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Published in: Journal of Materials Science 13/2021

22-01-2021 | Metals & corrosion

Improving the wear performance of a commercial Vit 1 amorphous alloy by a cryogenic cycling treatment

Published in: Journal of Materials Science | Issue 13/2021

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Abstract

A commercial Vit 1 amorphous alloy was processed by a cryogenic cycling treatment of different times. The phase structure, thermal, mechanical and wear properties were studied. Although the cryogenic cycling treatment does not change significantly the phase structure, it promotes thermal rejuvenation, i.e., the heterogeneity of the internal structure. The heterogeneous structure promotes initiation of multiple shear bands within the amorphous alloy to bring about dissipative deformation energy, which in turn increases the plasticity. Thanks to the plasticization, the wear properties were significantly improved by the cryogenic cycling treatment. In particular, the wear rate after 30 cycles of treatment (7.55 × 10–5 mm3/N m) decreases to about one third of the as-cast alloy (22.75 × 10–5 mm3/N m). The reason is that with the increase in plasticity, the wear mechanism of Vit 1 BMG changes from three-body abrasive wear to a synergistic mechanism of three-body abrasive wear and oxidative wear. Therefore, improving the plasticity of amorphous alloys by the cryogenic cycling treatment could be an effectively strategy to enhance the wear perfermance.

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Literature
1.
go back to reference Schuh CA, Hufnagel TC, Ramamurty U (2007) Mechanical behavior of amorphous alloys. Acta Mater 55:4067–4109CrossRef Schuh CA, Hufnagel TC, Ramamurty U (2007) Mechanical behavior of amorphous alloys. Acta Mater 55:4067–4109CrossRef
2.
go back to reference Qiao JC, Wang Q, Pelletier JM, Kato H, Casalini R, Crespo D, Pineda E, Yao Y, Yang Y (2019) Structural heterogeneities and mechanical behavior of amorphous alloys. Prog Mater Sci 104:250–329CrossRef Qiao JC, Wang Q, Pelletier JM, Kato H, Casalini R, Crespo D, Pineda E, Yao Y, Yang Y (2019) Structural heterogeneities and mechanical behavior of amorphous alloys. Prog Mater Sci 104:250–329CrossRef
3.
go back to reference Zhai HM, Wang H, Liu F (2016) A strategy for designing bulk metallic glass composites with excellent work-hardening and large tensile ductility. J Alloy Compd 685:322–330CrossRef Zhai HM, Wang H, Liu F (2016) A strategy for designing bulk metallic glass composites with excellent work-hardening and large tensile ductility. J Alloy Compd 685:322–330CrossRef
4.
go back to reference Fan J, Rao W, Qiao JW, Liaw PK, Şopu D, Kiener D, Eckert J, Kang GZ, Wu YC (2020) Achieving work hardening by forming boundaries on the nanoscale in a Ti-based metallic glass matrix composite. J Mater Sci Technol 50:192–203CrossRef Fan J, Rao W, Qiao JW, Liaw PK, Şopu D, Kiener D, Eckert J, Kang GZ, Wu YC (2020) Achieving work hardening by forming boundaries on the nanoscale in a Ti-based metallic glass matrix composite. J Mater Sci Technol 50:192–203CrossRef
5.
go back to reference Lee PY, Lin YS, Hu CJ, Hsu CF (2017) The wear properties of Ti-based bulk metallic glass composites containing carbon particles. J Alloy Compd 707:92–96CrossRef Lee PY, Lin YS, Hu CJ, Hsu CF (2017) The wear properties of Ti-based bulk metallic glass composites containing carbon particles. J Alloy Compd 707:92–96CrossRef
6.
go back to reference Rahaman ML, Zhang LC (2017) Size effect on friction and wear mechanisms of bulk metallic glass. Wear 376–377:1522–1527CrossRef Rahaman ML, Zhang LC (2017) Size effect on friction and wear mechanisms of bulk metallic glass. Wear 376–377:1522–1527CrossRef
7.
