Abstract:
PROBLEM TO BE SOLVED: To provide a mold assembly for injection compression molding for manufacturing injection compression molded products and a method of injection compression molding using it.SOLUTION: The mold assembly for injection compression molding includes: a first pressurizing part 1; a first mold 3 installed in the first pressurizing part 1; a second pressurizing part 5 arranged opposite to the first pressurizing part 1 and moved by a driving means; a second mold 7 formed in the second pressurizing part 5 and arranged opposite to the first mold 3; a space securing member 11 positioned on one side of the second mold 7 and installed in the second pressurizing part 5 to come into close contact with one face of the first mold 3; a supporting part 13 for pushing the space securing member 11 toward the first mold 3; and a resin injecting part 9 formed in the first mold 3 for filling resin into a cavity formed by the first mold 3 and the second mold 7 which are joined together. While the first mold 3 and the second mold 7 come into close contact and the resin filled in the cavity is compressed, a gate 19 is cut by the first mold 3 and the second mold 7.
Abstract:
PROBLEM TO BE SOLVED: To provide a method for producing a catalyst having excellent activity with sufficient repeatability. SOLUTION: Provided is a method for producing a catalyst supported by a carrier for oxidizing acrolein having catalyst components represented by formula (1), the method comprising a step for producing a catalyst suspension by mixing under stirring the aqueous solutions of salts of metal components included in chemical formula (1): Mo a W b V c A d B e O x (1); a step for crushing a deposit in the suspension during or after the above step for producing the suspension; and a step for spraying the suspension obtained in the above step onto an inactive carrier while being dried with hot air. In the above formula, A represents one or more elements selected from the group consisting of iron, copper, bismuth, chromium, tin, antimony, nickel, cobalt, manganese, cerium and thallium; and B represents one or more elements selected from the group consisting of an alkaline metal and an alkaline-earth metal. COPYRIGHT: (C)2009,JPO&INPIT
Abstract translation:待解决的问题:提供一种制备具有优异活性并具有充分重复性的催化剂的方法。 解决方案:提供一种由用于氧化具有由式(1)表示的催化剂组分的丙烯醛的载体负载的催化剂的方法,该方法包括通过在搅拌下混合来制备催化剂悬浮液的步骤, 包括在化学式(1)中的金属组分:Mo a SB> B SB> B SB> B ë SB> 0 X SB>(1); 在制造悬浮液的上述步骤期间或之后破碎悬浮液中的沉积物的步骤; 以及在用热空气干燥的同时将上述步骤中获得的悬浮液喷雾到非活性载体上的步骤。 在上式中,A表示选自铁,铜,铋,铬,锡,锑,镍,钴,锰,铈和铊中的一种或多种元素; B表示选自碱金属和碱土金属的一种或多种元素。 版权所有(C)2009,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a method of producing a negative electrode active material for lithium secondary battery having a high capacity where the active material having a uniform particle size is dispersed well without being aggregated and excellent coulomb efficiency and cycle life characteristics are ensured, and to provide a lithium secondary battery.SOLUTION: The method of producing a negative electrode active material for lithium secondary battery includes a step for preparing a mixture of a silicon precursor, a surfactant containing ammonium halide salts having an organic group, an initiator, and a solvent, a step for heat-treating the mixture, a step for cooling and cleaning the resultant product of heat treatment at room temperature, and a step for burning the resultant product obtained by cleaning.