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首页> 外文期刊>Archives of Metallurgy and Materials >THE EFFECT OF CHEMICAL STRUCTURE OF FOUNDRY BINDER DILUENT ON SURFACE PROCESSES AND SAND STRENGTH
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THE EFFECT OF CHEMICAL STRUCTURE OF FOUNDRY BINDER DILUENT ON SURFACE PROCESSES AND SAND STRENGTH

机译:铸造粘合剂稀释剂化学结构对表面工艺和砂强度的影响

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摘要

The paper presents the results of investigations of the dynamics of wetting in a quartz-binder system. It has been proved that the two-stage process of wetting (unsteady state passing into the steady state) is important for the practice of moulding sands and depends on physico-chemical parameters of binder, especially on its viscosity. A mathematical description of the wetting phenomena was given and it was demonstrated that the course of the wetting dynamics is determined by the viscosity which depends on the chemical structure and concentration of added diluent. The wetting dynamics is characterised by the difference Δθ between the values of the initial θ_0 and equilibrium θ_r contact angle and by the time τ_r that the system needs to reach a steady state. It has been shown that the dynamics of quartz wetting by the binder with diluent of a chain structure and high concentration is higher with simultaneous reducing of time τ_r. It has been verified that the resistance of moulding sands with binder and the diluent of chain structure and high concentration is higher compared to the strength of the sands with diluent of another structure.
机译:本文提出了石英粘合剂系统中润湿动力学的研究结果。已经证明,润湿的两阶段过程(流入稳态的不稳定状态)对于模塑砂的做法很重要,并且取决于粘合剂的物理化学参数,尤其是粘度。给出了润湿现象的数学描述,并证明了润湿动力学的过程由取决于添加稀释剂的化学结构和浓度的粘度确定。润湿动力学的特征在于初始θ_0和平衡θ_R接触角之间的差Δθ,并且通过系统需要达到稳定状态的时间τ_r。已经表明,用链结构稀释剂和高浓度的粘合剂润湿的石英润湿的动力学较高,同时减少时间τ_r。已经验证了与粘合剂的成型砂与粘合剂的稀释剂和高浓度的膨胀相比,与另一种结构的稀释剂的强度更高。

著录项

  • 来源
  • 作者

    B. HUTERA; D. DROZYNSKI;

  • 作者单位

    DEPARTMENT OF MOULDING MATERIALS MOULD TECHNOLOGY AND FOUNDRY OF NON-FERROUS METALS FACULTY OF FOUNDRY ENGINEERING AGH UNIVERSITY OF SCIENCE AND TECHNOLOGY. 30-059 KRAKOW. 23 REYMONTA STR.. POLAND;

    DEPARTMENT OF MOULDING MATERIALS MOULD TECHNOLOGY AND FOUNDRY OF NON-FERROUS METALS FACULTY OF FOUNDRY ENGINEERING AGH UNIVERSITY OF SCIENCE AND TECHNOLOGY. 30-059 KRAKOW. 23 REYMONTA STR.. POLAND;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 冶金工业;
  • 关键词

    dynamic contact angle; diluent; moulding sands;

    机译:动态接触角;稀释剂;塑性砂;

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