TWM619086U - Heat accumulation patch pad - Google Patents

Heat accumulation patch pad Download PDF

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TWM619086U
TWM619086U TW110207240U TW110207240U TWM619086U TW M619086 U TWM619086 U TW M619086U TW 110207240 U TW110207240 U TW 110207240U TW 110207240 U TW110207240 U TW 110207240U TW M619086 U TWM619086 U TW M619086U
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heat
layer
heat storage
adhesive layer
insulation layer
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TW110207240U
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李訓能
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李訓能
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Abstract

本創作提供一種蓄熱貼墊,其包含:蓄熱層、隔熱層及黏著層,其中上述隔熱層係黏接於上述蓄熱層之上,上述黏著層則塗佈於前述蓄熱層之下;上述蓄熱層係位於上述隔熱層及黏著層之間,且該隔熱層、該蓄熱層及該黏著層係依序一體成型,該黏著層係用以貼附於人體皮膚上,其中該蓄熱層係位於該隔熱層及該黏著層之間,該隔熱層具有一第一熱傳導係數,該蓄熱層具有一第二熱傳導係數,該第二熱傳導係數係大於該第一熱傳導係數。 The present invention provides a heat storage pad, which comprises: a heat storage layer, a heat insulation layer and an adhesive layer, wherein the heat insulation layer is adhered to the heat storage layer, and the adhesive layer is coated under the heat storage layer; The heat storage layer is located between the heat insulation layer and the adhesive layer, and the heat insulation layer, the heat storage layer and the adhesive layer are integrally formed in sequence. The adhesive layer is used to stick to the human skin, wherein the heat storage layer Is located between the heat insulation layer and the adhesive layer, the heat insulation layer has a first thermal conductivity coefficient, the heat storage layer has a second thermal conductivity coefficient, and the second thermal conductivity coefficient is greater than the first thermal conductivity coefficient.

Description

蓄熱貼墊 Heat storage pad

本創作屬於可釋放遠紅外線之蓄熱貼墊,主要涉及一種貼附於人體皮膚上且可蓄積熱能的蓄熱貼墊。 This creation belongs to a heat storage pad that can release far infrared rays, and mainly relates to a heat storage pad that is attached to human skin and can accumulate heat energy.

過往為了舒緩疲勞或改善肌肉的緊蹦不適感,一般人會使用遠紅外線燈照射疲勞或不適的部位以達到緩解僵硬及痠痛的效果,而遠紅外線燈係採用遠紅外線對人體局部加熱,以達到促進新陳代謝並加強血液循環的效果,但遠紅外線燈的使用不宜過久且照射不適合距離人體過近,以避免對人體造成燙傷。 In the past, in order to relieve fatigue or improve muscle tension and discomfort, most people used far-infrared lamps to irradiate fatigue or uncomfortable parts to relieve stiffness and soreness. Far-infrared lamps use far-infrared rays to heat local human body to promote Metabolism and enhance blood circulation, but the use of far-infrared lamps should not be too long and the irradiation is not suitable for being too close to the human body to avoid scalding the human body.

為了改善遠紅外線燈在使用上的限制,目前市售的電熱毯除了可對人體局部加熱之外,亦可控制加熱溫度及加熱時間,且電熱毯能覆蓋在人體皮膚上,使人體局部區域經過熱敷後得到症狀緩解,不過現有電熱毯之缺點在於使用上需要小心勿彎折到電熱毯內的銅線,若電熱毯內的銅線斷裂則將減損電熱毯的加熱效果。因此,綜上所述,有鑑於上述產品在使用上所遭遇的缺點,亟需開發新的產品以克服上述產品於使用時所遇到的問題且亦能有效舒緩使用者的疲勞或不適之症狀。 In order to improve the restrictions on the use of far-infrared lamps, the current commercially available electric blankets can not only locally heat the human body, but also control the heating temperature and heating time. The electric blanket can cover the human skin so that local areas of the human body can pass through. The symptoms are alleviated after hot compress. However, the disadvantage of the existing electric blanket is that it is necessary to be careful not to bend the copper wire in the electric blanket. If the copper wire in the electric blanket breaks, the heating effect of the electric blanket will be reduced. Therefore, in summary, in view of the shortcomings encountered in the use of the above products, it is urgent to develop new products to overcome the problems encountered in the use of the above products and also effectively relieve the user’s fatigue or discomfort symptoms. .

