TW503174B - Method for producing film with far IR emission and product thereof - Google Patents

Method for producing film with far IR emission and product thereof Download PDF

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Publication number
TW503174B
TW503174B TW90126474A TW90126474A TW503174B TW 503174 B TW503174 B TW 503174B TW 90126474 A TW90126474 A TW 90126474A TW 90126474 A TW90126474 A TW 90126474A TW 503174 B TW503174 B TW 503174B
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Taiwan
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far
film
infrared
resin
substrate
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TW90126474A
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Chinese (zh)
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Jr-Lian Ke
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Jr-Lian Ke
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Abstract

The present invention relates to a method for producing a film with far IR emission and a product thereof; the method comprises: mixing a far IR-based mineral powder with a resin and a catalyst; kneading the mixture to granulize the plastic particles with the far IR-based mineral powder at 0.3 to 8%; extruding, hot-melting or coating the plastic particles to form a film or an adhesive to glue onto a substrate so that the substrate has far IR emission property and additional functions such as waterproof, wind resistant, thermal insulation, moisture-permeability, etc. and can effectively solve the problem in a conventional far IR fiber which is easy to break.

Description

五、發明說明(/) 本發明係關於一種具遠紅外線放射性薄膜之製法及產 。口,其係涉及於諸如穿戴於人體的織物,具有遠紅外線的 功旎,並增加防水、防風、防寒、保暖透濕等優點。 。一般所稱之遠紅外線係紅外線的一種,其溫度約在4 、2 0 C到零下5 Q C之間,尤指其波長為4微米到工4微 米,其具有強烈的滲透力,可以深入皮下組織,由内部溫 暖人體,賦予細豸機能活性化,因此遠紅外線的功能已廣 為月疋。並且亦在衣料中添加遠紅外線的功能,使人體因 為穿戴該類衣物而能長時間受到遠紅外線的滲透功能。 会、逆種衣物的處理方式係將遠紅外線基礦石磨成粉末, 約5微米左右,再和樹脂融合以抽製成纖維絲,纖維絲的 線徑大約是1 〇微米,再將該纖維絲織成衣物。但是因為 纖維絲包覆粉末的面積不_且*完整,因此製成絲線 時,出現纖維絲斷裂的現象,無法連續高速織布; ^緣是,本發明人一本鑽研發明的精神,著手研究開 1本著多年專業經驗與心得,悉心試驗,推陳出新,進 而提出本發明,以期改善習知之缺弊。 *本發明之主要目的係為提供一種具遠紅外線放射性薄 膜之製法及產品,主要係將遠紅外線基礦石粉末與樹脂、 觸媒複合經揉合製成顆粒狀的膠粒,遠紅外線基礦石粉末 佔0 · 3〜8 %,經加工製成薄膜或用溶劑塗佈製成薄 、透過薄膜而接著於各式基材上,因此使該基材製成的 衣物,保有原本遠紅外線之保暖、血液循環的功能之外, 更具有防水、防風、防寒、保暖透濕等功能。 JUJU /4 A7V. Description of the Invention (/) The present invention relates to a method and product for producing a far-infrared radioactive film. Mouth, which relates to fabrics worn on the human body, has the function of far-infrared rays, and increases the advantages of waterproof, windproof, coldproof, warm and moisture-permeable. . Generally called far infrared is a kind of infrared, its temperature is between 4, 2 0 C and minus 5 QC, especially its wavelength is 4 micrometers to 4 micrometers, it has a strong penetrating power, can penetrate deep into the subcutaneous tissue The inner body warms the human body and gives the function of activation of fine hairpins, so the function of far-infrared rays has been widely used. In addition, the function of adding far-infrared rays to clothing also enables the human body to be exposed to far-infrared rays for a long time because of wearing such clothing. The processing method of meeting and reverse clothing is to grind far-infrared-based ore into powder, about 5 microns, and then fuse with the resin to draw fiber filaments. The diameter of the fiber filaments is about 10 microns. Woven into clothing. However, because the area of the fiber-coated powder is not complete and complete, the fiber yarn breaks during the production of the yarn, and continuous high-speed weaving cannot be achieved. The reason is that the inventor has studied the spirit of the invention and set out to study it. Based on many years of professional experience and experience, carefully test and innovate, and then propose the present invention, in order to improve the shortcomings of knowledge. * The main purpose of the present invention is to provide a method and product for producing far-infrared radioactive thin films, which are mainly compounded by combining far-infrared-based ore powder with resin and catalyst to form granular colloidal particles, and far-infrared-based ore powder. Occupies 0.3% ~ 8%. It is processed into a thin film or coated with a solvent to make a thin, transparent film, and then attached to a variety of substrates. Therefore, the clothing made from this substrate retains the original far-infrared heat, In addition to the functions of blood circulation, it also has functions such as waterproof, windproof, cold protection, warmth and moisture permeability. JUJU / 4 A7

