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高性能铁基非晶态合金涂层制备及铁基玻璃形成能力研究
其他题名Preparation of High performance Fe-based amorphous metal coating and glass forming ability of Fe-based amorphous alloy systems
倪红松
学位类型硕士
导师王建强
2008-05-30
学位授予单位中国科学院金属研究所
学位授予地点金属研究所
学位专业材料学
关键词Fe 基非晶态合金 涂层 超音速热喷涂 玻璃形成能力 电负性 λ 准则
摘要Fe 基非晶态合金具有低成本,高的强度与硬度,良好的耐腐蚀性能以及独特的磁学性能,多年来备受研究人员的关注。目前,尽管Fe 基合金玻璃形成能力(GFA)的研究已开展了大量的工作,具有强GFA 多组元体系也相续出现,但其研发过程较为繁琐,多需大量的实验尝试,尚缺少有效的方法进行预测,通过考虑非晶体微观结构,提出能够指导非晶态合金研发的准则或方法是非常重要的。另一方面,值得关注的是,尽管Fe 基非晶态合金具有诸多优良性能,但多数合金室温下难以呈现明显的塑性和加工硬化,严重制约了Fe 基非晶态合金作为结构材料的应用。本论文的工作着重探索一种非晶态合金设计准则,以期研发新的高玻璃形成能力的Fe 基合金成分。另外,为充分发挥Fe 基非晶的结构特性,尝试利用热喷涂方法制备Fe 基非晶态合金涂层,以推动其在表面领域的应用。 (1)应用超音速热喷涂的方法制备出高性能的Fe 基非晶涂层。该涂层的硬度和耐磨性明显优于Ni 基涂层与电镀铬。在1 M HCl 溶液中,该涂层呈现宽的钝化区,及低的钝化电流。涂层的耐腐蚀性能随着涂层厚度增加而增强。非晶含量高低影响涂层的自钝化行为,涂层非晶含量越高,耐腐蚀性能越强。涂层在室温下表现出顺磁性。 (2)基于适当的电负性偏差和有效原子团簇结构模型,发展了一个简单的寻找Fe 基非晶合金成分的方法。该方法利用Δx 与ΔTx 的联系,预测出一个新的成分Fe70.4Nb4.8Y2.8B22。该成分的形成能力可达到3 mm,具有宽的过冷液相区65 K。 (3)评价了λ 准则应用于Fe 基非晶合金GFA研究的有效性,即λ 越接近λbest,其GFA 越强。该准则与ΔTx 规律有较好的相容性。
其他摘要Fe-based bulk metallic glasses (BMGs) have attracted much attention due to their combinations of properties, such as high strength and hardness, superior corrosion resistance, good magnetic properties, and relatively low material cost. Nowadays, numerous research works have been devoted to the glass forming ability (GFA) of Fe-based BMGs, and some new Fe-based alloys with high GFA has been developed. Searching for alloys with new composition has been a tedious and costly process since too much experimental works are needed. Therefore, it is of importance to put forward a new rule or a method for guiding the development of new Fe-based glassy alloys on the basis of the structure of metallic glasses. On the other hand, the brittle feature of BMGs at room temperature greatly restricts their application as prospective structural materials. In this paper, a new method that can be used to predict the Fe-based glassy alloy compositions is proposed. Moreover, Fe-based amorphous metallic coatings have been explored in order to promote their practical application in surface engineering area. The main results are as follows: (1) High performance Fe based amorphous metallic coatings were produced by by High Velocity Oxygen Fuel (HVOF) thermal spraying. The coatings had high hardness and high wear resistance compared to Ni-based amorphous metallic coatings and electroplated Cr. In 1 mol/L HCl aqueous solution, the coating demonstrated a wide passive region and a low passive current density. The corrosion resistance is enhanced with the increase of coating thickness. The volume fraction of amorphous phase in the coatings affects their spontaneous passivation behaviors. The anti-corrosion property is increase with the amorphous contents. In addition, the coatings exhibit paramagnetic behavior at room temperature. (2) Based on electronegativity differentia and MECP model, a simple method for searching Fe-based glassy alloy composition was developed. A new composition Fe70.4Nb4.8Y2.8B22 was predicted in terms of Δx - ΔTx relationship. The maximum diameter for Fe-based glassy sample is up to 3 mm with a large supercooling of 65 K. (3) A protocol λ rule for evaluating the GFA of Fe-based BMGs was formulated. It shares that compositions have higher GFA when λ is closer to λbest. This rule is consistent with the ΔTx rule.
页数67
语种中文
文献类型学位论文
条目标识符http://ir.imr.ac.cn/handle/321006/17195
专题中国科学院金属研究所
推荐引用方式
GB/T 7714
倪红松. 高性能铁基非晶态合金涂层制备及铁基玻璃形成能力研究[D]. 金属研究所. 中国科学院金属研究所,2008.
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