Composite crucible and method of manufacturing the same
The purpose of the present invention is to provide a crucible which has high viscosity at high temperature, can be used for a long time, and can be manufactured at low cost, and a method of manufacturing the crucible. The present invention provides a composite crucible including a vitreous silica crucible body having a sidewall portion and a bottom portion, and a reinforcement layer provided on an outer surface side of an upper end portion of the vitreous silica crucible body, wherein the reinforcement layer is made of mullite material whose main component is alumina and silica.
1. A composite crucible comprising:
a vitreous silica crucible body having a sidewall portion and a bottom portion, and
a reinforcement layer provided on an outer surface side of an upper end portion of the vitreous silica crucible body,
wherein the reinforcement layer is made of mullite material whose main component is alumina and silica, wherein
the vitreous silica crucible body has an opaque vitreous silica layer provided on an outer surface side of the crucible and containing numerous microbubbles, and a transparent vitreous silica layer provided on an inner surface side of the crucible;
the reinforcement layer constitutes a same layer as the opaque vitreous silica layer with respect to a wall thickness direction of the crucible; and
the transparent vitreous silica layer constitutes a crucible inner layer covering and contacting an inner surface of the opaque vitreous silica layer and an inner surface of the inner surface of the reinforcement layer.
2. The composite crucible of claim 1 , wherein the height of the reinforcement layer is 1/10 to ½ of the height of the sidewall portion.
3. The composite crucible of claim 1 , further comprising a buffer layer between the reinforcement layer and the vitreous silica crucible body, and the buffer layer having concentration gradient of aluminium concentration which decreases from the above to the below of the crucible.