五、發明說明(丄) 經濟部智慧財產局員工消費合作社印製 本發明之另一目的係為提供一種具遠紅外線放射性薄 膜之製法及產品,主要係薄膜可有多種加工方式貼合於基 材,如透過輥輪而上膠於基材上。 本發明之再一目的係為提供一種具遠紅外線放射性薄 膜之製法及產品,主要係薄膜可有多種加工方式貼合於基 材,如透過打成膠糊狀而塗佈於基材上。 本發明之又一目的係為提供一種具遠紅外線放射性薄 膜之製法及產品,主要係薄膜可有多種加工方式結合於基 材,如透過打成膠糊狀而塗佈於離型紙,以設成接著劑型 態,藉以貼合於各式基材之間。 為使貴審查委員能進一步瞭解本發明之特徵、製法 流程及達成之突破性功效,茲以下文所述較佳實施例配合 圖式詳細說明如后: (一) 圖式部份: 第一圖係本發明之流程示意圖。 第二圖係本發明之製成膠粒之示意圖。 第三圖係本發明之利用輥輪裝置成形之平面示意圖。 弟四圖係本發明之另一種輥輪裝置成形之平面示意圖。 第五圖係本發明之塗佈之示意圖。 第六圖係本發明之配合離型紙的成形示意圖。 第七圖係本發明之二層基材與薄膜結合的剖面示意圖。 (二) 圖號部份: (1 0)遠紅外線基礦石粉末 (2 0)樹脂 4 本紙張尺度適用中國國豕標準(CNS)A4規格(210 X 297公釐) 丨丨丨丨丨丨丨丨丨丨丨丨丨—丨丨丨訂·丨丨丨丨丨丨丨丨· (請先閱讀背面之注意事項再填寫本頁) 刈 3174 A7 五、發明說明(> (3 〇 )膠粒 (4 0 )薄膜 (4 2 )膠料容器 B7 (41) (411)基材(4 2 1 )膠合層 經濟部智慧財產局員工消費合作社印製 (4 4 ) ( 4 4 1 )輥輪裝置 (45)大滾輪 (4Θ)噴膠器 (5 0)塗膠 (5 2 )基材 (6 0)中間接著膜 (6 4)離型紙 本發明係關於一種具遠紅外線放射性薄膜之製法及產 品,請參看第一圖之流程示意圖,首先備用遠紅外線基礦 石粉末與樹脂的用料,該遠紅外線基礦石粉末係諸如玉石 廣水曰曰、麥飯石、蛇紋石、花崗石、白雲石、光合觸媒 白f、光合觸媒鈦粉、精密陶瓷粉、爐石粉等,將之磨成 5微米大小的粉末;而樹脂係諸如熱可塑性聚胺基、曱酸 乙酯、尼龍彈性體; 其次,配合第一、二圖,遠紅外線基礦石粉末(工 〇 ) 月曰(2 〇 )、白金液〔觸媒〕複合,透過揉合機 的揉合流程,複合成-顆顆的膠粒(30),而遠紅外線 基廣石争刀末(1 0 )與樹脂(2 〇 )揉合的配置比例,是 遠紅外線基礦石粉末(1〇)佔〇 · 3〜8%,較佳實施 狀態為3% ’經揉合製成膠粒(3 Q)後,便能衍伸出多 種實施型態,其中; ®夕 如第一、二圖,本發明得製成薄膜(4 0)型態,將 (51)塗覆工具 (6 2)基材 (請先閱讀背面之注意事項再填寫本頁) -.1 n n ϋ n n n^5JI «1 n — ϋ «I I I , 503174 濟 部 智 慧 財 產 局 員 工 消 費 合 作 社 印 製 A7 B7 五、發明說明(令) 膠粒(3 0)加熱,並透過「吹膜」或押出機Γ 狎出」成 形方式或是「擠壓」成形方式,以成形出薄膜r ^ ^ 研、4 〇 )型 態,形成薄膜(4 0 )以後,可如第三圖所示,^ * 經由幸昆輪· 裝置(44)將薄膜(40)送經膠料容器(42> 一面進行上膠,在一面形成膠合層(421), ) 而諸如布 料之基材(41)再經由另一輥輪裝置(44 1、 ^ 4丄)之輸 送,使基材(4 1 )與薄膜(4 0 )分成二邊分別送料, 再經一起送到大滾輪(4 5 )進行膠合定位,結^美材 (42)與薄膜(40) 。 ° & 另外,第四圖所示,係說明二種基材(4 i ) ( 4工 1 )分別膠合於薄膜(4 0 )的型態,比如第二基材(4 1 1 )是為裡布,第一基材(4 1 )為面布,故^一、二 基材(41)(411)分別由二路送料,如第二某材 (4 1 1)先於一面透過喷膠器(46)喷灑膠料於上形 成膠合層(42 1),而薄膜(40)在輥輪裝置(4 4)位置與第二基材(4 1 1 )會合,並黏著於膠合層 (42 1)上,使第一基材(41 1)與薄膜(4〇)結 合,而第一基材(41)先在一面經喷膠器(46)喷灑 膠料形成膠合層(4 2 1 ),經大滾輪(4 5 )之捲送, 使第一基材(41)、薄膜(4〇)、第二基材(41 1 )送料之時,讓第二基材(4丄丄)之膠合層(4 2 1 )膠合於薄膜(4 0)異於第一基材(4 1 )之另面, 形成二層型態’製成型態可如第七圖所示。 接著,本發明如第一、五圖所示,膠粒(3 〇 )亦能 本紙張尺度翻巾目目家鮮(CNS)A4規格(2W χ —公f ----------丨^^^ · ! ! 丨―訂丨丨1 (請先閱讀背面之注意事項再填寫本頁)V. Description of the invention (丄) Another objective of the present invention for printing by the Consumer Cooperatives of the Intellectual Property Bureau of the Ministry of Economic Affairs is to provide a method and product for producing far-infrared radioactive films, which are mainly films that can be laminated to the substrate in various ways , Such as glue on the substrate through the roller. Still another object of the present invention is to provide a method and a product for producing a far-infrared radioactive film. The main method is that the film can be adhered to a substrate by a variety of processing methods, such as coating on a substrate by forming a paste. Another object of the present invention is to provide a method and a product for producing a far-infrared radioactive film. The main film can be combined with a substrate by a variety of processing methods, such as coating on a release paper by forming a paste, and setting The dosage form is then adhered between various substrates. In order to allow your reviewers to better understand the features of the present invention, the manufacturing process and the breakthrough effect achieved, the preferred embodiments described below are described in detail with the drawings as follows: (1) Schematic section: The first diagram It is a schematic flow chart of the present invention. The second figure is a schematic diagram of the colloidal particles made by the present invention. The third figure is a schematic plan view of forming by a roller device according to the present invention. The fourth figure is a schematic plan view of the forming of another roller device of the present invention. The fifth diagram is a schematic diagram of the coating of the present invention. The sixth figure is a schematic diagram of the forming of the combined release paper of the present invention. The seventh diagram is a schematic cross-sectional view of the combination of the two-layer substrate and the film of the present invention. (2) Part of drawing number: (1 0) Far-infrared-based ore powder (2 0) Resin 4 This paper size is applicable to China National Standard (CNS) A4 (210 X 297 mm) 丨 丨 丨 丨 丨 丨 丨丨 丨 丨 丨 丨 丨 丨 丨 丨 Ordering 丨 丨 丨 丨 丨 丨 丨 丨 (Please read the precautions on the back before filling out this page) 刈 3174 A7 V. Description of the invention (> (3 〇) rubber particles (4 0) Film (4 2) Rubber container B7 (41) (411) Substrate (4 2 1) Plywood Printed by the Consumer Cooperative of the Intellectual Property Bureau of the Ministry of Economic Affairs (4 4) (4 4 1) Roller device (45) Large roller (4Θ) glue sprayer (50), glue coating (52), substrate (60), intermediate adhesive film (64), release paper. The present invention relates to a method and product for producing a film with far infrared radiation. Please refer to the schematic diagram of the first figure. First, reserve the materials for the far-infrared-based ore powder and resin. The far-infrared-based ore powder is such as jade, guangshui, maifanite, serpentine, granite, dolomite, Photosynthetic catalyst white f, photosynthetic catalyst titanium powder, precision ceramic powder, furnace stone powder, etc., are ground into 5 micron powder; and resins such as thermoplastic Polyamine-based, ethyl acetate, nylon elastomer; Second, according to the first and second picture, the far-infrared-based ore powder (work 0) month (20), platinum liquid [catalyst] compound, through kneading The kneading process of the machine is compounded into rubber particles (30), and the configuration ratio of kneading of the far-infrared-based broad-stone knives (1 0) and resin (2) is the far-infrared-based ore powder (1 〇) accounts for 0.3 ~ 8%, and the preferred implementation state is 3%. 'After kneading to make rubber particles (3 Q), it can develop a variety of implementation types, among which: Figure, the present invention can be made into a thin film (40) type, (51) coated tools (6 2) substrate (please read the precautions on the back before filling this page) -.1 nn ϋ nnn ^ 5JI « 1 n — ϋ «III, 503174 Printed by A7 B7 of the Consumer Cooperatives of the Ministry of Intellectual Property of the Ministry of Economic Affairs of the People's Republic of China 5. Instruction (Order) The pellets (30) are heated and passed through a" blow film "or extruder Γ 狎 狎Or "extrusion" molding method, in the form of a film r ^^^, 4 0), after forming the film (40), as shown in the third figure ^ * The film (40) is passed through a rubber container (42) via a Xingkun round device (44), and the glue is formed on one side to form a glue layer (421) on one side, and the substrate (41) such as cloth is then The substrate (4 1) and the film (40) are divided into two sides and conveyed through the conveyance of another roller device (44 1, ^ 4 丄), and then sent to the large roller (4 5) for gluing and positioning. The result is beautiful materials (42) and films (40). ° & In addition, as shown in the fourth figure, the two substrates (4 i) (4 process 1) are respectively bonded to the film (40), for example, the second substrate (4 1 1) is In the lining, the first substrate (4 1) is a face cloth, so the first and second substrates (41) and (411) are fed by two routes. For example, the second material (4 1 1) passes through the spray glue before one side. The device (46) sprays glue to form a glue layer (42 1), and the film (40) meets with the second substrate (4 1 1) at the position of the roller device (4 4) and adheres to the glue layer ( 42 1), the first substrate (41 1) is combined with the film (40), and the first substrate (41) is first sprayed with glue on one side to form a glue layer (4 2) 1) When the first substrate (41), the film (40), and the second substrate (41 1) are fed by the large roller (4 5), the second substrate (4 丄 丄) is fed. The glue layer (4 2 1) is glued to the other surface of the film (40) which is different from the first substrate (41) to form a two-layer type. The shape can be made as shown in the seventh figure. Next, as shown in the first and fifth figures of the present invention, the rubber granules (30) can also be turned into domestic paper (CNS) A4 specifications (2W χ —public f ---------) -丨 ^^^ ·!! 丨 ―Order 丨 丨 1 (Please read the precautions on the back before filling this page)

