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复合式塔式起重机的设计策略与制造探析
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作者 汪汛 《中文科技期刊数据库(全文版)工程技术》 2022年第8期26-28,共3页
复合式塔式起重机能够避免传统起重机桩基直径与长度过长的问题,不仅能够提升起重机的应用性能,还能降低在设计过程中的制造成本,是当前起重机制造企业控制成本、提升经济效益的重要方式之一。基于此,文章阐述基础桩基施工的单桩承载力... 复合式塔式起重机能够避免传统起重机桩基直径与长度过长的问题,不仅能够提升起重机的应用性能,还能降低在设计过程中的制造成本,是当前起重机制造企业控制成本、提升经济效益的重要方式之一。基于此,文章阐述基础桩基施工的单桩承载力、复合地基的持力层承载力、地基持力层的承载力、软弱地基的下卧层承载力四项设计策略,并对复合式塔式起重机生产制造过程中的生产制造人员综合素质、设备和工装、生产制造原材料质量控制、焊接工艺方法、生产制造环境五方面进行探析。 展开更多
关键词 复合式塔式起重机 设计策略 制造探析
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流程制造型工业企业智能制造探析
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作者 江泓 《区域治理》 2021年第26期259-260,共2页
工业企业智能制造是人类社会生产力不断发展的产物,智能制造是信息化和工业化自动化融合的发展方向,工业智能制造是指被加工对像不间断地通过自动化生产设备,通过一系列智能制造生产加工组装完成或者通过智能加工装置使原材料进行化学... 工业企业智能制造是人类社会生产力不断发展的产物,智能制造是信息化和工业化自动化融合的发展方向,工业智能制造是指被加工对像不间断地通过自动化生产设备,通过一系列智能制造生产加工组装完成或者通过智能加工装置使原材料进行化学或物理变化,最终得到产品的智能制造过程。工业企业智能制造注重制造过程的自动化控制、在线优化和生产运行精细化管理,是智能制造的信息化和工业化融合重点发展方向之一。 展开更多
关键词 流程型智能制造模式 流程型智能制造建设步骤 智能制造推广探析
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Dual-Material Electron Beam Selective Melting:Hardware Development and Validation Studies 被引量:12
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作者 Chao Guo Wenjun Ge Feng Lin 《Engineering》 SCIE EI 2015年第1期124-130,共7页
Electron beam selective melting (EBSM) is an additive manufacturing technique that directly fabricates three-dimensional parts in a layerwise fashion by using an electron beam to scan and melt metal powder. In recen... Electron beam selective melting (EBSM) is an additive manufacturing technique that directly fabricates three-dimensional parts in a layerwise fashion by using an electron beam to scan and melt metal powder. In recent years, EBSM has been successfully used in the additive manufacturing of a variety of materials. Previous research focused on the EBSM process of a single material. In this study, a novel EBSM process capable of building a gradient structure with dual metal materials was developed, and a powder-supplying method based on vibration was put forward. Two different powders can be supplied individually and then mixed. Two materials were used in this study: Ti6AI4V powder and Ti47AI2Cr2Nb powder. Ti6AI4V has excellent strength and plasticity at room temperature, while Ti47AI2Cr2Nb has excellent performance at high temperature, but is very brittle. A Ti6AI4V/Ti47AI2Cr2Nb gradient material was successfully fabricated by the developed system. The microstructures and chemical compositions were characterized by optical microscopy, scanning microscopy, and electron microprobe analysis. Results showed that the interface thickness was about 300 μm. The interface was free of cracks, and the chemical compositions exhibited a staircase-like change within the interface. 展开更多
关键词 additive manufacturing electron beam selectivemelting gradient materials titanium alloy TiAI alloy
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