Results 121 to 130 of about 613 (136)
Some of the next articles are maybe not open access.

Design optimization of the cruciform specimen in a biaxial test using MADM methods

Australian Journal of Mechanical Engineering, 2020
One of the most crucial aspects of biaxial testing is the geometry of the cruciform specimen. The optimised cruciform geometry leads to obtain adequate stress-strain data.
Amrut Mulay, Vrushabh Bagul
openaire   +1 more source

Novel Design of Cruciform Specimens for Planar Biaxial Testing of Soft Materials

Experimental Mechanics, 2013
Cruciform specimens have long been used in planar biaxial testing of inanimate materials such as metals and composite materials. The efforts to improve the geometric design of cruciform specimens have focused on maximizing the degree of uniformity of stress and strain in the gage section.
X. Zhao   +5 more
openaire   +1 more source

Design of cruciform specimens for fracture toughness tests in biaxial tension (Review)

Strength of Materials, 1998
The paper considers peculiarities of design of cruciform specimens for fracture toughness tests in biaxial tension. Their advantages and disadvantages have been analyzed and a design of a cruciform specimen which is easy to fabricate is proposed on the basis of the results obtained.
A. A. Lebedev, N. R. Muzyka
openaire   +1 more source

Design of a Testing Device for Cruciform Specimens Subjected to Planar Biaxial Tension

Applied Mechanics and Materials, 2015
Multiaxial experiments are necessary to determine materials behavior subjected to complex stress state corresponding to real operating conditions under complex loadings. Stresses applied in biaxial experiments are closely to the stresses that materials experience during their function life.
Liviu Andrusca   +4 more
openaire   +1 more source

Cruciform specimen design for testing advanced aeropropulsion materials under cyclic in-plane biaxial loading

SPIE Proceedings, 2006
Investigating material behavior under complex stress states is often done using in-plane biaxial loading approach. Utilizing such techniques requires using cruciform type specimens fabricated from plate material tested by gripping the specimen at four locations and loaded along two orthogonal axes.
Ali Abdul-Aziz, David Krause
openaire   +1 more source

Design of a biaxial tensile testing device and cruciform specimens for large plastic deformation in the central zone

Journal of Materials Science, 2019
A critical issue in biaxial tensile tests is that the central area of the cruciform specimen does not deform to a desired level when the specimen has fractured in other areas. Contrary to the central area thickness reduction approach adopted by the bulk of researchers, this study introduces a thickness-increased sandwich specimen for large strains in ...
Kunmin Zhao   +4 more
openaire   +1 more source

Design and production of cruciform composite specimens for in-plane biaxial tests

2009
This paper focuses on the design of a cruciform specimen for biaxial in-plane tensile testing. Using a Finite Element model and experimental data, a proper specimen geometry was developed. The specimen has an adapted fillet corner radius to increase the load transfer to the specimen centre and has a reduced thickness in the centre to ensure biaxial ...
Ramault, Carla   +4 more
openaire   +1 more source

An Optimal Design of Cruciform Specimen for Miniaturization of Biaxial Fatigue Testing Machine

The Proceedings of the Materials and Mechanics Conference, 2021
Toru MIYAKE, Arisa ONO, Takamoto ITOH
openaire   +1 more source

Shape Optimization of a Cruciform-Like Specimen for Combined Tension and Shear Loading

Minerals, Metals and Materials Series, 2022
Yannis Korkolis   +2 more
exaly  

Development of miniature cruciform specimen and testing machine for multiaxial creep investigation

Theoretical and Applied Fracture Mechanics, 2020
Takamoto Itoh, Masao Sakane
exaly  

Home - About - Disclaimer - Privacy