摘要:
Disclosed are methods, compositions and structures that, in one example embodiment, is a film that includes a multilayered base film comprising a core and at least one printable coating applied to at least one outer surface of the multi-layered film. The at least one printable coating may include an acrylic-based polymer, and have a dry coating weight is within a range from 0.1 g/m2 through 0.9 g/m2 with a pH of at least 9. The film complies with European regulations for use in food-contact packaging and labeling, which are examples of applications for the disclosed films.
摘要:
The present invention provides a method for joining liquid-crystalline polyester resin composition parts, characterized in that the melting point of the liquid crystalline polyester resin measured by differential scanning calorimeter is 190-250°C and that the parts are jointed by means of welding. By using the method of the present invention, jointed articles with sufficient joint strength are provided with accuracy.
摘要:
A polyester resin composition for a vibration-damping material, containing a thermoplastic polyester resin constituted of a dicarboxylic acid component and a diol component (A), one or more members selected from the group consisting of plasticizers and styrene-isoprene block copolymers (B), and an inorganic filler (C). The polyester resin composition of the present invention can be suitably used as a vibration-damping material for a material for audio equipment such as, for example, speakers, television, radio cassette players, headphones, audio components, or microphones, and manufactured articles such as electric appliances, transportation vehicles, construction buildings, and industrial equipment, or parts or housing thereof.
摘要:
In one aspect, composite build materials for use with a 3D printing system are described herein. In some embodiments, a composite build material described herein comprises a carrier ink comprising a curable material; and pigment particles dispersed in the carrier ink, wherein the pigment particles comprise mica. In some cases, the carrier ink is present in the composite build material in an amount of about 80-98% by weight, and the curable material comprises one or more species of monomeric and/or oligomeric (meth)acrylates. Additionally, in some instances, the pigment particles are present in the composite build material in an amount of about 2-8% by weight and comprise up to about 85% by weight mica, based on the total weight of the pigment particles. The pigment particles, in some cases, can also comprise TiO2 and/or Fe2O3.
摘要翻译:在一个方面,本文描述了与3D打印系统一起使用的复合建造材料。 在一些实施方案中,本文所述的复合建造材料包含载体油墨,其包含可固化材料; 和分散在载体油墨中的颜料颗粒,其中颜料颗粒包含云母。 在一些情况下,载体油墨以约80-98重量%的量存在于复合建造材料中,并且可固化材料包含一种或多种单体和/或低聚(甲基)丙烯酸酯。 另外,在一些情况下,基于颜料颗粒的总重量,颜料颗粒以约2-8重量%的量存在于复合建造材料中并且包含高达约85重量%的云母。 颜料颗粒在一些情况下还可以包含TiO 2和/或Fe 2 O 3。
摘要:
In one aspect, composite build materials for use with a 3D printing system are described herein. In some embodiments, a composite build material described herein comprises a carrier ink comprising a curable material; and pigment particles dispersed in the carrier ink, wherein the pigment particles comprise mica. In some cases, the carrier ink is present in the composite build material in an amount of about 80-98% by weight, and the curable material comprises one or more species of monomeric and/or oligomeric (meth)acrylates. Additionally, in some instances, the pigment particles are present in the composite build material in an amount of about 2-8% by weight and comprise up to about 85% by weight mica, based on the total weight of the pigment particles. The pigment particles, in some cases, can also comprise TiO2 and/or Fe2O3.
摘要:
A polyester resin composition for a vibration-damping material, containing a thermoplastic polyester resin constituted of a dicarboxylic acid component and a diol component (A), one or more members selected from the group consisting of plasticizers and styrene-isoprene block copolymers (B), and an inorganic filler (C). The polyester resin composition of the present invention can be suitably used as a vibration-damping material for a material for audio equipment such as, for example, speakers, television, radio cassette players, headphones, audio components, or microphones, and manufactured articles such as electric appliances, transportation vehicles, construction buildings, and industrial equipment, or parts or housing thereof.