Optimum spatial variable blank holder forces determined by the sequential response surface method (SRSM) and a hybrid algorithm
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Bora Sener
Abstract
The blank holder force (BHF) plays an important role in the control of material flow. Low BHF leads to wrinkling, while high BHF leads to tearing at the part in the deep drawing process. Therefore, BHF control along the blank periphery is very crucial for the success of the deep drawing process. In this paper, spatial variable blank holder forces in the deep drawing of a double bowl sink were predicted by using a method based on a sequential response surface and hybrid algorithm. Predicted blank holder forces from the method were verified on a multipoint control hydraulic press and a 26 % improvement in the minimum thickness of the part formed as compared to the BHF constant was obtained.
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© 2019, Carl Hanser Verlag, München
Artikel in diesem Heft
- Inhalt/Contents
- Contents
- Fachbeiträge/Technical Contributions
- StressLifetc – NDT-related assessment of the fatigue life of metallic materials
- Structural evolution of ceramic coatings by mechanical alloying
- Influence of rolling texture on near-threshold crack extension behavior in aluminum alloy EN AW-6082
- Influence of variation of energy per unit length on mechanical-technological properties of ultra-high-strength steel 22MnB5 in the laser beam welding process
- Comparative study on fatigue behavior between unbonded prestressed and ordinary reinforced reactive powder concrete beams
- Quantitative analysis of metal fiber morphology by level set image segmentation algorithms
- Mechanical properties of electro and butt fusion welded high-density polyethylene pipes
- Effects of ultrasonic welding parameters for solar collector applications
- Mechanical strength of single-lap joints bonded with nano graphene and MWCNT reinforced epoxy-based nanocomposite adhesives
- Optimum spatial variable blank holder forces determined by the sequential response surface method (SRSM) and a hybrid algorithm
- Experimental study on gas emission from coal mass with a rich microstructure
- Effect of water absorption on the flexural strength of a green sandwich composite
- Wavelet based pseudo color scaling for optimizing wear behavior of epoxy composites
- Damage characteristics of basalt fiber reinforced mortar under compression evaluated by acoustic emission
Artikel in diesem Heft
- Inhalt/Contents
- Contents
- Fachbeiträge/Technical Contributions
- StressLifetc – NDT-related assessment of the fatigue life of metallic materials
- Structural evolution of ceramic coatings by mechanical alloying
- Influence of rolling texture on near-threshold crack extension behavior in aluminum alloy EN AW-6082
- Influence of variation of energy per unit length on mechanical-technological properties of ultra-high-strength steel 22MnB5 in the laser beam welding process
- Comparative study on fatigue behavior between unbonded prestressed and ordinary reinforced reactive powder concrete beams
- Quantitative analysis of metal fiber morphology by level set image segmentation algorithms
- Mechanical properties of electro and butt fusion welded high-density polyethylene pipes
- Effects of ultrasonic welding parameters for solar collector applications
- Mechanical strength of single-lap joints bonded with nano graphene and MWCNT reinforced epoxy-based nanocomposite adhesives
- Optimum spatial variable blank holder forces determined by the sequential response surface method (SRSM) and a hybrid algorithm
- Experimental study on gas emission from coal mass with a rich microstructure
- Effect of water absorption on the flexural strength of a green sandwich composite
- Wavelet based pseudo color scaling for optimizing wear behavior of epoxy composites
- Damage characteristics of basalt fiber reinforced mortar under compression evaluated by acoustic emission