Isbn: 9786208119331 - Impact of Fsw Parameters on Mechanical Properties of Al-mg-si Alloy (11 results)

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  • Language: English

    Published by LAP LAMBERT Academic Publishing, 2024

    6208119332 / 9786208119331

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  • Language: English

    Published by LAP LAMBERT Academic Publishing, 2024

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  • Language: English

    Published by LAP LAMBERT Academic Publishing, 2024

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  • Language: English

    Published by LAP LAMBERT Academic Publishing, 2024

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  • Language: English

    Published by LAP LAMBERT Academic Publishing, 2024

    6208119332 / 9786208119331

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  • Language: English

    Published by LAP LAMBERT Academic Publishing, 2024

    6208119332 / 9786208119331

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    Condition: New. In English.

  • Language: English

    Published by LAP LAMBERT Academic Publishing, 2024

    6208119332 / 9786208119331

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  • Language: English

    Published by LAP LAMBERT Academic Publishing, 2024

    6208119332 / 9786208119331

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  • Language: English

    Published by LAP LAMBERT Academic Publishing Sep 2024, 2024

    6208119332 / 9786208119331

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    Seller: BuchWeltWeit Ludwig Meier e.K., Bergisch Gladbach, GermanyBuchWeltWeit Ludwig Meier e.K.

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    Taschenbuch. Condition: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware 72 pp. Englisch.

  • Language: English

    Published by LAP LAMBERT Academic Publishing Sep 2024, 2024

    6208119332 / 9786208119331

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    Seller: buchversandmimpf2000, Emtmannsberg, BAYE, Germanybuchversandmimpf2000

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    Taschenbuch. Condition: Neu. This item is printed on demand - Print on Demand Titel. Neuware -Aluminium alloys are widely used in automobiles, railways, aerospace, and structural industry due to their lightweight, good strength-to-weight ratio, corrosion resistance, and recycling potential. For manufacturing purposes joining of aluminium is very necessary. Due to the presence of a thin oxide layer, conventional joining techniques are not that useful as these are susceptible to certain welding defects like porosity and cracks. Friction Stir Welding (FSW) is an innovative solid-phase welding process in which the metal to be welded does not melt during welding thus cracking and porosity often associated with fusion welding processes are eliminated. FSW is an advanced manufacturing technology in which a non-consumable rotating tool creates a weld joint through frictional heat and plastic deformation at a temperature below the melting point of the joined alloys. It is being extensively used in the joining of structural aluminum alloys. The present work aims to study the influence of tool rotation speed and transverse speed on the microstructure and mechanical properties of the Aluminum-Magnesium-Silicon (6xxx series) alloy.VDM Verlag, Dudweiler Landstraße 99, 66123 Saarbrücken 72 pp. Englisch.

  • Language: English

    Published by LAP LAMBERT Academic Publishing, 2024

    6208119332 / 9786208119331

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    Seller: AHA-BUCH GmbH, Einbeck, GermanyAHA-BUCH GmbH

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    Taschenbuch. Condition: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - Aluminium alloys are widely used in automobiles, railways, aerospace, and structural industry due to their lightweight, good strength-to-weight ratio, corrosion resistance, and recycling potential. For manufacturing purposes joining of aluminium is very necessary. Due to the presence of a thin oxide layer, conventional joining techniques are not that useful as these are susceptible to certain welding defects like porosity and cracks. Friction Stir Welding (FSW) is an innovative solid-phase welding process in which the metal to be welded does not melt during welding thus cracking and porosity often associated with fusion welding processes are eliminated. FSW is an advanced manufacturing technology in which a non-consumable rotating tool creates a weld joint through frictional heat and plastic deformation at a temperature below the melting point of the joined alloys. It is being extensively used in the joining of structural aluminum alloys. The present work aims to study the influence of tool rotation speed and transverse speed on the microstructure and mechanical properties of the Aluminum-Magnesium-Silicon (6xxx series) alloy.