ends of the inorganic fiber molded body 10 to which the two end cut pieces 11 and 11 are fixed in this manner are each 30 mm wide by the rotor cutter 20 in the same manner as described above. The adhesive 31 is cut from the binder sprayer 30 at the place where the cut end pieces 11 obtained in this way are to be placed, and then the cut end pieces 11 are cut into the inorganic fiber molded body 10. It is turned upside down by 90 degrees by using an arbitrary conveying means (not shown), laminated as a spacer, and bonded to the upper surface of the inorganic fiber molded body 10 via the adhesive 31, and cut into four end pieces. The inorganic fiber heat insulating material 1 to which the spacers composed of 11, 11, 11, 11 were fixed was obtained. The obtained inorganic fiber heat insulating material 1 may be used by appropriately cutting it into a desired size. According to the present embodiment, it is possible to continuously manufacture the inorganic fiber heat insulating material 1 integrally provided with a spacer formed by an arbitrary number of end cut pieces 11.
【0008】(実施例4)図4に示すように、前記実施
例3で得られた無機質繊維断熱材1の表裏両面に熱可塑
性樹脂シート40,40を押さえローラ50を用いてこ
の無機質繊維断熱材1の表面形状に沿わせて配置し、次
いで、これら熱可塑性樹脂シート40,40の周縁部を
ヒートシール機60を用いて熱融着して無機質繊維断熱
材1を被覆した。このような熱可塑性樹脂シート40に
よる被覆は、無機質繊維断熱材1を長尺物のまま、或い
は、任意の大きに切断した後の何れにおいても実施でき
る。本実施例によれば、無機質繊維によるチクチク感の
ない、無機質繊維断熱材1を製造することができる。ま
た、本実施例では成形体をガラス短繊維からなる断熱材
(グラスウール)としたが、成形体はこれに限定される
ものではなく、セルロースファイバー等の有機質繊維か
らなる断熱材や、フォームポリスチレン、押出発泡ポリ
スチレン、硬質ウレタンフォーム、ポリエチレンフォー
ム、ユリアフォーム等の有機多孔質断熱材であっても適
応できる。(Embodiment 4) As shown in FIG. 4, the inorganic fiber heat insulating material 1 obtained in the above-mentioned embodiment 3 has thermoplastic resin sheets 40, 40 on both front and back surfaces by using pressing rollers 50. The thermoplastic resin sheets 40, 40 were heat-sealed using a heat sealer 60 to cover the inorganic fiber heat insulating material 1. Such covering with the thermoplastic resin sheet 40 can be carried out either as the inorganic fiber heat insulating material 1 as it is, or after cutting it to an arbitrary size. According to the present embodiment, it is possible to manufacture the inorganic fiber heat insulating material 1 without tingling due to the inorganic fibers. Further, in the present embodiment, the formed body is a heat insulating material (glass wool) made of short glass fiber, but the formed body is not limited to this, and a heat insulating material made of organic fiber such as cellulose fiber, foamed polystyrene, Organic porous heat insulating materials such as extruded expanded polystyrene, rigid urethane foam, polyethylene foam, and urea foam can also be applied.
【0009】[0009]
【発明の効果】このように、本発明によれば、背面通気
層を形成するためのスペーサーを一体に備えた断熱材を
スペーサー部材を別個に用意する必要もなく、また長尺
物であっても低コストで連続製造できる断熱材の製造方
法を提供することができる。特に、請求項2に記載の断
熱材の製造方法によれば、任意の高さに調整された端部
切断片によるスペーサーを一体に備えた断熱材を連続的
に製造することができる。また、請求項3に記載の断熱
材の製造方法によれば、任意の本数の端部切断片による
スペーサーを一体に備えた断熱材を連続的に製造するこ
とができる。また、請求項4に記載の断熱材の製造方法
によれば、端部切断片の結着強度の大きな断熱材を連続
的に製造することができる。また、請求項5に記載の断
熱材の製造方法によれば、請求項1乃至4の効果を有す
る断熱材の製造方法において無機質断熱材を製造するこ
とができる。また、請求項6に記載の断熱材の製造方法
によれば、無機質繊維によるチクチク感のない、無機質
繊維断熱材を製造することができる。As described above, according to the present invention, there is no need to separately prepare a spacer member for a heat insulating material integrally provided with a spacer for forming a back ventilation layer, and it is a long object. It is also possible to provide a method for manufacturing a heat insulating material which can be manufactured continuously at low cost. In particular, according to the method of manufacturing a heat insulating material described in claim 2, it is possible to continuously manufacture a heat insulating material integrally provided with a spacer formed by cut end pieces adjusted to an arbitrary height. According to the method for manufacturing a heat insulating material according to the third aspect, a heat insulating material integrally including a spacer formed by an arbitrary number of cut end pieces can be continuously manufactured. Further, according to the method for manufacturing a heat insulating material according to the fourth aspect, a heat insulating material having high binding strength of the end cut pieces can be continuously manufactured. According to the method for manufacturing a heat insulating material described in claim 5, the inorganic heat insulating material can be manufactured in the method for manufacturing a heat insulating material having the effects of claims 1 to 4. Further, according to the method for manufacturing a heat insulating material according to the sixth aspect, it is possible to manufacture an inorganic fiber heat insulating material having no tingling due to inorganic fibers.
