The fracture and failure mode of aand b-isotactic polypropylene ( a-iPP and b-iPP, respectively) were studied in high speed (1 m/s) three-point bending tests on notched bars cut from injection-molded dumbbell specimens and compared. The fracture response of the notched Charpy-type specimens at room
Failure and fracture mechanisms of injection-molded plastic products
โ Scribed by M. J. M. Van Der Zwet; A. J. Heidweiller
- Publisher
- John Wiley and Sons
- Year
- 1998
- Tongue
- English
- Weight
- 474 KB
- Volume
- 67
- Category
- Article
- ISSN
- 0021-8995
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โฆ Synopsis
The effect of geometry transitions on the mechanical load-carrying ability of specimens has been studied. Special attention has been given to a potentially positive influence of the injection molding process. Tensile tests, three-point bending tests, and low cycle fatigue tests were performed on specimens with either drilled or moldedin holes. Tests were conducted at various temperatures and deformation rates. Two commercial grades of poly(methyl methacrylate) have been applied. To obtain a better understanding of the fracture mechanism, the fracture surface morphology was related to the molecular orientation investigated by the birefringence method and the results of a finite element method analysis. The extent of redistribution of stresses seemed considerable, even in the case of a brittle material like poly(methyl methacrylate). As a result, the linear theory is a safe, but very conservative, approach for the loadcarrying ability of plastic products. It also seemed that injection molding may have a favorable influence on load-carrying ability. This result could be related to the fracture mechanism.
๐ SIMILAR VOLUMES
## Abstract A commercial thermotropic liquid crystalline polymer (LCP), Vectra A950, was injection molded into rectangular sheets of thickness ranging from 1 to 4 mm. By changing the thickness of the mold, the shear rate experienced by the TLCP melt in the mold could be varied. The 1โmm test sample