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Editorial. 社论。
Pub Date : 2023-01-01 DOI: 10.1007/s00501-023-01332-9
Reinhold Schneider, Gerhard Hackl
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引用次数: 0
Rapid Material Multiparameter Optimization for Small-scale Series Productions in PBF-LB/M. PBF-LB/M小批量生产的快速材料多参数优化。
Pub Date : 2023-01-01 Epub Date: 2023-05-31 DOI: 10.1007/s00501-023-01356-1
Lasse Haahr-Lillevang, Ellen M J Hedegaard, Anders Bæk Hjermitslev, Christopher Gottlieb Klingaa, Nikolaj K Vedel-Smith

Materials development is an increasingly researched area within additive manufacturing. Companies with special product requirements are looking toward combining the unique properties of special alloy classes with the geometrical benefits of additive manufacturing (AM). In this contribution a method for rapid multiparameter optimization for Laser Powder Bed Fusion in Metals (PBF-LB/M) is described. Parameter sets for multiple quality features such as surface roughness, down face integrity, mechanical performance, and bulk density are optimized simultaneously using compact Design of Experiment approaches. The method is demonstrated on a case component with requirements on weldability, corrosion resistance, and mechanical resistance which led to the need for rapid powder manufacturing and printing parameter optimization in stainless steel 310S-an alloy not typically available on the PBF-LB market. The method resulted in rapidly developed processing parameters for 310S producing high-quality parts befitting the requirements of the case component. The result showcases the potential for short lead times and product development using simple Design of Experiment approaches for materials and parameter development within PBF-LB/M.

材料开发是增材制造中越来越多的研究领域。有特殊产品要求的公司正在寻求将特殊合金类别的独特性能与增材制造(AM)的几何优势相结合。本文介绍了一种用于金属激光粉末床聚变的快速多参数优化方法(PBF-LB/M)。使用紧凑的实验设计方法同时优化了表面粗糙度、下表面完整性、机械性能和堆积密度等多种质量特征的参数集。该方法在具有焊接性、耐腐蚀性和机械阻力要求的壳体部件上进行了演示,这导致需要在不锈钢310S中快速粉末制造和印刷参数优化,310S是PBF-LB市场上通常没有的合金。该方法快速开发了310S的加工参数,生产出符合表壳部件要求的高质量零件。该结果展示了在PBF-LB/M中使用简单的材料和参数开发实验设计方法进行短交付周期和产品开发的潜力。
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引用次数: 1
[Chair of Mining Engineering and Mineral Economics-the Future]. [采矿工程和矿产经济学教席--未来]。
Pub Date : 2023-01-01 Epub Date: 2023-01-27 DOI: 10.1007/s00501-023-01322-x
Michael Tost, Philipp Hartlieb, Christian Heiss, Birgit Knoll, Tobias Ladinig, Gerhard Mayer, Peter Moser, Michael Prenner, Nikolaus Sifferlinger, Alexander Tscharf

In order to tackle climate change and increasing competition in access to resources, the European Union has defined far-reaching transformations in the areas of energy and digitalisation as well as the conversion of the economic system towards an inclusive, circular economy in the so-called Green Deal. From a mining perspective, these transformations mean a continued growing demand for raw materials, which must be met by extracting mineral raw materials from primary deposits. However, increased quantities with "business as usual" would also increase the environmental and social impacts of mining, which is not an option, especially in Europe and Austria.Due to these facts, there is a need for research on new and improved mining methods and planning, as well as on optimised processes and machinery. This article describes how the Chair of Mining Engineering and Mineral Economics at Montanuniversität Leoben intends to use these challenges as an opportunity with its updated strategy, both for research and for teaching. For the research area, sustainability and involvement in the shaping of raw materials policy should form the framework. With a focus on digitisation and underground mining as well as strengthening the areas of open-pit mining, conveying technology and geoinformatics, research is to be future-proofed for these upcoming transformations. Teaching will continue to include a basic engineering education with specialisation in mining, whereby digitalisation will play an increasingly strong role.

