Abstract:
The present disclosure is drawn to a fabric print medium including a fabric substrate, a primary coating layer, and a secondary coating layer. The fabric substrate can have a first side and a second side. The primary coating layer can be applied to the first side of the fabric substrate at a thickness from 2 µm to 250 µm with a dry coat weight ranging from about 5 gsm to about 300 gsm and can include a polymeric binder and filler particles. The secondary coating layer can be applied to the primary coating layer at a thickness from 1 µm to 50 µm with a dry coat weight ranging from 0.5 gsm to 50 gsm and can include a first crosslinked polymeric network and a second crosslinked polymeric network. The primary coating layer can be two or more times thicker than the secondary coating layer.
Abstract:
Die Erfindung betrifft neue mikroporöse Beschichtungen auf Basis von Polyurethan-Polyharastoff sowie ein Verfahren zur Herstellung von mikroporösen Beschichtungen.
Abstract:
The present invention relates to a process for preparing composite textile and composite textile obtainable by this process as well as the use of said composite textile for automotive applications among other things. Said process comprises the following steps: (a) applying a foamed polymer dispersion onto a suede-like textile substrate; (b) drying the composite material of polymer foam and substrate; (c) compacting the polymer foam with the substrate; and (d) heat-treating and/or cross-linking the polymer foam. The composite textile is characterised by a suede-like textile substrate and a polymer foam layer.
Abstract:
A protective covering (10) constructed from an electrostatically charged sheet (11) having a top and a bottom surface and an absorbent layer (12). The absorbent layer (12) has top and bottom surfaces, the bottom surface of the absorbent layer being bonded to the top surface of the electrostatically charged sheet (11). The absorbent layer (12) is divided into a plurality of cells from containing liquid spilled on the absorbent layer (12). The absorbent layer (12) can be constructed from paper, open cell foam, fibrous mat, or any other absorbent material (12). In the preferred embodiment of the present invention, the cells are constructed by providing hydrophobic barriers in the absorbent layer (12). The barriers can be constructed from paraffin, plastic or any other material that can penetrate the absorbent layer (12).
Abstract:
Provided among other things is a method of forming a composite glove with a grip texture, comprising: (a) providing a coagulant-coated support layer that is a fabric layer or a polymeric layer; (b) dip applying to the support layer a foamed polymer dispersion comprising about 0.5 % to about 2.0 % by weight hygroscopic agent; (c) allowing a portion of the applied foamed polymer dispersion to coagulate based the coagulant diffusing from the support layer to form a partially coagulated foam layer; (d) washing the partially coagulated foam layer to remove uncoagulated polymer to form a coagulated foam layer; and (e) vulcanizing the coagulated foam layer to form a vulcanized open foam layer laminated to the support.
Abstract:
Ein überstreichbares Malervlies umfasst ein Grundvlies aus Mineralfasern in einem Anteil von 60 bis 90 Gewichtsprozent und organischen Fasern in einem Anteil von 10 bis 40 Gewichtsprozent sowie einem Bindemittelanteil von 0 bis 30 Gewichtsprozent. Das Grundvlies weist eine Rückseite zur Befestigung an einem Untergrund auf, die mit einer Haftkleberzusammensetzung beschichtet ist. Die Haftkleberzusammensetzung bildet eine durchgehende unterbrochene Schicht, wobei offene Poren des Grundvlieses nicht von der Haftkleberzusammensetzung bedeckt sind.
Abstract:
A heterogeneous mass comprising a longitudinal axis, a lateral axis, a vertical axis, one or more enrobeable elements and one or more discrete open-cell foam pieces is disclosed. The heterogeneous mass comprises three or more pore-size ranges. At least two of the pore-size ranges are in the foam pieces.