An Investigation on the Analysis Method for Assembled Tolerances: Statistical Tolerance Analysis Method for Non-normal Distribution Parts with Mean Shifts and Drifts - Chang-hsin Kuo - Libros - LAP LAMBERT Academic Publishing - 9783843369862 - 16 de noviembre de 2010
En caso de que portada y título no coincidan, el título será el correcto

An Investigation on the Analysis Method for Assembled Tolerances: Statistical Tolerance Analysis Method for Non-normal Distribution Parts with Mean Shifts and Drifts


Recibe un correo electrónico cuando el artículo esté disponible
¿Tienes un perfil? Iniciar sesión
Recibe notificaciones sobre nuevos lanzamientos de Chang-hsin Kuo
Añadir a tu lista de deseos de iMusic

Aún no valorado

The product is more complicated and the parts can fit to the adjacent parts with multiple constraints for improving the stiffness and accuracy of the assembly. The average dimension of the parts may shifts or drifts from the nominal value during the manufacturing process. And, the dimension distribution of the parts can be in different non- normal distribution since they are manufactured by different manufacture process. This method predicts more accurate resultants by an interpolation method. With this method, the assembled state of an assembly with multiple constraints can be evaluated. The assembly behaves a higher probability of stiffness, as if the minimum gap index is smaller. For the mean shift studied for the cases represented in this paper, the results show the difference between this model and the Monte Carlo method with 1,000,000 simulation samples is less than 0.5%. The two stack-up examples described in this paper show the predicted errors only 0.799% and -1.76% respectively. The proposed model is fast and accurate for non-normal distribution and process with mean shift or drift.

Medios de comunicación Libros     Paperback Book   (Libro con tapa blanda y lomo encolado)
Publicado 16 de noviembre de 2010
ISBN13 9783843369862
Editores LAP LAMBERT Academic Publishing
Páginas 124
Dimensiones 150 × 7 × 226 mm   ·   203 g
Lengua Alemán