Abstract:
To provide a hose for transporting a refrigerant, a butyl rubber layer 7 is formed on outer periphery of a tubular resin layer 1, which is in contact with a refrigerant, and an ethylene-propylene rubber layer 8 is further formed on the outer periphery thereof. The resin layer 1 is composed of a material that contains, as a main component, a mixture of a polyamide resin and a modified polyolefin elastomer, a skin layer 6 is formed only on an inner peripheral surface of the resin layer, and tensile modulus (A) of the skin layer 6, tensile modulus (B) of the resin layer 1 excluding the skin layer 6, tensile modulus (C) of the butyl rubber layer 7, and tensile modulus (D) of the ethylene-propylene rubber layer 8 satisfy the relationship that is defined by the following formula (α): (A)>(B)>(C)>(D) (α).
Abstract:
An automotive fuel hose is disclosed including an inner layer, a lower fuel permeability layer and an outer layer provided in this order on an outer peripheral surface of an innermost layer of a fluororesin. The inner layer and the outer layer each include of an amine-modified polyamide resin, where the lower fuel permeability layer is a resin composition including the following components: (A) a polyphenylenesulfide resin as a major component; (B) an acid-modified polyolefin resin; (C) an unmodified polyolefin resin; and (D) an epoxy resin. The proportion of the component (B) in the resin composition is 4 to 12 wt % and the proportion of the component (C) in the resin composition is 4 to 12 wt %, wherein the proportion of the component (D) in the resin composition is 1.5 to 5 wt %.
Abstract:
A rubber member is provided which includes an aluminum-based inner metal tube (2) (aluminum-based metal component), a film (A) chemically formed on an outer peripheral surface of the inner metal tube (2), an adhesive layer (C) provided on an outer surface of the film (A), and a vibration damping rubber (1) provided on an outer surface of the adhesive layer (C). The film (A) contains manganese oxide and zirconium oxide. In the film (A), manganese from the manganese oxide is present in a content of 10 to 30 mg/m2 on a manganese atom weight basis, and zirconium from the zirconium oxide is present in a content of 5 to 40 mg/m2 on a zirconium atom weight basis. The film (A) is free from deterioration in adhesion to the aluminum-base metal component which may otherwise occur due to heat applied for vulcanization of a rubber material, and is excellent in followability to deformation of the aluminum-based metal component. Further, it is easy to visually check the presence of the film (A) on the surface of the aluminum-based metal component.
Abstract translation:提供了一种橡胶构件,其包括铝基内金属管(2)(铝基金属成分),化学形成在内金属管(2)的外周面上的膜(A),粘合层 C)设置在薄膜(A)的外表面上,以及设置在粘合剂层(C)的外表面上的减振橡胶(1)。 膜(A)含有氧化锰和氧化锆。 在膜(A)中,以锰原子重量计来自锰氧化物的锰以10〜30mg / m 2的含量存在,锆的氧化锆的含量为5〜40mg / m 2 锆原子重量的基础。 膜(A)不会由于用于硫化橡胶材料的热量而可能发生的铝基金属成分的粘附性变差,并且对铝基金属成分的变形的追随性优异。 此外,容易在铝基金属成分的表面上目视检查膜(A)的存在。
Abstract:
A vibration damping rubber composition having an excellent vibration damping performance includes the following (A) to (C) as essential components: (A) a diene-based rubber; (B) a vulcanizing agent of a bismaleimide compound represented by the following formula (1): [wherein X denotes a hydrocarbon group having an aromatic ring in its molecular structure or an aromatic hydrocarbon group and may or may not have a substituent; and R1 to R4 may be the same or different and each denote a hydrogen atom, an alkyl group, —NH2, or —NO2], wherein the vulcanizing agent is sulfur-free; and (C) a vulcanization accelerator.
Abstract:
A vibration damping rubber member comprising a metallic structure and a rubber material, which are interposed by an undercoating adhesive layer formed on the metallic structure and a finish coating adhesive layer formed on the undercoating adhesive layer and are integrally formed via the adhesive layers, wherein the undercoating adhesive layer is formed by resorcinol adhesive (component (A)), the finish coating adhesive layer is formed by adhesive consisting mainly of chlorinated polyolefin (component (B)), and the rubber material is bonded onto the finish coating adhesive layer by vulcanization. A method of producing the vibration damping rubber member is also disclosed.
Abstract:
A vibration damping rubber composition having an excellent vibration damping performance includes the following (A) to (C) as essential components: (A) a diene-based rubber; (B) a vulcanizing agent of a bismaleimide compound represented by the following formula (1): [wherein X denotes a hydrocarbon group having an aromatic ring in its molecular structure or an aromatic hydrocarbon group and may or may not have a substituent; and R1 to R4 may be the same or different and each denote a hydrogen atom, an alkyl group, —NH2, or —NO2], wherein the vulcanizing agent is sulfur-free; and (C) a vulcanization accelerator.
Abstract:
A vibration damping rubber bushing that has excellent vibration damping property and anticorrosive property, can strongly fix to a supporting component, and has excellent fall off-preventing property in using the same. The vibration damping rubber bushing includes an inner sleeve, an outer sleeve, and a rubber elastic body interposed between the inner sleeve and the outer sleeve, the inner sleeve, outer sleeve and rubber elastic body being integrally formed, wherein a coating film of an aqueous paint including an amino-modified epoxy resin as a binder is formed on a circumference of at least the outer sleeve selected from the inner sleeve and the outer sleeve.
Abstract:
A vibration damping rubber composition capable of exhibiting an excellent vibration damping property comprising: (A) a diene rubber; (B) a bismaleimide compound represented by the following general formula (1); wherein n denotes an integer of 4 to 12; and (C) a vulcanization accelerator; wherein said rubber composition does not contain elemental sulfur as a raw material for a vulcanizing agent.
Abstract:
A vibration damping rubber member having excellent durability, wherein an improvement includes: the vibration damping rubber member being obtained by vulcanizing a composition in which an unvulcanized natural rubber material and an unvulcanized acrylic rubber material are evenly mixed together in a proportion of 90/10˜60/40 by weight. Upon vulcanization, fine particles of a vulcanized acrylic rubber having a size of 1˜100 &mgr;m, obtained by vulcanization of the unvulcanized acrylic rubber material are dispersed in a matrix phase of a vulcanized natural rubber, which is obtained by vulcanization of the unvulcanized natural rubber material. A method of producing the vibration damping rubber member is also disclosed.
Abstract:
An antivibration rubber composition containing diene rubber (Component A) and silica (Component B). The amount of the Component B contained is set to a range from 10 to 100 parts by weight with respect to 100 parts by weight of the Component A. The Component B has the following properties, i.e., a surface silanol-group density of not less than 3.0 groups/nm2 as determined by the Sears titration method, an average particle size of not more than 10 μm, and a BET specific surface area of 15 to 60 m2/g.