C64775-EH C64790-EH銅合金性能耐沖壓
兩相黃銅(從H63至H59),合金組織中除了具有塑性良好的α相外,還出現了由電子化合物CuZn為基的β固溶體。β相在高溫下具有很高的塑性,而低溫下的β′相(有序固溶體)性質硬脆。故(α+β)黃銅應在熱態下進行鍛造。含鋅量大于46%∼50%的β黃銅因性能硬脆,不能進行壓力加工。
力學性能
LM’s comparison list between different
norms from Copper alloys
Please read below on the wished for trade-name in the left hand column, and get it translated into LM-language on the right-hand
column. The right hand column with our name is either identical in composition or a fully replaceable alloy with only minor differences.
The column in the middle states the norm and its country of origin.
With no marks in front of LM’s alloy = alloy is identical, with this sign “~” = alloy is very similar, fully replaceable.
Product name Country of origin LM’s trade name by or order/inquiry
Cu Sn6 German standard / DIN 17662, Zinnbronzen Cu Sn6, CW452K
Cu Sn8, Cu Sn8 P German standard / DIN 17662, Zinnbronzen Cu Sn8, CW453K, Cu Sn8 P, CW459K
Cu Sn4 Pb4 Zn4 German standard / DIN 17662, Zinnbronzen Cu Sn4 Pb4 Zn4, CW456K
Cu Ni12 Zn24 German std. / DIN 17663, Kupfer-Nickel (Neusilber) SS 5243 (nysilver), viss tillg nglighet
黃銅中由于含鋅量不同,機械性能也不一樣,黃銅的機械性能隨含鋅量不同而變化。對于α黃銅,隨著含鋅量的增多,σb和δ均不斷增高。對于(α+β)黃銅,當含鋅量增加到約為45%之前,室溫強度不斷提高。若再進一步增加含鋅量,則由于合金組織中出現了脆性更大的r相(以Cu5Zn8化合物為基的固溶體),強度急劇降低。(α+β)黃銅的室溫塑性則始終隨含鋅量的增加而降低。所以含鋅量超過45%的銅鋅合金無實用價值。
普通黃銅的用途很為廣泛如水箱帶、供排水管、獎章、波紋管、蛇形管、冷凝管、 殼及各種形狀復雜的沖制品、小五金件等。隨著鋅含量的增加從H63到H59,它們均能很好地承受熱態加工,多用于機械及電器的各種零件、沖壓件及樂器等處。
為了提高黃銅的耐蝕性、強度、硬度和切削性等,在銅-鋅合金中加入少量(一般為1%∼2%,少數達3%∼4%,很個別的達5%∼6%)錫、鋁、錳、鐵、硅、鎳、鉛等元素,構成三元、四元、甚至五元合金,即為復雜黃銅,亦稱特殊黃銅。
C64775-EH C64790-EH銅合金性能耐沖壓