go back to reference Archard JF (1953) Contact and rubbing of flat surfaces. J Appl Phys 24:981–988CrossRef Archard JF (1953) Contact and rubbing of flat surfaces. J Appl Phys 24:981–988CrossRef
8.
go back to reference Hodge AM, Nieh TG (2004) Evaluating abrasive wear of amorphous alloys using nanoscratch technique. Intermetallics 12:741–748CrossRef Hodge AM, Nieh TG (2004) Evaluating abrasive wear of amorphous alloys using nanoscratch technique. Intermetallics 12:741–748CrossRef
9.
go back to reference Wang JG, Choi BW, Nieh TG, Liu CT (2000) Nano-scratch behavior of a bulk Zr-10Al-5Ti-17.9Cu-14.6Ni amorphous alloy. J Mater Res 15:913–922CrossRef Wang JG, Choi BW, Nieh TG, Liu CT (2000) Nano-scratch behavior of a bulk Zr-10Al-5Ti-17.9Cu-14.6Ni amorphous alloy. J Mater Res 15:913–922CrossRef
10.
go back to reference Segu DZ, Choi JH, Yi S, Kim SS (2012) Dry sliding tribological properties of Fe-based bulk metallic glass. Tribol Lett 47:131–138CrossRef Segu DZ, Choi JH, Yi S, Kim SS (2012) Dry sliding tribological properties of Fe-based bulk metallic glass. Tribol Lett 47:131–138CrossRef
11.
go back to reference Liu Y, Zhu YT, Luo XK, Liu ZM (2010) Wear behavior of a Zr-based bulk metallic glass and its composites. J Alloy Compd 503:138–144CrossRef Liu Y, Zhu YT, Luo XK, Liu ZM (2010) Wear behavior of a Zr-based bulk metallic glass and its composites. J Alloy Compd 503:138–144CrossRef
12.
go back to reference Liao ZL, Hua NB, Chen WZ, Huang YT, Zhang T (2018) Correlations between the wear resistance and properties of bulk metallic glasses. Intermetallics 93:290–298CrossRef Liao ZL, Hua NB, Chen WZ, Huang YT, Zhang T (2018) Correlations between the wear resistance and properties of bulk metallic glasses. Intermetallics 93:290–298CrossRef
13.
go back to reference Wang JG, Choi BW, Nieh TG, Liu CT (2000) Crystallization and nanoindentation behavior of a bulk Zr-Al-Ti-Cu-Ni amorphous alloy. J Mater Res 15:798–807CrossRef Wang JG, Choi BW, Nieh TG, Liu CT (2000) Crystallization and nanoindentation behavior of a bulk Zr-Al-Ti-Cu-Ni amorphous alloy. J Mater Res 15:798–807CrossRef
14.
go back to reference Maddala D, Hebert RJ (2011) Effect of notch toughness and hardness on sliding wear of Cu50Hf4.1 5Al8. 5 bulk metallic glass. Scr Mater 65:630–633CrossRef Maddala D, Hebert RJ (2011) Effect of notch toughness and hardness on sliding wear of Cu50Hf4.1 5Al8. 5 bulk metallic glass. Scr Mater 65:630–633CrossRef
15.
go back to reference Zhong H, Chen J, Dai LY, Yue Y, Wang BA, Zhang XY, Ma MZ, Liu RP (2016) Effect of counterpart material on the tribological properties of Zr-based bulk metallic glass under relatively heavy loads. Wear 346:22–28CrossRef Zhong H, Chen J, Dai LY, Yue Y, Wang BA, Zhang XY, Ma MZ, Liu RP (2016) Effect of counterpart material on the tribological properties of Zr-based bulk metallic glass under relatively heavy loads. Wear 346:22–28CrossRef
16.
go back to reference Wang YM, Zhang M, Liu L (2015) Mechanical annealing in the homogeneous deformation of bulk metallic glass under elastostatic compression. Scr Mater 102:67–70CrossRef Wang YM, Zhang M, Liu L (2015) Mechanical annealing in the homogeneous deformation of bulk metallic glass under elastostatic compression. Scr Mater 102:67–70CrossRef
17.
