Abstract:
내열성코팅을갖는내박리성유리용기는개시된다. 하나의구현예에있어서, 유리용기는내부표면, 외부표면및 상기외부표면으로부터내부표면으로확장하는벽 두께를갖는유리체를포함할수 있다. 상기유리체의적어도내부표면은내박리성이다. 상기유리용기는상기유리체의외부표면의적어도일부상에위치된내열성코팅을더욱포함할수 있다. 상기내열성코팅은 260℃이상의온도에서 30분동안열적으로안정할수 있다.
Abstract:
The glass containers described herein have at least two performance attributes selected from resistance to delamination, improved strength, and increased damage resistance. In one embodiment, a glass container may include a body having an inner surface, an outer surface and a wall thickness extending between the outer surface and the inner surface. At least the inner surface of the body may have a delamination factor less than or equal to 10. A tenacious inorganic coating may be positioned around at least a portion of the outer surface of the body. The outer surface of the body with the tenacious inorganic coating may have a coefficient of friction less than or equal to 0.7.
Abstract:
According to one embodiment, an apparatus for holding may include a plurality of ware keepers for receiving glassware. Each ware keeper may include a retention body comprising a wire coil circumscribing a glassware receiving volume. A lower-most winding of the wire coil forms a ware stop in the retention body. The retention body may include a spacer coil extending from the retention body below the ware stop. A base frame may include a plurality of apertures extending through the base frame. Each of the plurality of ware keepers may be positioned in a corresponding aperture in the base frame such that the retention body of each ware keeper is above a top surface of the base frame and the spacer coil of each ware keeper is below a bottom surface of the base frame.
Abstract:
Low-friction coatings and glass articles with low-friction coatings are disclosed. According to one embodiment, a coated glass article may include a glass body comprising a first surface and a low-friction coating positioned on at least a portion of the first surface of the glass body. The low-friction coating may include a polymer chemical composition. The coated glass article may be thermally stable at a temperature of at least about 260°C for 30 minutes. A light transmission through the coated glass article may be greater than or equal to about 55% of a light transmission through an uncoated glass article for wavelengths from about 400 nm to about 700 nm. The low- friction coating may have a mass loss of less than about 5% of its mass when heated from a temperature of 150°C to 350°C at a ramp rate of about 10°C/minute.
Abstract:
According to embodiments disclosed herein, an apparatus may hold and retain glass articles during processing. The apparatus may define a plurality of receiving volumes for holding glass articles. The apparatus may include a bottom support floor, a glassware-securing member positioned above the bottom support floor, and a cover plate positioned above the glassware-securing member. The bottom support floor may include a plurality of fluid passages, the glassware-securing member may include a plurality of glassware-retaining openings, and the cover plate may include a plurality of fluid passages.
Abstract:
Se provee un procedimiento para convertir datos del color en una o más notas musicales; el procedimiento implica leer, usando un dispositivo de lectura del color, los colores respectivos aplicados a un lienzo por una pluralidad de instrumentos de dibujo como datos del color, en donde cada uno de la pluralidad de instrumentos de dibujo está configurado para introducir los colores respectivos de una paleta de colores, y en donde los colores respectivos de la paleta de colores corresponden respectivamente a una serie de notas musicales; el procedimiento implica también procesar, usando un módulo de procesamiento del color, los datos del color para generar una composición de las una o más notas musicales de los datos del color con base en una serie de notas musicales que corresponden a los colores respectivos en los datos del color.
Abstract:
The invention relates to a coated glass pharmaceutical package comprising: a glass container having an interior surface and an exterior surface and a wall extending therebetween, and the glass container is formed from one of a borosilicate glass composition that meets Type 1 criteria according to USP or an alkali aluminosilicate glass having a Class HGA 1 hydrolytic resistance when tested according to the ISO 720-1985 testing standard; and a low-friction coating bonded to the exterior surface of the glass container, the low-friction coating comprising a polymer and having a thickness of less than or equal to about 100 im; wherein: the exterior surface of the glass container with the low-friction coating has a coefficient of friction of less than or equal to 0.7, the coefficient of friction is a maximum coefficient of friction measured relative to a second coated glass pharmaceutical package in a vial-on-vial testing jig under a normal load of 30 N, the second coated glass pharmaceutical package formed from the same glass composition and comprising the low-friction coating on at least a portion of a second exterior surface of the second coated glass pharmaceutical package and subjected to the same environmental conditions prior to measurement of the coefficient of friction; and the coated glass pharmaceutical package is thermally stable after depyrogenation in air at a temperature of at least about 260°C for 30 minutes.
Abstract:
A delamination resistant glass pharmaceutical container comprising: an aluminosilicate glass having a Class HGA 1 hydrolytic resistance when tested according to ISO 720-1985 testing standard; a compressive stress layer with a depth of layer of greater than 25 pm; and a surface compressive stress of greater than or equal to 350 MPa, wherein the delamination resistant glass pharmaceutical container is ion exchange strengthened and the ion exchange strengthening comprises treating the delamination resistant glass pharmaceutical container in a molten salt bath for a time less than or equal to 5 hours at a temperature less than or equal to
Abstract:
The glass containers described herein have at least two performance attributes selected from resistance to delamination, improved strength, and increased damage resistance. In one embodiment, a glass container may include a body having an inner surface, an outer surface and a wall thickness extending between the outer surface and the inner surface. At least the inner surface of the body may have a delamination factor less than or equal to 10. A tenacious inorganic coating may be positioned around at least a portion of the outer surface of the body. The outer surface of the body with the tenacious inorganic coating may have a coefficient of friction less than or equal to 0.7.