By Adam Mazurkiewicz
Selection of chosen, peer reviewed papers from the specific subject quantity with invited peer reviewed papers merely. The forty nine papers are grouped as follows:. bankruptcy 1: leading edge suggestions in floor Engineering;. bankruptcy 2: applied sciences and Mechatronic units for caliber Inspection and Measurements in Industry;. bankruptcy three: complicated equipment for keep an eye on structures and Robotics;. bankruptcy four: gaining knowledge of and Designing of applied sciences, Machines and equipment for Technological platforms in Mechanical Engineering;. bankruptcy five: commercial applied sciences of Waste Recycling and Environmental Engineering. Read more...
summary: number of chosen, peer reviewed papers from the specified subject quantity with invited peer reviewed papers purely. The forty nine papers are grouped as follows:. bankruptcy 1: leading edge recommendations in floor Engineering;. bankruptcy 2: applied sciences and Mechatronic units for caliber Inspection and Measurements in Industry;. bankruptcy three: complex tools for keep watch over platforms and Robotics;. bankruptcy four: gaining knowledge of and Designing of applied sciences, Machines and equipment for Technological structures in Mechanical Engineering;. bankruptcy five: commercial applied sciences of Waste Recycling and Environmental Engineering
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Extra resources for Advances in Manufacturing Engineering II
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Introduction From the engineering point of view, aluminum alloys, like titanium alloys, represent a very important group of materials, characterized by light weight, high strength to weight ratio . Simultaneously, they have low resistance to abrasive wear and erosion wear. As a result, despite their very good mechanical properties, the use of aluminum alloys in automotive, aviation and maritime industries is limited. The group of the most common aluminum alloys include aluminum alloys with silicon, so-called silumin, which are characterized by very good casting properties.
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