LSDYNA中空物質(zhì)材料的關(guān)鍵字定義
*MAT_NULL
編號(hào)9的材料
Purpose: This command provides the coupling mechanism for modeling Fluid-Structure Interaction (FSI). The structure can be constructed from Lagrangian shell and/or solid entities. The multi-material fluids are modeled by ALE formulation.
該命令提供了對(duì)液體-結(jié)構(gòu)相互作用進(jìn)行建模的耦合機(jī)制。結(jié)構(gòu)能夠從拉格朗日殼體和/或固體實(shí)體中建模,多組分材料液體由ALE公式建模。
Card 1 |
1 |
2 |
3 |
4 |
5 |
6 |
7 |
8 |
Variable |
MID |
RO |
PC |
MU |
TEROD |
CEROD |
YM |
PR |
Type |
A8 |
F |
F |
F |
F |
F |
F |
F |
Default |
none |
none |
0.0 |
0.0 |
0.0 |
0.0 |
0.0 |
0.0 |
MID:材料ID,獨(dú)有的數(shù)字或標(biāo)識(shí),不超過(guò)8個(gè)字母
RO:質(zhì)量密度
PC:壓力切斷值(<=0.0)
MU:動(dòng)態(tài)黏度系數(shù)(可選值)
TEROD:相對(duì)體積,V/V0’ 拉伸侵蝕,通常使用大于1的值,如果等于零則拉伸侵蝕關(guān)閉
CEROD:相對(duì)體積,V/V0’ 壓縮侵蝕,通常使用小于1的值,如果等于零則壓縮侵蝕關(guān)閉YM:楊氏模量(僅對(duì)固體和厚殼體適用)
PR:泊松比(僅對(duì)固體和厚殼體適用)
*EOS_GRUNEISEN
Card 1 |
1 |
2 |
3 |
4 |
5 |
6 |
7 |
8 |
Variable |
EOSID |
C |
S1 |
S2 |
S3 |
GMMA0 |
A |
E0 |
Type |
A8 |
F |
F |
F |
F |
F |
F |
F |
Card 2 |
1 |
|||||||
Variable |
V0 |
|||||||
Type |
F |
EOSID:狀態(tài)方程ID
C,Si,GMMA0:狀態(tài)方程中的常數(shù)
A:一階體積更正系數(shù)
E0:初始內(nèi)能
V0:初始相對(duì)體積
%--------------------------------------------------------%
水和空氣需要定義狀態(tài)方程
%--------------------------------------------------------%
空氣
*MAT_NULL
RO=1.25 kg/m3, PC= -1.0pa(<0), MU=1. 7456E-5(動(dòng)力粘性系數(shù))
*EOS_LINEAR_POLYNOMIAL
1 ,0 Gpa,0 Gpa,0 Gpa,0,0.4 ,0.4 ,0 , 253312.5,1.0
-------------------------------------------------------- 量綱為g-cm-us
*MAT_NULL
$ mid ro pc mu terod cerod vm pr
3 0.125e-02 -1.0E-12 1.749E-7 00000 0000 00 00
$
*EOS_GRUNEISEN
$ EOSID C S1 S2 S3 GAMMO A E0
3 0.3444 00000 0000 00000 1.40 00 00
V0
00
$
/*EOS_LINEAR_POLYNOMIAL
$ EOSID c0 c1 c2 c3 c4 c5 c6 e0 v0
3 0 0 0 0 0.4 0.4 0 2.5000E-6 1
%--------------------------------------------------------%
PC 為pressure cutoff 壓力界限 MU為viscosity coeff 動(dòng)力粘性系數(shù)
%--------------------------------------------------------%
水
*MAT_NULL
3 1, RO=998.21 kg/m3,PC= -10.0 pa,MU=0.8684E-3, 0, 0, 0, 0
C:1480m/s,S1: 2.56,S2 :-1.986,S3 :0.2268, γ:0.4934,A:0.47,E0:0,V0:1
-------------------------------------------------------- 量綱為g-cm-us
*MAT_NULL
$ MID RO PC MU TEROD CEROD VM PR
1 0.998 -1.0E-11 0.8684E-3 00000 0000 00 00
*EOS_GRUNEISEN
$ EOSID C S1 S2 S3 GAMMO A E0
1 1.65 1.92 -0.096 0.0 0.350 0.0 0.0
V0
0.0
--------------------------------------------------------
-------------------------------------------------------- 量綱為kg-m-s
*MAT_NULL
1,998.21,-10.0, 0.8684E-3,0.0,0.0,0.0,0.0
*EOS_GRUNEISEN
1,1.65,1.92, -0.096, 0.0, 0.350, 0.0,0.0
0.0
--------------------------------------------------------
GRUNEISEN方程是一種絕熱熵增的狀態(tài)方程,通常利用測(cè)量d-u線來(lái)決定方程的參數(shù),d-u線即沖擊波波速-波后質(zhì)點(diǎn)粒子速度曲線又叫Vs-Vp或Us- Up曲線,s即shock,p即particle,擬合該曲線采用s1,s2,s3三個(gè)系數(shù)來(lái)多項(xiàng)式擬合,c是粒子速度=0是的波速,即曲線在y軸的截距,又叫聲速,gama0是材料gruneisen參數(shù),a是對(duì)gama0的修正系數(shù),e0是初始內(nèi)能,常溫下通常設(shè)為0,v0是初始相對(duì)體積,即相對(duì)沒(méi)有任何變形的體積,初始無(wú)體應(yīng)變時(shí)則設(shè)為1。
典型的空材料輸入

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