2011Materials Research InnovationsRequires access

Research on influence of material properties and blank geometry on forming force in fine blanking process

V Daeizadeh, Majid Elyasi

Open publisher page 6 citations

Abstract

Fine blanking produces smooth sheared edges over the full workpiece thickness in a single operation allowing the required cut edge quality and dimensional accuracy to be obtained without secondary machining. There are various parameters with different adjustment levels, affecting the fine blanking surface. In this study, the effect of blank geometry and material properties on forming force in the fine blanking process was studied by the theoretical formulation and an experimental approach. Tensile strength and initial blank thickness were considered in this research. The results obtained indicate that by increasing initial blank thickness and tensile strength, forces in fine blanking process are increased.

About this research paper

What this paper is about

Fine blanking produces smooth sheared edges over the full workpiece thickness in a single operation allowing the required cut edge quality and dimensional accuracy to be obtained without secondary machining. There are various parameters with different adjustment levels, affecting the fine blanking surface. In this study, the effect of blank geometry and material properties on forming force in the fine blanking process was studied by the theoretical formulation and an experimental approach. Tensile strength and initial blank thickness were considered in this research. The results obtained indicate that by increasing initial blank thickness and tensile strength, forces in fine blanking process are increased.

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OpenAlex reports 6 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Fine blanking produces smooth sheared edges over the full workpiece thickness in a single operation allowing the required cut edge quality and dimensional accuracy to be obtained without secondary machining. There are various parameters with different adjustment levels, affecting the fine blanking surface. In this study, the effect of blank geometry and material properties on forming force in the fine blanking process was studied by the theoretical formulation and an experimental approach. Tensile strength and initial blank thickness were considered in this research. The results obtained indicate that by increasing initial blank thickness and tensile strength, forces in fine blanking process are increased.

Key concepts: Blanking, Blank, Materials science, Ultimate tensile strength, Enhanced Data Rates for GSM Evolution, Composite material, Machining, Process (computing)

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