為解決所述之現況,本創作之目的在於提供一種可吸收並蓄 積大量熱能的蓄熱貼墊,以供使用者於某些部位疲勞痠痛狀態時可經常使用,本創作之蓄熱貼墊除了可重複使用多次之外,只要在使用時將蓄熱貼墊放置並黏貼於疲勞或痠痛的身體部位之上即可吸收人體熱能並釋放遠紅外線,且本創作之黏著層本身就算經過多次沖洗後仍具有黏性以貼附於人體皮膚;而本創作之蓄熱貼墊具有彈性、柔軟且可充分完整貼附於疲勞或痠痛的身體部位上,再者,本創作之蓄熱貼墊可隨意彎折且不易斷裂,即使受到外力變形亦能穩定維持其吸收熱能並釋放遠紅外線之功能,所以只要能將本創作之蓄熱貼墊貼附於皮膚上,前述蓄熱貼墊即可不斷吸收熱能並向皮膚下方發射遠紅外線,使疲勞或痠痛的身體部位接收到遠紅外線後以促進血液循環、新陳代謝及減緩疲勞疼痛之效。另一方面,於本創作蓄熱貼墊另一個優勢為蓄熱貼墊內不需要埋設金屬線(例如,銅線),且亦不用連接發電元件以做導電幫助本創作之蓄熱貼墊發熱之用。本創作之蓄熱貼墊亦可為面膜或頸膜以敷於臉部或脖子之上。本創作之蓄熱貼墊可貼附於背部、手臂部、腿部、其他較平坦的部位或關節部位上。 In order to solve the stated situation, the purpose of this creation is to provide a The heat storage pad that accumulates a large amount of heat energy can be used frequently by users in certain parts of fatigue and pain. The heat storage pad of this creation can be reused many times, as long as the heat storage pad is placed and pasted during use It can absorb body heat and release far-infrared rays on tired or sore body parts, and the adhesive layer of this creation is still sticky to stick to human skin even after repeated washings; and the heat storage pad of this creation It is elastic, soft and can be fully attached to fatigued or sore body parts. Moreover, the heat storage pad of this creation can be bent at will and is not easy to break. Even if it is deformed by external force, it can stably maintain its absorption of heat energy and release far The function of infrared rays, so as long as the heat storage pad of this creation can be attached to the skin, the aforementioned heat storage pad can continuously absorb heat energy and emit far infrared rays to the bottom of the skin. Promote blood circulation, metabolism and relieve fatigue and pain. On the other hand, another advantage of the thermal storage pad in this creation is that there is no need to embed metal wires (for example, copper wires) in the thermal storage pad, and there is no need to connect a power generation element to conduct electricity to help the thermal storage pad of this creation generate heat. The heat storage pad of this creation can also be a facial mask or neck mask to be applied on the face or neck. The heat storage pad of this creation can be attached to the back, arms, legs, other flat parts or joint parts.

於本創作的第一觀點中,本創作之蓄熱貼墊,包含:蓄熱層、隔熱層及黏著層,其中上述隔熱層係黏接於上述蓄熱層之上,上述黏著層則塗佈於前述蓄熱層之下;上述蓄熱層係位於上述隔熱層及黏著層之間,且該隔熱層、該蓄熱層及該黏著層係依序一體成型,該黏著層係用以貼附於人體皮膚上。 In the first point of view of this creation, the heat storage pad of this creation includes: a heat storage layer, a heat insulation layer and an adhesive layer. The heat insulation layer is adhered to the heat storage layer, and the adhesive layer is coated on Below the heat storage layer; the heat storage layer is located between the heat insulation layer and the adhesive layer, and the heat insulation layer, the heat storage layer and the adhesive layer are integrally formed in sequence, and the adhesive layer is used to stick to the human body On the skin.

