IP Library Granted Patent US 11,286,615
Granted Patent B2
US 11,286,615 · App. 16/411,709 · Granted Mar 29, 2022

Cable and medical hollow tube

Inventors: Seiichi Kashimura (Tokyo, JP); Masamichi Kishi (Tokyo, JP); Takanobu Watanabe (Tokyo, JP); Kimika Kudo (Tokyo, JP); Masashi Arai (Tokyo, JP)
Assignee: HITACHI METALS, LTD.
D07B5/006A61L29/042A61L29/085A61L29/126A61L29/14A61M25/0045D07B1/16A61B2562/222A61L2420/02A61L2420/08D07B2201/2087D07B2201/2088D07B2201/2092D07B2205/2082D07B2501/2084D07B2801/18
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Quick Facts
Patent No.
US 11,286,615
App. No.
16/411,709
Granted
Mar 29, 2022
Kind
B2
Abstract

A cable includes a sheath, and a coating film covering a circumference of the sheath. The coating film adheres to the sheath. The static friction coefficient of a surface of the coating film is smaller than the static friction coefficient of a surface of the sheath. The adhesion strength between the sheath and the coating film is 0.30 MPa or more.

Claims (21)

1. A cable, comprising:

a sheath; and

a coating film covering a circumference of the sheath, the coating film adhering to the sheath,

wherein a static friction coefficient of a surface of the coating film is 0.5 or less,

wherein an adhesion strength between the sheath and the coating film is 0.30 MPa or more, and

wherein a parent material of the coating film is produced by curing an addition reaction type coating agent.

2. The cable according to claim 1 , wherein the coating film comprises fine particles dispersed in a parent material.

3. The cable according to claim 2 , wherein the fine particles include any one or a plurality of silicone resin fine particles, silicone rubber fine particles, or silica fine particles.

4. The cable according to claim 2 , wherein the fine particles have a higher hardness than that of the parent material.

5. The cable according to claim 2 , wherein the fine particles comprise an average particle diameter of 1 μm or more and 10 μm or less.

6. The cable according to claim 1 , wherein the coating film comprises a thickness of 3 μm or more and 100 μm or less.

7. The cable according to claim 1 , wherein the sheath is made of silicone rubber.

8. The cable according to claim 1 , wherein the cable is a probe cable, which is connectable to a medical device.

9. The cable according to claim 1 , wherein a roughness of an uneven shape of the surface of the coating film is higher than a roughness of an uneven shape of the surface of the sheath.

10. The cable according to claim 1 , further comprising:

a protective member bonded around the coating film,

wherein a static friction coefficient of a surface of the coating film is smaller than a static friction coefficient of a surface of the sheath, and

wherein an adhesion strength between the sheath and the coating film is equal to a bonding strength between the coating film and the protective member, or

greater than the bonding strength between the coating film and the protective member.

11. The cable according to claim 1 , wherein the coating film is an addition reaction type silicone rubber.

12. The cable according to claim 11 , wherein the coating film is substantially void-free in an interface between the coating film and the sheath.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 14, 2019
From: KASHIMURA, SEIICHI; KISHI, MASAMICHI; WATANABE, TAKANOBU; KUDO, KIMIKA; ARAI, MASASHI
To: HITACHI METALS, LTD.
Reel/Frame 049174/0199 →
Priority Claims (3)
JP JP2018-095112 · May 17, 2018 · national
JP JP2018-162773 · Aug 31, 2018 · national
JP JP2019-082944 · Apr 24, 2019 · national
Continuity (1)
Related Publication 20190352848A1 · Nov 21, 2019