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Article

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Title

Testing of beveled crimp connections made on a prototype stand

Authors

Year of publication

2018

Published in

Archives of Mechanical Technology and Materials

Journal year: 2018 | Journal volume: vol. 38

Article type

scientific article

Publication language

english

Keywords
EN
  • prototype stand
  • fixed joints
  • inseparable tight joints
  • crimped joints
  • bent joints
  • formed joints
Abstract

EN The purpose of this study is to form and test inseparable tight joints, commonly used in the construction of heat exchangers, by crimping operation on designed prototype stand. Crimped joints are made by tools in form of cones with two types of shapes, each of the designed tools have got identical forming angle. This study uses two types of connecting blocks and plates, differing in diameters of hole and flange. Elaboration contains a case study of joints being made by the stand, which in addition to the crimping operations for some cases were glued or brazed. The article presents the features of the formed joints, by examining them by destructive testing: Micrography, tensile strength test, and non-destructive testing: Leakage test. The examined elements have been made of aluminum 6060, which is well suited to indirect or direct operations of forming joints for all kinds of coolers or condensers. Elaborated tests and studies in this study allowed to state, that joining the connection block to plate with the small diameter, was more energy-consuming than in sample sets with bigger diameter, use of glue increasing the strength of the joints by 20%, significant strength increase can be obtained after mechanical clinching with brazing operation or modification of geometrical shape of the jaws.

Pages (from - to)

15 - 22

DOI

10.2478/amtm-2018-0002

URL

https://www.sciendo.com/pl/article/10.2478/amtm-2018-0002

License type

CC BY-NC-ND (attribution - noncommercial - no derivatives)

Full text of article

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Access level to full text

public

Ministry points / journal

7

Ministry points / journal in years 2017-2021

7

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