在某些實施例中,當本創作之蓄熱貼墊貼附於人體皮膚表面後,係透過本創作之黏著層本身所具有的黏度以貼附於人體皮膚上,而本創作蓄熱貼墊之蓄熱層及黏著層之材質係具有一吸熱材質,進一步而言, 本創作所使用之吸熱材質又可發出遠紅外線。當上述蓄熱貼墊貼附於人體皮膚上時,本創作所使用之吸熱材質在吸收人體所發出之熱能後會再向人體發出遠紅外線,使人體細胞吸收遠紅外線後而活化並促進新陳代謝。而為了維持本創作之蓄熱貼墊的蓄熱效果,上述隔熱層具有一第一熱傳導係數,上述蓄熱層具有一第二熱傳導係數,該第二熱傳導係數係大於該第一熱傳導係數;上述隔熱層之第一熱傳導係數較低,致使上述蓄熱層吸收人體所發出之熱能後,延緩或減少熱能再透過隔熱層散出;上述蓄熱層的第二熱傳導係數較高,讓熱能大多可被傳導並蓄積於蓄熱層中並為吸熱材質所吸收而向人體發出遠紅外線。 In some embodiments, when the heat storage patch of the present creation is attached to the surface of human skin, it is attached to the human skin through the viscosity of the adhesive layer itself, and the heat storage patch of the present creation The material of the layer and the adhesive layer has a heat-absorbing material, further speaking, The heat-absorbing material used in this creation can also emit far infrared rays. When the thermal storage pad is attached to the human skin, the heat-absorbing material used in this creation will emit far infrared rays to the human body after absorbing the heat energy from the human body, so that the human cells absorb the far infrared rays to activate and promote metabolism. In order to maintain the thermal storage effect of the thermal storage pad of this creation, the thermal insulation layer has a first thermal conductivity coefficient, the thermal storage layer has a second thermal conductivity coefficient, and the second thermal conductivity coefficient is greater than the first thermal conductivity coefficient; The first heat transfer coefficient of the layer is relatively low, so that after the heat storage layer absorbs the heat energy emitted by the human body, it delays or reduces the heat energy and then dissipates through the heat insulation layer; the second heat conductivity coefficient of the heat storage layer is higher, so that most of the heat can be conducted It is stored in the heat storage layer and is absorbed by the heat-absorbing material to emit far infrared rays to the human body.

於某些實施例中,上述隔熱層、蓄熱層及黏著層均屬於彈性體,所以本創作之蓄熱貼墊受力彎折或拉伸時不會受損。於一實施例中,上述吸熱材質具有高熱傳導係數;於某一實施例中,上述吸熱材質進一步包含奈米陶瓷粉末;在一實施例中,上述吸熱材質進一步包含石墨烯。 In some embodiments, the above-mentioned heat insulation layer, heat storage layer and adhesive layer are all elastomers, so the heat storage pad of the present invention will not be damaged when it is bent or stretched under force. In one embodiment, the endothermic material has a high thermal conductivity; in an embodiment, the endothermic material further includes nano-ceramic powder; in one embodiment, the endothermic material further includes graphene.

在一實施例中,上述蓄熱貼墊之厚度(即隔熱層、蓄熱層及黏著層的總厚度)係介於1.5mm至6mm之間;於某些實施例中,上述黏著層之黏度係大於該隔熱層之黏度,而上述蓄熱層之厚度係大於該隔熱層及該黏著層。 In one embodiment, the thickness of the heat storage pad (that is, the total thickness of the heat insulation layer, the heat storage layer, and the adhesive layer) is between 1.5 mm and 6 mm; in some embodiments, the viscosity of the adhesive layer is Greater than the viscosity of the heat-insulating layer, and the thickness of the heat storage layer is greater than that of the heat-insulating layer and the adhesive layer.

