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UTP HydroCav - UTP Schweissmaterial

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Standards :<br />

Material-No. : 1.4453<br />

EN ISO 14343-A : ~ GWZ 18 16 5 N L<br />

AWS A5.9 : ER 317 L (mod)<br />

Application field<br />

346<br />

<strong>UTP</strong> A 1817 Mn<br />

Gas shielded welding wire for CrNisteels<br />

with high Mo-content<br />

<strong>UTP</strong> A 1817 Mn is used for joining in the construction of chemical equipment and containers. Fully austenitic<br />

weld metal with excellent resistance to pitting, crevice and stress corrosion cracking. For working<br />

temperatures up to 400° C.<br />

Properties of the weld metal<br />

The weld metal of <strong>UTP</strong> A 1817 Mn is stainless and IK-resistant (wet corrosion up to 400°C). Due to<br />

the high Mo-content it has a high resistance against chloride-containing media and pitting. Not magetizeable.<br />

Base materials<br />

1.4436 X3 CrNiMo 17-13-3<br />

1.4439 X2 CrNiMoN 17-13-5<br />

1.4429 X2 CrNiMoN 17-13-3<br />

1.4438 X2 CrNiMo 18-15-4<br />

1.4583 X10 CrNiMoNb 18-12<br />

AlSi: 316Cb; 316LN; 317L<br />

UNS S31726<br />

Mechanical properties of the weld metal (unannealed)<br />

Yield strength<br />

R p0,2<br />

MPa<br />

> 330 MAG<br />

> 380 WIG<br />

Weld metal analysis in %<br />

C Si Mn Cr Mo Ni N Fe<br />

0,01 0,4 5,5 19,0 4,3 17,2 0,16 balance<br />

Welding instruction<br />

Welding area must be cleanded to metallic bright and degreased. Preheating usually not necessary. If requested<br />

a solution heat treatment at 1050°C can be carried out.<br />

Welding procedure and availability<br />

Ø<br />

(mm)<br />

Current type<br />

* available on request<br />

Approvals<br />

TÜV (No. 11910-MIG; 11909-WIG)<br />

Tensile strength<br />

R m<br />

MPa<br />

570<br />

Shielding gas<br />

EN ISO 14175<br />

Elongation<br />

A<br />

%<br />

34<br />

Impact strength<br />

K v<br />

Joule<br />

> 65 MAG<br />

> 100 WIG<br />

Availability<br />

Spools Rods<br />

I 1 M 12, M 13 EN ISO 544 EN ISO 544<br />

1,0 * DC (+) x x<br />

1,2 * DC (+) x x<br />

1,6 * DC (-) x x<br />

2,0 * DC (-) x x<br />

2,4 * DC (-) x x<br />

3,2 * DC (-) x x

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