C08L23/025

POLYMERISATION PROCESS AND POLYMERISATION UNIT COMPRISING A DEGASSING SECTION

The present invention relates to processes and apparatus useful for the production of polymer powder, and in particular to processes and apparatus for the degassing of polymer powder.

POLYMERISATION PROCESS AND POLYMERISATION UNIT COMPRISING A DEGASSING SECTION

The present invention relates to processes and apparatus useful for the production of polymer powder, and in particular to processes and apparatus for the degassing of polymer powder.

Multi-Layered Cores For Golf Balls Based On Ionomers
20170225044 · 2017-08-10 · ·

Multi-piece golf balls having a solid core of at least one layer and cover of at least one layer are provided. Thermoplastic ethylene acid copolymer ionomer compositions are used to form the core layers. Preferably, the ball contains a dual-core having an inner core and surrounding outer core layer. Low modulus and high modulus ionomer compositions may be used in the core structure. In one embodiment, a first ionomer composition is used to form the inner core and a second ionomer composition is used to form the outer core, and the flex modulus of the first composition is greater than the flex modulus of the second composition. The ionomer compositions have varying levels of hardness. The resulting ball has high resiliency and rebounding properties.

Multi-layered cores for golf balls based on ionomers
09636546 · 2017-05-02 · ·

Multi-piece golf balls having a solid core of at least one layer and cover of at least one layer are provided. Thermoplastic ethylene acid copolymer ionomer compositions are used to form the core layers. Preferably, the ball contains a dual-core having an inner core and surrounding outer core layer. Low modulus and high modulus ionomer compositions may be used in the core structure. In one embodiment, a first ionomer composition is used to form the inner core and a second ionomer composition is used to form the outer core, and the flex modulus of the first composition is greater than the flex modulus of the second composition. The ionomer compositions have varying levels of hardness. The resulting ball has high resiliency and rebounding properties.

COMPOSITION FOR CAMERA MODULE LENS AND CAMERA MODULE LENS COMPRISING THE SAME

A composition for a camera module lens and a camera module lens including the composition are provided, the composition for a camera module lens includes a resin; and 0.01 to 0.1% by weight of a benzotriazole-based ultraviolet (UV) blocking additive with respect to a total weight of the composition, wherein when the composition for a camera module lens is applied to the lens, light with a visible light region may be transmitted without performing separate coating and light within a UV region may be cut-off.

MEDICAL DEVICES FOR GENERATING HEAT AND METHODS OF TREATMENT USING THE SAME

A device for a medical or cosmetic treatment based on heat is provided. The device includes an impermeable backing layer and an adhesive layer in contact with the backing layer. The device also includes an alkali metal selected from a single, free alkali metal and an alloy alkali metals, the alkali metal in contact with at least a portion of the adhesive layer to define a treatment region. The device also includes a release liner in contact with the adhesive layer and the treatment region. A heat delivery system or kit including the device and a method for its use are also provided.

MEDICAL DEVICES FOR GENERATING HEAT AND METHODS OF TREATMENT USING THE SAME

A device for a medical or cosmetic treatment based on heat is provided. The device includes an impermeable backing layer and an adhesive layer in contact with the backing layer. The device also includes an alkali metal selected from a single, free alkali metal and an alloy alkali metals, the alkali metal in contact with at least a portion of the adhesive layer to define a treatment region. The device also includes a release liner in contact with the adhesive layer and the treatment region. A heat delivery system or kit including the device and a method for its use are also provided.

POLYMERIC PIPE

This invention relates to a polymeric pipe obtained by a peroxide crosslinking process. The pipe is formed from a composition comprising a polyolefin structural polymer, a peroxide initiator in an amount of from about 0.2% to about 5% by weight, and a co-agent in an amount of from about 0.02% to about 5% by weight. The co-agent comprises at least two reactive carbon-carbon double bonds. The invention also relates to methods of forming said pipes. The invention also relates to the use of a co-agent in a composition to reduce bubble formation in a peroxide crosslinking process. The invention also relates to the use of such polymeric pipes for the transport of water.