Dataset Handle: 20.500.14123/11634

Friction based mechanical fastening and joining techniques of hybrid metal – polymeric multilayered composite structures for electronic applications

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Chronological data

Date of availability in catalog2026-01-12
Available from / since 2026-01-12

Language of the resource

English; Portuguese

Related external resources

Supplement to DOI: 10.1007/s10443-025-10308-6
Rodrigues, C. F., Blaga, L., & Klusemann, B. (2025). Thermal Degradation and Decomposition of FR4 Laminate PCB Substrates Joined by Friction Riveting. Applied Composite Materials, 32(3), 879-893
Supplement to DOI: 10.1007/s00170-024-14054-0
Rodrigues, C. F., Boas, M. C. V., Blaga, L., Bartz, O., & Klusemann, B. (2024). Application of Friction Riveting technique for the assembly of electronic components on printed circuit boards (PCB). International Journal of Advanced Manufacturing Technology, 133(11-12), 5163-5173
Supplement to DOI: 10.1016/j.jmrt.2023.04.092
Rodrigues, C. F., Blaga, L., & Klusemann, B. (2023). Friction Riveting of FR4 substrates for printed circuit boards: Influence of process parameters on process temperature development and joint properties. Journal of Materials Research and Technology, 24, 4639-4649

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Abstract

This dataset consists of all relevant data and materials that have been generated and used in the course of the research for the dissertation "Friction based mechanical fastening and joining techniques of hybrid metal – polymeric multilayered composite structures for electronic applications". All data was collected from experiments performed on Fricriveting machine in the laboratory at Helmholtz-Zentrum Hereon. The data are from thermal analysis, temperature measurement, macro and micro analyses, and mechanical tests.

Resource type

Dataset

Kinds of Data

Measurement Data / Measured Values
Laboratory Results
Statistical Evaluations / Tables

Methods

Experiment (Laboratory)
Observation (Laboratory)
Observation (Field)
Measurements and tests (Physical)

Thematic classification

Materialwissenschaft

Keywords

Materialwissenschaft; Verbindungstechnik; Friktion; Nieten; Mechanische Befestigung; Metall; Elektronische Anwendung; Materials Science; Joining Technique; Friction; Riveting; Mechanical Fastening; Metal; Electronic Application

More information

Time Period of the Collection of the Data

2020-02-03 - 2023-04-27

Time Period of the Creation of the Dataset

2020-02-03 - 2025-04-27

Temporal Coverage of the Dataset

Geolocation (Country)

Germany

Geolocation (Region/Location)