US2020277220A1PendingUtilityA1

Uv-transmitting glass and molded products

Assignee: AGC INCPriority: Jan 22, 2018Filed: May 20, 2020Published: Sep 3, 2020
Est. expiryJan 22, 2038(~11.5 yrs left)· nominal 20-yr term from priority
C03C 4/0085C03C 3/068C03C 3/064C03C 3/122
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Claims

Abstract

A UV-transmitting glass formed of a multi-component oxide, and having at least one of characteristics of an internal transmittance τ350-400(%) with respect to light having a wavelength between 350 nm and 400 nm through a 10 mm-thick glass that satisfies τ350-400≥90 ••• (1); an internal transmittance τ300-350(%) with respect to light having a wavelength between 300 nm and 350 nm through a 10 mm-thick glass that satisfies τ300-350≥75 ••• (2); and an internal transmittance τ260-300(%) with respect to light having a wavelength between 260 nm and 300 nm through a 10 mm-thick glass that satisfies τ260-300≥45 ••• (3).

Claims

exact text as granted — not AI-modified
1 . A UV-transmitting glass formed of a multi-component oxide, and having an internal transmittance τ 350-400 (%) with respect to light having a wavelength between 350 nm and 400 nm through a 10 mm-thick glass that satisfies the following formula (1):
   τ 350-400 ≥90  (1).
 
 
     
     
         2 . A UV-transmitting glass formed of a multi-component oxide, and having an internal transmittance τ 300-350 (%) with respect to light having a wavelength between 300 nm and 350 nm through a 10 mm-thick glass that satisfies the following formula (2):
   τ 300-350 ≥75  (2).
 
 
     
     
         3 . A UV-transmitting glass formed of a multi-component oxide, and having an internal transmittance τ 260-300 (%) with respect to light having a wavelength between 260 nm and 300 nm through a 10 mm-thick glass that satisfies the following formula (3):
   τ 260-300 ≥45  (3).
 
 
     
     
         4 . The UV-transmitting glass as claimed in  claim 1 , wherein the UV-transmitting glass has an iron oxide content T-Fe 2 O 3  in the glass, as converted into Fe 2 O 3 , being less than or equal to 1.5 mass ppm. 
     
     
         5 . The UV-transmitting glass as claimed in  claim 1 , wherein the UV-transmitting glass contains at least one species of tin oxide selected from among SnO 2  and SnO, and the content of the tin oxide in the UV glass is greater than 0.3 mass % and less than or equal to 3 mass %. 
     
     
         6 . The UV-transmitting glass as claimed in  claim 1 , wherein the UV-transmitting glass contains at least one species of tin oxide selected from among SnO 2  and SnO, and the content of the tin oxide in the UV glass is greater than 0 mass % and less than or equal to 0.3 mass %. 
     
     
         7 . The UV-transmitting glass as claimed in  claim 1 , wherein a refractive index of the UV-transmitting glass is greater than or equal to 1.7. 
     
     
         8 . The UV-transmitting glass as claimed in  claim 1  wherein the UV-transmitting glass has a content of Bi 2 O 3 , TiO 2 , WO 3 , and Gd 2 O 3  being less than or equal to 3 mol %, in terms of mol % on an oxide basis. 
     
     
         9 . The UV-transmitting glass as claimed in  claim 8 , wherein the UV-transmitting glass has a content of Nb 2 O 5  being less than or equal to 3 mol %, in terms of mol % on an oxide basis. 
     
     
         10 . The UV-transmitting glass as claimed in  claim 8 , wherein the UV-transmitting glass has a content of Ta 2 O 5  being less than or equal to 3 mol %, in terms of mol % on an oxide basis. 
     
     
         11 . The UV-transmitting glass as claimed in  claim 1 , wherein the UV-transmitting glass has an Fe 3+  intensity of less than or equal to 0.0215 as measured by electron spin resonance (ESR). 
     
     
         12 . A manufacturing method of the UV-transmitting glass as claimed in  claim 1 , the method comprising:
 melting glass raw materials or glass cullets; and   cooling a glass melt to be solidified,   wherein during the melting, a melting atmosphere is an air atmosphere, and a reducing agent is contained in the glass raw materials or the glass cullets.   
     
     
         13 . The method of manufacturing the UV-transmitting glass as claimed in  claim 12 , wherein the reducing agent is a tin oxide containing at least one species selected from among SnO 2  and SnO, and the reducing agent is contained in the UV-transmitting glass by an amount of greater than 0.3 mass % and less than or equal to 3 mass %. 
     
     
         14 . A manufacturing method of a UV-transmitting glass as claimed in  claim 1 , the method comprising:
 melting glass raw materials or glass cullets; and   cooling a glass melt to be solidified,   wherein during the melting, a melting atmosphere is a non-oxidizing atmosphere, and a reducing agent is contained in the glass raw materials or the glass cullets.   
     
     
         15 . The method of manufacturing the UV-transmitting glass as claimed in  claim 14 , wherein the reducing agent is a tin oxide containing at least one species selected from among SnO 2  and SnO, and the reducing agent is contained in the UV-transmitting glass by an amount of greater than 0 mass % and less than or equal to 0.3 mass %. 
     
     
         16 . A molded product made of the UV-transmitting glass as claimed in  claim 1 , and having a desired shape.

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