Heat exchanger method, ingot casting; fixed abrasive method, multi-wire slicing : Phase II. Silicon sheet growth development for the Large-Area Silicon Sheet Task of the Low-Cost Silicon Solar Array Project. Quarterly progress report No. 2, January 1, 1978--March 31, 1978
- Author
- Schmid, F
- Published
- United States : [publisher not identified], 1978.
[Oak Ridge, Tennessee] : [U.S. Atomic Energy Commission], 1978. - Physical Description
- microfiche : negative ; 11 x 15 cm
- Additional Creators
- Khattak, C. P.
- Summary
- A crack-free silicon ingot has been cast in a graded, semiconductor purity silica crucible. More than 90% single crystallinity has been achieved in 2.5 kg cast ingots. The impurities on the surface of the melt have been reduced with the use of a rapid heat-up cycle and absence of graphite retainers. Solar cells fabricated out of HEM cast material have shown conversion efficiency up to 14% under AM1 Xenon source illumination. Considerable progress has been achieved in casting square cross-section ingots. The growth in the corners has been obtained but the problem area is in fabricating a custom-made graded crucible. Kerf loss was reduced to 6.2 mil, 0.155 mm in slicing 4 cm x 4 cm cross-section with 100% yield. The abrasive life of plated impregnated blades was increased by hardening the electroless nickel layer. In an effort to prevent diamond pull-out and thereby improve the abrasive life, the plated layer was increased from 0.3 mil, 7.5 ..mu..m to 0.5 mil, 12.5 ..mu..m. The extra thickness buried the diamonds. A thinner copper sheath for impregnation and a thicker nickel coating to prevent diamond pull-out is expected to improve the abrasive life. Higher feed forces increased the cutting rates but resulted in deeper surface damage.
- Report Numbers
- DOE/JPL/954373-6
- Other Subject(s)
- 14 solar energy
- 140501 - solar energy conversion- photovoltaic conversion
- 36 materials science
- 360601 - other materials- preparation & manufacture
- Abrasives
- Casting
- Crucibles
- Crystal structure
- Crystals
- Cutting
- Direct energy converters
- Efficiency
- Elements
- Fabrication
- Heat exchangers
- Impurities
- Machining
- Monocrystals
- Photoelectric cells
- Photovoltaic cells
- Semimetals
- Silicon solar cells
- Silicon
- Solar cells
- Collection
- U.S. Atomic Energy Commission depository collection.
- Note
- DOE contract number: NAS-7-100-954373
OSTI Identifier 6772814
Research organization: Crystal Systems, Inc., Salem, Mass. (USA).
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