Patent classifications
C09K2003/1034
SEALANT COMPOSITION
Provided is a sealant composition that makes it possible to suppress a flow of a sealant associated with travel while maintaining good sealing properties. As a sealant composition constituting a sealant layer (10) disposed on the inner surface of a pneumatic tire, the following are used: a sealant composition demonstrating a tensile stress at 20% elongation at 23° C. of 0.03 MPa or less and a tensile stress at 20% elongation at 80° C. of 0.002 MPa; or a sealant composition demonstrating a viscosity V.sub.0 at 0° C. of from 2 kPa.Math.s to 15 kPa s, a viscosity V.sub.40 at 40° C. of from 1 kPa s to 14 kPa s, and a viscosity V.sub.80 at 80° C. of from 0.5 kPa.Math.s to 12 kPa.Math.s.
FULL-LENGTH SCREEN PIPE HOLE PROTECTION DEVICE AND METHOD WITH PRESSURIZED HOLE PACKING IN SOFT COAL SEAM
A full-length screen pipe hole protection device and method with pressurized hole packing in a soft coal seam relates to the field of gas drainage technologies. The device includes a grouting system, a drainage system and a hole fixing system. The grouting system injects a pressurized sealing material into a borehole through a pressure pump to increase a sealing effect of the borehole. The drainage system drains gas in the middle of air holes on metal baffle plates and hole fixing screen pipes through a drainage pipe to increase flowability of gas. The hole fixing system is inside the borehole and fixed with the metal baffle plates, and the hole fixing screen pipes are fixedly connected with each other through fitting mouths and fitting buckles. The device is fixedly mounted in the gas drainage borehole. After hole packing, the drainage pipe is connected with a drainage pump to drain gas.
Full-length screen pipe hole protection device and method with pressurized hole packing in soft coal seam
A full-length screen pipe hole protection device and method with pressurized hole packing in a soft coal seam relates to the field of gas drainage technologies. The device includes a grouting system, a drainage system and a hole fixing system. The grouting system injects a pressurized sealing material into a borehole through a pressure pump to increase a sealing effect of the borehole. The drainage system drains gas in the middle of air holes on metal baffle plates and hole fixing screen pipes through a drainage pipe to increase flowability of gas. The hole fixing system is inside the borehole and fixed with the metal baffle plates, and the hole fixing screen pipes are fixedly connected with each other through fitting mouths and fitting buckles. The device is fixedly mounted in the gas drainage borehole. After hole packing, the drainage pipe is connected with a drainage pump to drain gas.
OIL-REPELLENT COMPOSITION
An oil-repellent composition is provided containing an aqueous emulsion in which a copolymer (A) containing a constituent unit based on an ethylenically unsaturated carboxylic acid ester monomer (A1) and a constituent unit based on an ethylenically unsaturated carboxylic acid monomer (A2) is dispersed in an aqueous medium (B), and polyether-modified polydimethyl siloxane (C).
PRE-FILLED SYRINGE
The purpose of the present invention is to provide a pre-filled syringe formulation with staked needle, which contains an antibody at a high concentration and can be produced on an industrial scale in a simple manner without causing clogging. A pre-filled syringe formulation with staked needle, in which a protein solution is packed. The pre-filled syringe formulation is characterized in that a cap formed with a material having low water vapor permeability is provided at the needle.
PRE-FILLED SYRINGE
The purpose of the present invention is to provide a pre-filled syringe formulation with staked needle, which contains an antibody at a high concentration and can be produced on an industrial scale in a simple manner without causing clogging. A pre-filled syringe formulation with staked needle, in which a protein solution is packed. The pre-filled syringe formulation is characterized in that a cap formed with a material having low water vapor permeability is provided at the needle.
RECOVERABLE IMPREGNATION SEALANT
A sealant for use in vacuum pressure impregnation, wherein the sealant includes at least one monomer that is at least partially hydrophilic, at least one monomer that is at least partially hydrophobic, and wherein the sealant has a density less than the density of water.
Pre-Filled Syringe Formulation With Needle, Which Is Equipped With Syringe Cap
The purpose of the present invention is to provide a pre-filled syringe formulation with staked needle, which contains an antibody at a high concentration and can be produced on an industrial scale in a simple manner without causing clogging. A pre-filled syringe formulation with staked needle, in which a protein solution is packed. The pre-filled syringe formulation is characterized in that a cap formed with a material having low water vapor permeability is provided at the needle.
PRE-FILLED SYRINGE
The purpose of the present invention is to provide a pre-filled syringe formulation with staked needle, which contains an antibody at a high concentration and can be produced on an industrial scale in a simple manner without causing clogging. A pre-filled syringe formulation with staked needle, in which a protein solution is packed. The pre-filled syringe formulation is characterized in that a cap formed with a material having low water vapor permeability is provided at the needle.
VACUUM INSULATED PANEL WITH HIGH CONDENSATION RESISTANCE FACTOR (CRF)
A vacuum insulating panel may include: a first substrate; a second substrate; a plurality of spacers provided in a gap between at least the first and second substrates, wherein the gap is at pressure less than atmospheric pressure; and a seal (e.g., edge seal) provided at least partially between at least the first and second glass substrates. Elements such as edge seal materials and/or dimensions are configured to improve thermal performance and to increase the Condensation Resistance Factor for glass (CRF.sub.G) for the panel, so as to provide for a panel with a reduced likelihood to accumulate condensation in the field.