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Analysis and modeling of hot extrusion die for its service life enhancement.

机译:热挤压模具的分析和建模,以提高其使用寿命。

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摘要

Aluminum extrusion finds extensive application in the construction, automobile and aerospace industries. High pressures, elevated temperatures, complex and intricate section geometries lead to repeated mechanical and thermal stresses in the die and affiliated tooling. Product rework and rejects can be traced back to various defects spread over the die life cycle: die design, die manufacture and heat treatment, process parameters, inprocess die maintenance/correction and, billet type and quality. Therefore, improved and efficient service life of die and related tooling used in the extrusion press is one the most important factors in maximizing productivity and minimizing cost for ensuring the economical efficiency of an aluminum extrusion plant. How often a die has to be scrapped and replaced with a new one directly contributes to the commercial viability of producing a certain profile.;The focus of the current work is on three distinct yet inter-related studies pertaining to the improvement of aluminum extrusion die. Study-A (Die Failure Analysis) is an investigation of various modes and critical failure types based on industrial data (Chapter-2 ), examination of failed dies and finite element simulation for identification of critical process parameters and design features in die fatigue-life (Chapter-3). In Study-B (Die Surface Hardening Treatment), two-stage controlled gas nitriding process for H13 steel is evaluated, both experimentally and numerically, in terms of nitrided case morphology and properties (Chapter-4) followed by experimental and numerical investigation of the effects of repeated nitriding (Chapter-5), pre-nitriding surface preparation (Chapter-6) and die profile geometry (Chapter-7) on nitriding performance in regard to die service life. In Study-C (Effect of Billet Quality on Die Life), the effect of billet quality and related influencing extrusion parameters on the die service life is investigated based on industrial data and some regression-based die life models are proposed (Chapter-8 ). This is followed by a detailed microstructural investigation of different billet samples and finite element analysis of extrusion process to observe the influence of smelter (primary) and recycled (secondary) billets on the useful life of extrusion die (Chapter-9).
机译:铝挤压在建筑,汽车和航空航天工业中得到广泛的应用。高压,高温,复杂复杂的截面几何形状会导致模具和附属模具重复出现机械应力和热应力。产品返工和废品可追溯到整个模具生命周期中的各种缺陷:模具设计,模具制造和热处理,工艺参数,加工中模具的维护/校正以及坯料类型和质量。因此,为了确保铝挤压设备的经济效率,在挤压机中使用的模具和相关工具的改进和有效的使用寿命是最大化生产率和最小化成本的最重要因素之一。多长时间报废一次模具并更换新模具直接有助于生产具有一定轮廓的商业可行性。;当前工作的重点是与铝挤压模的改进有关的三项截然不同但相互关联的研究。 Study-A(模具失效分析)是基于工业数据(第2章),各种失效模具的检查和有限元模拟,用于识别模具的疲劳寿命中的关键工艺参数和设计特征的各种模式和关键失效类型的研究。 (第3章)。在研究B(模具表面硬化处理)中,根据渗氮层的形态和性能(第4章),从实验和数值上评估了H13钢的两阶段受控气体渗氮工艺(第4章),然后进行了实验和数值研究。在模具使用寿命方面,重复氮化(第5章),氮化前的表面预处理(第6章)和模具轮廓几何形状(第7章)对氮化性能的影响。在Study-C(坯料质量对模具寿命的影响)中,基于工业数据研究了坯料质量和相关的挤压参数对模具使用寿命的影响,并提出了一些基于回归的模具寿命模型(第8章) 。接下来是对不同坯料样品进行详细的微观结构研究,并对挤压工艺进行有限元分析,以观察冶炼厂(主要)和再生(次要)坯料对挤压模使用寿命的影响(第9章)。

著录项

  • 作者

    Akhtar, Syed Sohail.;

  • 作者单位

    King Fahd University of Petroleum and Minerals (Saudi Arabia).;

  • 授予单位 King Fahd University of Petroleum and Minerals (Saudi Arabia).;
  • 学科 Applied Mechanics.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 370 p.
  • 总页数 370
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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