IP Library Granted Patent US 11,007,747
Granted Patent B2
US 11,007,747 · App. 15/968,048 · Granted May 18, 2021

Glass/resin composite structure and method for manufacturing same

Inventors: Yusuke Goto (Tokyo, JP); Masao Kamahori (Tokyo, JP); Hiroshi Sasaki (Tokyo, JP); Kiyotoshi Mori (Tokyo, JP); Hideyuki Akiyama (Tokyo, JP)
Assignee: HITACHI HIGH-TECH CORPORATION
B32B1/08B01L3/561B29C65/46B29C65/4895B29C66/7465B32B7/12B32B17/064B32B27/281B32B27/285B32B27/286B32B27/288B32B27/34B32B27/365C09J5/06G01N21/05B01L2300/12B29C66/73117B29K2071/00B29K2995/0026B29K2995/0058B29K2995/0077B29L2023/22B29L2031/752B32B2255/20B32B2597/00C09J2400/143C09J2400/226Y10T428/1321
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Quick Facts
Patent No.
US 11,007,747
App. No.
15/968,048
Granted
May 18, 2021
Kind
B2
Abstract

A composite structure with high pressure resistance that is suitable for a flow channel is produced by reducing the number of components while maintaining the excellent chemical resistance and high stress tolerance inherent to a glass substrate and a resin substrate. A glass substrate surface is modified with a hydrolyzable silicon compound, and the glass substrate is brought into contact with the resin substrate. Subsequently, the contact surface between the glass substrate and the resin substrate is heated to a temperature from the glass transition temperature to the pyrolysis temperature of the resin substrate, eliminating gaps between the glass substrate and the resin substrate to bring them into close contact with each other, and causing chemical binding or anchor effects between the glass substrate and the resin substrate via the hydrolyzable silicon compound. Thus, the glass substrate and the resin substrate are firmly fixed to each other.

Claims (8)

1. A composite structure, comprising:

a cylindrical glass tube bonded to a cylindrical resin tube via a hydrolyzable silicon compound and comprising a flow channel having two open ends,

wherein the cylindrical glass tube is disposed within the cylindrical resin tube,

wherein a surface of the glass tube is in contact with a surface of the resin tube, and

wherein, in the contact surface between the glass tube and the resin tube, an angle of an end plane of a region in which the glass tube is bonded to the resin tube relative to the contact surface between the glass tube and the resin tube is from 0 degrees to 90 degrees.

2. The composite structure according to claim 1 , wherein an adhesion surface between the glass tube surface and the resin tube surface is an even reflecting surface that does not form interference fringes in a visible light wavelength range.

3. The composite structure according to claim 1 , wherein the glass tube is synthetic silica glass, fused-silica glass, borosilicate glass, or soda glass.

4. The composite structure according to claim 1 , wherein the resin tube is polyether ether ketone resin, polyether ketone resin, polyether ketone ketone resin, polyether ether ketone ketone resin, polyether nitrile resin, polysulfone resin, polyphenylene sulfide resin, polyether sulfone resin, polyphenylsulfone resin, polyimide-based resin, polyetherimide resin, polyamide resin, polyamide imide resin, or polycarbonate resin.

Assignments (1)
CHANGE OF NAME AND ADDRESS Recorded Mar 30, 2020
From: HITACHI HIGH-TECHNOLOGIES CORPORATION
To: HITACHI HIGH-TECH CORPORATION
Reel/Frame 052259/0227 →
Priority Claims (1)
JP JP2012-268421 · Dec 7, 2012 · national
Continuity (2)
Division 14646522
Related Publication 20180244014A1 · Aug 30, 2018