Fatigue Characteristics of Materials Used in Transport Industry Applications

Author:

Belan Juraj1,Kuchariková Lenka1,Mazur Magdalena2,Tillová Eva1,Chalupová Mária1

Affiliation:

1. University of Žilina , Faculty of Mechanical Engineering , Slovakia

2. Czestochowa University of Technology , Faculty of Management , Poland

Abstract

Abstract Designers have a major interest about fatigue properties of materials used in transport industry. Each component in transport works under alternating stress. From this point of view the fatigue properties are important for single parts lifetime resulting into safety of whole components as cars and airplanes what leads to safety on the roads or air and have influence on human life as well. Therefore this paper deals with fatigue properties of wrought Inconel alloy IN 718 and aluminum cast alloy AlSi9Cu3. Both materials were put on fatigue push – pull test, but Ni – based IN 718 alloy at frequency of loading around 20 000 kHz (High Frequency High Cycles Fatigue) and aluminum alloy AlSi9Cu3 at frequency of loading around 80 Hz (Low Frequency High Cycles Fatigue). These parameters were chosen with respect of usage such materials for production of components used in transport industry applications. Results after fatigue tests are presented as Wohler curve. For prediction of source of fracture the SEM fractography analysis of fatigue fracture surfaces was made.

Publisher

Walter de Gruyter GmbH

Reference9 articles.

1. Akca E., Gursel A. 2015. A Review on Superalloys and IN718 Nickel-Based INCONEL Superalloy. Periodicals of engineering and natural science, 3(1), 15-27.

2. Bokůvka O., Nicoletto G., Guagliano M., Kunz L., Palček P., Nový F., Chalupová M. 2014. Fatigue of Materials at low and high frequency loading, EDIS, first edition, Žilina-Slovakia.

3. Davis J.R. 2000. ASM Specialty Handbook: Nickel, Cobalt, and Their Alloys, 1st edition, ASM International, Ohio-USA.

4. Kensington V. 2015. Automobile Industry Aluminum Demand Is Rising (online 5.4.2018 https://marketrealist.com/2015/12/auto-industrys-aluminum-usage-increasing)

5. Kracke A. 2010. Superalloys, the most successful alloy system of modern times-past, present and future. 7th international symposium on Superalloy 718 and derivatives. 13-50.10.7449/2010/Superalloys_2010_13_50

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