TWM375158U - Functional flexible carbon heating tube - Google Patents

Functional flexible carbon heating tube Download PDF

Info

Publication number
TWM375158U
TWM375158U TW98213215U TW98213215U TWM375158U TW M375158 U TWM375158 U TW M375158U TW 98213215 U TW98213215 U TW 98213215U TW 98213215 U TW98213215 U TW 98213215U TW M375158 U TWM375158 U TW M375158U
Authority
TW
Taiwan
Prior art keywords
tubing
powder
carbon
flexible
fiber bundle
Prior art date
Application number
TW98213215U
Other languages
Chinese (zh)
Inventor
Yi-Shou Tsai
Li-Ling Huang
Chia-Chi Tsai
Chia-Chen Tsai
Sheng-Yen Tsai
Original Assignee
Yi-Shou Tsai
Li-Ling Huang
Chia-Chi Tsai
Chia-Chen Tsai
Sheng-Yen Tsai
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Yi-Shou Tsai, Li-Ling Huang, Chia-Chi Tsai, Chia-Chen Tsai, Sheng-Yen Tsai filed Critical Yi-Shou Tsai
Priority to TW98213215U priority Critical patent/TWM375158U/en
Publication of TWM375158U publication Critical patent/TWM375158U/en

Links

Landscapes

  • Resistance Heating (AREA)

Description

Μ37513» κ 五、新型說明: 【新型所屬之技術領域】 本創作涉及-種碳的加熱構造,特別指一種 一種具功能性的可撓性碳加熱管。 饪意考曲的 【先前技#Γ】 旦《則吸那热官作為熱源由於弯曲過程中易生Μ37513» κ V. New description: [New technical field] This creation involves a kind of carbon heating structure, especially a flexible carbon heating tube with functionality. [Previous technique #Γ] Dan", then suck the hot official as a heat source due to the easy process of bending

:=:ΓΓ·下降,__二: 冰度過冋而被燒斷,因此效率低且不具有对長久性。此外高 在使用過針表面綠化,_影響其朗細。此外,在2 烘烤及-鋪殊_上需要解舒—些功諸域紅'、、 離子。 【新型内容】 β為了解決上述s知課題,本創作目的在於提供—種結構簡 鲁單、使用壽命長、發熱轉換效率高、工作溫度範圍寬、可任意几 •何形狀$置、可撓錄、柔性佳的—種具魏性的可撓性碳加熱 管。 \ 緣’為達成上述目的,本創作一種具功能性的可撓性碳加熱 管’其主要由一發熱體及一包覆於該發熱體外的絕緣套管所構 成’其中該發熱體由一利用碳纖維束以包繞方式將玻璃纖維束、 岩石纖維束、陶瓷纖維束中之一種或一種以上組合加撚成型的結 構’且邊發熱體表面坡覆有具功能性粉末;該絕緣套管為可撓性 3 M375158 的玻璃纖維編織管(polyolefin tubing)或氟材彈性管 (fluoroelastomer tubing)、矽膠管(siiicon tubing)、PU 管 (polyurethane tubing)、PVC 管(P〇lyVinyichl〇ride tubing)、 PE 管(polyethylene tubing)、PP 管(p〇iypropyiene tubing)、:=:ΓΓ·Down, __2: The ice is blown off after being over-smelled, so it is inefficient and does not have long-lasting properties. In addition, the use of needle surface greening, _ affects its size. In addition, in the 2 baking and - the special _ need to solve the problem - some of the fields red ',, ions. [New content] β In order to solve the above-mentioned problems, the purpose of this creation is to provide a simple structure, long service life, high heat transfer efficiency, wide operating temperature range, arbitrary shape and shape, and flexible recording. Flexible, a flexible carbon heating tube with a high degree of flexibility. In order to achieve the above object, the present invention creates a flexible flexible carbon heating tube which is mainly composed of a heating element and an insulating sleeve coated on the outside of the heating body, wherein the heating element is utilized by The carbon fiber bundle is a structure in which one or more of a glass fiber bundle, a rock fiber bundle, and a ceramic fiber bundle are combined and twisted in a wrapped manner, and the surface of the heating element is coated with a functional powder; the insulating sleeve is Flexible 3 M375158 glass tubing or fluoroelastomer tubing, siiicon tubing, polyurethane tubing, PVC pipe (P〇lyVinyichl〇ride tubing), PE pipe (polyethylene tubing), PP pipe (p〇iypropyiene tubing),