为了应对气候变化和日益激烈的资源获取竞争,欧盟在能源和数字化领域进行了意义深远的改革,并在所谓的 "绿色协议 "中将经济体系转变为包容性的循环经济。从采矿业的角度来看,这些变革意味着对原材料的需求持续增长,而这必须通过从原生矿藏中提取矿物原材料来满足。然而,"一切照旧 "地增加开采量也会增加采矿业对环境和社会的影响,这不是一种选择,尤其是在欧洲和奥地利。由于这些事实,需要对新的和改进的采矿方法和规划以及优化的工艺和机械进行研究。本文介绍了莱奥本蒙大拿大学采矿工程和矿产经济学教席如何利用这些挑战作为机遇,更新其研究和教学战略。在研究领域,可持续发展和参与制定原材料政策应成为框架。研究的重点是数字化和地下采矿,同时加强露天采矿、输送技术和地理信息学领域的研究,为即将到来的变革做好准备。教学将继续包括采矿专业的基础工程教育,其中数字化将发挥越来越大的作用。
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引用次数: 0
Masterplan Rohstoffe 2030 – Eine Rohstoffstrategie für Österreich 《商品2030》——奥地利的商品战略
Pub Date : 2022-03-10 DOI: 10.1007/s00501-022-01212-8
Andreas Reichhardt, A. Gasser, R. Holnsteiner, Bianca Kvasina, Magdalena Pupp, T. Spörker, S. Strobl, A. Weber
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引用次数: 0
Der österreichische Bergbau: Nationale und internationale Aspekte 奥地利采矿:民族和国际层面
Pub Date : 2022-02-23 DOI: 10.1007/s00501-022-01206-6
T. Spörker, S. Strobl, R. Holnsteiner, C. Reichl
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引用次数: 0
Soft Skills and STEM Education: Vision of the European University EURECA-PRO. 软技能和STEM教育:欧洲大学EURECA-PRO的愿景。
Pub Date : 2022-01-01 Epub Date: 2022-09-13 DOI: 10.1007/s00501-022-01275-7
Ainhoa Villán-Vallejo, Abir Zitouni, Paula García-Llamas, María Fernández-Raga, Adriana Suárez-Corona, Roberto Baelo

Science, Technology, Engineering, and Mathematics (STEM) disciplines play an increasingly important role in the current socio-economic context. Higher education systems are working to equip students with the appropriate skills and competencies to cope with current demands and, in particular, to join a labour market strongly informed by STEM disciplines. Many such skills are non-disciplinary and are known as transversal or soft skills. Soft skills, including interpersonal and socio-emotional skills, are highly sought after in the labour market. These skills not only reflect personal abilities but also draw on concepts, such as social responsibility, creativity, ethics, and emotional intelligence. The European University on Responsible Consumption and Production (EURECA-PRO) seeks to foster soft skills development in our activities and curricula.

