The Experts below are selected from a list of 87 Experts worldwide ranked by ideXlab platform

Imanishi Shuzo - One of the best experts on this subject based on the ideXlab platform.

  • deodorizing textile product
    1990
    Co-Authors: Nakanishi Fujio, Fujiwara Hisashi, Maruyama Hisao, Imanishi Shuzo
    Abstract:

    PURPOSE:To obtain a deodorizing textile product, excellent in deodorizing rate and effects by holding a deodorizing Inorganic Substance through a cellular film of a resin on the surface of fiber. CONSTITUTION:The surface of fiber, such as natural or synthetic fiber, is coated with a coating solution prepared by blending and preparing a mixture obtained by mixing a resin emulsion, such as polyacrylic or polyurethane-based resin, with a deodorizing Inorganic Substance, e.g. oxide or phosphate of magnesium, aluminum, titanium, copper, zinc or silver, or a mixture thereof mixed in an amorphous state and dried to afford a deodorizing textile product, holding the above-mentioned deodorizing Inorganic Substance through a cellular film of the aforementioned resin on the fiber surface, rich in durability and excellent in deodorizing effects. The resultant product is extensively and suitably utilized as clothes, curtains, deodorizing FUTON (thick bedquilt), filters, etc.

Nakanishi Fujio - One of the best experts on this subject based on the ideXlab platform.

  • deodorizing textile product
    1990
    Co-Authors: Nakanishi Fujio, Fujiwara Hisashi, Maruyama Hisao, Imanishi Shuzo
    Abstract:

    PURPOSE:To obtain a deodorizing textile product, excellent in deodorizing rate and effects by holding a deodorizing Inorganic Substance through a cellular film of a resin on the surface of fiber. CONSTITUTION:The surface of fiber, such as natural or synthetic fiber, is coated with a coating solution prepared by blending and preparing a mixture obtained by mixing a resin emulsion, such as polyacrylic or polyurethane-based resin, with a deodorizing Inorganic Substance, e.g. oxide or phosphate of magnesium, aluminum, titanium, copper, zinc or silver, or a mixture thereof mixed in an amorphous state and dried to afford a deodorizing textile product, holding the above-mentioned deodorizing Inorganic Substance through a cellular film of the aforementioned resin on the fiber surface, rich in durability and excellent in deodorizing effects. The resultant product is extensively and suitably utilized as clothes, curtains, deodorizing FUTON (thick bedquilt), filters, etc.

Ermanno Bonucci - One of the best experts on this subject based on the ideXlab platform.

  • Calcification and silicification: a comparative survey of the early stages of biomineralization
    Journal of Bone and Mineral Metabolism, 2009
    Co-Authors: Ermanno Bonucci
    Abstract:

    Most of the studies on biomineralization have focused on calcification and silicification, the two systems that predominate in nature in the construction of skeletal or integumental hard tissues. They have, however, been studied separately, as if they were completely distinct processes, in spite of their several points of contact, especially as far as the organic–Inorganic relationships during the early mineralization stages are concerned. A very tight association of the Inorganic Substance with organic macromolecules, in fact, initially characterizes both systems. Although the mechanism of biomineralization remains elusive, a number of old and new findings, which have been taken into account in this review, support the view that, both in calcification and in silicification, genetically controlled organic macromolecules induce the formation of composite, organic–Inorganic nanoparticles, behave as templates for the subsequent assemblage of the nanoparticles into micro- to macroarchitectures of complex pattern, and, eventually, are mostly reabsorbed. There are still many gaps left in our knowledge of this process. Comparative studies of the two biomineralization systems may help to fill them.

Liu Main - One of the best experts on this subject based on the ideXlab platform.

  • Flame Retardancy of Phosphate/Inorganic Flame Retardant Under Microparticle and Mixture Blends
    China Plastics, 2020
    Co-Authors: Liu Main
    Abstract:

    Three caged phosphate(trimer) microparticles were mixed magnesium hydroxide(MH),aluminium hydroxide(ATH),and silicon dioxide,and formed three composite flame retardants.The trimer was also encapsulated with above Inorganic Substances,which formed three capsule flame retardants.The flame retardancy of the two types of flame retardants in epoxy resin(EP) was compared in terms of limiting oxygen index,vertical burning tests(UL94),and thermal gravimetric analysis(TGA).It showed that the function provided by the blends was better than that of the capsules.The epoxy resin loaded with 20 wt% flame retardant(17 %trimer and 3 % Inorganic Substance) gave rise to limiting oxygen index to 32 %,and UL94 reach V0 rating.Whereas those based on the same loading of capsules were only 24 % and UL94 V2.

Zhou Jian-gang - One of the best experts on this subject based on the ideXlab platform.

  • FUNCTION OF Inorganic Substance WITH CRYSTAL WATER IN MICROWAVE-ABSORBING MATERIAL
    Polymeric materials science and engineering, 2020
    Co-Authors: Zhou Jian-gang
    Abstract:

    The microwave-absorbing property of polymer filled with Inorganic Substance with crystal water and carbon black was examined. The results show that the composites filled with Inorganic Substance with crystal water hav′t the ability of absorbing property and the composites filled with CB have good absorbing property. The composites filled with both CB and Inorganic Substance with crystal water have better absorbing property than the composites filled with CB. The quantity of Inorganic Substance with crystal water has an effect on absorptive ability. The maximum absorption quantity of PVC/CB/Al_2O_3·3H_2O(100/20/100) reaches (21.87) dB.