A glass container comprising:na glass body having an interior surface and an exterior surface, wherein at least the interior surface of the glass body has a delamination factor of less than or equal to 10; anda heat-tolerant coating bonded to at least a portion of the exterior surface of the glass body, wherein the heat-tolerant coating is thermally stable at a temperature of at least 260° C. for 30 minutes and has 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.
›2.↳ 1The glass container of claim 1, wherein the exterior surface of the glass body with the heat-tolerant coating has a coefficient of friction of less th…d2
The glass container of claim 1, wherein the exterior surface of the glass body with the heat-tolerant coating has a coefficient of friction of less than about 0.7, andnthe coefficient of friction is a maximum coefficient of friction measured relative to a second glass container in a vial-on-vial testing jig under a normal load of 30 N, the second glass container having a body formed from a same glass composition and comprising the heat-tolerant coating on an at least a portion of the outer surface of a body of the second glass container and subjected to the same environmental conditions prior to measurement.
›3.↳ 1The glass container of claim 1, wherein the glass body has an interior region extending between the interior surface of the glass body and the exterio…d2+2
The glass container of claim 1, wherein the glass body has an interior region extending between the interior surface of the glass body and the exterior surface of the glass body, the interior region having a persistent layer homogeneity.
›4.↳ 3The glass container of claim 3, wherein the interior region has a thickness TLR of at least about 100 nm.d3
The glass container of claim 3, wherein the interior region has a thickness TLR of at least about 100 nm.
›5.↳ 3The glass container of claim 3, wherein the interior region extends from 10 nm below the interior surface of the glass body and has a thickness TLR of…d3
The glass container of claim 3, wherein the interior region extends from 10 nm below the interior surface of the glass body and has a thickness TLR of at least about 100 nm.
›6.↳ 1The glass container of claim 1, wherein the interior surface of the glass body has a persistent surface homogeneity.d2+1
The glass container of claim 1, wherein the interior surface of the glass body has a persistent surface homogeneity.
›7.↳ 6The glass container of claim 6, wherein the persistent surface homogeneity extends into a wall thickness of the glass body to a depth from about 10 nm…d3
The glass container of claim 6, wherein the persistent surface homogeneity extends into a wall thickness of the glass body to a depth from about 10 nm to about 50 nm from the interior surface of the glass body.
›8.↳ 1The glass container of claim 1, wherein the glass body has a surface region that extends from the interior surface of the glass body into a wall thick…d2+1
The glass container of claim 1, wherein the glass body has a surface region that extends from the interior surface of the glass body into a wall thickness of the glass body, the surface region having a persistent surface homogeneity.
›9.↳ 8The glass container of claim 8, wherein the surface region extends into a wall thickness of the glass body to a depth of at least 10 nm from the inter…d3
The glass container of claim 8, wherein the surface region extends into a wall thickness of the glass body to a depth of at least 10 nm from the interior surface of the glass body.
›10.↳ 1The glass container of claim 1, wherein the heat-tolerant coating comprises a coupling agent layer.d2+2
The glass container of claim 1, wherein the heat-tolerant coating comprises a coupling agent layer.
›11.↳ 10The glass container of claim 10, wherein the coupling agent layer comprises at least one silane chemical composition.d3
The glass container of claim 10, wherein the coupling agent layer comprises at least one silane chemical composition.
›12.↳ 10The glass container of claim 10, wherein the heat-tolerant coating comprises a low-friction layer contacting the coupling agent layer.d3
The glass container of claim 10, wherein the heat-tolerant coating comprises a low-friction layer contacting the coupling agent layer.
›13.↳ 1The glass container of claim 1, wherein the heat-tolerant coating comprises a low-friction layer comprising a polymer chemical composition.d2
The glass container of claim 1, wherein the heat-tolerant coating comprises a low-friction layer comprising a polymer chemical composition.
›14.↳ 1The glass container of claim 1, wherein a light transmission through a coated portion of the glass container is greater than or equal to about 55% of …d2
The glass container of claim 1, wherein a light transmission through a coated portion of the glass container is 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.
›15.↳ 1The glass container of claim 1, wherein the glass body has at least a class S3 acid resistance according to DIN 12116.d2
The glass container of claim 1, wherein the glass body has at least a class S3 acid resistance according to DIN 12116.
›16.↳ 1The glass container of claim 1, wherein the glass body has at least a class A2 base resistance according to ISO 695.d2
The glass container of claim 1, wherein the glass body has at least a class A2 base resistance according to ISO 695.
›17.↳ 1The glass container of claim 1, wherein the glass container has a Type 1 hydrolytic resistance according to USP .d2
The glass container of claim 1, wherein the glass container has a Type 1 hydrolytic resistance according to USP .
›18.↳ 1The glass container of claim 1, wherein the glass container is a pharmaceutical package.d2
The glass container of claim 1, wherein the glass container is a pharmaceutical package.
›19.↳ 1The glass container of claim 1, wherein the heat tolerant coating is thermally stable at a temperature of at least 280° C. for 30 minutes.d2
The glass container of claim 1, wherein the heat tolerant coating is thermally stable at a temperature of at least 280° C. for 30 minutes.