go back to reference Raghavan R, Boopathy K, Ghisleni R, Pouchon MA, Ramamurty U, Michler J (2010) Ion irradiation enhances the mechanical performance of metallic glasses. Scr Mater 62:462–465CrossRef Raghavan R, Boopathy K, Ghisleni R, Pouchon MA, Ramamurty U, Michler J (2010) Ion irradiation enhances the mechanical performance of metallic glasses. Scr Mater 62:462–465CrossRef
18.
go back to reference Brechtl J, Agarwal S, Crespillo ML, Yang T, Bei H, Zinkle SJ (2019) Evolution of the microstructural and mechanical properties of BAM-11 bulk metallic glass during ion irradiation and annealing. J Nucl Mater 523:299–309CrossRef Brechtl J, Agarwal S, Crespillo ML, Yang T, Bei H, Zinkle SJ (2019) Evolution of the microstructural and mechanical properties of BAM-11 bulk metallic glass during ion irradiation and annealing. J Nucl Mater 523:299–309CrossRef
19.
go back to reference Cao YF, Xie X, Antonaglia J, Winiarski B, Wang GY, Shin YC, Withers PJ, Dahmen KA, Liaw PK (2015) Laser shock peening on Zr-based bulk metallic glass and its effect on plasticity: experiment and modeling. Sci Rep 5:10789CrossRef Cao YF, Xie X, Antonaglia J, Winiarski B, Wang GY, Shin YC, Withers PJ, Dahmen KA, Liaw PK (2015) Laser shock peening on Zr-based bulk metallic glass and its effect on plasticity: experiment and modeling. Sci Rep 5:10789CrossRef
20.
go back to reference Sarac B, Bernasconi A, Wright J, Stoica M, Spieckermann F, Mühlbacher M, Keckes J, Bian X, Wang G, Eckert J (2017) Structural modifications in sub-Tg annealed CuZr-based metallic glass. Mater Sci Eng A 707:245–252CrossRef Sarac B, Bernasconi A, Wright J, Stoica M, Spieckermann F, Mühlbacher M, Keckes J, Bian X, Wang G, Eckert J (2017) Structural modifications in sub-Tg annealed CuZr-based metallic glass. Mater Sci Eng A 707:245–252CrossRef
21.
go back to reference Ketov SV, Sun YH, Nachum S, Checchi A, Beraldin AR, Bai HY, Wang WH, Louzguine-Luzgin DV, Carpenter MA, Greer AL (2015) Rejuvenation of metallic glasses by non-affine thermal strain. Nature 524:200–203CrossRef Ketov SV, Sun YH, Nachum S, Checchi A, Beraldin AR, Bai HY, Wang WH, Louzguine-Luzgin DV, Carpenter MA, Greer AL (2015) Rejuvenation of metallic glasses by non-affine thermal strain. Nature 524:200–203CrossRef
22.
go back to reference Ketov SV, Trifonov AS, Ivanov YP, Churyumov AY, Lubenchenko AV, Batrakov AA, Jiang J, Louzguine-Luzgin DV, Eckert J, Orava J, Greer AL (2018) On cryothermal cycling as a method for inducing structural changes in metallic glasses. NPG Asia Mater 10:137–145CrossRef Ketov SV, Trifonov AS, Ivanov YP, Churyumov AY, Lubenchenko AV, Batrakov AA, Jiang J, Louzguine-Luzgin DV, Eckert J, Orava J, Greer AL (2018) On cryothermal cycling as a method for inducing structural changes in metallic glasses. NPG Asia Mater 10:137–145CrossRef
23.
go back to reference Guo W, Yamada R, Saida J (2018) Rejuvenation and plasticization of metallic glass by deep cryogenic cycling treatment. Intermetallics 93:141–147CrossRef Guo W, Yamada R, Saida J (2018) Rejuvenation and plasticization of metallic glass by deep cryogenic cycling treatment. Intermetallics 93:141–147CrossRef
24.
