正在为你准备 Path…
正在为你准备 Path…
Path Catalog
列表数据实时取自 GET /api/v1/paths,仅包含存在已发布版本的 Path。
共 7801 条 Path · 第 237 / 781 页
This learning path covers the fundamentals of prepreg materials, including resin systems, B-staging, handling, and processing. It is designed for undergraduate engineering students seeking career skills in composite materials. The path progresses from basic polymer matrix composites knowledge to advanced prepreg-specific concepts.
This learning path guides undergraduate engineering students through the fundamental concepts of fire behavior and fire protection in composite materials. It covers composite basics, fire dynamics, decomposition and combustion of polymers, flame retardants, testing standards, and protection strategies, culminating in the ability to analyze composite fire performance.
This learning path guides undergraduate engineering students through the principles and practices of evaluating sustainable alternatives in composite materials. It covers natural fibers, biopolymers, bamboo, life cycle assessment, and biodegradability, building on a basic understanding of composites to enable informed material selection.
This learning path introduces undergraduate engineering students to the challenges and methods of recycling composite materials, focusing on mechanical recycling, pyrolysis, fiber reclamation, cement kiln applications, and circular economy principles. It begins with foundational knowledge of composites and recycling, then explores specific technologies and their challenges, and concludes with a broader view of sustainability and circular economy.
This learning path equips undergraduate engineering students with the knowledge to evaluate fiber-reinforced polymer (FRP) composites for infrastructure applications, covering material fundamentals, durability, and specific uses such as rebar, bridge decks, and seismic retrofit.
This learning path introduces undergraduate students to the use of composite materials in sporting goods. Starting with fundamental composite concepts, it progresses through manufacturing processes, design principles, and application-specific case studies in tennis rackets, fishing rods, bicycle frames, golf shafts, and skis. The path emphasizes material selection, performance trade-offs, and design considerations, culminating in a comprehensive design project.
This learning path introduces undergraduate engineering students to the analysis and application of composite materials in shipbuilding and marine environments. It covers fundamental composite mechanics, environmental degradation mechanisms, and practical design considerations such as fire resistance and hydrodynamic performance.
This learning path introduces undergraduate engineering students to the use of composite materials in wind turbine blades, covering material fundamentals, structural design, fatigue behavior, and environmental effects. It progresses from basic composite concepts to blade-specific design and durability considerations, culminating in an understanding of how composites meet the unique demands of wind energy applications.
This learning path equips undergraduate engineering students with the knowledge to evaluate composite materials for lightweight automotive structures. It covers material forms, manufacturing processes, performance criteria such as crashworthiness and NVH, and cost considerations, culminating in a structured evaluation framework.
This learning path guides undergraduate engineering students through the fundamental science of composite materials and their application in aircraft and spacecraft structures. Starting with basic material constituents and mechanics, the path progresses through manufacturing, structural design, and specific aerospace applications, culminating in an analysis of the trade-offs and future directions of composites in the industry.