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硅含量对Ti15Mo(0 - 2Si)生物材料合金在不同加热速率下热膨胀的影响

Effect of Si Content on the Thermal Expansion of Ti15Mo(0-2 Si) Biomaterial Alloys during Different Heating Rates.

作者信息

Aly Hayam A, El-Sayed Seleman Mohamed M, Bakkar Ashraf, Albaijan Ibrahim, Ahmed Mohamed M Z, Ibrahim Khaled M

机构信息

Department of Metallurgical and Materials Engineering, Faculty of Petroleum and Mining Engineering, Suez University, Suez 43512, Egypt.

Central Metallurgical Research and Development Institute (CMRDI), P.O. Box 87, Helwan 11421, Egypt.

出版信息

Materials (Basel). 2023 Jul 1;16(13):4768. doi: 10.3390/ma16134768.

Abstract

Thermal expansion measurements were used to characterize phase transformations in metastable β-Ti alloys (Ti15MoxSi) without and with various Si additions (where x = 0, 0.5, 1.0, 1.5, and 2 in wt.%) during linear heating at two heating rates of 5 and 10 °C/min up to 850 °C. For this study, five alloys were developed and examined in terms of their presence phases, microstructures, and starting and final transformation temperatures. According to the results, all of the as-cast samples primarily include an equiaxed β-Ti phase. The influence of phase transformation on the material dimensions was discussed and compared with the variations in Si contents. The transformation was investigated using a dilatometric technique for the developed alloys during continuous heating and cooling. The dilatometric curve of heating revealed two distinct reflection points as the heating temperature increased. The starting transformation temperature (T) to obtain the ω-phase was reported at 359 °C without Si addition; whereas the final transformation temperature (T) of the dissolution of α-phase was obtained at 572 °C at a heating rate of 10 °C/min. At 2 wt.% Si, the first derivative curves reported T and T transforming temperatures of 314-565 °C (at a 5 °C/min heating rate) and 270-540 °C (at a 10 °C/min heating rate), respectively. The T and T transforming temperatures were significantly decreased with Si additions, which decreased the β-transus temperature. Moreover, the thermal expansion coefficient curves of the investigated alloys without and with 2 wt.% Si were studied. The transformation heating curves have an S-shaped pattern, according to the results.

摘要

热膨胀测量用于表征亚稳β-Ti合金(Ti15MoxSi)在无硅添加以及添加不同含量硅(质量分数x = 0、0.5、1.0、1.5和2)时的相变情况,加热速率分别为5和10℃/min,线性加热至850℃。在本研究中,制备了五种合金,并对其存在的相、微观结构以及起始和最终转变温度进行了研究。结果表明,所有铸态样品主要包含等轴β-Ti相。讨论了相变对材料尺寸的影响,并与硅含量的变化进行了比较。采用膨胀计技术对所制备的合金在连续加热和冷却过程中的转变进行了研究。加热的膨胀计曲线显示,随着加热温度的升高有两个明显的转折点。在无硅添加时,获得ω相的起始转变温度(T)为359℃;而在加热速率为10℃/min时,α相溶解的最终转变温度(T)为572℃。在硅含量为2 wt.%时,一阶导数曲线显示,在加热速率为5℃/min时,T和T转变温度分别为314 - 565℃,在加热速率为10℃/min时为270 - 540℃。随着硅的添加,T和T转变温度显著降低,这降低了β转变终了温度。此外,还研究了无硅添加和含2 wt.%硅的研究合金的热膨胀系数曲线。结果表明,转变加热曲线呈S形。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc87/10343738/e0f429a3356d/materials-16-04768-g001.jpg

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