Published December 1999 | Version v1
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Formation and surface strengthening of nano-meter embedded phases during high energy Ti implanted and annealed steel

  • 1. Beijing Normal Univ. (China). Inst. of Low Energy Nucler Physics

Description

Observation of transmission electron microscope indicated that the phase of FeTi2 with 3.5-20 nm in diameter is embedded in high energy Ti implanted layer. It's average diameter is 8 nm. The nano-meter phases were embedded among dislocations and grain boundary in Ti implanted steel at 400 degree C. The wear resistance has been improved. The embedded structure can be changed obviously after annealing. The structure has been changed slightly after annealing at annealing temperature raging from 350 to 500 degree C, however, the hardness and wear resistance of implanted layer increased greatly. The maximum of hardness is obtained when the sample was annealed at 500 degree C for 20 min. It can be seen that the strengthening of implanted layer has enhanced by annealing indeed. The grain boundary and dislocations have disappeared; the diameter of nano-meter phases increased from 10 nm to 15 nm after annealing at temperature of 750 degree C and 1000 degree respectively. The average densities of nano-meter phases are 8.8 x 1010/cm2 and 6.5 x 1010/cm2 respectively for both of annealing temperature. The hardness decreased obviously when the annealing temperature is greater than 750 degree C

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Additional details

Publishing Information

ISBN
7-5022-2115-8
Imprint Pagination
12 p.
Report number
CNIC--01424

Optional Information

Notes
9 figs., 1 tab., 10 refs.
Secondary number(s)
LENP--0009