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- W2324792440 abstract "[Abstract] This paper introduced the finite element analyses into ergonomics designs of aluminum beverage can ends to evaluate human feelings numerically and objectively. At first, experiments of indenting vertically the fingertip pulp by a probe and tabs of the can ends have been done to observe force responses and pain feelings in the fingertip. It is found that a typical force-displacement curve has two kink points A and B. We feel a touch before the load reaching Point A, feel a pressure and our pulse before reaching Point B, and finally feel discomfort followed by a pain in the fingertip. The finite element analyses have been performed to simulate the tab indenting the fingertip vertically. It is confirmed that the simulation results agree well with the experimental observations. Moreover, a simulation of finger pulling up the tab of the can end has also been performed, and discomfort in the fingertip has been presented by the maximum value of the contact normal stress of the finger model. Finally, the finger access comparison of three kinds of tab ring shape designs showed that the finger access of the tab that may have a larger contact area with finger is better." @default.
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- W2324792440 date "2006-09-06" @default.
- W2324792440 modified "2023-10-05" @default.
- W2324792440 title "Numerical Evaluation of Discomfort in the Fingertip When Opening Aluminum Beverage Cans" @default.
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- W2324792440 doi "https://doi.org/10.2514/6.2006-6905" @default.
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