Patent classifications
C08K3/08
Polyalkanolamines
Disclosed herein is a A polyalkanolamine including the structure of formula L1
wherein A.sup.L is B.sup.L is X.sup.L1, X.sup.L2, X.sup.L3 are independently selected from a C.sub.1 to C.sub.6 alkanediyl; Ar.sup.L is a 5 or 6 membered N-heteroaromatic ring system including from 1 to 4 N atoms, which may be unsubstituted or substituted by C.sub.1 to C.sub.6 alkyl; n is an integer of from 2 to 350; m is 0 or an integer of from 1 to 600; o is 1 or an integer of from 2 to 25; B.sup.L1 is a continuation of the backbone B.sup.L by branching; X.sup.L11, X.sup.L12, X.sup.L13 are independently selected from a C.sub.1 to C.sub.6 alkanediyl; X.sup.L21 is a C.sub.1 to C.sub.6 alkanediyl; and derivatives thereof obtainable by N-protonation, N-quaternization, substitution, or polyalkoxylation.
Polyalkanolamines
Disclosed herein is a A polyalkanolamine including the structure of formula L1
wherein A.sup.L is B.sup.L is X.sup.L1, X.sup.L2, X.sup.L3 are independently selected from a C.sub.1 to C.sub.6 alkanediyl; Ar.sup.L is a 5 or 6 membered N-heteroaromatic ring system including from 1 to 4 N atoms, which may be unsubstituted or substituted by C.sub.1 to C.sub.6 alkyl; n is an integer of from 2 to 350; m is 0 or an integer of from 1 to 600; o is 1 or an integer of from 2 to 25; B.sup.L1 is a continuation of the backbone B.sup.L by branching; X.sup.L11, X.sup.L12, X.sup.L13 are independently selected from a C.sub.1 to C.sub.6 alkanediyl; X.sup.L21 is a C.sub.1 to C.sub.6 alkanediyl; and derivatives thereof obtainable by N-protonation, N-quaternization, substitution, or polyalkoxylation.
PACKAGING
Abstract: A container body which comprises a base and a side wall extending from the base, wherein said container body includes a polyester and a polymer YY. wherein said polymer YY is selected from the group comprising cyclic block copolymers (CBC) and cyclic olefin polymers (COP).
PACKAGING
Abstract: A container body which comprises a base and a side wall extending from the base, wherein said container body includes a polyester and a polymer YY. wherein said polymer YY is selected from the group comprising cyclic block copolymers (CBC) and cyclic olefin polymers (COP).
CERAMIC COATED IRON PARTICLES AND METHODS FOR MAKING CERAMIC COATED PARTICLES
The present disclosure provides a coated iron particle, or reaction product of a coating and the iron particle, comprising an iron particle and a ceramic coating disposed on the iron particle. Aspects of the present disclosure provide a coated iron particle, or reaction product of a coating and the iron particle, including an iron particle having a diameter of from about 0.5 micron to about 100 microns; and a ceramic coating disposed on the iron particle. Aspects of the present disclosure further provide compositions comprising a coated iron particle and a polymer or adhesion promoter. Aspects of the present disclosure further provide components, such as components, such as vehicle components, having a surface and a composition of the present disclosure disposed on the surface.
CERAMIC COATED IRON PARTICLES AND METHODS FOR MAKING CERAMIC COATED PARTICLES
The present disclosure provides a coated iron particle, or reaction product of a coating and the iron particle, comprising an iron particle and a ceramic coating disposed on the iron particle. Aspects of the present disclosure provide a coated iron particle, or reaction product of a coating and the iron particle, including an iron particle having a diameter of from about 0.5 micron to about 100 microns; and a ceramic coating disposed on the iron particle. Aspects of the present disclosure further provide compositions comprising a coated iron particle and a polymer or adhesion promoter. Aspects of the present disclosure further provide components, such as components, such as vehicle components, having a surface and a composition of the present disclosure disposed on the surface.
ANTI-FRICTION LACQUER AND SLIDING ELEMENT HAVING SUCH AN ANTI-FRICTION LACQUER
An anti-friction lacquer has a resin matrix of a polymer and functional fillers containing mixed-phase oxides having a specified grinding hardness and proportion and optionally contain further functional fillers. A sliding element is also disclosed having a metallic substrate layer and a coating applied to the substrate that is made of at least in part of the anti-friction.
PACKAGING
A container body comprises a base, a side wall extending from the base and a neck portion arranged to engage a closure for the container body, wherein: (i) said container body includes a cyclic olefin copolymer (COC) and polyester; or (ii) said container body includes a polymethylpentene (PMP) and polyester; wherein, in both cases (i) and (ii), the side wall of the container body has an L* of at least 90 and the neck portion has an L* of at least 84.
PACKAGING
A container body comprises a base, a side wall extending from the base and a neck portion arranged to engage a closure for the container body, wherein: (i) said container body includes a cyclic olefin copolymer (COC) and polyester; or (ii) said container body includes a polymethylpentene (PMP) and polyester; wherein, in both cases (i) and (ii), the side wall of the container body has an L* of at least 90 and the neck portion has an L* of at least 84.
PACKAGING
A container body comprises a base, a side wall extending from the base and a neck portion arranged to engage a closure for the container body, wherein: (i) said container body includes a cyclic olefin copolymer (COC) and polyester; or (ii) said container body includes a polymethylpentene (PMP) and polyester; wherein, in both cases (i) and (ii), the side wall of the container body has an L* of at least 90 and the neck portion has an L* of at least 84.