IP Library Granted Patent US 10,626,269
Granted Patent B2
US 10,626,269 · App. 15/748,775 · Granted Apr 21, 2020

Polyester resin composition and method for producing same

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 10,626,269
App. No.
15/748,775
Granted
Apr 21, 2020
Kind
B2
Abstract

Provided are: a polyester resin composition that exhibits excellent flame retardancy and melt thermal stability and also exhibits excellent laser markability; and a method for producing same. The present invention provides: a polyester resin composition containing 3 to 60 parts by mass of a brominated polyacrylate flame retardant (B) relative to 100 parts by mass of a thermoplastic polyester resin (A), this brominated polyacrylate flame retardant (B) having a Na element concentration of 5 to 4000 ppm, as measured by X-Ray fluorescence analysis; and a production method including washing the brominated polyacrylate flame retardant (B) with hot water having a temperature of 40° C. to 100° C., then drying the washed product, and then mixing the dried product with the thermoplastic polyester resin (A).

Claims (19)

1. A polyester resin composition, comprising:

(A) 100 parts by mass of a thermoplastic polyester resin (A); and

(B) 3 to 60 parts by mass of a brominated polyacrylate flame retardant (B), relative to the 100 parts by mass of the thermoplastic polyester resin (A),

wherein the brominated polyacrylate flame retardant (B) has a Na element concentration of 5 to 4000 ppm, as measured by X-Ray fluorescence analysis or by inductively coupled plasma (ICP) emission spectrometry, a Mg ion concentration of 5 to 2000 ppm and an Al ion concentration of 5 to 3000 ppm, as measured by ICP emission spectrometry.

2. The polyester resin composition according to claim 1 , wherein the brominated polyacrylate flame retardant (B) has a Na element concentration of 100 to 1500 ppm.

3. The polyester resin composition according to claim 1 , wherein the brominated polyacrylate flame retardant (B) is a pentabromobenzyl polyacrylate.

4. The polyester resin composition according to claim 1 , wherein the brominated polyacrylate flame retardant (B) contains sodium bromide.

5. The polyester resin composition according to claim 1 , further comprising:

(C) a phosphate stabilizer (C).

6. The polyester resin composition according to claim 1 , wherein the brominated polyacrylate flame retardant (B) has a ratio (Mw/Mn) of mass average molecular weight (Mw) to number average molecular weight (Mn) of 5.5 or less.

7. The polyester resin composition according to claim wherein the brominated polyacrylate flame retardant (B) has a mass average molecular weight (Mw), as measured by GPC, of 10000 or more.

8. A polyester resin composition, comprising:

(A) 100 parts by mass of a thermoplastic polyester resin (A); and

(B) 3 to 60 parts by mass of a brominated polyacrylate flame retardant (B) relative to the 100 parts by mass of the thermoplastic polyester resin (A),

wherein the brominated polyacrylate flame retardant (B) has a Na element concentration of 5 to 4000 ppm, a Mg ion concentration of 5 to 2000 ppm and an Al ion concentration of 5 to 3000 ppm, as measured by ICP emission spectrometry, and the polyester resin composition has a Na element concentration of 1 to 400 ppm, as measured by atomic absorption spectroscopy or by inductively coupled plasma (ICP) emission spectrometry.

9. A method for producing a polyester resin composition comprising 3 to 60 parts by mass of a brominated polyacrylate flame retardant (B) relative to 100 parts by mass of a thermoplastic polyester resin (A), the method comprising:

washing the brominated polyacrylate flame retardant (B) with hot water having a temperature of 40° C. to 100° C.; then

drying the washed product to obtain a dried product having a Na element concentration of 5 to 4,000 ppm, as measured by X-Ray fluorescence analysis or by inductively coupled plasma (ICP) emission spectrometry; and then

mixing the dried product with the thermoplastic polyester resin (A).

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 Jan 30, 2018
From: YAMANAKA, YASUSHI; YAMASHITA, MASAYA; SAKOGAWA, KOUICHI; TAKISE, OSAMU
To: MITSUBISHI ENGINEERING-PLASTICS CORPORATION
Reel/Frame 044767/0740 →