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Glass fracture surface

Reprinted from Journal of non-crystalline solids, 281(1-3), Poggemann JF, Goss A, Heide G, Radlein E, Frischat GH, Direct view of the structure of a silica glass fracture surface, 221-226, 2001, with permission from Elsevier. [Pg.146]

It is worth stating that fractography can provide valuable information to help identify the events that have resulted in the fracture of a material. The only standard on the. subject is ASTM Cl256-93, Standard practice for interpreting glass fracture surface features [127]. [Pg.558]

ASTM Cl256. 1993. Interpreting glass fracture surface features. [Pg.585]

Johnson, J.W. and Holloway, D.G. (1966) On the shape and size of the fracture zones on glass fracture surfaces, Phil. Mag. 14, 731. Also Microstructure of the mist zone on glass fracture surfaces, Phil. Mag. 17, 899. [Pg.340]

FIGURE 9.19 Scanning electron micrograph of PP-glass fracture surfaces. The sample on the... [Pg.610]

E.A. Leed, C.G. Pantano, Computer modeling of water adsorption on silica and silicate glass fracture surfaces. J. Non-Cryst. Solids 325(1-3), 48-60 (2003)... [Pg.274]

Fig. 2. RepHca electron micrograph of the fracture surface of enstatite—P-spodumene—zirconia glass-ceramic, showing twinning in the enstatite grains... Fig. 2. RepHca electron micrograph of the fracture surface of enstatite—P-spodumene—zirconia glass-ceramic, showing twinning in the enstatite grains...
Fig. 4. Fracture surface (repHca micrograph) of fluorcanasite glass-ceramic showing interlocking blade-shaped crystals and effects of cleavage splintering... Fig. 4. Fracture surface (repHca micrograph) of fluorcanasite glass-ceramic showing interlocking blade-shaped crystals and effects of cleavage splintering...
Fig. 9. (a) Optical micrograph of the fracture surface of a glass rod at 38 X. (b) Characteristic fracture markings such as mirror, mist, and hackle and the... [Pg.327]

Slides Plastic cavitation around inclusions in metals (e.g. metallographic section through neck in tensile specimen) SEM pictures of fracture surfaces in ductile metals, glass, alkali halide crystals. [Pg.293]

Figure 6.18 A stereoscan of a fracture surface of a dental silicate cement. The debonded glass particle is to be identified by its pitted surface, the result of selective acid attack. Note the particulate nature of the matrix (Wilson et at., 1972). Figure 6.18 A stereoscan of a fracture surface of a dental silicate cement. The debonded glass particle is to be identified by its pitted surface, the result of selective acid attack. Note the particulate nature of the matrix (Wilson et at., 1972).
Figure 5. Scanning electron micrograph of tensile fractured surface of 30% glass reinforced MA-modified PP (unstabi1ised, 1C1-HF22). Figure 5. Scanning electron micrograph of tensile fractured surface of 30% glass reinforced MA-modified PP (unstabi1ised, 1C1-HF22).

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See also in sourсe #XX -- [ Pg.494 ]




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