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Geometrical parameters and strength of clinching joint formed with the use of an additional rivet
by
Witkowski, Waldemar
, Mucha, Jacek
, Boda, Łukasz
in
Civil Engineering
/ Clinching
/ Diameters
/ Embossing
/ Energy consumption
/ Engineering
/ Formability
/ Fractures
/ Geometry
/ Mechanical Engineering
/ Metal sheets
/ Optimization
/ Original Article
/ Parameters
/ Riveting
/ Shear strength
/ Shear tests
/ Strain hardening
/ Structural Materials
/ Tensile strength
/ Thickness
2023
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Geometrical parameters and strength of clinching joint formed with the use of an additional rivet
by
Witkowski, Waldemar
, Mucha, Jacek
, Boda, Łukasz
in
Civil Engineering
/ Clinching
/ Diameters
/ Embossing
/ Energy consumption
/ Engineering
/ Formability
/ Fractures
/ Geometry
/ Mechanical Engineering
/ Metal sheets
/ Optimization
/ Original Article
/ Parameters
/ Riveting
/ Shear strength
/ Shear tests
/ Strain hardening
/ Structural Materials
/ Tensile strength
/ Thickness
2023
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Do you wish to request the book?
Geometrical parameters and strength of clinching joint formed with the use of an additional rivet
by
Witkowski, Waldemar
, Mucha, Jacek
, Boda, Łukasz
in
Civil Engineering
/ Clinching
/ Diameters
/ Embossing
/ Energy consumption
/ Engineering
/ Formability
/ Fractures
/ Geometry
/ Mechanical Engineering
/ Metal sheets
/ Optimization
/ Original Article
/ Parameters
/ Riveting
/ Shear strength
/ Shear tests
/ Strain hardening
/ Structural Materials
/ Tensile strength
/ Thickness
2023
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Geometrical parameters and strength of clinching joint formed with the use of an additional rivet
Journal Article
Geometrical parameters and strength of clinching joint formed with the use of an additional rivet
2023
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Overview
In the publication, the results of an experimental analysis of joint formation by pressing of DX51D steel sheets with thickness of 1.5 (mm) with the use of a rigid punch and an additional deformable rivet of various shapes were presented. The influence of the use of a steel rivet with a diameter
d
= 5 (mm), similar to the dimensions of the forming punch in the case of the classic clinching variety on the interlock parameters was investigated. The used die was with a four movable segments—dedicated to connections made in the clinch-riveting technology by TOX
®
PRESSOTECHNIK. In additional, experimental tests were made for joining sheets with a rivet of various shapes, i.e. with a through hole. Joints were formed and the correctness of the upper blockage in the lower sheet was observed on the joints cross-sections. The interlock parameters were measured for each joints samples. In order to compare the influence of using an additional rivet on interlock parameters and joints strength the traditional clinching joints were also made. The minimal thickness of the traditional clinching joint embossment for 2 sheets of 1.5 (mm) thickness for each was
X
= 0.75 (mm).
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