IP Library Granted Patent US 8,568,288
Granted Patent B2
US 8,568,288 · App. 13/449,453 · Granted Oct 29, 2013

Slide device, mechanical seal, rotary device, pump and auxiliary artificial heart system

Inventors: Keiichiro Kaneshima (Suwa, JP); Takayuki Miyakoshi (Suwa, JP); Tomoya Kitano (Suwa, JP); Hideki Kanebako (Suwa, JP); Shinji Kobayashi (Suwa, JP); Koshi Adachi (Sendai, JP); Koki Kanda (Sendai, JP); Daisuke Suzuki (Sendai, JP)
Assignees: Sun Medical Technology Research Corporation; Tohoku University
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Quick Facts
Patent No.
US 8,568,288
App. No.
13/449,453
Granted
Oct 29, 2013
Kind
B2
Abstract

Provided is a slide device which can reduce a frictional force more than a conventional slide device when used in an aqueous liquid containing a blood component. In a slide device which includes: a fixed-side slide member having a slide surface; and a rotary-side slide member having a slide surface, the slide device being used in an aqueous liquid containing a blood component in a state where the slide surface of the fixed-side slide member and the slide surface of the rotary-side slide member face each other in an opposed manner, at least one of the fixed-side slide member and the rotary-side slide member is formed of a member which is made of a material which contains silicon and has hydrate of silicon oxide on the slide surface thereof.

Claims (42)

1. A slide device comprising:

a fixed-side slide member having a slide surface; and

a rotary-side slide member having a slide surface,

the slide device configured for being used in an aqueous liquid containing a blood component in a state where the slide surface of the fixed-side slide member and the slide surface of the rotary-side slide member face each other in an opposed manner,

wherein

at least one of the fixed-side slide member and the rotary-side slide member is formed of a member which is made of a material containing silicon and has hydrate of silicon oxide on the slide surface thereof,

the silicon oxide is oxide of silicon derived from silicon which the slide member contains, the slide member being made of a silicon-containing material,

the slide member made of a silicon-containing material is subjected to treatment for forming the hydrate of silicon oxide on the slide surface before the slide member made of a silicon-containing material is incorporated into the slide device,

the treatment for forming the hydrate of silicon oxide on the slide surface is running-in treatment,

one of the fixed-side slide member and the rotary-side slide member is formed of a slide member made of silicon carbide as a slide member made of a silicon-containing material, and the other of the fixed-side slide member and the rotary-side slide member is formed of a slide member made of carbon,

the slide member made of carbon is formed of a slide member made of carbon to which running-in treatment is not applied, and

an average surface roughness of the slide surface of the slide member made of silicon carbide is set smaller than an average surface roughness of the slide surface of the slide member which is made of carbon.

2. The slide device according to claim 1 , wherein the average surface roughness of the slide surface of the slide member made of carbon falls within a range of 0.01 μm to 1.0 μm.

3. The slide device according to claim 1 , wherein the slide device is a slide device configured to be used in an aqueous liquid containing a blood component in a state where the fixed-side slide member and the rotary-side slide member are brought into contact with each other.

4. A mechanical seal provided with the slide device according to claim 1 .

5. A pump comprising: a mechanical seal provided with a slide device,

wherein the slide device includes:

a fixed-side slide member having a slide surface; and

a rotary-side slide member having a slide surface, the slide device configured for being used in an aqueous liquid containing a blood component in a state where the slide surface of the fixed-side slide member and the slide surface of the rotary-side slide member face each other in an opposed manner,

wherein

at least one of the fixed-side slide member and the rotary-side slide member is formed of a member which is made of a material containing silicon and has hydrate of silicon oxide on the slide surface thereof,

the silicon oxide is oxide of silicon derived from silicon which the slide member contains, the slide member being made of a silicon-containing material,

the slide member made of a silicon-containing material is subjected to treatment for forming the hydrate of silicon oxide on the slide surface before the slide member made of a silicon-containing material is incorporated into the slide device,

the treatment for forming the hydrate of silicon oxide on the slide surface is running-in treatment,

one of the fixed-side slide member and the rotary-side slide member is formed of a slide member made of silicon carbide as a slide member made of a silicon-containing material, and the other of the fixed-side slide member and the rotary-side slide member is formed of a slide member made of carbon,

the slide member made of carbon is formed of a slide member made of carbon to which running-in treatment is not applied, and

an average surface roughness of the slide surface of the slide member made of silicon carbide is set smaller than an average surface roughness of the slide surface of the slide member which is made of carbon.

6. The pump according to claim 5 , wherein the pump is an auxiliary artificial heart pump.

7. An auxiliary artificial heart system comprising:

a pump, wherein

the pump is an auxiliary artificial heart pump,

the pump comprises a mechanical seal provided with a slide device,

the slide device includes

a fixed-side slide member having a slide surface; and

a rotary-side slide member having a slide surface, the slide device configured for being used in an aqueous liquid containing a blood component in a state where the slide surface of the fixed-side slide member and the slide surface of the rotary-side slide member face each other in an opposed manner,

at least one of the fixed-side slide member and the rotary-side slide member is formed of a member which is made of a material containing silicon and has hydrate of silicon oxide on the slide surface thereof,

the silicon oxide is oxide of silicon derived from silicon which the slide member contains, the slide member being made of a silicon-containing material,

the slide member made of a silicon-containing material is subjected to treatment for forming the hydrate of silicon oxide on the slide surface before the slide member made of a silicon-containing material is incorporated into the slide device,

the treatment for forming the hydrate of silicon oxide on the slide surface is running-in treatment,

one of the fixed-side slide member and the rotary-side slide member is formed of a slide member made of silicon carbide as a slide member made of a silicon-containing material, and the other of the fixed-side slide member and the rotary-side slide member is formed of a slide member made of carbon,

the slide member made of carbon is formed of a slide member made of carbon to which running-in treatment is not applied, and

an average surface roughness of the slide surface of the slide member made of silicon carbide is set smaller than an average surface roughness of the slide surface of the slide member which is made of carbon.

Assignments (2)
CHANGE OF NAME Recorded Apr 30, 2013
From: SUN MEDICAL TECHNOLOGY RESERCH CORPORATION
To: SUN MEDICAL TECHNOLOGY RESEARCH CORPORATION
Reel/Frame 030322/0483 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 18, 2012
From: KANESHIMA, KEIICHIRO; MIYAKOSHI, TAKAYUKI; KITANO, TOMOYA; KANEBAKO, HIDEKI; KOBAYASHI, SHINJI; ADACHI, KOSHI; KANDA, KOKI; SUZUKI, DAISUKE
To: SUN MEDICAL TECHNOLOGY RESEARCH CORPORATION; TOHOKU UNIVERSITY
Reel/Frame 028578/0622 →
Priority Claims (1)
JP 2011-232331 · Oct 22, 2011 · national
Continuity (1)
Related Publication 20130102834A1 · Apr 25, 2013