PET 管(polyester tubing) 、Nylon 管(p〇lyamide tubing)、PI 管(polyimide tubing) ° 上述本創作一種具功能性的可撓性碳加熱管,其特徵在於: 所述包繞方式可以選用合股或編織方式將碳纖維束、玻璃纖維 束、岩石纖維束、陶瓷纖維束中之一種或一種以上組合加撚成型 的結構,該發熱體表面的功能性粉末可選擇為抗氧化材料粉末、 散熱材料粉末、遠紅外線粉末、負離子粉末、電氣石粉末、稀土 材料粉末之其中一種或一種以上組合。該抗氧化材料粉末為六方 氮化硼(HBN)、氮化鋁(A1N)、三氧化二鋁(A12〇3)之任一種或一 種以上組合。該散熱材料粉末為可選擇微米(奈米)金屬粉、石墨、 奈米碳管、碳黑、碳化辦SiC)、三氧化二銘(Al2Q3)、二氧化石夕 (Si〇2)氧化鈹(Be〇)、六方氮化爛(麵)、氣化結(aw)之任一 種或一種以上組合。該遠紅外線粉末為可選擇三氧化二鋁 (Al2〇3)、二氧化矽(Si〇2)、三氧化二鐵(Fe2〇3)、三氧化二鉻 ⑹2〇3)、二氧化辑⑽2)、氧賴⑽)、二氧化銳⑽:、 氧化錘⑽2)、氧化職〇)、二氧化鈽_、二氧化秘⑻⑹ 之任-種或-種以上組合,又該發熱體與絕緣套管之間可填充油 液°亥’由液為苯基硬油或礦物油。 、 M375158 、 【實施方式】 請參閱第一圖及第二圖所示,本創作一種具功能性的可撓性 碳加熱管10,該加熱管10主要由一發熱體11及一包覆於該發熱 體11外的絕緣套管12所構成,其中: 該發熱體11由一利用碳纖維束13以包繞方式將玻璃纖維束 14、岩石纖維束15、陶瓷纖維束16中之一種或一種以上組合加撚 所成型的結構,且該發熱體11表面彼覆有具功能性粉末17 ; 該絕緣套管12為可撓性的玻璃纖維編織管(p〇iy〇iefin tubing)或氟材彈性管(fiuoroeiast〇mer tubing )、石夕膠管 (silicon tubing)、PU 管(polyurethane tubing)、PVC 管 (Polyvinylchloride tubing)、PE 管(polyethylene tubing)、PP 管(polypropylene tubing)、PET 管(polyester tubing)、Nylon 管(polyamide tubing)、PI 管(polyimide tubing)。 請參閱第三圖所示,本創作一種具功能性的可撓性碳加熱 管,該發熱體11可以利用碳纖維束丨3以合股方式(或利用編織 方式,圓未顯示)將玻璃纖維束14、岩石纖維束15、陶瓷纖維束 16中之一種或一種以上組合加撚所成型的結構。 再請參閱第一圖所示,本創作一種具功能性的可撓性碳加熱 管,於該發熱體11與絕緣套管12之間可填充油液18,該油液18 為苯基矽油或礦物油,其主要在於提供均溫、保溫及防止發熱體 11氧化與斷裂的作用。 上述本創作一種具功能性的5可撓性碳加熱管,其中該披覆於 M375158 發熱體11表_魏性粉末17可轉為抗氧化_粉末散執 材料粉末、遠紅外線粉末、負離子粉末、魏石粉末稀土材料 粉末之其中一種或一種以上組合。 上述本創作-種具魏性的可撓性碳加熱管,其中該抗氧化 材料粉末為六方氮化蝴、氮德⑽)、三氧化二紹(ai_之任 一種或一種以上組合。。 上述本創作-種具魏㈣可撓性碳加熱管,其中該散熱材 料粉末為可選擇微米(奈米)金屑粉、石墨、奈米碳管、碳黑、碳 化石夕(Sic)、三氧化二紹(肠)、二氧化石夕(Si〇2)、氧化鍵⑽)、 六方氮化♦_、氮化紹⑽)之任-種或—種以上組合。 上述本創作-種具魏㈣可撓性碳加熱管,射該遠紅外 線粉末為可選擇三氧化二銘(A12〇3)、二氧化梦(si⑻、三氧化 二鐵(Fe2〇3)、三氧化二鉻(c論)、二氧化餌2)、氧化鎮 (MgO)、二氧化缺(Ti〇2)、氧化錯(Zr〇2)、氧化、二氧化 鈽(Ce〇2)、二氧化秘(Bi〇z)之任一種或一種以上組合。 4參閲第四圖所示本創作一種具功能性的可撓性碳加熱管 1〇 ’於兩端以導電性佳的端子2〇a、20b固定後可以任意彎曲形狀 設置於被加鏡上’當電源兩極接上本_-種具魏性的可挽 性碳加熱管的兩端子即可在管體上產生熱能,其具有使用方便, 熱效率南、使用壽命長、使用溫度麵寬料點,可以廣泛運用 工業領域’緣依法提出申請。 M375158 【圖式簡單說明】 第一圖為本創作第一實施例加熱管局部剖視示意圖。 第二圖為本創作第一實施例發熱體外觀示意圖。 第三圖為本創作第二實施例發熱體外觀示意圖。 第四圖為本創作使用狀態示意圖。 【主要元件符號說明】 本創作符號說明: 10 -加熱管 11 — -—發熱體 12-— ---絕緣套管 13— -碳纖維束 14—- -玻璃纖維束 15— ——岩石纖維束 16—- 陶瓷纖維束 17— -—功能性粉末 18—- -油液 20a、 20b—端子Polyester tubing, Nylon tubing, PI tubing ° The above is a functional flexible carbon heating tube, characterized in that: Or a structure in which one or more of a carbon fiber bundle, a glass fiber bundle, a rock fiber bundle, and a ceramic fiber bundle are combined and twisted, and the functional powder on the surface of the heat generating body may be selected from an antioxidant material powder and a heat dissipation material powder. One or more combinations of far infrared powder, negative