C09D101/28

Material for surface treatment containing hollow glass bodies and silica, and its application
10017647 · 2018-07-10 · ·

Material for surface treatment, mainly with thermo-reflexive and/or thermoinsulative characteristics, and with high water resistance level, contains first hollow glass bodies (1) with size fraction ranging from 65 to 110 ?m, second, filler hollow glass bodies (2) intended to fill the spaces within main fraction of the bodies (1) and these second, filler hollowed glass bodies (2) have size fraction ranging from 30 to 105 ?m, it also contains silicon dioxide processed to form of the nanoparticles and a binder (3). Hollow glass bodies (1, 2) will be mainly shaped as hollow, vacuumed microballs. A mixture forming the material can contain hollow glass bodies (1) making up 3 to 30% of its mass, filler hollow glass bodies making up 3 to 15% of its mass and silicon dioxide making up 1 to 17% of its mass. The material for surface treatment is health friendly, it can be used especially on the house fa?ades and in industry, where it is applied on the surface (4), the heath transfer and incandescence of which is to be diminished.

Material for surface treatment containing hollow glass bodies and silica, and its application
10017647 · 2018-07-10 · ·

Material for surface treatment, mainly with thermo-reflexive and/or thermoinsulative characteristics, and with high water resistance level, contains first hollow glass bodies (1) with size fraction ranging from 65 to 110 ?m, second, filler hollow glass bodies (2) intended to fill the spaces within main fraction of the bodies (1) and these second, filler hollowed glass bodies (2) have size fraction ranging from 30 to 105 ?m, it also contains silicon dioxide processed to form of the nanoparticles and a binder (3). Hollow glass bodies (1, 2) will be mainly shaped as hollow, vacuumed microballs. A mixture forming the material can contain hollow glass bodies (1) making up 3 to 30% of its mass, filler hollow glass bodies making up 3 to 15% of its mass and silicon dioxide making up 1 to 17% of its mass. The material for surface treatment is health friendly, it can be used especially on the house fa?ades and in industry, where it is applied on the surface (4), the heath transfer and incandescence of which is to be diminished.

Peptide pharmaceuticals
10010617 · 2018-07-03 · ·

Described herein are methods of syntheses and therapeutic uses of covalently modified peptides and/or proteins. The covalently modified peptides and/or proteins allow for improved pharmaceutical properties of peptide and protein-based therapeutics.

Peptide pharmaceuticals
10005817 · 2018-06-26 · ·

Described herein are methods of syntheses and therapeutic uses of covalently modified peptides and/or proteins. The covalently modified peptides and/or proteins allow for improved pharmaceutical properties of peptide and protein-based therapeutics.

Protective flowable or spreadable composition, articles of manufacture, an apparatus for manufacture and a process for manufacture thereof
10000663 · 2018-06-19 ·

A protective flowable or spreadable composition. The protective composition optionally and preferably features a base material according to various embodiments and aerogel, dispersed in an acrylic dispersion. Preferably the protective composition further comprises one or more of chopped glass fibers and titanium dioxide. Water or an aqueous solution is preferably added to determine the degree of viscosity, for example to apply the composition in flowable form (paint, sprayable material, coating and so forth) or in spreadable form.

Protective flowable or spreadable composition, articles of manufacture, an apparatus for manufacture and a process for manufacture thereof
10000663 · 2018-06-19 ·

A protective flowable or spreadable composition. The protective composition optionally and preferably features a base material according to various embodiments and aerogel, dispersed in an acrylic dispersion. Preferably the protective composition further comprises one or more of chopped glass fibers and titanium dioxide. Water or an aqueous solution is preferably added to determine the degree of viscosity, for example to apply the composition in flowable form (paint, sprayable material, coating and so forth) or in spreadable form.

SILVER POWDER AND METHOD FOR PRODUCING SAME

There is provided a silver powder, which is able to obtain a conductive paste having a high thixotropic ratio and a high Casson yield value and which is able to form a conductive pattern having a low resistance, and a method for producing the same. An aliphatic amine such as hexadecylamine is added to a silver powder, the surface of which is coated with a fatty acid such as stearic acid, to be stirred and mixed to form the aliphatic amine on the outermost surface of the silver powder while allowing the fatty acid to react with the aliphatic amine to form an aliphatic amide such as hexadecanamide between the fatty acid and the aliphatic amine.

SILVER POWDER AND METHOD FOR PRODUCING SAME

There is provided a silver powder, which is able to obtain a conductive paste having a high thixotropic ratio and a high Casson yield value and which is able to form a conductive pattern having a low resistance, and a method for producing the same. An aliphatic amine such as hexadecylamine is added to a silver powder, the surface of which is coated with a fatty acid such as stearic acid, to be stirred and mixed to form the aliphatic amine on the outermost surface of the silver powder while allowing the fatty acid to react with the aliphatic amine to form an aliphatic amide such as hexadecanamide between the fatty acid and the aliphatic amine.

SUPPORT MATERIALS FOR 3D PRINTING

A three-dimensionally printed article is comprised of a hydroxyethyl methylcellulose (HEMC) having a DS of 1.7 to 2.5 and an MS of at least 0.5, wherein DS is the degree of substitution of methoxyl groups and MS is the molar substitution of hydroxyethoxyl groups. The HEMC may advantageously be used as a support material when making a three-dimensionally printed article using a build material such as a different thermoplastic polymer such as a poly(acrylonitrile-butadiene-styrene), polylactic acid, polyethylene and polyprophylene. When the HEMC is a support material it may be easily removed from the build material by contacting the three dimensionally printed article with water, which may be at ambient temperatures and a pH that is neutral or close to neutral.

Silver powder and method for producing same

There is provided a silver powder, which is able to obtain a conductive paste having a high thixotropic ratio and a high Casson yield value and which is able to form a conductive pattern having a low resistance, and a method for producing the same. An aliphatic amine such as hexadecylamine is added to a silver powder, the surface of which is coated with a fatty acid such as stearic acid, to be stirred and mixed to form the aliphatic amine on the outermost surface of the silver powder while allowing the fatty acid to react with the aliphatic amine to form an aliphatic amide such as hexadecanamide between the fatty acid and the aliphatic amine.