/4 A7 五、發明說明(JT) 配合熔融之中添加接著劑與溶劑,配合打糊機作膠糊狀的 溼式薄膜(5 0 )型態,經由塗覆工具(5 i )將薄膜 (5 0 )塗在基材(5 2 )上接著,待乾目後,即使基材 (5 2)具有遠紅外線的功能; ^另外,如第一、六圖,本發明亦能製成半乾溼型態的 薄膜(6 0),其中將膠粒(3 〇)熔融配合溶劑與接著 劑,配合打糊機打成膠糊狀,在半乾溼的打狀態下,塗佈 於離型紙(6 4 )上,如需貼在基材、(6 2 )與基材(6 3 ),之間’將離型紙(6 4 )撕開,就能使薄膜(6 〇 ) 充當-種接著劑型態,而基材(6 2 ) ( 6 3 )可為布與 布,或是布與薄膜,或是各式衣料等。 經上說明,本發明的技術特點,主要係使樹脂(2 0 )與遠紅外線基礦石粉末(i 〇 )揉合成膠粒(3 〇),因此由膠粒(30)製成多種薄膜(4〇〜6〇) 型態,結合於基材(4 2〜6 3 )上,而本發明的優點在 於: 1 ·遠紅外線能使水分子產生共振,變成獨立水分子 後能快速釋放,增加薄膜的透濕度。 2·由於薄膜係包含樹脂,並且樹脂與遠紅外線基礦 石粉末的成份比例,讓遠紅外線基礦石粉末周侧均有足夠 篁的樹脂予以完整包圍,使薄膜結合於基材後,透過薄膜 提供防水、防風、防寒、透濕、保暖的功能。 3 ·樹脂與遠紅外線基礦石粉末的成份比例,讓遠紅 外線基礦石粉末周側均有足夠樹脂量完整包覆,所以不會 (請先閱讀背面之注意事項再填寫本頁) II 訂·! !!/ 4 A7 V. Description of the invention (JT) Adding an adhesive and a solvent during melting, and using a paste machine to make a paste-like wet film (50) type, and the film (5i) is used to apply the film ( 50) is coated on the substrate (5 2), and after drying, even if the substrate (5 2) has the function of far infrared rays; ^ In addition, as shown in the first and sixth figures, the present invention can also be made semi-dry Wet film (60), in which colloidal particles (30) are melted with a solvent and an adhesive, and mixed with a paste machine to form a paste. In a semi-dry and wet state, it is coated on release paper ( 6 4), if it needs to be affixed between the substrate, (6 2) and the substrate (6 3), 'the release paper (6 4) is torn apart, and then the film (60) can be used as a kind of adhesive Type, and the substrate (6 2) (6 3) can be cloth and cloth, or cloth and film, or various kinds of clothing. As explained above, the technical features of the present invention are mainly that the resin (20) and the far-infrared-based ore powder (io) are kneaded into colloidal particles (30), so various films (4) are made from the colloidal particles (30). 〇 ~ 6〇) type, combined with the substrate (4 2 ~ 6 3), and the advantages of the present invention are: 1 · Far-infrared rays can cause water molecules to resonate and can be quickly released after becoming independent water molecules, increasing the film Moisture permeability. 2 · Since the film contains resin, and the composition ratio of the resin to the far-infrared-based ore powder, the peripheral side of the far-infrared-based ore powder is sufficiently surrounded by the resin to completely surround the film. After the film is bonded to the substrate, it provides water resistance through the film. , Windproof, cold-proof, moisture-permeable, warm function. 3 · The composition ratio of the resin to the far-infrared-based ore powder, so that the peripheral side of the far-red outer-line-based ore powder has a sufficient amount of resin to completely cover it, so it will not (please read the precautions on the back before filling this page) II Order! !! !!