ion powder, tourmaline powder, and rare earth material powder. The antioxidant material powder is any one or a combination of hexagonal boron nitride (HBN), aluminum nitride (A1N), and aluminum oxide (A12〇3). The heat dissipating material powder is selected from micron (nano) metal powder, graphite, carbon nanotubes, carbon black, carbonized SiC, Al2Q3, and bismuth dioxide (Si〇2) cerium oxide ( Any one or more combinations of Be〇), hexagonal nitride (face), and gasification (aw). The far-infrared powder is selected from the group consisting of aluminum oxide (Al2〇3), cerium oxide (Si〇2), ferric oxide (Fe2〇3), chromium oxide (6)2〇3), and dioxide (10)2) , oxygen lysate (10)), oxidized sharp (10):, oxidized hammer (10) 2), oxidized cerium), cerium oxide _, oxidized secret (8) (6), or a combination of more than one kind, and the heating element and the insulating sleeve The oil can be filled with phenyl hard oil or mineral oil. M375158, [Embodiment] Referring to the first and second figures, a flexible carbon heating tube 10 having a function of a heating element 11 and a coating body is disclosed. An insulating sleeve 12 outside the heating element 11 is configured, wherein: the heating element 11 is combined with one or more of the glass fiber bundle 14, the rock fiber bundle 15, and the ceramic fiber bundle 16 by a carbon fiber bundle 13 in a wrapping manner. The formed structure is twisted, and the surface of the heating element 11 is covered with a functional powder 17; the insulating sleeve 12 is a flexible glass fiber braided tube or a fluoroelastomer tube ( Fiuoroeiast〇mer tubing ), silicon tubing, polyurethane tubing, polyvinyl chloride tubing, polyethylene tubing, polypropylene tubing, PET tubing, Nylon Polyamide tubing, PI tubing. Referring to the third figure, a functional flexible carbon heating tube is created. The heating element 11 can be used to pry the glass fiber bundle 14 by means of a carbon fiber bundle 3 (or by knitting, circle not shown). One or more of the rock fiber bundles 15 and the ceramic fiber bundles 16 are combined to form a structure. Referring to the first figure, a functional flexible carbon heating tube is created. The heating body 11 and the insulating sleeve 12 can be filled with oil 18, which is phenyl eucalyptus oil or Mineral oil is mainly used to provide uniform temperature, heat preservation and prevention of oxidation and fracture of the heating element 11. The above-mentioned creation of a functional 5 flexible carbon heating tube, wherein the coating on