{"href":"https://api.simplecast.com/oembed?url=https%3A%2F%2Fenvalior.simplecast.com%2Fepisodes%2Fpredicting-fatigue-fiber-reinforced-plastic-gears-l9rHxEkU","width":444,"version":"1.0","type":"rich","title":"Predicting the Fatigue Performance of Fiber-Reinforced Plastic Gears","thumbnail_width":300,"thumbnail_url":"https://image.simplecastcdn.com/images/d0c5733a-f34f-4670-a2f5-b391d836b944/29b188d3-8e21-44bb-87f6-1632a40ed2b5/chatgpt_image_jun_25_2026_025428_pm.jpg","thumbnail_height":300,"provider_url":"https://simplecast.com","provider_name":"Simplecast","html":"<iframe src=\"https://player.simplecast.com/ad801222-f757-4622-b086-da69d045e1a6\" height=\"200\" width=\"100%\" title=\"Predicting the Fatigue Performance of Fiber-Reinforced Plastic Gears\" frameborder=\"0\" scrolling=\"no\"></iframe>","height":200,"description":"A validated workflow predicts the fatigue life of injection-molded fiber-reinforced plastic gears, replacing the build-break-fix loop and the empirical correction factor. This episode covers fiber anisotropy, weld lines, friction heat and crack-growth modeling, with predictions reliable to within a factor of three."}