Sliding member

US2016160824A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2016160824-A1
Application numberUS-201514958203-A
CountryUS
Kind codeA1
Filing dateDec 3, 2015
Priority dateDec 8, 2014
Publication dateJun 9, 2016
Grant date

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  1. Title

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  2. Abstract

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  5. First independent claim

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Abstract

Official abstract text for this publication.

Provided is a sliding member having a steel back metal layer and a sliding layer. The sliding layer includes a resin composition and a porous sintered layer including Fe or Fe alloy phase particles and a Ni—P alloy phase functioning as a binder. The steel back metal layer is made of a carbon steel including 0.05 to 0.3 mass % carbon and includes a ferrite phase and a pearlite phase. A central portion in a thickness direction of the steel back metal layer includes not greater than 30 volume % of the pearlite phase. The steel back metal layer includes a high pearlite phase portion in its surface facing the sliding layer. The high pearlite phase portion includes not less than 50 volume % of the pearlite phase.

First claim

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1 . A sliding member comprising: a steel back metal layer; and a sliding layer on the steel back metal layer, the sliding layer including a porous sintered layer and a resin composition, the porous sintered layer including a Ni—P alloy phase and particles of an Fe or Fe alloy phase, the Ni—P alloy phase functioning as a binder for binding the Fe or Fe alloy phase particles with one another or binding the Fe or Fe alloy phase particles with the steel back metal layer; wherein the steel back metal layer is made of a carbon steel including 0.05 to 0.3 mass % carbon and has a structure consisting essentially of a ferrite phase and a pearlite phase; wherein a central portion in a thickness direction of the steel back metal layer includes not greater than 30 volume % of the pearlite phase; and wherein the steel back metal layer includes a high pearlite phase portion in a surface of the steel back metal layer facing the sliding layer, the high pearlite phase portion including not less than 50 volume % of the pearlite phase. 2 . The sliding member according to claim 1 , wherein a volume ratio of the pearlite phase in the high pearlite phase portion is at least twice the volume ratio of the pearlite phase in the central portion in the thickness direction of the steel back metal layer. 3 . The sliding member according to claim 1 , wherein the high pearlite phase portion has an average thickness of 50 to 400 μm. 4 . The sliding member according to claim 1 , wherein the high pearlite phase portion has a structure consisting essentially of a ferrite phase in a form of a network and a coarse pearlite phase surrounded by the ferrite phase network, the coarse pearlite phase having an average grain size at least three times greater than an average grain size of the pearlite phase in the central portion in the thickness direction of the steel back metal layer. 5 . The sliding member according to claim 4 , wherein an area ratio of the ferrite phase network is at least 90% of a surface of the high pearlite phase portion facing the sliding layer. 6 . The sliding member according to claim 4 , wherein the ferrite phase network has a thickness of not greater than 5 μm in the surface of the high pearlite phase portion facing the sliding layer. 7 . The sliding member according to claim 1 , wherein the Ni—P alloy phase consists of: 9 to 13 mass % P; optionally one or more selected from the group consisting of 1 to 4 mass % B, 1 to 12 mass % Si, 1 to 12 mass % Cr, 1 to 3 mass % Fe, 0.5 to 5 mass % Sn, and 0.5 to 5 mass % Cu; and the balance of Ni and inevitable impurities. 8 . The sliding member according to claim 1 , wherein a mass ratio of the Ni—P alloy phase in the porous sintered layer is 5 to 40 parts in relation to 100 parts of the porous sintered layer. 9 . The sliding member according to claim 1 , wherein the high pearlite phase portion includes thin regions and thick regions having a greater thickness than a thickness of the thin regions, the thin regions and the thick regions being alternately disposed. 10 . The sliding member according to claim 9 , wherein the sliding member has a cylindrical shape such that the high pearlite phase portion includes the thin regions and the thick regions alternately disposed in a circumferential direction of the cylindrically shaped sliding member. 11 . The sliding member according to claim 10 , wherein the high pearlite phase portion has an average thickness of 50 to 400 μm, the thick regions having a thickness greater than or equal to the average thickness of the high pearlite phase portion and the thin regions having a thickness less than the average thickness of the high pearlite phase portion; wherein a difference between an average thickness of the thick regions and an average thickness of the thin regions is not less than 30% of the average thickness of the high pearlite phase portion; and wherein an average length between adjacent thick regions in the circumferential direction of the cylindrically shaped sliding member is 50 to 400 μm. 12 . The sliding member according to claim 10 , wherein an area ration of the thick regions is 20 to 50% of the surface of the high pearlite phase portion facing the sliding layer.

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What does patent US2016160824A1 cover?
Provided is a sliding member having a steel back metal layer and a sliding layer. The sliding layer includes a resin composition and a porous sintered layer including Fe or Fe alloy phase particles and a Ni—P alloy phase functioning as a binder. The steel back metal layer is made of a carbon steel including 0.05 to 0.3 mass % carbon and includes a ferrite phase and a pearlite phase. A central p…
Who is the assignee on this patent?
Daido Metal Co
What technology area does this patent fall under?
Primary CPC classification C22C19/03. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Thu Jun 09 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).