the M375158 heating element 11 table _ Wei powder 17 can be converted into antioxidant _ powder powder material powder, far infrared powder, negative ion powder, One or more combinations of Wei Shi powder rare earth material powders. The above-mentioned creation-specialized flexible carbon heating tube, wherein the antioxidant material powder is hexagonal nitriding butterfly, nitrogen (10), and trioxide (a) or any combination of one or more. The creation-species Wei (four) flexible carbon heating tube, wherein the heat dissipating material powder is selected from micron (nano) gold powder, graphite, carbon nanotube, carbon black, carbonized stone (Sic), trioxide Any of the above or a combination of two or more (intestine), sulphur dioxide (Si〇2), oxidized bond (10), hexagonal nitriding ♦ _, and nitriding (10). The above-mentioned creation-species Wei (four) flexible carbon heating tube, the far-infrared powder is selected as the alternative of O3 (A12〇3), the dream of dioxide (si(8), ferric oxide (Fe2〇3), three Dichromia oxide (c), dioxide bait 2), oxidized town (MgO), dioxide deficiency (Ti〇2), oxidation fault (Zr〇2), oxidation, cerium oxide (Ce〇2), dioxide Any one or more combinations of (Bi〇z). 4 Referring to the fourth figure, a functional flexible carbon heating tube 1〇' can be arbitrarily bent to be placed on the mirror after being fixed at both ends by the terminals 2〇a and 20b having good conductivity. 'When the two poles of the power supply are connected to the two terminals of the tractable carbon heating tube, the heat can be generated on the tube body. It has convenient use, high thermal efficiency, long service life and wide temperature point of use. Can be widely used in the industrial field 'the legal basis to apply. M375158 [Simple description of the drawings] The first figure is a partial cross-sectional view of the heating tube of the first embodiment of the creation. The second figure is a schematic view of the appearance of the heating element of the first embodiment of the creation. The third figure is a schematic view of the appearance of the heating element of the second embodiment of the present invention. The fourth picture is a schematic diagram of the state of use of the creation. [Description of main component symbols] Description of the creation symbols: 10 - heating pipe 11 - - heating element 12 - - - insulating sleeve 13 - carbon fiber bundle 14 - - glass fiber bundle 15 - rock fiber bundle 16 —- Ceramic fiber bundle 17—--functional powder 18—--oil 20a, 20b—terminal

