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High performance alternative to BPA-based epoxy acrylates Laromer ® PR 9119 resin 1 Tunja Jung European Coatings Show 2015
13

Laromer® PR 9119 – The High Performance Alternative to BPA-Based Epoxy Acrylates

Jul 14, 2015

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Kam Ho Tan
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Page 1: Laromer® PR 9119 – The High Performance Alternative to BPA-Based Epoxy Acrylates

High performance alternative

to BPA-based epoxy acrylatesLaromer® PR 9119 resin

1

Tunja JungEuropean Coatings Show 2015

Page 2: Laromer® PR 9119 – The High Performance Alternative to BPA-Based Epoxy Acrylates

Table of contents

2

What’s at stake?

Application fields

Performance highlight

Sustainability highlight

Design highlight

Conclusion

Laromer® PR9119 at a glance

® = Registered trademark of the BASF Group

Page 3: Laromer® PR 9119 – The High Performance Alternative to BPA-Based Epoxy Acrylates

What’s at stake?

3

Already today, the substitution of bisphenol A

(BPA) in coatings is required for several

applications – with growing importance in the

future.

Page 4: Laromer® PR 9119 – The High Performance Alternative to BPA-Based Epoxy Acrylates

One of the first products in the market that

achieves performance levels comparable to

conventional epoxy acrylates – offering a

powerful alternative to BPA-based UV

coatings.

Laromer PR 9119 at a glance

4

Page 5: Laromer® PR 9119 – The High Performance Alternative to BPA-Based Epoxy Acrylates

Application fields

5

Matt

coatings

Sensitive

applications

Clear &

pigmented coatings

Page 6: Laromer® PR 9119 – The High Performance Alternative to BPA-Based Epoxy Acrylates

Performance highlight:

Firm hardness for high resistance

62

41

82

0

25

50

75

100

Laromer PR 9119 Laromer EA 9097

(60 % in TPGA)

BPA epoxy acrylate

(75 % in GPTA)

6

Pendulum hardness[oscillation]

Data for white pigmented coatings

Page 7: Laromer® PR 9119 – The High Performance Alternative to BPA-Based Epoxy Acrylates

Performance highlight:

Fast reactivity for efficient production

2,5

12 12 12

5

15

12

15

11

17

12

17

14

20

12

20

15

22

12

20

0

6

12

18

24

8 g/m2 12 g/m2 25 g/m2 35 g/m2 50 g/m2

Laromer PR 9119

4 % Irgacure 184

Laromer EA 9097

(60 % in TPGDA)

4 % Irgacure 184

BPA epoxy

acrylate

(75 % in GPTA)

4 % Irgacure 184

Laromer PR 9119

5 % Irgacure 184

Reactivityin m/min

Film thickness

7

Page 8: Laromer® PR 9119 – The High Performance Alternative to BPA-Based Epoxy Acrylates

4

5 55 5 55 5 55 5 5

0

2

4

6

Performance highlight:

Chemical resistance against tough stains

1 h powder coffee 1 h ethanol 24 h water 24 h liquid paraffin

8

Compliant with

R1 standard

Laromer PR 9119 Laromer EA 9097

(60 % in TPGDA)

BPA epoxy acrylate

(75 % in GPTA)

Chemical resistance according to IKEA clear coat IOS-MAT 00661 = very bad / 5 = very good

Page 9: Laromer® PR 9119 – The High Performance Alternative to BPA-Based Epoxy Acrylates

Sustainability highlight:

Substituting bisphenol A

9

Use of BPA currently discussed in the coatings industry

Subject to evaluation by REACH authorities

IKEA’s IOS-MAT 0054 restricts use of BPA-based resins

BASF BPA-based derivatives used for selected resins

all fulfill the migration limit value of 0.1 mg/l

With its latest UV curable resin Laromer PR 9119, BASF

managed to develop a high performance alternative to

BPA-based epoxy acrylates

Page 10: Laromer® PR 9119 – The High Performance Alternative to BPA-Based Epoxy Acrylates

Design highlight:

Easy to matt

Laromer PR 9119 Laromer EA 9097

(60 % in TPGA)

BPA epoxy acrylate

(75 % in GPTA)

matt semi-matt glossy

10

0 8050403010 20 7060

Gloss (at 60°)

Page 11: Laromer® PR 9119 – The High Performance Alternative to BPA-Based Epoxy Acrylates

Conclusion

11

Laromer PR 9119

A powerful alternative

to BPA-based UV coatings

Page 12: Laromer® PR 9119 – The High Performance Alternative to BPA-Based Epoxy Acrylates

Please get in touchYou are highly welcome at our booth No. 523, hall 7a

Tunja Jung

Technical Marketing

[email protected]

Page 13: Laromer® PR 9119 – The High Performance Alternative to BPA-Based Epoxy Acrylates

150 years