100:蓄熱貼墊 100: Heat storage pad

101:隔熱層 101: Insulation layer

102:蓄熱層 102: Thermal storage layer

103:黏著層 103: Adhesive layer

104:第一表面 104: first surface

105:第二表面 105: second surface

200:蓄熱貼墊 200: Heat storage pad

201:隔熱層 201: Insulation layer

202:蓄熱層 202: Thermal storage layer

203:黏著層 203: Adhesive layer

B:人體 B: Human body

F:遠紅外線 F: far infrared

H:熱能 H: heat

S:皮膚 S: skin

本創作之實施例係藉由後附圖示中之實例加以說明,而非用以限制本創作。後附圖式中相似之元件符號係指類似之元件。 The embodiments of this creation are illustrated by the examples shown in the following drawings, and are not intended to limit the creation. Similar component symbols in the following drawings refer to similar components.

圖1係顯示蓄熱貼墊之剖面示意圖。 Figure 1 shows a schematic cross-sectional view of the thermal storage pad.

圖2係顯示本創作之蓄熱貼墊之使用狀態示意圖。 Figure 2 is a schematic diagram showing the state of use of the thermal storage pad of this creation.

本創作將以較佳實施例及觀點加以敘述,此類敘述細解釋本創作之結構,僅用以說明而非用以限制本創作之申請專利範圍。因此,除說明書中之較佳實施例之外,本創作亦可廣泛實行於其他實施例中。 This creation will be described with preferred embodiments and viewpoints. Such descriptions explain the structure of this creation in detail, and are only used to illustrate rather than limit the scope of patent application for this creation. Therefore, in addition to the preferred embodiments in the specification, the creation can also be widely implemented in other embodiments.

本創作係為一種蓄熱貼墊100,如圖1所顯示蓄熱貼墊100之剖面示意圖。前述之蓄熱貼墊進一步包含隔熱層101、蓄熱層102及黏著層103,其中上述隔熱層101係黏接於該蓄熱層102之上,上述黏著層103係塗佈於該蓄熱層102之下;上述蓄熱層102係位於隔熱層101及黏著層103之間,而上述隔熱層101具有一第一熱傳導係數,該蓄熱層102具有一第二熱傳導係數,而上述第二熱傳導係數係大於第一熱傳導係數;上述隔熱層101、蓄熱層102及黏著層103係依序一體成型。進一步而言,上述蓄熱層102本身具有第一表面104及第二表面105,上述隔熱層101係黏接於上述第一表面104之上,而上述黏著層103則塗佈於第二表面105之上,由前述所揭結構可知,本創作之蓄熱貼墊100之結構係以隔熱層101、蓄熱層102及黏著層103依序由上至下排列組合而成。在某一實施例中,其中上述蓄熱層102及黏著層103所使用之材質係具有一吸熱材質,再透過上述黏著層103貼附於人體皮膚上,使上述蓄熱貼墊得以吸收人體所散發之熱能。在一實施例中,上述吸熱材質進一步包括但不限於奈米陶瓷粉末或石墨烯。於一實施例中,上述隔熱層101進一步係以矽膠製成。 This creation is a kind of thermal storage pad 100, as shown in FIG. 1 is a schematic cross-sectional view of the thermal storage pad 100. The aforementioned heat storage pad further includes a heat insulation layer 101, a heat storage layer 102, and an adhesive layer 103. The heat insulation layer 101 is adhered to the heat storage layer 102, and the adhesive layer 103 is coated on the heat storage layer 102. The thermal storage layer 102 is located between the thermal insulation layer 101 and the adhesive layer 103, and the thermal insulation layer 101 has a first thermal conductivity coefficient, the thermal storage layer 102 has a second thermal conductivity coefficient, and the second thermal conductivity coefficient is Greater than the first thermal conductivity coefficient; the heat insulation layer 101, the heat storage layer 102, and the adhesive layer 103 are integrally formed in sequence. Furthermore, the heat storage layer 102 itself has a first surface 104 and a second surface 105, the heat insulation layer 101 is adhered to the first surface 104, and the adhesive layer 103 is coated on the second surface 105 Above, it can be seen from the aforementioned structure that the structure of the heat storage pad 100 of the present creation is composed of the heat insulation layer 101, the heat storage layer 102, and the adhesive layer 103 in sequence from top to bottom. In an embodiment, the material used for the heat storage layer 102 and the adhesive layer 103 is a heat absorbing material, and then the adhesive layer 103 is attached to the skin of the human body, so that the heat storage pad can absorb the heat emitted by the human body. Thermal energy. In an embodiment, the aforementioned heat-absorbing material further includes but is not limited to nano-ceramic powder or graphene. In one embodiment, the thermal insulation layer 101 is further made of silicone.

