铸造钛合金用耐热陶瓷模具的新工艺解决方案

IF 0.6 4区 材料科学 Q4 METALLURGY & METALLURGICAL ENGINEERING Russian Journal of Non-Ferrous Metals Pub Date : 2022-10-20 DOI:10.17073/0021-3438-2022-5-55-65
V. K. Dubrovin, B. A. Kulakov, A. V. Karpinskii, O. M. Zaslavskaia
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引用次数: 0

摘要

本文提供了钛熔体与含硅模具相互作用的研究结果。通过x射线衍射分析,在接触区检测到纯硅、氧化钛和硅化钛化合物。采用基于氧化铝溶胶粘结剂的热稳定、耐化学腐蚀的刚玉模具,解决了模具对铸件产生负面影响的问题。研制了一种含有特殊添加剂的熔模铸造用耐火悬浮液,以改善蜡模的润湿性,提高模壳强度。本文研究了悬浮液的沉降特性。提出了一种通过真空干燥和随后的气体试剂化学固化来加速固化顺序应用的耐火悬浮层的方法。每层的成型时间从3-5小时减少到20-30分钟。对氧化铝溶胶粘结剂对流干燥和真空脱水的动力学进行了对比研究。在真空5 ~ 10 kPa的条件下,应用耐火层单位表面的除湿率提高了2 ~ 6倍。采用x射线相分析方法研究了氧化铝溶胶在高温加热过程中的转化。当煅烧温度上升到1300 ~ 1350℃时,在氧化铝溶胶模壳中得到α-Al2O3稳定相的固体凝胶,其中添加烧结助剂可提供9 ~ 12 MPa的足够强度。对抽真空和干燥后耐火陶瓷层的额外保护给出了建议:用气体固化剂处理最后一层,并应用密度为1100-1200 kg/m3的聚乙烯醇溶液。提出的工艺解决方案将有可能提高钛合金成形和铸造工艺的效率和铸件的质量。
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New process solutions in the manufacture of thermochemically resistant ceramic molds for casting titanium alloys
The paper provides the results of studies on interaction between titanium melts and silica-containing investment molds. Pure silicon, compounds of titanium oxides and silicides were detected by X-ray diffraction analysis in the contact zone. The problem of the negative impact exerted by the mold on the casting is solved by using thermally stable and chemically resistant monocorundum molds based on an alumina sol binder. A refractory suspension was developed for investment casting containing special additives to improve wax mold wetting with the suspension, and to increase the mold shell strength. The article studies sedimentation properties of suspension. A method was developed for accelerated curing of sequentially applied refractory suspension layers by vacuum drying and subsequent chemical curing with a gaseous reagent. The formation time is reduced from 3–5 h to 20–30 min per layer. Comparative studies of kinetics of alumina sol binder convective drying and vacuum dehydration were conducted. The process of moisture removal per unit surface of the applied refractory layer in a vacuum of 5–10 kPa increases by 2–6 times. X-ray phase analysis was used to study the alumina sol conversion during high-temperature heating. The solid gel of the α-Al2O3 stable phase is obtained in the alumina sol mold shell when the calcination temperature rises to 1300–1350 °C with a sufficient strength of 9–12 MPa provided by sintering additives added to the suspension. Recommendations are given for additional protection of refractory ceramic layers after vacuuming and drying: treatment of the last layer with gaseous curing agents and application of a polyvinylacetal solution with a density of 1100–1200 kg/m3. The process solutions proposed will make it possible to increase both the efficiency of titanium alloy forming and casting processes and the quality of castings.
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来源期刊
Russian Journal of Non-Ferrous Metals
Russian Journal of Non-Ferrous Metals METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
1.90
自引率
12.50%
发文量
59
审稿时长
3 months
期刊介绍: Russian Journal of Non-Ferrous Metals is a journal the main goal of which is to achieve new knowledge in the following topics: extraction metallurgy, hydro- and pirometallurgy, casting, plastic deformation, metallography and heat treatment, powder metallurgy and composites, self-propagating high-temperature synthesis, surface engineering and advanced protected coatings, environments, and energy capacity in non-ferrous metallurgy.
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