經濟部智慧財產局員工消費合作社印製 ^UJ174 A7 _________B7____ 五、發明說明(< ) 造成遠紅外線基礦石粉末有脫落的不穩定現象,融合性相 當好。 4 ·本發明的薄膜衍伸出多種型態,比如可塗佈、可 配合離型紙充當接著劑,因此使應用於衣物的範圍更為廣 泛,讓遠紅外線的功能發揮益加普遍。 綜上所述,本發明確係一極具突破性的發明佳作,由 於新穎的製法,完全突破習知之缺弊,無疑是一具高度創 作性之佳作,符合產業利用性,應符發明專利申請要件, 爰依法提出申請。 經濟部智慧財產局員工消費合作社印製 8 本紙張尺度適用中國國家標準(CNS)A4規格(210 X 297公釐)Printed by the Consumer Cooperatives of the Intellectual Property Bureau of the Ministry of Economic Affairs ^ UJ174 A7 _________B7____ V. Description of the invention (<) Causes the unstable phenomenon that the far-infrared-based ore powders fall off, and the fusion is quite good. 4 · The film of the present invention has a variety of types, such as coatable, and can be used as an adhesive with release paper, so that it can be used in a wider range of clothing, and the function of far-infrared rays becomes more common. In summary, the present invention is indeed a breakthrough invention. Because of the novel manufacturing method, it completely breaks through the shortcomings of conventional knowledge. It is undoubtedly a highly creative masterpiece that conforms to industrial applicability and should be in line with the invention patent application. For the essentials, convert to apply according to law. Printed by the Consumer Cooperatives of the Intellectual Property Bureau of the Ministry of Economic Affairs 8 This paper size is applicable to China National Standard (CNS) A4 (210 X 297 mm)

