Patent classifications
C03C10/0036
Lithium silicate glass ceramic with scheelite or powellite crystal phase
The invention relates to a lithium silicate glass ceramic which contains lithium silicate as main crystal phase and scheelite and/or powellite as further crystal phases. The invention also relates to a corresponding starting glass, a starting glass with nuclei, a process for producing the glass ceramic and the starting glasses as well as the use thereof.
GLASS-CERAMIC ARTICLES WITH INCREASED RESISTANCE TO FRACTURE AND METHODS FOR MAKING THE SAME
- Carol Ann Click ,
- Indrajit Dutta ,
- James Howard Edmonston ,
- Michael S. Fischer ,
- Qiang Fu ,
- Ozgur Gulbiten ,
- Jill Marie Hall ,
- Mathieu Gerard Jacques Hubert ,
- Dhananjay Joshi ,
- Andrew Peter Kittleson ,
- Rohit Rai ,
- John Robert Saltzer, Jr. ,
- Charlene Marie Smith ,
- Matthew Daniel Trosa ,
- Matthew Artus Tuggle ,
- James Clark Walck, Jr. ,
- Alana Marie Whittier ,
- Zheming Zheng
A glass-ceramic article having one or more crystalline phases; a residual glass phase; a compressive stress layer extending from a first surface to a depth of compression (DOC); a maximum central tension greater than 70 MPa; a stored tensile energy greater than 22 J/m.sup.2; a fracture toughness greater than 1.0 MPam; and a haze less than 0.2.
Controlled optical properties vitreous enamel composition for electrosurgical tool
A vitreous enamel coating for an electrosurgical metal cutting blade, in which incident light striking the vitreous enamel coating is diffusely reflected or absorbed, and the vitreous enamel coating exhibits a 60 gloss value less than 100 gloss units as measured according to ASTM D523-14, Standard Test Method for Specular Gloss. The coating reduces glare from light sources such as a nearby plasma-mediated discharge, operating theater lights or lights provided on an electrosurgery apparatus. The coating may also lessen interference with markers, sensors or other instruments designed to measure light emitted by or passing through nearby tissue such as by transillumination.
CONTROLLED COEFFICIENT OF THERMAL EXPANSION VITREOUS ENAMEL COMPOSITION FOR ELECTROSURGICAL TOOL
A vitreous enamel coating for an electrosurgical metal cutting blade, the coating having a coefficient of thermal expansion substantially near the coefficient of thermal expansion of the metal cutting blade. Selection of materials having similar coefficients of thermal expansion results in an electrosurgical cutting blade with an improved insulating layer, substantially improved durability, or both.
BOND PRODUCED WITH AN AT LEAST PARTIALLY CRYSTALLIZED GLASS, SUCH AS A METAL-TO-GLASS BOND, IN PARTICULAR A METAL-TO-GLASS BOND IN A FEED-THROUGH ELEMENT OR CONNECTING ELEMENT, AND METHOD FOR PRODUCING SUCH A BOND, IN PARTICULAR IN A FEED-THROUGH ELEMENT OR CONNECTING ELEMENT
An at least partially crystallized glass includes at least one crystal phase and pores which are distributed in the at least partially crystallized glass in a structured manner.
Fluorescent glass ceramics and glasses with europium content
The invention relates to glass ceramics and glasses with a europium content, containing the following components: TABLE-US-00001 Component wt.-% SiO.sub.2 30.0 to 75.0 Al.sub.2O.sub.3 10.0 to 45.0 Europium, calculated as Eu.sub.2O.sub.3 0.05 to 5.0 and which are suitable in particular for the production of dental restorations, the fluorescence properties of which largely correspond to those of natural teeth.
Glass having exceptional crack resistance
The present invention pertains to glass containing, in terms of mass % on an oxide basis, 40-80% of SiO.sub.2, 1-30% of Al.sub.2O.sub.3, and 1-40% of CaO, the glass having dmisteinbergite as the crystalline phase. Such glass makes it difficult for cracks to progress and has exceptional crack resistance.
Lead-through or connecting element with improved thermal loading capability
A lead-through or connecting element is provided that includes an assembly having a carrier body of a high-temperature alloy, a functional element, and an at least partially crystallized glass. The crystallized glass is between a portion of the functional element and a portion of the carrier body. The carrier body subjects the crystallized glass to a compressive stress of greater than or equal to zero, at a temperature from at least 20 C. to more than 450 C. Also provided are a method for producing a lead-through or connecting element, the use of such a lead-through or connecting element, and to a measuring device including such a lead-through or connecting element.
Multilayer electronic component
The present invention relates to a multilayer electronic component which includes an element body where a plurality of internal electrode layers and dielectric layers are alternately laminated. Insulating layers are disposed on a pair of side surfaces of the element body, facing each other. The insulating layers contain a glass composition and a ceramic composition.
HIGH TRANSMISSION GLASSES WITH ALKALINE EARTH OXIDES AS A MODIFIER
Compounds, compositions, articles, devices, and methods for the manufacture of light guide plates and back light units including such light guide plates made from glass. In some embodiments, light guide plates (LGPs) are provided that have similar or superior optical properties to light guide plates made from PMMA and that have exceptional mechanical properties such as rigidity, CTE and dimensional stability in high moisture conditions as compared to PMMA light guide plates.