Abstract:
Slide bearings and methods of producing slide bearings are disclosed. The slide bearing has a metal support, an adhesive layer and a sliding layer. The adhesive layer is applied directly to the metal support. The adhesive layer comprises a blend of at least two fluoropolymers P1 and P2, wherein P1 is selected from perfluoroalkoxyethylene (PFA) or tetrafluoroethylene-hexafluoropropylene (FEP). P2 is different from P1 and can be a fluoropolymer.
Abstract:
A power generation structure for generating power from a renewable energy source including a base, an energy conversion structure connected to the base, and an articulating joint between the base and the energy conversion structure, the articulating joint comprising a bearing member having a body including a composite material having a rigid material and a friction-reducing material overlying the rigid material, wherein the rigid material comprises a material selected from the group of consisting of aluminum and stainless steel.
Abstract:
Slide bearings and methods of producing slide bearings are disclosed. The slide bearing has a metal support, an adhesive layer and a sliding layer. The adhesive layer is applied directly to the metal support. The adhesive layer comprises a blend of at least two fluoropolymers P1 and P2, wherein P1 is selected from perfluoroalkoxyethylene (PFA) or tetrafluoroethylene-hexafluoropropylene (FEP). P2 is different from P1 and can be a fluoropolymer.
Abstract:
A system for elastically compensating for wear, thermal expansion and misalignment comprises a ring located between a housing and a pin in the bore of the housing. The ring has a backing layer (63), an expanded grid structure (65) having a plurality of openings, a low friction layer (67) penetrated into the openings of the expanded grid structure, and adhesive for bonding the backing layer, expanded grid structure and low friction layer together to provide elastic deformation of the ring between the housing and pin.
Abstract:
Slide bearings and methods of producing slide bearings are disclosed. The slide bearing has a metal support, an adhesive layer and a sliding layer. The adhesive layer is applied directly to the metal support. The adhesive layer comprises a blend of at least two fluoropolymers P1 and P2, wherein P1 is selected from perfluoroalkoxyethylene (PFA) or tetrafluoroethylene-hexafluoropropylene (FEP). P2 is different from P1 and can be a fluoropolymer.
Abstract:
Un sistema para compensar elásticamente desgaste, expansión térmica y desalineación que comprende un anillo situado entre un alojamiento y una espiga en el taladro del alojamiento. El anillo tiene una capa de respaldo (63), una estructura de rejilla expandida (65) que tiene una pluralidad de aberturas, una capa de baja fricción (67) penetrada en las aberturas de la estructura de rejilla expandida, y un adhesivo para unir la capa de respaldo, la estructura de rejilla expandida y la capa de baja fricción una a otra a fin de proporcionar una deformación elástica del anillo entre el alojamiento y la espiga.
Abstract:
Un material compuesto para cojinetes lisos amortiguador de vibraciones que comprende una capa de deslizamiento (10, 15) que comprende material deslizante, una capa de soporte dimensionalmente estable (12) y una capa elástica (14), obtenido: proporcionando la capa de deslizamiento, la capa de soporte dimensionalmente estable y la capa elastomérica cada una en forma de un material laminado, en particular un materia continuo en forma de tiras, uniendo la capa deslizante a través de su superficie a la capa de soporte dimensionalmente estable y uniendo la capa elástica a través de su superficie a la capa de soporte dimensionalmente estable por la cara de la capa de soporte dimensionalmente estable opuesta a la capa de deslizamiento o proporcionado la capa de deslizamiento, la capa de soporte dimensionalmente estable y la capa elastomérica cada una en forma de un material laminado, en particular un material continuo en forma de tiras, uniendo la capa de deslizamiento a través de su superficie a la capa elastomérica y uniendo la capa elastomérica a través de su superficie a la capa de soporte dimensionalmente estable por la cara de la capa elastomérica opuesta a la capa de deslizamiento.
Abstract:
A vibration-damping plain bearing composite comprising a sliding layer (10, 15) comprising a sliding material, a dimensionally stable support layer (12) and an elastic layer (14), obtained by: providing the sliding layer, the dimensionally stable support layer and the elastomer layer each in the form of sheet-like material, in particular strip-shaped continuous material, joining the sliding layer over its area to the dimensionally stable support layer and joining the elastic layer over its area to the dimensionally stable support layer on the side of the dimensionally stable support layer which faces away from the sliding layer or - providing the sliding layer, the dimensionally stable support layer and the elastomer layer each in the form of sheet-like material, in particular strip-shaped continuous material, joining the sliding layer over its area to the elastomer layer and joining the elastomer layer over its area to the dimensionally stable support layer on the side of the elastomer layer which faces away from the sliding layer.
Abstract:
A maintenance-free plain bearing includes a metal support, an intermediate layer applied directly thereto and a sliding layer applied to the intermediate layer. The intermediate layer includes at least one functionalized thermoplastic polymer having functional groups of the formula —COOH and/or —COOR, where the radicals R are cyclic or linear organic radicals having from 1 to 20 carbon atoms.