Claims (1)

申請專利範圍 V 弟九〇-二六四七四號申請專利範圍修正本: 1 .一種具遠紅外線放射性_之製法,其係將遠紅 外線基礦讀末與樹脂、觸顧合,、㈣合流程而複合成 顆粒狀的軸,遠紅外線基礦石粉末與樹㈣合的配置比 是遠紅外線基礦石粉末佔Q.3〜8%,工而 製成薄膜。 …2..,如巾請專利範圍第1項所述之具遠紅外線放射性 ㈣之製法’其中該遠紅外線基礦石粉末佔3%。 …3 ·如中請專利範圍第1項所述之具遠紅外線放射性 溥膜之製法,其中該薄膜係押出成型。 4 , 士中μ專利&圍第1項所述之具遠紅外線放射性 之衣法,纟中該薄膜’係由膠粒配合熔融之中添加接 者劑與溶劑’經打糊機作膠糊狀的溼式薄膜型能。 _ 5 如巾請專利範圍第丨項所叙具遠紅外線放射性 厚膜之H纟中㈣膜,係由膠粒配合溶融之中用接著 劑與溶劑’經打糊機作膠糊狀的半乾溼的接著膜形態。 ”6 :「種運用申請專利範圍第丄項具遠紅外線放射性 溥膜之製法的產品,該製成產品為薄膜,薄膜包含有樹脂 以及為樹脂包覆的遠紅外線基礦石粉末,薄膜係與至少一 基材之間形成膠合。 —7·—種運用中請專利範圍第1項具遠紅外線放射性 溥膜之製法的產品’該製成產品為薄膜,薄膜包含有樹 脂,t及為樹脂包覆的遠紅外線基礦石粉末,薄膜係於二 面各膠合一層基材。 用中國國家標準 i B IB i (請先閱讀背面之注意事項再填寫本頁) 線· 經濟部智慧財產局員工消費合作社印製 II II 1· 1 H I ! 503174 A8 B8 C8The scope of the patent application V. The revised version of the scope of patent application No. 90-26464: 1. A manufacturing method with far-infrared radioactivity, which combines the far-infrared-based ore reading with resin, touch, and coupling The flow is compounded into a granular shaft, and the configuration ratio of the far-infrared-based ore powder and the tree is that the far-infrared-based ore powder accounts for Q.3 ~ 8%, and is made into a thin film. … 2 .. For example, the manufacturing method of far-infrared radioactive radon described in item 1 of the patent scope, wherein the far-infrared-based ore powder accounts for 3%. … 3 · The manufacturing method of far-infrared radioactive tritium film as described in item 1 of the patent scope, wherein the film is extruded. 4. The far-infrared radioactive clothing method described in the patent of the Chinese patent & Circumstance 1, the film 'is composed of rubber particles mixed with a binder and a solvent during melting' to make a paste through a paste machine Wet film type performance. _ 5 For example, please refer to item 丨 of the patent scope. The H 纟 middle-thickness film with far-infrared radioactive thick film is made of glue particles and mixed with adhesive and solvent. The paste is semi-dried by a paste machine. Wet adhesive film morphology. "6:" A product using the far-infrared radioactive tritium film production method in the scope of the patent application, the product is a thin film containing a resin and a far-infrared-based ore powder coated with a resin. A glue is formed between a substrate. —7 · —A product with a method of manufacturing a far-infrared radioactive tritium film, which is claimed in the patent application. The product is a film, the film contains resin, and the resin is coated with The far-infrared-based ore powder, the film is glued to one layer of substrate on both sides. Use the Chinese national standard i B IB i (Please read the precautions on the back before filling this page) II II 1 · 1 HI! 503174 A8 B8 C8 i I I i I 線 鬌i I I i I line 鬌
TW90126474A 2001-10-26 2001-10-26 Method for producing film with far IR emission and product thereof TW503174B (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI404627B (en) * 2010-12-16 2013-08-11 Metal Ind Res & Dev Ct Structure for emitting infrared light and manufacturing method therefor

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI404627B (en) * 2010-12-16 2013-08-11 Metal Ind Res & Dev Ct Structure for emitting infrared light and manufacturing method therefor

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