go back to reference Li XQ, Zhai HM, Li WS, Cui S, Qiu XL (2020) Dry sliding wear behaviors of Fe-based amorphous metallic coating synthesized by D-gun spray. J Non-Cryst Solids 537:120018CrossRef Li XQ, Zhai HM, Li WS, Cui S, Qiu XL (2020) Dry sliding wear behaviors of Fe-based amorphous metallic coating synthesized by D-gun spray. J Non-Cryst Solids 537:120018CrossRef
25.
go back to reference Du Y, Han WC, Zhou Q, Xu YH, Zhai HM, Bhardwaj V, Wang HF (2020) Enhancing the plasticity of a Ti-based bulk metallic glass composite by cryogenic cycling treatments. J Alloy Compd 835:155247CrossRef Du Y, Han WC, Zhou Q, Xu YH, Zhai HM, Bhardwaj V, Wang HF (2020) Enhancing the plasticity of a Ti-based bulk metallic glass composite by cryogenic cycling treatments. J Alloy Compd 835:155247CrossRef
26.
go back to reference Guo W, Yamada R, Saida J, Lü SL, Wu SS (2018) Various rejuvenation behaviors of Zr-based metallic glass by cryogenic cycling treatment with different casting temperatures. Nanoscale Res Lett 13:398CrossRef Guo W, Yamada R, Saida J, Lü SL, Wu SS (2018) Various rejuvenation behaviors of Zr-based metallic glass by cryogenic cycling treatment with different casting temperatures. Nanoscale Res Lett 13:398CrossRef
27.
go back to reference Zhu F, Nguyen HK, Song SX, Aji DPB, Hirata A, Wang H, Nakajima K, Chen MW (2016) Intrinsic correlation between b-relaxation and spatial heterogeneity in a metallic glass. Nat Commun 7:11516CrossRef Zhu F, Nguyen HK, Song SX, Aji DPB, Hirata A, Wang H, Nakajima K, Chen MW (2016) Intrinsic correlation between b-relaxation and spatial heterogeneity in a metallic glass. Nat Commun 7:11516CrossRef
28.
go back to reference Zhu F, Song SX, Reddy KM, Hirata A, Chen MW (2018) Spatial heterogeneity as the structure feature for structure-property relationship of metallic glasses. Nat Commun 9:3965CrossRef Zhu F, Song SX, Reddy KM, Hirata A, Chen MW (2018) Spatial heterogeneity as the structure feature for structure-property relationship of metallic glasses. Nat Commun 9:3965CrossRef
29.
go back to reference Saida J, Yamada R, Wakeda M, Ogata S (2017) Thermal rejuvenation in metallic glasses. Sci Technol Adv Mat 18:152–162CrossRef Saida J, Yamada R, Wakeda M, Ogata S (2017) Thermal rejuvenation in metallic glasses. Sci Technol Adv Mat 18:152–162CrossRef
30.
go back to reference Bu F, Wang J, Li LY, Kou HC, Xue XY, Li JS (2016) The effect of thermal cycling treatments on the thermal stability and mechanical properties of a Ti-based bulk metallic glass composite. Metals 6:274CrossRef Bu F, Wang J, Li LY, Kou HC, Xue XY, Li JS (2016) The effect of thermal cycling treatments on the thermal stability and mechanical properties of a Ti-based bulk metallic glass composite. Metals 6:274CrossRef
31.
go back to reference Zhai HM, Xu YH, Zhang F, Ren Y, Wang HF, Liu F (2017) Effect of transition metal elements (Cu, Ni, Co and Fe) on the mechanical properties of Ti-based bulk metallic glass composites. J Alloy Compd 694:1–9CrossRef Zhai HM, Xu YH, Zhang F, Ren Y, Wang HF, Liu F (2017) Effect of transition metal elements (Cu, Ni, Co and Fe) on the mechanical properties of Ti-based bulk metallic glass composites. J Alloy Compd 694:1–9CrossRef
32.
go back to reference Zhai HM, Wang HF, Liu F (2016) Effects of Sn addition on mechanical properties of Ti-based bulk metallic glass composites. Mater Des 110:782–789CrossRef Zhai HM, Wang HF, Liu F (2016) Effects of Sn addition on mechanical properties of Ti-based bulk metallic glass composites. Mater Des 110:782–789CrossRef
33.
