Skip to main content

Re: Fw: [MW:31268] Combination of PQRs

Is it not possible to use NiCrMo3

On Mon, 3 Aug 2020 6:20 pm 'Amitabh Bhattacharya' via Materials & Welding, <materials-welding@googlegroups.com> wrote:
Hello ALL,
I agree with the recomended filler suggested in  e-mail below. ER385 is recomended in this application & a proven filler alloy. 
Service condition will govern the Corroision properties.of weld deposit. 

A PDS is attached for review . There are other reputed manufacturer as well.
Thanks 
Amitabh 



----- Forwarded Message -----
From: Customer Care <bricenori@hotmail.com>
Sent: Sunday, August 2, 2020, 11:58:32 PM EDT
Subject: RE: [MW:31261] Combination of PQRs

Good morning Gigi, 

Well, I will try to be explicit as much as possible.

Welding a type 904L steel (high-alloy austenitic stainless steel) with filler type ERNiFeCr-1, has the following consequences:

-Both materials solidify in the austenite phase, with exponential increase in hot thermal expansion, which makes the weld susceptible to hot cracking in the HAZ.
-An indicator of this behavior, we can see it in a Schaeffler diagram, where if the filler metal ERNiFeCr-1 is used, the nickel equivalent (austenite phase former) rises considerably. There is no delta ferrite, a phase that helps prevent the weld from cracking during solidification.
- On the other hand, if ERNiFeCr-1 is used for the 904L, the Mo content in the weld is weakened and with it, reduces the resistance to pitting in chloride environments and the risk of cracking in sulfuric acid environments.

For this reason, whenever possible, we must use filler materials that are most compatible with the base metal, both in chemical composition and in the formation of the most similar solidification structures.
To solve this 904L welding problem, filler material ER385 was created. They remain as brothers at the end of everything.

I hope my comments serve you,

Regards,

Ramon Briceno / Metallurgical Engineer - Oil & Gas



--
https://materials-welding.blogspot.com/
https://www.linkedin.com/groups/122787
---
You received this message because you are subscribed to the Google Groups "Materials & Welding" group.
To unsubscribe from this group and stop receiving emails from it, send an email to materials-welding+unsubscribe@googlegroups.com.
To view this discussion on the web visit https://groups.google.com/d/msgid/materials-welding/145846290.636179.1596458011780%40mail.yahoo.com.

--
https://materials-welding.blogspot.com/
https://www.linkedin.com/groups/122787
---
You received this message because you are subscribed to the Google Groups "Materials & Welding" group.
To unsubscribe from this group and stop receiving emails from it, send an email to materials-welding+unsubscribe@googlegroups.com.
To view this discussion on the web visit https://groups.google.com/d/msgid/materials-welding/CAJzm4eN0m2wbDw6sfPLAcghJCuH-CQbui0JHJB3jAkPtZeJ7OQ%40mail.gmail.com.

Comments

Popular posts from this blog

Heat tint (temper) colours on stainless steel surfaces heated in air // Heat tint

Introduction The colour formed when stainless steel is heated, either in a furnace application or in the heat affected zone of welds, is dependent on several factors that are related to the oxidation resistance of the steel. The heat tint or temper colour formed is caused by the progressive thickening of the surface oxide layer and so, as temperature is increased, the colours change.   Oxidation resistance of stainless steels However, there are several factors that affect the degree of colour change and so there is no a single table of colour and temperature that represents all cases. The colours formed can only be used as an indication of the temperature to which the steel has been heated. Factors affecting the heat tint colours formed Steel composition The chromium content is the most important single factor affecting oxidation resistance. The higher the chromium, the more heat resistant the steel and so the development of the heat tint colou...

[MW:5202] RE: 5200] NDT after PWHT

------------------------------------- Interpretation:  I‑89‑14 Subject:         Section I (1986 Edition, 1987 Addenda), PW‑11,                  NDE Prior to PWHT Date Issued:     December 15, 1988 File:            BC88‑393   Question: Does PW‑11 require that NDE be performed on welds after they have been subjected to the postweld heat treatment required by PW‑39?   Reply: No, unless the conditions described in PW‑11.2.2 exist. ---------------------------------------------- Interpretation:  VIII-1-98-09 Subject:         Section VIII, Division 1 (1995 Edition, 1996 Addenda); NDE                 ...

Materails FAQs

Q: What are equivalents for standard Q 235 B (and Q 235 A) for U-channels? (asked by: boris.vielhaber@vait.com) A: DIN Nr. = 2393 T.2, 2394 T.2, EN 10025 W. Nr. DIN 17007 = 1.0038 Design DIN 17006 = RSt 37-2, S235JRG2 (Fe 360 B) Q: What is St DIN 2391 BK material? (asked by: dmcandrews@automaticstamp.com) A: Precision steel tubes, cold-finished/hard. Q: What is C.D.W. Boiler Tube? (asked by: montydude123@yahoo.com) A: Cold Drawn Welded Boiler Tube. Q: WHAT IS W.Nr. 1.4301? PLS TELL US IN EASY LANGUAGUE (asked...