Growth configurations were developed which produced crystals having low residual stress levels. The properties of a 106 mm diameter round crucible were evaluated and it was found that this design had greatly enhanced temperature fluctuations arising from convection in the melt. Thermal modeling efforts were directed to developing finite element models of the 106 mm round crucible and an elongated susceptor/crucible configuration. Also, the thermal model for the heat loss modes from the dendritic web was examined for guidance in reducing the thermal stress in the web. An economic analysis was prepared to evaluate the silicon web process in relation to price goals
High risk, high payoff research areas associated with the Westinghouse process for producing photovo...
Significant progress is reported in fabricating a 4 sq cm cell having a 10.1 percent conversion effi...
Meniscus coates tests, back junction formation using a new boron containing liquid, tests of various...
Liquid diffusion masks and liquid applied dopants to replace the CVD Silox masking and gaseous diffu...
Silicon dendritic web, a single crystal ribbon shaped during growth by crystallographic forces and s...
The technical feasibility of producing solar cell quality sheet silicon to meet the DOE 1986 cost go...
Equipment developed for the manufacture of over 100 kg of silicon ingot from one crucible by rechang...
Several areas of silicon sheet growth development are addressed including: silicon ingot casting, he...
Silicon dendritic web is a ribbon form of silicon which grows directly from the melt without dies an...
A program is described which supports and promotes the development of processing techniques which ma...
The thermal stress model was used to generate the design of a low stress lid and shield configuratio...
The operation of a silicon production technique was demonstrated. The essentials of the method compr...
The technical and economic feasibility of producing solar-cell-quality sheet silicon was investigate...
During the reporting period, a successful 100 kilogram run was performed. Six ingots of 13 cm diamet...
The effects of impurities, various thermochemical processes, and any impurity-process interactions u...
High risk, high payoff research areas associated with the Westinghouse process for producing photovo...
Significant progress is reported in fabricating a 4 sq cm cell having a 10.1 percent conversion effi...
Meniscus coates tests, back junction formation using a new boron containing liquid, tests of various...
Liquid diffusion masks and liquid applied dopants to replace the CVD Silox masking and gaseous diffu...
Silicon dendritic web, a single crystal ribbon shaped during growth by crystallographic forces and s...
The technical feasibility of producing solar cell quality sheet silicon to meet the DOE 1986 cost go...
Equipment developed for the manufacture of over 100 kg of silicon ingot from one crucible by rechang...
Several areas of silicon sheet growth development are addressed including: silicon ingot casting, he...
Silicon dendritic web is a ribbon form of silicon which grows directly from the melt without dies an...
A program is described which supports and promotes the development of processing techniques which ma...
The thermal stress model was used to generate the design of a low stress lid and shield configuratio...
The operation of a silicon production technique was demonstrated. The essentials of the method compr...
The technical and economic feasibility of producing solar-cell-quality sheet silicon was investigate...
During the reporting period, a successful 100 kilogram run was performed. Six ingots of 13 cm diamet...
The effects of impurities, various thermochemical processes, and any impurity-process interactions u...
High risk, high payoff research areas associated with the Westinghouse process for producing photovo...
Significant progress is reported in fabricating a 4 sq cm cell having a 10.1 percent conversion effi...
Meniscus coates tests, back junction formation using a new boron containing liquid, tests of various...