本創作之蓄熱貼墊本身之隔熱層、蓄熱層及黏著層均為彈性體,所以本創作之蓄熱貼墊具有較佳的伸縮性以適用於貼附在人體不同部位(例如,臉部、脖子、手部、胸腹部、腿部或關節部位等等)之皮膚。另一 方面,為了讓本創作之蓄熱貼墊有效吸取人體熱能,本創作之蓄熱貼熱所使用的吸熱材質具有高熱傳導係數;本創作之蓄熱貼墊所使用的吸熱材質進一步包含奈米陶瓷粉末;在一實施例中,前揭之吸熱材質進一步包含石墨烯。在某一實施例中,上述蓄熱貼墊於吸收人體所發出之熱能後會再向人體發出遠紅外線。 The heat storage pad of this creation has its own heat insulation layer, heat storage layer and adhesive layer are all elastomers, so the heat storage pad of this creation has better flexibility and is suitable for attaching to different parts of the human body (for example, face, Skin of neck, hands, chest and abdomen, legs or joints, etc.). another On the other hand, in order to allow the heat storage pad of this creation to effectively absorb human body heat, the heat-absorbing material used in the heat storage paste of this creation has a high thermal conductivity; the heat-absorbing material used in the heat storage pad of this creation further contains nano ceramic powder; In one embodiment, the heat-absorbing material disclosed above further includes graphene. In an embodiment, the thermal storage pad described above will emit far infrared rays to the human body after absorbing the heat energy emitted by the human body.

較佳的,上述蓄熱貼墊之厚度係介於1.5mm至6mm之間;在一實施例中,當上述蓄熱貼墊貼附於臉部或脖子時,上述蓄熱貼墊之厚度約為1.5mm。於某些實施例中,當上述蓄熱貼墊貼附於背部、手臂部、腿部或其他較平坦的部位時,上述蓄熱貼墊之厚度約介於4-6mm,進一步而言,上述蓄熱貼墊之厚度約為5mm。在一實施例中,本創作之蓄熱貼墊形狀進一步包括但不限為圓扁體、方形扁體等等。於某些實施例中,本創作之蓄熱貼墊又可為面膜或頸膜。 Preferably, the thickness of the heat storage pad is between 1.5mm and 6mm; in one embodiment, when the heat storage pad is attached to the face or neck, the thickness of the heat storage pad is about 1.5mm . In some embodiments, when the heat storage patch is attached to the back, arms, legs or other relatively flat parts, the thickness of the heat storage patch is about 4-6 mm. Further, the heat storage patch The thickness of the pad is about 5mm. In one embodiment, the shape of the heat storage pad of the present creation further includes, but is not limited to, a round flat body, a square flat body, and the like. In some embodiments, the heat storage pad of the present invention can be a facial mask or a neck mask.

於某些實施例中,上述隔熱層101及黏著層103均保有黏度。於某一實施例中,上述隔熱層101之黏度係小於上述黏著層103之黏度,顯示上述黏著層103的黏性較佳,適合用於貼附於人體皮膚上。於某些實施例中,上述黏著層之黏度係大於該隔熱層之黏度,而上述蓄熱層之厚度係大於該隔熱層及該黏著層。 In some embodiments, the heat-insulating layer 101 and the adhesive layer 103 both maintain viscosity. In an embodiment, the viscosity of the thermal insulation layer 101 is less than the viscosity of the adhesive layer 103, which shows that the adhesive layer 103 has better adhesiveness and is suitable for being attached to human skin. In some embodiments, the viscosity of the adhesive layer is greater than the viscosity of the heat-insulating layer, and the thickness of the heat storage layer is greater than that of the heat-insulating layer and the adhesive layer.

