Abstract:
The present invention is directed to an aerated composition comprising, in a physiologically acceptable medium, an oily phase dispersed in an aqueous phase, characterized in that it contains air or inert gas in a sufficient amount to have a relative density ranging from about 0.2 to about 0.9 (g/cm3) measured at a temperature of approximately 25° C. and at atmospheric pressure, and in that it comprises at least one modified starch, at least one emulsifier, and at least one oil-dispersible structuring agent.
Abstract translation:本发明涉及一种充气组合物,其在生理学上可接受的介质中包含分散在水相中的油相,其特征在于其含有足够量的空气或惰性气体,其相对密度范围为约0.2至约 在约25℃和大气压下测量的0.9(g / cm 3),并且其包含至少一种改性淀粉,至少一种乳化剂和至少一种油分散结构剂。
Abstract:
A water releasing composition in the form of an emulsion and process for using the composition are provided. The composition includes an aqueous phase and an oil phase. The aqueous phase includes at least one water-soluble active ingredient at a concentration by weight of from about 0.1% to about 20%, based upon weight of the composition. The oil phase includes dimethicone at a concentration by weight of about 1% to about 25%, and an emulsifying crosslinked siloxane elastomer at a concentration by weight of about 0.1% to about 20%, both based upon weight of the composition. The composition has a phase ratio of the aqueous phase to the oil phase of about 3.0 to about 12.0. The composition converts from an emulsion to a plurality of droplets upon application of shear.
Abstract:
A water-releasing photoprotection composition in the form of an emulsion and process for preparing the photoprotection composition are provided. The photoprotection composition includes an aqueous phase and an oil phase. The aqueous phase includes at least one water-soluble UV filter. The oil phase includes dimethicone and an emulsifying crosslinked siloxane elastomer. The photoprotection composition has a phase ratio of the aqueous phase to the oil phase of from about 3 to about 12. The photoprotection composition converts from an emulsion to a plurality of droplets upon application of shear.