LATENT HEAT STORAGE BODY AND MANUFACTURING METHOD OF LATENT HEAT STORAGE BODY
PROBLEM TO BE SOLVED: To provide a latent heat storage body excellent in mechanical strength with a relatively light weight, and capable of facilitating latent heat storage for waste heat in a low temperature range, and a manufacturing method of the latent heat storage body.SOLUTION: A latent heat s...
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Zusammenfassung: | PROBLEM TO BE SOLVED: To provide a latent heat storage body excellent in mechanical strength with a relatively light weight, and capable of facilitating latent heat storage for waste heat in a low temperature range, and a manufacturing method of the latent heat storage body.SOLUTION: A latent heat storage body 1 includes a latent heat storage member 10 composed of an organic compound, and a metal film 20, as a metal seamless capsule, configured to encapsulate the latent heat storage member 10 therein. A manufacturing method of the latent heat storage body 1 comprises: on a surface of the latent heat storage member 10, applying powder of copper oxide; after electroless copper plating with the powder and plating catalyst as deposition origin, performing electrolytic copper plating to form the metal film 20; and encapsulating the latent heat storage member 10 inside the metal film 20.SELECTED DRAWING: Figure 1
【課題】比較的軽量で機械的強度に優れるとともに容易に低温域の廃熱を潜熱蓄熱することが可能な潜熱蓄熱体およびその製造方法を提供すること。【解決手段】潜熱蓄熱体1は、有機化合物で構成される潜熱蓄熱部材10と、潜熱蓄熱部材10を内部に封入する金属製のシームレスカプセルである金属皮膜20とを備えている。潜熱蓄熱部材10の表面に酸化銅の粉末を塗布し、この粉末とめっき触媒とを析出起点として無電解銅めっきをした後、電解銅めっきを行なって金属皮膜20を形成し、金属皮膜20の内部に潜熱蓄熱部材10が封入された潜熱蓄熱体1を製造する。【選択図】図1 |
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