【図1】 本発明の断熱材の製造方法の一実施例を説明
するための説明線図であって、(a)はその側面図、
(b)はその正面図である。FIG. 1 is an explanatory diagram for explaining one embodiment of a method for manufacturing a heat insulating material of the present invention, where (a) is a side view thereof,
(B) is a front view thereof.
【図2】 本発明の断熱材の製造方法の他実施例を説明
するための説明線図であって、(a)はその側面図、
(b)はその正面図である。FIG. 2 is an explanatory diagram for explaining another embodiment of the method for manufacturing a heat insulating material of the present invention, wherein (a) is a side view thereof,
(B) is a front view thereof.
【図3】 本発明の断熱材の製造方法の別の他実施例を
説明するための説明線図の正面図である。FIG. 3 is a front view of an explanatory diagram for explaining another embodiment of the method for manufacturing a heat insulating material of the present invention.
【図4】 本発明の断熱材の製造方法の更なる別の他実
施例を説明するための説明線図であって、(a),
(b),(c)は各工程の正面図である。FIG. 4 is an explanatory diagram for explaining still another embodiment of the method for producing a heat insulating material of the present invention, wherein (a),
(B), (c) is a front view of each process.
1 無機質繊維断熱材 10 無機質繊維成形体 11 端部切断片(スペーサー) 20 ローターカッター 30 バインダー噴霧器 31 接着剤 40 熱可塑性樹脂シート 50 押さえローラ 60 ヒートシール機 DESCRIPTION OF SYMBOLS 1 Inorganic fiber heat insulating material 10 Inorganic fiber molded object 11 End cut piece (spacer) 20 Rotor cutter 30 Binder sprayer 31 Adhesive 40 Thermoplastic resin sheet 50 Holding roller 60 Heat sealing machine
───────────────────────────────────────────────────── フロントページの続き (72)発明者 堀 寿信 茨城県結城市作の谷415番地 日本無機株 式会社結城工場内 (72)発明者 川邊 賢二 茨城県結城市作の谷415番地 日本無機株 式会社結城工場内 (72)発明者 陣内 琢也 茨城県結城市作の谷415番地 日本無機株 式会社結城工場内 Fターム(参考) 2E001 AA02 AA04 AB03 AD03 AE06 AF03 BA04 2E162 BA01 BA09 BB08 CA31 CA35 CD01 CD09 FD04 ──────────────────────────────────────────────────続 き Continuing on the front page (72) Inventor Toshinobu Hori, 415 Sakunodani, Yuki-shi, Ibaraki Pref. Japan Inorganic Co., Ltd. Inside Yuki Plant (72) Inventor Kenji Kawabe 415 Sakunoya, Yuki-shi, Ibaraki Pref. Inside the Yuki Plant of Shikisha Company (72) Inventor Takuya Jinnai 415 of Sakunotani, Yuki City, Ibaraki Pref. FD04
Claims (6)
部切断片を前記成形体の上面にスぺーサーとして積層し
てスペーサー一体型成形体に形成することを特徴とする
断熱材の製造方法。1. A heat insulation method, wherein an end of a molded body is continuously cut, and a cut piece of the end is laminated as a spacer on an upper surface of the molded body to form a spacer-integrated molded body. The method of manufacturing the material.
90度反転させて前記成形体の上面にスペーサーとして
積層させることを特徴とする請求項1記載の断熱材の製
造方法。2. The method for manufacturing a heat insulating material according to claim 1, wherein the cut end pieces cut from the molded body are turned over by 90 degrees and laminated as spacers on the upper surface of the molded body.
ことを特徴とする請求項1または2記載の断熱材の製造
方法。3. The method for manufacturing a heat insulating material according to claim 1, wherein the cutting and laminating of the molded body are performed a plurality of times.
着剤を介して固着させることを特徴とする請求項1乃至
3の何れかに記載の断熱材の製造方法。4. The method for manufacturing a heat insulating material according to claim 1, wherein said cut end piece is fixed to said molded body via an adhesive.
とを特徴とする請求項1乃至4の何れかに記載の断熱材
の製造方法。5. The method for producing a heat insulating material according to claim 1, wherein the molded body is an inorganic fiber molded body.
繊維成形体の表裏両面に熱可塑性樹脂シートを配置し、
これら熱可塑性樹脂シートの周縁部を熱融着して前記無
機質繊維成形体を被覆するようにしたことを特徴とする
請求項5記載の断熱材の製造方法。6. A thermoplastic resin sheet is arranged on both front and back surfaces of the inorganic fiber molded body in a state in which the cut end pieces are laminated,
The method for manufacturing a heat insulating material according to claim 5, wherein a peripheral portion of the thermoplastic resin sheet is heat-sealed to cover the inorganic fiber molded body.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP10195061A JP2000008509A (en) | 1998-06-25 | 1998-06-25 | Insulation method |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP10195061A JP2000008509A (en) | 1998-06-25 | 1998-06-25 | Insulation method |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| JP2000008509A true JP2000008509A (en) | 2000-01-11 |
Family
ID=16334915
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| JP10195061A Withdrawn JP2000008509A (en) | 1998-06-25 | 1998-06-25 | Insulation method |
Country Status (1)
| Country | Link |
|---|---|
| JP (1) | JP2000008509A (en) |
-
1998
- 1998-06-25 JP JP10195061A patent/JP2000008509A/en not_active Withdrawn
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Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| A300 | Withdrawal of application because of no request for examination |
Free format text: JAPANESE INTERMEDIATE CODE: A300 Effective date: 20050906 |