Claims (1)

六、申請專利範圍: 1. 一種具功能性的可撓性碳加熱管,該加熱管主要由一發熱體及 一包覆於該發熱體外的絕緣套管所構成,其中所述發熱體由一利 用碳纖維束以包繞方式將玻璃纖維束、岩石纖維束、陶瓷纖維束 中之一種或一種以上組合加撚成型的結構,且該發熱體表面彼覆 有具功能性粉末;所述絕緣套管為可撓性的玻璃纖維編織管 (polyolefin tubing)或氟材彈性管(fiu〇r〇eiast〇mer tubing)、 石夕膠管(silicon tubing)、PU 管(p〇iyUrethane tubing)、PVC 管 (Polyvinylchloride tubing) > PE f (polyethylene tubing) ^ PP 管(polypropylene tubing)、ΙΈΤ 管(p〇lyester tubing)、Nyl〇n 管(polyamide tubing)、PI 管(polyimide tubing)。 2. 依據巾請專纖i項所収功紐的可雜碳加熱 管,其特徵在於,所述發熱體與絕緣套管之間可填充油液。 3. 依據申請專珊财2項所狀―種具魏性的可撓性碳加熱 管,其特徵在於,所述油液為苯基矽油或礦物油。 4·依據申請糊翻第1顧述之—種具魏性的可撓性破加熱 管,其特徵在於,所述包繞方式可以合職編織方式將碳纖 維束、玻璃纖維束、陶瓷纖維束、岩石纖維束中之一種或一種以 上組合加撚成型的結構。 5·依據申請專利範圍第1項所述之—種具功能性的可撓性碳加熱 管,其特徵在於,所述發熱體表面的功能性粉末可選擇為抗氧/ 材料粉末、散熱材料粉末、遠紅外線粉末、負離 乳匕 8 貝雕于杨末、電氣石 [75158 粉末、稀土材料粉末之其中—種或一種以上組合。 6.依據申請專利範園第$項卢 管,其特計^ 、…、斤返之一種具功能性的可撓性碳加熱 、二;,所述抗氧化材料粉末為六方氮化硼、氮化鋁 )、二氧化二銘(則3)之任—種或-種以上組合。 二依^請專利細第5項所述之—種具功驗的可撓性碳加熱 、特徵在於’所述散熱材料粉末為可選擇微米(奈米)金屬粉、 二墨、奈米碳管、碳黑、碳切⑽)、三氧化二結(Al2〇3)、二 虱化石夕(Si〇2)、乳化鈹(Be0)、六方氮化蝴_、氮化紹觸 之任一種或一種以上組合。 技據申„月專利範圍第5項所述之一種具功能性的可棱性碳加熱 二其特徵在於,所猶紅外線粉末為可選擇三氧化二蚁獅)、 氧化夕(Si〇2)、二氧化二鐵(Fe2〇3)、三氧化二鉻(&2〇3)、 二氧化辑⑽2)、氧化鎂⑽)、二氧化鈥(TiW、氧化結⑽2)、 氧化約(CaO)、二氧化鈽(Ce〇2)、二氧化秘⑻⑹之任一種或一種 以上組合。Sixth, the scope of application for patents: 1. A flexible flexible carbon heating tube, the heating tube is mainly composed of a heating element and an insulating sleeve coated on the outside of the heating body, wherein the heating element is composed of a structure in which one or more of a glass fiber bundle, a rock fiber bundle, and a ceramic fiber bundle are combined and formed by a carbon fiber bundle in a wound manner, and the surface of the heat generating body is coated with a functional powder; the insulating sleeve It is a flexible glass tubing or a fluorine elastic tube (fiu〇r〇eiast〇mer tubing), a silicon tubing, a PU tube (p〇iyUrethane tubing), a PVC tube (Polyvinylchloride). Tubing) > PE f (polyethylene tubing) ^ PP tubing, p〇lyester tubing, Nyl〇n tubing, PI tubing. 2. A carbon-mixable heating tube according to a towel, which is characterized in that the heating element and the insulating sleeve can be filled with oil. 3. According to the application for the special Shan Cai 2, a flexible flexible carbon heating tube characterized in that the oil is phenyl eucalyptus oil or mineral oil. 4. According to the application for the first step of the invention - a flexible flexible heat-dissipating tube, characterized in that the wrapping method can be combined with a carbon fiber bundle, a glass fiber bundle, a ceramic fiber bundle, One or more of the rock fiber bundles are combined to form a structure. 5. The functional flexible carbon heating tube according to claim 1, wherein the functional powder on the surface of the heating element can be selected from an antioxidant/material powder and a heat dissipating material powder. , Far-infrared powder, negatively-separated milk mites 8 shell carving in the end of Yang, tourmaline [75158 powder, rare earth material powder - one or more combinations. 6. According to the patent application Fan Park No. 2005, the special meter ^, ..., Jin Hui, a functional flexible carbon heating, two; the antioxidant material powder is hexagonal boron nitride, nitrogen Aluminium), bismuth dioxide (3), or a combination of more than one. According to the patent item 5, the flexible carbon heating is characterized by the fact that the powder of the heat dissipating material is a selectable micron (nano) metal powder, a two-ink, a carbon nanotube. , carbon black, carbon cut (10)), triple oxide (Al2〇3), bismuth fossil (Si〇2), emulsified cerium (Be0), hexagonal nitriding butterfly _, nitriding one or one The above combination. A functional prismatic carbon heating according to item 5 of the patent application scope is characterized in that the infrared powder is an optional oxidized lion, and the cerium oxide (Si〇2). Iron dioxide (Fe2〇3), chromium oxide (&2〇3), dioxide (10)2), magnesium oxide (10)), cerium oxide (TiW, oxide (10)2), oxidation (CaO), Any one or more combinations of cerium oxide (Ce〇2), oxidized secret (8) (6).
TW98213215U 2009-09-24 2009-09-24 Functional flexible carbon heating tube TWM375158U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
TW98213215U TWM375158U (en) 2009-09-24 2009-09-24 Functional flexible carbon heating tube

