US2025092499A1PendingUtilityA1

Amorphous alloy

Assignee: CHOW SANG SANG JEWELLERY COMPANY LTDPriority: Sep 15, 2023Filed: Jun 27, 2024Published: Mar 20, 2025
Est. expirySep 15, 2043(~17.1 yrs left)· nominal 20-yr term from priority
C22C 45/10C22C 1/02C22C 1/11C22C 5/02C22C 2200/02C22C 45/003
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Claims

Abstract

This invention provides an amorphous alloy. In one embodiment, said amorphous alloy consisting of, apart from impurities: i) 52.55-75.13 at. % of Au; ii) 11.74-15.55 at. % of Ge; iii) 8.13-10.77 at. % of Si; iv) 5-21.13 at. % being at least one element selected from the group consisting of Ag, Bi, Pd and Pt.

Claims

exact text as granted — not AI-modified
What is claimed is: 
     
         1 . An amorphous alloy consisting of, apart from impurities:
 i. 52.55-75.13 at. % of Au;   ii. 11.74-15.55 at. % of Ge;   iii. 8.13-10.77 at. % of Si;   iv. 5-21.13 at. % being at least one element selected from the group consisting of Ag, Bi, Pd and Pt.   
     
     
         2 . The amorphous alloy of  claim 1 , wherein said at least one element is selected from the group consisting of:
 i. 5-10 at. % of Ag;   ii. 0.01-8.69 at. % of Bi;   iii. 0.01-2.44 at. % of Pd;   iv. 0.01-2.44 at. % of Pt; and   v. 0.01-2.44 at. % of Pd and Pt in total.   
     
     
         3 . The amorphous alloy of  claim 1 , wherein said amorphous alloy consists of: 69.4 at. % of Au; 13.65 at. % of Ge; 9.45 at. % of Si; and 7.5 at. % of Ag. 
     
     
         4 . The amorphous alloy of  claim 1 , wherein said amorphous alloy consists of: 68.2 at. % of Au; 13.65 at. % of Ge; 9.45 at. % of Si; 7.5 at. % of Ag; and 1.2 at. % of Pd. 
     
     
         5 . The amorphous alloy of  claim 1 , wherein said amorphous alloy consists of: 65.83 at. % of Au; 13.65 at. % of Ge; 9.45 at. % of Si; 7.5 at. % of Ag; 1.2 at. % of Pd; and 2.37 at. % of Bi. 
     
     
         6 . The amorphous alloy of  claim 1 , wherein said amorphous alloy consists of: 63.46 at. % of Au;13.65 at. % of Ge; 9.45 at. % of Si; 7.5 at. % of Ag; 1.2 at. % of Pd; and 4.74 at. % of Bi. 
     
     
         7 . The amorphous alloy of  claim 1 , wherein said amorphous alloy consists of 63.68-73.59 at. % of Au, 12.65-15.55 at. % of Ge, 8.76-10.77 at. % of Si and 5-10 at. % of Ag. 
     
     
         8 . The amorphous alloy of  claim 1 , wherein said amorphous alloy consists of 61.28-72.99 at. % of Au, 12.65-15.55 at. % of Ge, 8.76-10.77 at. % of Si, 5-10 at. % of Ag and 0.6-2.4 at. % of Pd. 
     
     
         9 . The amorphous alloy of  claim 1 , wherein said amorphous alloy consists of 52.59-71.49 at. % of Au, 12.65-15.55 at. % of Ge, 8.76-10.77 at. % of Si, 5-10 at. % of Ag, 0.6-2.4 at. % of Pd; and 1.5-8.69 at. % of Bi. 
     
     
         10 . The amorphous alloy of  claim 1 , wherein said amorphous alloy consists of 66.85-71.85 at. % of Au, 12.65-14.65 at. % of Ge, 9-10 at. % of Si; and 6.5-8.5 at. % of Ag. 
     
     
         11 . The amorphous alloy of  claim 1 , wherein said amorphous alloy consists of 64.45-70.95 at. % of Au, 12.65-14.65 at. % of Ge, 9-10 at. % of Si, 6.5-8.5 at. % of Ag and 0.9-2.4 at. % of Pd. 
     
     
         12 . The amorphous alloy of  claim 1 , wherein said amorphous alloy consists of 58.95-69.15 at. % of Au, 12.65-14.65 at. % of Ge, 9-10 at. % of Si, 6.5-8.5 at. % of Ag, 0.9-2.4 at. % of Pd and 1.8-5.5 at. % of Bi. 
     
     
         13 . The amorphous alloy of  claim 1 , wherein said amorphous alloy comprises one or more of the following properties:
 i. a minimum critical casting thickness of 0.5 mm;   ii. a minimum glass transition temperature at 315K;   iii. a supercooled liquid region of minimum 10K.   
     
     
         14 . A method for manufacturing the amorphous alloy of  claim 1 , comprising the step of adding elements to a crucible in one of the following order, from bottom to top: Pd—Ag—Au—Bi—Ge—Si. 
     
     
         15 . A method for manufacturing the amorphous alloy of  claim 1 , comprising the step of adding elements to a crucible in one of the following order, from bottom to top: Pt—Ag—Au—Bi—Ge—Si. 
     
     
         16 . A method for manufacturing the amorphous alloy of  claim 1 , comprising the step of adding elements to a crucible in one of the following order, from bottom to top: Pd together with Pt followed by —Ag—Au—Bi—Ge—Si. 
     
     
         17 . A decorative item comprising at least one component made of the amorphous alloy of  claim 1 . 
     
     
         18 . The decorative item of  claim 17 , wherein said decorative item is a jewelry or an ornament. 
     
     
         19 . The decorative item of  claim 17 , wherein said at least one component is formed by thermoplastic forming or molding.

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