AI Article Synopsis

  • - The study used a double cantilever beam test method in a temperature-controlled water environment to examine how creep loads affect energy release rates (ERR) in epoxy-bonded aluminum alloys, demonstrating that only one measurement is needed for ERR calculations.
  • - Results showed that while initial load and spring constant didn't influence ERR thresholds, increasing immersion temperatures significantly decreased the ERR threshold, although it stayed above 15% of static test values.
  • - The research also identified three distinct phases of creep crack growth in adhesive joints influenced by temperature, highlighting the test method's potential for studying the long-term durability of adhesive joints in varying conditions.

Article Abstract

Double cantilever beam (DCB) tests were conducted by immersing the specimens in temperature-controlled water while applying a creep load using a spring. By introducing a data reduction scheme to the spring-loaded DCB test method, it was confirmed that only a single parameter measurement was sufficient to calculate the energy release rate (ERR). Aluminum alloy substrates bonded with an epoxy adhesive were used, and DCB tests were performed by changing the initial load values, spring constants, and immersion temperatures for two types of surface treatment. The initial applied load and spring constant had no effect on the ERR threshold. In contrast, the threshold decreased with the increasing immersion temperature, but even in the worst case, it was 15% of the critical ERR in the static tests. Using the creep crack growth relationship, it was revealed that there were three phases of creep immersion crack growth in the adhesive joints, and each phase was affected by the temperature. The spring-loaded DCB test method has great potential for investigating the combined effects of creep, moisture, and temperature, and this study has demonstrated the validity of the test method. The long-term durability of adhesive joints becomes increasingly important, and this test method is expected to become widespread.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9864260PMC
http://dx.doi.org/10.3390/ma16020607DOI Listing

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