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
TW98213215U TWM375158U (en) 2009-09-24 2009-09-24 Functional flexible carbon heating tube

Publications (1)

Publication Number Publication Date
TWM375158U true TWM375158U (en) 2010-03-01

Family

ID=50592523

Family Applications (1)

Application Number Title Priority Date Filing Date
TW98213215U TWM375158U (en) 2009-09-24 2009-09-24 Functional flexible carbon heating tube

Country Status (1)

Country Link
TW (1) TWM375158U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI583240B (en) * 2016-06-07 2017-05-11 台灣保暖科技股份有限公司 The present invention relates to a method for packaging thermal strip with a power terminal

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI583240B (en) * 2016-06-07 2017-05-11 台灣保暖科技股份有限公司 The present invention relates to a method for packaging thermal strip with a power terminal

Similar Documents

Publication Publication Date Title
Yang et al. Enhanced thermoelectric properties in hybrid graphene/boron nitride nanoribbons
WO2008013252A1 (en) Heat conductive adhesive
JP2011503328A5 (en)
JP2012523110A5 (en)
EP1509585A4 (en) Enhancing thermal conductivity of fluids with graphite nanoparticles and carbon nanotube
CN101731892A (en) Electric blanket, pad or cotton quilt
JP5203313B2 (en) Aluminum oxide sintered body and method for producing the same
EP1702907A3 (en) Enhanced boron nitride composition and polymer-based compositions made therewith
TW201125950A (en) Heat conductive insulating grease containing hexagonal boron nitride
CN107383560B (en) A kind of high efficiency composition heat sink material and preparation method thereof for semiconductor devices
TW200805555A (en) Joining structure between ceramic substrate and power supply connector
CN104763992B (en) Radiator
TWM375158U (en) Functional flexible carbon heating tube
EP1365219A3 (en) Thermocouple protective tube
CN112340724A (en) Preparation method for preparing high-thermal-conductivity three-dimensional graphene composite gel based on hydrothermal method
CN107325377A (en) High-efficient graphite alkene nano modification heat sink material and preparation method thereof
CN104672911B (en) A kind of preparation method based on carbon nano tube-doped weather resistant LED heat-conducting silicone greases
CN101711065A (en) Flexible carbon heating tube
JP5015450B2 (en) Thermally conductive molded body
JP2015209546A (en) Nano carbon composite material
JP2013204978A (en) Container for food heating
CN109112328A (en) A kind of graphene/copper alloy and its preparation and application
KR20170121851A (en) Carbon nanotubes heating element
CN201557271U (en) Flexible carbon heating pipe with functionality
TWM375446U (en) Electrically heated blanket, pad and comforter

Legal Events

Date Code Title Description
MM4K Annulment or lapse of a utility model due to non-payment of fees