IP Library Granted Patent US 10,836,113
Granted Patent B2
US 10,836,113 · App. 15/542,512 · Granted Nov 17, 2020

Laser welding member, and molded article

Inventor: Yasushi Yamanaka (Hiratsuka, JP)
Assignee: Mitsubishi Engineering-Plastics Corporation
B29C65/1616B29C45/0001B29C65/1635B29C65/1654B29C65/1677B29C65/8215B29C65/8253B29C66/1122B29C66/43B29C66/71B29C66/73921B29C69/00B32B27/08B32B27/365C08L67/02B29C45/0025B29C66/7352B29C66/919B29C66/929B29C66/939B29C2045/0027B29K2067/006B29K2069/00B29K2667/006B29K2669/00B29K2995/0027
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Quick Facts
Patent No.
US 10,836,113
App. No.
15/542,512
Granted
Nov 17, 2020
Kind
B2
Abstract

A laser welding member that has a high laser transmittance at a welding region and exhibits an excellent laser welding processability, and a molded article obtained by laser welding using this laser welding member. The laser welding member is obtained by injection molding of a thermoplastic polyester resin material, wherein a region to be laser welded in the member is at a location separated by a distance of at least 15 mm from a gate of an injection molding mold and has at least 30% of a light transmittance of laser light with a wavelength of 940 nm.

Claims (13)

1. A method of producing a laser-welded molded article, the method comprising:

laser welding a first laser welding member obtained by injection molding a thermoplastic polyester resin material, with a second member comprising a laser-absorptive resin material by irradiation with laser light from a side of the first laser welding member,

wherein

the thermoplastic polyester resin material of the first laser welding member comprises a polybutylene terephthalate resin, polystyrene and/or butadiene rubber-containing polystyrene, and a polycarbonate resin, and a content of the polybutylene terephthalate resin is from 30 to 90 mass %, a content of the polystyrene and/or butadiene rubber-containing polystyrene is from 1 to 50 mass %, and a content of the polycarbonate resin is from 1 to 50 mass %, based on 100 mass % for a total of the polybutylene terephthalate resin, the polystyrene and/or butadiene rubber-containing polystyrene, and the polycarbonate resin,

the second member comprises a thermoplastic polyester resin composition comprising a carbon black or a laser light-absorbing dye,

a region to be laser welded in the first member is at a location separated by a distance of at least 15 mm from a gate of an injection molding mold and has at least 50% of a light transmittance of laser light with a wavelength of 940 nm, and

a crystallization temperature (Tc) of the region to be laser welded in the first member is not more than 188° C.

2. The method according to claim 1 , wherein the thermoplastic polyester resin composition of the second member comprises a thermoplastic polyester resin, and at least 50 mass % of the thermoplastic polyester resin is a polybutylene terephthalate resin.

3. The method according to claim 1 , wherein the thermoplastic polyester resin material of the first member and the second member further comprise a glass fiber.

4. The method according to claim 1 , wherein the thermoplastic polyester resin material of the first laser welding member is injection molded under a condition of 10 to 300 cm 3 /sec for an injection ratio, wherein the injection ratio is defined as a volume of a resin material injected per unit time into a mold cavity from an output nozzle of an injection molding machine.

5. The method according to claim 4 , wherein the thermoplastic polyester resin material of the first laser welding member is injection molded under a condition of 100 to 1200 cm 3 /sec·cm for a surface advance coefficient, wherein the surface advance coefficient is defined as a value obtained by dividing the injection ratio by a thickness of the mold cavity into which the resin material is injected.

6. The method according to claim 1 , wherein a melt volume rate, measured under a condition of 250° C. and a load of 5 kg, of the thermoplastic polyester resin material of the first laser welding member is at least 10 cm 3 /10 min.

7. The method according to claim 1 , wherein the gate is a film gate.

Assignments (2)
CONFIRMATORY ASSIGNMENT Recorded Dec 5, 2023
From: MITSUBISHI ENGINEERING-PLASTICS CORPORATION
To: MITSUBISHI CHEMICAL CORPORATION
Reel/Frame 065775/0613 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 10, 2017
From: YAMANAKA, YASUSHI
To: MITSUBISHI ENGINEERING-PLASTICS CORPORATION
Reel/Frame 042952/0175 →
Priority Claims (2)
JP 2015-009979 · Jan 22, 2015 · national
JP 2015-034733 · Feb 25, 2015 · national
Continuity (1)
Related Publication 20180264743A1 · Sep 20, 2018
Cited By (1)
US 12,552,927