科学、技术、工程和数学(STEM)学科在当前的社会经济背景下发挥着越来越重要的作用。高等教育系统正在努力使学生具备适当的技能和能力,以应对当前的需求,特别是加入受STEM学科强烈影响的劳动力市场。许多这样的技能是非学科的,被称为横向技能或软技能。软技能,包括人际交往和社会情感技能,在劳动力市场上受到高度追捧。这些技能不仅反映了个人能力,还涉及社会责任、创造力、道德和情商等概念。欧洲负责任的消费和生产大学(EURECA-PRO)寻求在我们的活动和课程中促进软技能的发展。
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引用次数: 2
Editorial. 社论。
Pub Date : 2022-01-01 Epub Date: 2022-09-06 DOI: 10.1007/s00501-022-01271-x
Nader Asnafi, Harald Leitner, Gerhard Hackl
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引用次数: 0
Lulu 露露
Pub Date : 2022-01-01 DOI: 10.4324/9781351174206-5
Simms Bryan
Berg had several early ideas for a text for his second opera, and his choice finally fell on Frank Wedekind’s plays Earth Spirit and Pandora’s Box. Berg adapted the plays into a single three-act structure and made other changes in the names of characters and their attributes, and he titled his opera Lulu, after the central figure. The subject matter of the opera was highly controversial, with a perverse eroticism and sordid violence. Given the political climate of the early 1930s, prospects for a performance of the work were dim. The chronology by which Berg created the libretto for Lulu and its music reveals many delays that suggest a struggle on the composer’s part in grappling with the subject and with his relatively new twelve-tone method of composing. Berg completed the basic compositional work for the opera in spring 1934, and he then created a concert suite from the work, much as he had done with Wozzeck, which he titled Symphonic Pieces from the Opera “Lulu.” The necessary revisions to the opera that Berg foresaw and most of the orchestration of Act 3 remained incomplete at the time of his death in December 1935, and the opera was performed in its entirety only in 1979. In Lulu Berg fully developed his own distinctive twelve-tone method of composing but continued to invoke traditional musical forms.
伯格对他的第二部歌剧的剧本有几个早期的想法,他最终选择了弗兰克·韦德金德的戏剧《地球之魂》和《潘多拉的盒子》。伯格将这些戏剧改编成一个单一的三幕结构,并对人物的名字和属性进行了其他更改,并以中心人物的名字为歌剧命名为“露露”。这部歌剧的主题极具争议性,充满了反常的色情和肮脏的暴力。考虑到20世纪30年代早期的政治气候,这部作品的演出前景黯淡。伯格创作《露露》的歌词及其音乐的时间顺序显示出许多延迟,这表明作曲家在努力解决这个主题和他相对较新的十二音作曲方法方面存在着斗争。伯格在1934年春天完成了歌剧的基本作曲工作,然后他根据这部作品创作了一个音乐会组曲,就像他和沃采克所做的那样,他把歌剧的交响乐片段命名为“露露”。伯格在1935年12月去世时,对歌剧的必要修改和第三幕的大部分编曲都还没有完成,歌剧直到1979年才完整地演出。在《露露》中,伯格充分发展了他自己独特的十二音作曲方法,但继续援引传统的音乐形式。
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引用次数: 3
Mineral Raw Material Supply Chain Transparency and Traceability: Does Provenance Matter in the Supply Chain? 矿产原料供应链的透明度和可追溯性:来源在供应链中重要吗?
Pub Date : 2022-01-01 DOI: 10.1007/s00501-022-01274-8
Valentina Dietrich, Frank Melcher

Raw material supply chains are complex systems. They build on the presence of economically mineable mineral commodities that will undergo several steps until they are finally being used as consumer products. Trustworthiness into the transparency of a supply chain is of increasing importance, both to upstream and downstream companies. Any deviation from best-practice and quality standards in mining, processing and production is critically looked at by consumers. Therefore, certification systems and proof of origin concepts have emerged within the past years, aiming at providing transparency to supply chains. The analytical proof of origin for mineral raw materials could be beneficial to certification schemes in several ways. It represents the least corruptible method of provenance analysis as it relates directly to the chemical composition of the raw material. Other methods, such as documents, tracers, or barcodes, can be outmanoeuvred in one way or another.

原材料供应链是一个复杂的系统。它们建立在具有经济开采价值的矿物商品的基础上,这些商品将经历几个步骤,直到最终被用作消费产品。对上游和下游公司来说,供应链透明度的可信度越来越重要。在采矿、加工和生产过程中,任何偏离最佳做法和质量标准的行为都会受到消费者的严厉审视。因此,认证系统和原产地证明概念在过去几年中出现,旨在为供应链提供透明度。矿物原料的原产地分析证明可以在几个方面有利于核证办法。它代表了最不容易损坏的来源分析方法,因为它直接关系到原料的化学成分。其他方法,如文档、跟踪器或条形码,可以以这样或那样的方式被超越。
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引用次数: 1
Neues von der Montanuniversität. 这是蒙大拿州大学最新消息
Pub Date : 2021-01-01 Epub Date: 2021-03-03 DOI: 10.1007/s00501-021-01104-3
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Berg- und huttenmannische Monatshefte
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