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工具材料的高溫硬度

An Investigation on High Temperature Hardness of Tool Materials

  • 摘要: 6種工業用合金工具鋼及7種WC-Co燒結合金維氏硬度(H)與溫度(T)關系的研究表明,經淬火-回火二次硬化處理的工具鋼,在回火溫度以下,可逆軟化與溫度呈線性關系,且各高速鋼可逆軟化系數很接近;提出了計算高速鋼500℃以下硬度的簡易公式。高于回火溫度時,工具鋼H-T關系復雜化,但直到700℃,影響高溫硬度的主要因素仍然是熱處理(二次硬化)達到的室溫硬度。WC-Co燒結合金的硬度在800℃以下和溫度呈線性關系,當Co ≤ 20%時,與鈷含量也呈顯著的線性關系;提出了由室溫硬度或鈷含量(3%~20%)計算800℃以下硬度的簡易公式。

     

    Abstract: The relationships between Yickers hardness (H) and Temperature (T) for six industry alloying tool steels and seven WC-Co sintered alloys have been investigated. When T is lower than tempered, the reversible softening value for tool steels undergone quenchingtempering secondary hardening treatment is a linear function of T. The diferences among reversible softening factors for various high speed steels (HSS) are very small. Hence, a simple relation to estimate the hardness of HSS at T below 500℃ is presented. When T is higher than tempered, the H-T relation of tool steels is complicated, but H is still mainly determined by the room temperature hardness after heat treatment. For WC-Co sintered alloys, the H-T relation is linear up to 800℃, and the relation between H and cobalt content (Co%) is also linear when Co<20%. The relation tor estimating hardness of WC-Co alloys from T (<800℃) and Co (3%-20%) is presented.

     

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