go back to reference Qiao JW, Jia HL, Liaw PK (2016) Metallic glass matrix composites. Mater Sci Eng R 100:1–69CrossRef Qiao JW, Jia HL, Liaw PK (2016) Metallic glass matrix composites. Mater Sci Eng R 100:1–69CrossRef
34.
go back to reference Wang B, Xu KK, Shi XH, Zhang M, Qiao JW, Gao CH, Wu YC (2019) Electrochemical and chemical corrosion behaviors of the in-situ Zr-based metallic glass matrix composites in chloride-containing solutions. J Alloy Compd 770:679–685CrossRef Wang B, Xu KK, Shi XH, Zhang M, Qiao JW, Gao CH, Wu YC (2019) Electrochemical and chemical corrosion behaviors of the in-situ Zr-based metallic glass matrix composites in chloride-containing solutions. J Alloy Compd 770:679–685CrossRef
35.
go back to reference Li WD, Gao YF, Bei HB (2015) On the correlation between microscopic structural heterogeneity and embrittlement behavior in metallic glasses. Sci Rep 5:14786CrossRef Li WD, Gao YF, Bei HB (2015) On the correlation between microscopic structural heterogeneity and embrittlement behavior in metallic glasses. Sci Rep 5:14786CrossRef
36.
go back to reference Huang YJ, Shen J, Sun JF (2007) Bulk metallic glasses: Smaller is softer. Appl Phys Lett 90:081919CrossRef Huang YJ, Shen J, Sun JF (2007) Bulk metallic glasses: Smaller is softer. Appl Phys Lett 90:081919CrossRef
37.
go back to reference Du Y, Zhou Q, Jia Q, Shi YD, Wang HF, Wang J (2020) Imparities of shear avalanches dynamic evolution in a metallic glass. Mater Res Lett 8:357–363CrossRef Du Y, Zhou Q, Jia Q, Shi YD, Wang HF, Wang J (2020) Imparities of shear avalanches dynamic evolution in a metallic glass. Mater Res Lett 8:357–363CrossRef
38.
go back to reference Zhou Q, Ren Y, Du Y, Han WC, Hua DP, Zhai HM, Huang P, Wang F, Wang HF (2019) Identifying the significance of Sn addition on the tribological performance of Ti-based bulk metallic glass composites. J Alloy Compd 780:671–679CrossRef Zhou Q, Ren Y, Du Y, Han WC, Hua DP, Zhai HM, Huang P, Wang F, Wang HF (2019) Identifying the significance of Sn addition on the tribological performance of Ti-based bulk metallic glass composites. J Alloy Compd 780:671–679CrossRef
39.
go back to reference Kawashima A, Ohmura K, Yokoyama Y, Inoue A (2011) The corrosion behavior of Zr-based bulk metallic glasses in 0.5 M NaCl solution. Corros Sci 53:2778–2784CrossRef Kawashima A, Ohmura K, Yokoyama Y, Inoue A (2011) The corrosion behavior of Zr-based bulk metallic glasses in 0.5 M NaCl solution. Corros Sci 53:2778–2784CrossRef
40.
go back to reference Huang L, Cao Z, Meyer HM, Liaw PK, Garlea E, Dunlap JR, Zhang T, He W (2011) Responses of bone-forming cells on pre-immersed Zr-based bulk metallic glasses: effects of composition and roughness. Acta Biomater 7:395–405CrossRef Huang L, Cao Z, Meyer HM, Liaw PK, Garlea E, Dunlap JR, Zhang T, He W (2011) Responses of bone-forming cells on pre-immersed Zr-based bulk metallic glasses: effects of composition and roughness. Acta Biomater 7:395–405CrossRef
Metadata
Title
Improving the wear performance of a commercial Vit 1 amorphous alloy by a cryogenic cycling treatment
Publication date
22-01-2021
Published in
Journal of Materials Science / Issue 13/2021
Print ISSN: 0022-2461
Electronic ISSN: 1573-4803
DOI
https://doi.org/10.1007/s10853-021-05794-5

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