Method Article

Hydrogen Charging of Aluminum using Friction in Water

DOI:

10.3791/60711

January 28th, 2020

In This Article

Summary

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In order to introduce high amounts of hydrogen in aluminum and aluminum alloys, a new method of hydrogen charging was developed, called the friction in water procedure.

Abstract

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A new method of hydrogen charging of aluminum was developed by means of a friction in water (FW) procedure. This procedure can easily introduce high amounts of hydrogen into aluminum based on the chemical reaction between water and non-oxide coated aluminum.

Introduction

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In general, aluminum base alloys have higher resistance to environmental hydrogen embrittlement than steel. The high resistance to hydrogen embrittlement of aluminum alloys is due to oxide films on the alloy surface blocking hydrogen entry. To evaluate and compare the high embrittlement sensitivity between aluminum alloys, hydrogen charging is usually performed prior to mechanical testing1,2,3,4,5,6,7,8<....

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Protocol

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1. Material preparation

  1. Use 1 mm thick plates made of an aluminum-magnesium-silicon alloy containing 1 mass% Mg and 0.8 mass% Si (Al-Mg-Si).
  2. Make test pieces from the Al-Mg-Si alloy plates having a gauge length of 10 mm and width of 5 mm.
  3. Anneal the test pieces at 520 ˚C for 1 h using an air furnace. Quench in water as a solution heat treatment.
  4. Anneal the test pieces at 175 ˚C for 18 h as a peak aging heat treatment (T6-temper).
  5. Polish the surface of the test pieces using silicon carbide emery paper (#2000) without water.
  6. Measure the weight of the polished specimens to a precision of 0.0001 g usi....

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Results

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Hydrogen generation/absorption by the FW procedure
Figure 2 shows the hydrogen generation behavior during the FW procedure of Al-Mg-Si alloys containing different amounts of iron from 0.1 mass % to 0.7 mass %. The specimen continuously emitted a high amount of hydrogen when the stirrer started to rotate. This suggests that hydrogen was generated by a chemical reaction caused by the friction between the alloy surface and water. In addition, the pH value of the water durin.......

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Discussion

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One important aspect of the FW procedure is the attachment of the two specimens to the magnetic stirrer. Because the center of the stirrer bar becomes the non-friction zone, it is best to avoid the attachment of the specimens at the center of the stirrer bar.

Control of the rotation speed of the stirrer bar is also important. When the speed is more than 240 rpm, it becomes difficult to maintain the reaction vessel on the stage of the magnetic stirrer. When the FW procedure is carried out at hi.......

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Disclosures

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The authors have nothing to disclose.

Acknowledgements

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This work was financially supported in part by The Light Metal Educational Foundation, Inc., Osaka, Japan

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Materials

List of materials used in this article
NameCompanyCatalog NumberComments
Air furnaceGCQC-1
Aluminum alloy platesKobe SteelAl/1.0 mass% Mg/0.8 mass% Si
Electric balanceA&DHR-200
Glass containerCustom made
Magnetic stirrerCORNINGPC-410D
Optical ComparatorNIKONV-12B
pH meterSato TechPH-230SDJ
Quartz tubeCustom made
Rotary polishing machineIMTIM-P2
Secondary electrom microscopeJOELJSM-5310LV
Sensor gas chromatographFIS Inc.SGHA
Silicon carbide emery paperIMT531SR
Tensile testing machineToshin KogyoSERT-5000-C
Tubular furnaceHonma RikenCustom made

References

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  1. Horikawa, K., Matsubara, T., Kobayashi, H. Hydrogen charging of Al-Mg-Si-based alloys by friction in water and its effect on tensile properties. Materials Science and Engineering A. 764, 138199(2019).
  2. Horikawa, K.

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Tags

Friction Water ProcedureAluminum AlloysThermal Desorption AnalysisGas ChromatographHydrogen EmbrittlementSolution Heat TreatmentPeak AgingPolishing SurfaceWeight Measurement

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