IP Library Granted Patent US 12697756
Granted Patent B2
US 12697756 · App. 18/746,026 · Granted Aug 4, 2026

Method for manufacturing glass plate equipped with vehicle window-type resin frame

Inventors: Naonori Hatta (Tokyo, JP); Eita Nagamura (Tokyo, JP); Mineo Mori (Tokyo, JP)
Assignee: AGC INC.
B29C45/14434B29C45/14065B29C45/77B29C45/78B29C2945/76006B29C2945/7604B29C2945/761B29C2945/76257B29C2945/76384B29C2945/76498B29C2945/76531B29C2945/76862B29K2029/14B29K2709/08B29K2995/0013B29L2031/3052
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12697756
App. No.
18/746,026
Granted
Aug 4, 2026
Kind
B2
Abstract

A method for manufacturing a glass plate equipped with a vehicle window-type resin frame includes performing injection molding of the resin frame by using two shaping molds having a cavity configured for the resin frame, disposing the glass plate inside the shaping molds such that the glass plate is retained by a retaining part that is adjacent to the cavity of the shaping molds, and injecting a resin into the cavity, wherein there is at least a partial gap between the glass plate and the retaining part, in a state in which the shaping molds are clamped together.

Claims (33)

1 . A method for manufacturing a glass plate equipped with a vehicle window-type resin frame, the manufacturing method comprising:

performing injection molding of the resin frame by:

using two shaping molds having a cavity configured for the resin frame;

disposing the glass plate inside the shaping molds such that the glass plate is retained by a retaining part that is adjacent to the cavity of the shaping molds; and

injecting a resin into the cavity, wherein

there is at least a partial gap between the glass plate and the retaining part, in a state in which the shaping molds are clamped together,

the gap has a gap distance of 0.5 mm or less,

in the injection molding, information regarding at least the gap between the glass plate and the retaining part is acquired and the injection molding is controlled by utilizing the information regarding the gap, and

the information regarding the gap is estimated from either or both of pressure and displacement of the glass plate.

2 . The manufacturing method according to claim 1 , wherein the information regarding the gap is the gap distance.

3 . The manufacturing method according to claim 1 , wherein in the injection molding, a resin pressure and a mold temperature are further acquired, a characteristic value is obtained based on the information regarding the gap, the resin pressure, and the mold temperature, and a condition of the injection molding is adjusted in accordance with the characteristic value.

4 . The manufacturing method according to claim 3 , wherein the characteristic value is dimensionless number A represented by formula (I) below, and a condition of the injection molding is adjusted such that the dimensionless number does not exceed a target value range

A=P R ×ts/η   (I)

where, in formula (I) above,

P R is the resin pressure,

ts is a solidification time and is a dependent function of the gap distance and the mold temperature, and

η is converted viscosity and is a dependent function of the gap distance.

5 . The manufacturing method according to claim 3 , wherein the condition of the injection molding that is to be adjusted is a measuring condition for measuring resin to be injected into the shaping molds, an injecting condition for injecting the resin into the shaping molds, a pressure-holding condition for holding pressure after the injecting, a temperature condition of the shaping molds, or any combination thereof.

6 . The manufacturing method according to claim 1 , wherein the glass plate is curved.

7 . The manufacturing method according to claim 1 , wherein thermal conductivity of a material included in at least the retaining part is 10 W/mK to 500 W/mK, inclusive.

8 . The manufacturing method according to claim 1 , wherein the shaping molds are equipped with a hot runner.

9 . The manufacturing method according to claim 1 , wherein cooling piping is provided in the shaping molds, and the cooling piping and the cavity are separated from each other by a distance that is substantially same.

10 . The manufacturing method according to claim 1 , wherein the injection molding is gas-assisted.

11 . The manufacturing method according to claim 1 , wherein a deflection suppressing member is disposed in a central region of the glass plate.

12 . A method for manufacturing a glass plate equipped with a vehicle window-type resin frame, the manufacturing method comprising:

performing injection molding of the resin frame by:

using two shaping molds having a cavity configured for the resin frame;

disposing the glass plate inside the shaping molds such that the glass plate is retained by a retaining part that is adjacent to the cavity of the shaping molds; and

injecting a resin into the cavity, wherein

there is at least a partial gap between the glass plate and the retaining part, in a state in which the shaping molds are clamped together,

the gap has a gap distance of 0.5 mm or less,

in the injection molding, information regarding at least the gap between the glass plate and the retaining part is acquired and the injection molding is controlled by utilizing the information regarding the gap, and

in the injection molding, a resin pressure and a mold temperature are further acquired, a characteristic value is obtained based on the information regarding the gap, the resin pressure, and the mold temperature, and a condition of the injection molding is adjusted in accordance with the characteristic value.