請參照圖2,圖2係顯示蓄熱貼墊200之使用狀態示意圖。為了維持本創作之蓄熱貼墊200的蓄熱效果,上述隔熱層201具有一第一熱傳導係數,上述蓄熱層202具有一第二熱傳導係數,該第二熱傳導係數係大於該第一熱傳導係數;上述隔熱層201之第一熱傳導係數較低,致使上述蓄熱層202吸收人體所發出之熱能H後,延緩或減少熱能H再透過隔熱層201散 出,而蓄熱層202的第二熱傳導係數較高,讓熱能H大多可被傳導並蓄積於蓄熱層202中並為吸熱材質所吸收而向人體發出遠紅外線。舉例而言,當本創作之蓄熱貼墊200放置於人體皮膚S之上後,可見隔熱層201位於蓄熱貼墊200最外層,上述黏著層203則貼附於皮膚S之上,人體之熱能便可透過黏著層203進入蓄熱層202,而蓄熱層202進一步可見位於前述隔熱層201及黏著層203之問。於一實施例中,本創作所使用之蓄熱貼墊200之蓄熱層202在吸收人體B所發出之熱能H後,會將熱能H蓄積於蓄熱層202中,在蓄熱層202中的吸熱材質吸收熱能H後再向人體發出遠紅外線F,使人體B吸收遠紅外線後而活化細胞並促進新陳代謝,同時,為了避免熱能H再透過隔熱層201傳遞而散出並保持大量熱能蓄積於蓄熱層中,本創作之蓄熱貼墊採用導熱效果較差之隔熱層201,且該隔熱層之第一熱傳導係數較低而足以延緩或減少熱能再透過隔熱層201散出。在一實施例中,上述隔熱層201進一步係以矽膠製成。 Please refer to FIG. 2, which is a schematic diagram showing the use state of the heat storage pad 200. In order to maintain the thermal storage effect of the thermal storage pad 200 of the present creation, the thermal insulation layer 201 has a first thermal conductivity coefficient, and the thermal storage layer 202 has a second thermal conductivity coefficient, and the second thermal conductivity coefficient is greater than the first thermal conductivity coefficient; The first thermal conductivity coefficient of the heat insulation layer 201 is relatively low, so that after the heat storage layer 202 absorbs the heat energy H emitted by the human body, it delays or reduces the heat energy H and then dissipates through the heat insulation layer 201. The second thermal conductivity coefficient of the heat storage layer 202 is relatively high, so that most of the heat energy H can be conducted and stored in the heat storage layer 202 and absorbed by the heat-absorbing material to emit far infrared rays to the human body. For example, when the heat storage patch 200 of the present creation is placed on the human skin S, it can be seen that the heat insulation layer 201 is located on the outermost layer of the heat storage patch 200, and the adhesive layer 203 is attached to the skin S. The heat energy of the human body It can enter the heat storage layer 202 through the adhesive layer 203, and the heat storage layer 202 can be further seen between the aforementioned heat insulation layer 201 and the adhesive layer 203. In one embodiment, after the heat storage layer 202 of the heat storage pad 200 used in this creation absorbs the heat energy H emitted by the human body B, the heat energy H is stored in the heat storage layer 202, and the heat-absorbing material in the heat storage layer 202 absorbs After the heat energy H, it emits far infrared rays F to the human body, so that the human body B absorbs the far infrared rays to activate cells and promote metabolism. At the same time, in order to prevent the heat energy H from being transmitted through the heat insulation layer 201 and dissipate and keep a large amount of heat energy accumulated in the heat storage layer , The heat storage pad of this creation uses the heat insulation layer 201 with poor thermal conductivity, and the first heat conductivity coefficient of the heat insulation layer is low enough to delay or reduce the heat energy from dissipating through the heat insulation layer 201. In one embodiment, the thermal insulation layer 201 is further made of silicone.

