2017Procedia EngineeringOpen access

Analysis of Structural Configurations for Assessment of Crashworthiness

T.J. Reddy, Y. V. D. Rao, V. Narayanamurthy

Open full text 3 citations

Abstract

Crashworthiness of an energy absorbing (EA) structural member depends on its geometric configuration and material. Different structural configurations can be conceived to enhance performance of crashworthiness in design of safety systems in automobiles. Specific energy absorption (SEA) is often regarded as an important parameter in assessing crashworthiness and is commonly adopted in majority of research conducted in developing a variety of EA structures. Major limitation in most EA structures is that they exhibit high initial peak force and low stroke efficiency. This paper presents an analysis of few new structural configurations for EA structures that essentially meet all important parameters of crashworthiness such as high crash force efficiency (CFE), stroke efficiency (SE) and SEA. The structures are made of aluminium alloy AA7005 in T6 state. The relative merits of each configuration are discussed and a best one is recommended for improved crashworthiness.

Open-access reader

About this research paper

What this paper is about

Crashworthiness of an energy absorbing (EA) structural member depends on its geometric configuration and material. Different structural configurations can be conceived to enhance performance of crashworthiness in design of safety systems in automobiles. Specific energy absorption (SEA) is often regarded as an important parameter in assessing crashworthiness and is commonly adopted in majority of research conducted in developing a variety of EA structures. Major limitation in most EA structures is that they exhibit high initial peak force and low stroke efficiency. This paper presents an analysis of few new structural configurations for EA structures that essentially meet all important parameters of crashworthiness such as high crash force efficiency (CFE), stroke efficiency (SE) and SEA. The structures are made of aluminium alloy AA7005 in T6 state. The relative merits of each configuration are discussed and a best one is recommended for improved crashworthiness.

Why it matters

OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Crashworthiness of an energy absorbing (EA) structural member depends on its geometric configuration and material. Different structural configurations can be conceived to enhance performance of crashworthiness in design of safety systems in automobiles. Specific energy absorption (SEA) is often regarded as an important parameter in assessing crashworthiness and is commonly adopted in majority of research conducted in developing a variety of EA structures. Major limitation in most EA structures is that they exhibit high initial peak force and low stroke efficiency. This paper presents an analysis of few new structural configurations for EA structures that essentially meet all important parameters of crashworthiness such as high crash force efficiency (CFE), stroke efficiency (SE) and SEA. The structures are made of aluminium alloy AA7005 in T6 state. The relative merits of each configuration are discussed and a best one is recommended for improved crashworthiness.

Key concepts: Crashworthiness, Crash, Structural engineering, Engineering, Automotive engineering, Finite element method, Computer science, Programming language

Related papers

Back to paper searchBrowse research topicsOriginal source
Analysis of Structural Configurations for Assessment of Crashworthiness — Research Paper | ScholarLens