c5那个1800mpa的钢材是屈服强度,还是拉伸强度

2025年04月06日 15:17
有2个网友回答
网友(1):

钢材或试样在拉伸时,当应力超过弹性极限,即使应力不再增加,而钢材或试样仍继续发生明显的塑性变形,称此现象为屈服,而产生屈服现象时的最小应力值即为屈服点。设Ps为屈服点s处的外力,Fo为试样断面积,则屈服点σs=Ps/Fo(MPa),MPa称为兆帕等于N(牛顿)/mm2,(MPa=106Pa,Pa:帕斯卡=N/m2)2.屈服强度(σ0.2)有的金属材料的屈服点极不明显,在测量上有困难,因此为了衡量材料的屈服特性,规定产生永久残余塑性变形等于一定值(一般为原长度的0.2%)时的应力,称为条件屈服强度或简称屈服强度σ0.2。3.抗拉强度(σb)材料在拉伸过程中,从开始到发生断裂时所达到的最大应力值。它表示钢材抵抗断裂的能力大小。与抗拉强度相应的还有抗压强度、抗弯强度等。设Pb为材料被拉断前达到的最大拉力,Fo为试样截面面积,则抗拉强度σb=Pb/Fo(MPa)。4.伸长率(δs)材料在拉断后,其塑性伸长的长度与原试样长度的百分比叫伸长率或延伸率。5.屈强比(σs/σb)钢材的屈服点(屈服强度)与抗拉强度的比值,称为屈强比。屈强比越大,结构零件的可靠性越高,一般碳素钢屈强比为0.6-0.65,低合金结构钢为0.65-0.75合金结构钢为0.84-0.86。

网友(2):

美国潜艇的钢材屈服强度500多Mpa,汽车的一般300左右就不错了

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