摘要:
The present invention provides a functional filler which is excellent in dispersibility or interaction with polylactic acid as a matrix polymer and can improve heat resistance, moldability and mechanical strength of the polylactic acid; and a resin composition containing the functional filler. The functional filler of the present invention is characterized in including a raw material filler and polylactic acid, wherein a surface or end the raw material filler is modified by the polylactic acid.
摘要:
The present invention provides a functional filler which is excellent in dispersibility or interaction with polylactic acid as a matrix polymer and can improve heat resistance, moldability and mechanical strength of the polylactic acid; and a resin composition containing the functional filler. The functional filler of the present invention is characterized in including a raw material filler and polylactic acid, wherein a surface or end the raw material filler is modified by the polylactic acid.
摘要:
The present invention provides a functional filler which is excellent in dispersibility or interaction with polylactic acid as a matrix polymer and can improve heat resistance, moldability and mechanical strength of the polylactic acid; and a resin composition containing the functional filler. The functional filler of the present invention is characterized in including a raw material filler and polylactic acid, wherein a surface or end the raw material filler is modified by the polylactic acid.
摘要:
Provided are a method of manufacturing liquid crystal display device possessing transparent conductive layer exhibiting excellent optical transparency, resistance characteristic, evenness, adhesion to substrate, and hardness, and liquid crystal display device thereof. The liquid crystal display device possessing liquid crystal display panel and backlight unit, wherein liquid crystal display panel has a structure in which display electrode and reference electrode are provided on surface of region corresponding to unit pixel on liquid crystal layer side of one transparent substrate or each of both transparent substrates provided facing to each other via liquid crystal layer, and light transmitting liquid crystal layer is modulated by electric field generated parallel to transparent substrate between reference electrode and display electrode, wherein the method of manufacturing liquid crystal display device possesses the step of forming transparent conductive layer in pixel region by atmospheric pressure plasma method employing nitrogen gas as thin film forming gas.
摘要:
A layer forming method is disclosed which comprises the steps of supplying power of not less than 1 W/cm2 at a high frequency voltage exceeding 100 kHz across a gap between a first electrode and a second electrode opposed to each other at atmospheric pressure or at approximately atmospheric pressure to induce a discharge, generating a reactive gas in a plasma state by the charge, and exposing a substrate to the reactive gas in a plasma state to form a layer on the substrate.
摘要翻译:公开了一种层形成方法,其包括以下步骤:在超过100kHz的高频电压下跨越第一电极和第二电极相对的间隙提供不小于1W / cm 2的功率 彼此在大气压或大气压下引起放电,通过电荷产生处于等离子体状态的反应性气体,并将衬底暴露于等离子体状态的反应气体,以在衬底上形成一层。
摘要:
The object of the present invention is to provide:a glass member characterized by excellent friction resistance property, and antifouling property;a reading glass wherein, when this glass member is used as the reading glass of a scanner or a copier, toner, dust or adhesive does not easily deposit on the reading glass, with the result that deterioration in the copied image quality such as black spots or black streaks can be avoided;and a scanner or a copier wherein the glass is used.The glass member including a glass substrate including a fluorine containing film coated directly, not through any other layer interposed, on at least one surface of the glass substrate, wherein an element composition of the fluorine containing film is characterized in that a content of fluorine atoms exceeds 30 atomic percent, and an atomic ratio of oxygen atom to fluorine atom (O/F) is between 0.2 and 1.0.
摘要:
A layer formation method is disclosed which comprises supplying gas to a discharge space, exciting the supplied gas at atmospheric pressure or at approximately atmospheric pressure by applying a high frequency electric field across the discharge space, and exposing a substrate to the excited gas, wherein the high frequency electric field is an electric field in which a first high frequency electric field and a second high frequency electric field are superposed, frequency ω2 of the second high frequency electric field is higher than frequency ω1 of the first high frequency electric field, strength V1 of the first high frequency electric field, strength V2 of the second high frequency electric field and strength IV of discharge starting electric field satisfy relationship V1≧IV>V2 or V1>IV≧V2, and power density of the second high frequency electric field is not less than 1 W/cm2.
摘要翻译:公开了一种层形成方法,其包括向放电空间供应气体,通过在放电空间上施加高频电场,将基底暴露于激发气体,在大气压或大气压下激发供应的气体,其中, 高频电场是第一高频电场和第二高频电场叠加的电场,第二高频电场的频率ω2 <2>高于频率ω 1,第二高频电场的强度V SUB> 1,第二高频电场的强度V SUB> 2 < 放电起始电场的强度IV满足关系V 1 SUB> = IV> V 2或V 1 SUB> IV> = V 2 第二高频电场的功率密度不小于1W / cm 2。
摘要:
A layer forming method is disclosed which comprises the steps of supplying power of not less than 1 W/cm2 at a high frequency voltage exceeding 100 kHz across a gap between a first electrode and a second electrode opposed to each other at atmospheric pressure or at approximately atmospheric pressure to induce a discharge, generating a reactive gas in a plasma state by the charge, and exposing a substrate to the reactive gas in a plasma state to form a layer on the substrate.
摘要:
A layer forming method is disclosed which comprises the steps of supplying power of not less than 1 W/cm2 at a high frequency voltage exceeding 100 kHz across a gap between a first electrode and a second electrode opposed to each other at atmospheric pressure or at approximately atmospheric pressure to induce a discharge, generating a reactive gas in a plasma state by the charge, and exposing a substrate to the reactive gas in a plasma state to form a layer on the substrate.
摘要:
A method for producing light-sensitive material by using a curtain layer of coating solution. The method includes the steps of: discharging coating solution, including the light-sensitive material, from a coater die; forming a curtain layer of coating solution by causing the coating solution to fall from a die lip of the coater die in which the coating solution has at least 3 layers and a relational structure of dynamic surface tensions of the layers, satisfying the equation: .DELTA.K=.sigma.intermediate.sub.min -.sigma.outer.sub.max .gtoreq.0�mN/m! in which, .sigma.intermediated.sub.min �mN/m! represents the minimum value of dynamic surface tension of an intermediate layer among the layers, .sigma.outers.sub.max �mN/m! represents the maximum value of dynamic surface tension of an outer layer among the layers; and coating a continuous support with the coating solution.
摘要翻译:通过使用涂布液帘幕来生产感光材料的方法。 该方法包括以下步骤:从涂布机模具中排出包括感光材料的涂布溶液; 通过使涂布液从涂层溶液的至少3层的涂布机模具的模唇和层的动态表面张力的关系结构下降而形成涂层溶液的帘层,满足以下等式:DELTA K 西格玛中间分辨率= m [mN / m],其中,σ中间值min [mN / m]表示层间中间层的动态表面张力的最小值,σoutersmax [mN / m]表示 层间外层动态表面张力的最大值; 并用涂布溶液涂覆连续的载体。