Pregunta
Failure can give engineers important information that can help them improve a desi
What is an example of a useful fallure that helped Schultz improve his prosthesis?
What is an example of a useful fallure that helped Schultz improve his prosthesis?
Ask by Martinez Wood. in the United States
Feb 14,2025
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Schultz’s prosthesis broke at a joint during testing. Instead of giving up, he studied why it failed and found that the materials and design couldn’t handle the loads. This failure taught him to use stronger materials and redesign the joint, making the prosthesis better and more reliable.
Solución
One example came from when Schultz’s prosthesis consistently failed at a critical joint during testing. Rather than simply viewing the breakage as a setback, he examined exactly how and why the failure occurred. His analysis revealed that the stresses at the joint were much higher than his original calculations had predicted and that his chosen material and design couldn’t handle the repeated dynamic loads experienced during use. This “failure” wasn’t just a defect—it provided him with clear, quantitative feedback about where the design was weak.
Armed with this insight, Schultz was able to modify the prosthesis by selecting more robust materials and redesigning the joint to better distribute the loads. In this way, what initially was a failure turned into crucial information that led to a more reliable, durable, and better-performing prosthesis.
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Bonus Knowledge
One notable failure that helped Dean Kamen improve his prosthetic designs came from his work on the first iteration of the iBOT wheelchair, which aimed to navigate curbs and stairs. Initial models struggled to maintain balance on uneven surfaces, leading to the realization that using gyroscopic sensors could enhance stability and responsiveness. This failure was key to developing a more sophisticated control system that greatly improved user experience.
Additionally, a significant setback with an early prototype of the prosthesis meant that initial materials used weren’t durable enough for everyday wear and tear. This prompted Schultz to rethink the materials and invest in biomechanics research, ultimately leading to stronger and lighter prosthetics that improved user comfort and functionality.

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