## Treatise on Materials Science and Technology, Volume 1 |

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Page 84

... E , V , E , G Gm where V , is the volume fraction of the reinforcing

... E , V , E , G Gm where V , is the volume fraction of the reinforcing

**material**, Gm the shear modulus of the matrix**material**, E , the Young's modulus of the reinforcing**material**, and k , = 0 is the Mode I stress intensity factor .Page 333

... and 1000 ° C. We have found that at each test temperature the

... and 1000 ° C. We have found that at each test temperature the

**material**deposited at 500 ° C has a yield stress higher by approximately 3 ksi than does the**material**deposited at 700 ° C. Both curves descend linearly in strength with ...Page 338

Grain growth in CVD

Grain growth in CVD

**materials**is intimately connected with the development of bubbles and their subsequent interaction with migrating grain boundaries . We have only noticed that for higher temperature anneals , plots of D2 - D.2 versus ...### What people are saying - Write a review

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addition alloys analysis angle applied approach associated assumed atoms average becomes bond boundary calculated complex composite concentration consider constants contribution crystal curvature curve decrease defined dependence deposition determined developed direction discussed displacement distance distribution dynamical effect elastic electron elements energy equal equation example exist experimental fibers force fracture function given gives grain grain boundaries Group growth growth path illustrated increase indicates interface internal friction interstitial iron laminate lattice layer length material matrix measured mechanism metal microstructural molecules nitrogen normal nucleation observed obtained occur oxygen particles peak phase plane position possible potential present produce properties region reinforcing relaxation respectively shown in Fig shows single Snoek peak solid solution strain strength stress structure substitutional surface Table temperature tungsten unit values volume waves