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FSW Prototyping
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STIRWELD

FSW 공급 업체, FSM Heads, FSM Tools, FSW Accesories

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+33 06-47-49-73-96
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contact@stirweld.com
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FSW Prototyping
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FSW Prototyping

Stirweld accompanies you in your first steps in FSW technology to achieve high quality results. We follow a rigorous process in which we work together in each and every stage.

 


Codesign of customer piece

We provide material strength analysis, based on customer’s burst and fatigue specifications. Then welded thickness is determined, and the adapted FSW tool is selected.

We perform FSW feasibility analysis, suggesting design adaptations to get the part ready for FSW and to optimize FSW process.

 


Design and manufacturing of clamping jig

It must be taken into account:

  • Geometry
  • Number of clamps
  • Clamping force
  • Tool wear
  • Tool path

 


Welding parameters and quality control

FSW industrial study includes determination and optimization of welding process parameters, such as:

 

  • Choice of the FSW tool
  • Welding force
  • Tool rotation speed
  • Welding speed
  • Plunging speed

These FSW parameters will optimize the part production while assuring a perfect and reproducible weld.

 

In addition, special attention must be paid to the position of the tool: where to place the advancing and the retreating side.

Our advice: always place the advancing side where there is more material or where the aluminium is more resistant.

 


To ensure that the parameters lead to a good weld quality, we perform destructive and non-destructive testing, according to customer specifications and FSW standard ISO 25239.

Weld of 5754-H111 aluminum with XES G10 / 10 steel after bending test (lap weld control). Bending test according to ISO 25239 (butt weld) Tensile test on FSW welded part (fracture outside the weld).

 


All this information is synthesized is a document called WPS: Welding Procedure Specification.

Possible certification steps :

DMOS-QMOS approach applied to FSW welding (mainly used in aerospace and automotive).

The DMOS (welding procedure EN ISO 15609) lists the welding materials and the steps of the welding process :

-preparation before welding,
-setting welding parameters,
-right choice of FSW tool.

The QMOS (welding procedure qualification) occurs during the welding operation, carried out in strict execution of the associated DMOS. It certifies the reliability of the weld concerned.

For FSW projects that do not require an aeronautical standardization approach, we apply the standard ISO 25239.

 

 


Manufacturing of first batches

Stirweld can take over manufacturing of the first batches at its own facilities, from a size of 10 to 500 parts. Once the parts are welded and quality control has been performed, the parts are shipped either to you or to the final customer.

 


Support & optimization after launch in Customer’s facilities

As an example, Stirweld support can be advise on quality control procedure, with an evolving testing frequency. If anything wrong happens, we are here to help you solve problems, dealing with parameters, clamping jig, …

Example of quality control procedure:
Perform 5 metallographic cross sections and analysis per part on indicated zones.

1. The first part at the beginning of each shift (3 parts/day)
2. If all parts OK during one entire week: one part per day
3. If all parts OK during one entire month: one part per 2 days

If any part is not OK in any of the steps, Stirweld support will quickly help to solve it.

STIRWELD
FSW 공급 업체, FSM Heads, FSM Tools, FSW Accesories
교반 용접이란 무엇입니까? 교반 용접은 FSW(Fraction Stir Welding)를 기반으로 2017년에 설립되었으며, StirWeld의 임무는 귀하가 이 기술을 발견하고 쉽게 구현할 수 있도록 안내하는 것입니다.이를 위해 StirWeld는 고도로 기술적인 제품 및 서비스를 통해 가치를 추가하고자 합니다: CNC 기계용 FSW 헤드FSW 도구산업연구현장/웨비나(webinar) 교육   숙련되고 헌신적인 팀(18명)을 통해 StirWeld는 저렴한 비용으로 FSW라는 새로운 시장을 창출합니다.   1995년부터 FSW는 고가의 장비와 관련된 고부가가치 애플리케이션을 위한 기술로 남아 있습니다. 15년간의 경험을 바탕으로 한 NAT의 전문성은 혁신적이고 유연한 솔루션을 제공합니다: 교반 용접은 모든 유형의 CNC 공작기계에 FSW 헤드를 제공합니다.   StirWeld의 고객은 자동차, 우주, 항공우주 및 금속 가공 산업에 종사하고 있습니다.  
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