Lead-Free Brass Alloy
a brass alloy, lead-free technology, applied in the field of brass compositions, can solve the problems of affecting the phase of copper lead alloys, toxic substances, and expensive control procedures in the production of alloys, and achieve the effects of eliminating or reducing the amount of retooling, excellent dezincification resistance, and excellent machinability and conductivity
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[0023]A series of brass alloys were prepared where the added lead (typically about 2%) was replaced with approximately 0.5% tellurium. The composition of each alloy is shown in Table 1.
TABLE 1SampleCuPbZnTePSnABalance5.100.50.011—BBalance0.008.820.57.001—C83.030.06Balance.0520.050.11D59.410.02Balance0.170.05—
[0024]The billets were then changed into an extrusion press at a temperature ranging from about 780° C. to about 860° C. The billets were then hot extruded through a variety of dies and at different pressures to produce numerous sizes. Each shot was lubricated prior to extrusion and the extrusion dies were preheated. The results are shown in Table 2.
TABLE 2SampleFinal Draw SizeShot TempPressureLengthA131.75 mm808° C.234 MPa 12 mA275.40 mm822° C.268 MPa18.5 mA319.05 mm803° C.305 MPa 34 mB131.75 mm794° C.267 MPa 12 mB225.40 mm800° C.289 MPa18.5 mB319.05 mm806° C.304 MPa 34 mB412.70 mm870° C.265 MPa 67 mC1a25.40 mm830° C.298 MPa18.4 mC1b25.40 mm867° C.280 MPa18.4 mC2a50.80 mm7...
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