以上敘述係為本創作之較佳實施例。此領域之技藝者應得以領會其係用以說明本創作而非用以限定本創作所主張之專利權利範圍。其專利保護範圍當視後附之申請專利範圍及其等同領域而定。凡熟悉此領域之技藝者,在不脫離本專利精神或範圍內,所作之更動或潤飾,均屬於本創作所揭示精神下所完成之等效改變或設計,且應包含在下述之申請專利範圍內。 The above description is the preferred embodiment of this creation. Those skilled in this field should be able to understand that it is used to illustrate the creation and not to limit the scope of the patent rights claimed by this creation. The scope of its patent protection shall be determined by the scope of the attached patent application and its equivalent fields. Anyone familiar with the art in this field, without departing from the spirit or scope of this patent, makes changes or modifications that are equivalent changes or designs completed under the spirit of this creation, and should be included in the scope of the following patent application Inside.

100:蓄熱貼墊 100: Heat storage pad

101:隔熱層 101: Insulation layer

102:蓄熱層 102: Thermal storage layer

104:第一表面 104: first surface

105:第二表面 105: second surface

103:黏著層 103: Adhesive layer

Claims (8)

一種蓄熱貼墊,包含: A heat storage pad, including: 一蓄熱層; A thermal storage layer; 一隔熱層,其係黏接於該蓄熱層之上; A heat insulation layer, which is bonded to the heat storage layer; 一黏著層,其係塗佈於該蓄熱層之下; An adhesive layer, which is coated under the heat storage layer; 其中該蓄熱層係位於該隔熱層及該黏著層之間,該隔熱層具有一第一熱傳導係數,該蓄熱層具有一第二熱傳導係數,該第二熱傳導係數係大於該第一熱傳導係數。 The thermal storage layer is located between the thermal insulation layer and the adhesive layer, the thermal insulation layer has a first thermal conductivity coefficient, the thermal storage layer has a second thermal conductivity coefficient, and the second thermal conductivity coefficient is greater than the first thermal conductivity coefficient . 如申請專利範圍第1項所述之蓄熱貼墊,其中於該蓄熱層及該黏著層中具有一吸熱材質。 The heat storage pad described in item 1 of the scope of patent application has a heat-absorbing material in the heat storage layer and the adhesive layer. 如申請專利範圍第2項所述之蓄熱貼墊,其中該吸熱材質進一步包含奈米陶瓷粉末。 The heat storage pad described in item 2 of the scope of patent application, wherein the heat absorption material further comprises nano ceramic powder. 如申請專利範圍第2項所述之蓄熱貼墊,其中該吸熱材質進一步包含石墨烯。 The heat storage pad described in item 2 of the scope of patent application, wherein the heat absorption material further includes graphene. 如申請專利範圍第1項所述之蓄熱貼墊,其中該蓄熱貼墊之厚度係介於1.5mm-6mm之間。 The heat storage pad described in item 1 of the scope of patent application, wherein the thickness of the heat storage pad is between 1.5mm-6mm. 如申請專利範圍第1項所述之蓄熱貼墊,其中該隔熱層進一步係以矽膠製成。 The heat storage pad described in item 1 of the scope of patent application, wherein the heat insulation layer is further made of silicone. 如申請專利範圍第1項所述之蓄熱貼墊,其中該黏著層之黏度係大於該隔熱層之黏度。 The heat storage pad described in item 1 of the scope of patent application, wherein the viscosity of the adhesive layer is greater than the viscosity of the heat insulation layer. 如申請專利範圍第1項所述之蓄熱貼墊,其中該蓄熱層之厚度係大於該隔熱層及該黏著層。 The heat storage pad described in item 1 of the scope of patent application, wherein the thickness of the heat storage layer is greater than the heat insulation layer and the adhesive layer.
TW110207240U 2021-06-23 2021-06-23 Heat accumulation patch pad TWM619086U (en)

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