IP Library Granted Patent US 12686629
Granted Patent B2
US 12686629 · App. 18/646,771 · Granted Jul 21, 2026

Manufacturing method of porous glass base material for optical fiber and manufacturing apparatus

Inventors: Naoto Noda (Ibaraki, JP); Dai Inoue (Ibaraki, JP); Hitoshi Iinuma (Gunma, JP); Hiromasa Mizukami (Ibaraki, JP)
Assignee: SHIN-ETSU CHEMICAL CO., LTD.
C03B37/01815C03B2207/32C03B2207/34C03B2207/81C03B2207/87C03B2207/88
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Quick Facts
Patent No.
US 12686629
App. No.
18/646,771
Granted
Jul 21, 2026
Kind
B2
Abstract

In a method of manufacturing porous glass base for optical fiber, a liquid organic siloxane raw material stored in a raw material tank of internal pressure P 1 is controlled by a mass flow controller at a predetermined flow rate and pumped through pipe of internal pressure P 2 to a vaporizer, the liquid raw material is vaporized in the vaporizer and supplied as a gas raw material to a burner, and the silica fine particles formed by burning the gas raw material in the burner are deposited to form a porous glass base material, where P 1≤ P 2 is satisfied.

Claims (15)

1 . A manufacturing apparatus of porous glass base material for optical fiber comprising:

a raw material tank storing a liquid raw material, which is organic siloxane in a liquid state and filling the remaining space with inert gas;

a liquid feed pump to pump the liquid raw material from the raw material tank;

a circulating pipe that returns part or all of the liquid raw material pumped by the liquid feed pump to the raw material tank;

a first supply pipe branched from the circulating pipe;

a pressure loss unit provided downstream of the first supply pipe;

a second supply pipe provided downstream of the pressure loss unit;

a mass flow controller provided downstream of the pressure loss unit via the second supply pipe to control the flow rate of the liquid raw material to a predetermined flow value;

a third supply pipe provided downstream of the mass flow controller;

a vaporizer provided downstream of the mass flow controller via the third supply pipe to vaporize the liquid raw material; and

a burner that combusts the raw material gas vaporized by the vaporizer to deposit silica fine particles,

wherein

when the internal pressure of the raw material tank is P 1 , the internal pressure of the circulating pipe is P 4 , the internal pressure of the second supply pipe is P 3 , and the internal pressure of the third supply pipe is P 2 , P 1 ≤P 2 <P 3 ≤0.6 P 4 is satisfied, and

a distal end of the circulating pipe extends to a lower region of the raw material tank so as to be positioned below a liquid surface of the liquid raw material in the raw material tank.

2 . The manufacturing apparatus as claimed in claim 1 comprising heating/warmth-keeping unit for heating and keeping the circulating pipe, the first supply pipe, the second supply pipe, and the third supply pipe to be maintained at a temperature above the freezing point of the liquid raw material.