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-======Density data or specific volume====== 
  
-===== Input dialogue ===== 
- 
-The rheological data of the material is entered in the ‘Density’ tab: 
-  * **Solids density**: The density of the compact solid 
-  * **Bulk density**: The bulk density of the granulate or flakes. Is inevitably lower than the solid density 
-  * **Calculation type**: Optionally density function (with 3 parameters) or volume function (with 2 parameters). See below for details. 
- 
-{{ :materialdaten:rex171_mat_en_003.png?nolink |}} 
- 
-===== Theoretical basics ===== 
- 
-Both the density and the specific volume as well as the glass transition or crystalline 
-melting point can be determined from the pvT-diagrams. 
- 
-{{ :materialdaten:abb_pvt_diagramm_en.svg?600 |}} 
- 
-The crystallite melting temperature $T_K$ is defined by the inflection point of the specific volume function in the pvT diagram. The glass transition temperature $T_G$ can be determined as the intersection of the tangents at the upper and lower course of the volume function.  
- 
-==== Density function ==== 
- 
-The density function requires the three input values 
-  * **Specific density** $\rho_0$: Corresponds to the density extrapolated to 0 °C (by default for a pressure of 100 bar) 
-  * **Slope of the density function** $\rho_m$: Corresponds (for positive value) to the **decrease** in density per 1 °C 
-  * **Compressibility value** $\kappa$: Describes the pressure dependence of the density 
- 
-The temperature-dependent density of the melt can be described by the following linear equation  
- 
-\[ρ = ρ_0 - ρ_m \cdot T\] 
- 
-If only one density value is available, make sure that this value corresponds to the mass temperature in the process and that the gradient $\rho_m$ is zero. Otherwise, the value $ρ_0$ at $0 °C$ should be entered with the corresponding temperature dependence $\rho_m$. 
- 
-The compressibility factor $\kappa$ influences the density as a function of the pressure: 
- 
-$$ \kappa = - \frac{1}{V} \frac{dV}{dp} $$ 
-$$\text{with}$$ 
-$$\frac{dV}{V} = - \frac{d \rho}{\rho}$$ 
-$$\text{is}$$ 
-$$\frac{\Delta \rho}{\rho} = \kappa \cdot \Delta p$$ 
- 
-The value kappa can be imported directly from PAM or entered manually. If the value 0 is set for kappa, the density is calculated without taking the pressure into account.  
- 
-==== Volume function ==== 
- 
-The function of the specific volume as the reciprocal of the density contains only two parameters: 
- 
-\[v = v_0 + v_m \cdot T\] 
- 
-The two characteristic values $v_0$ and $v_m$ can also be determined from the pvT diagram, whereby the data must be determined at an average pressure corresponding to the process. \\ 
-The modelling of the specific volume cannot take pressure dependency into account. 
- 
-===Further topics=== 
-  * [[en:materialdaten:datenbankanbindung_an_pam|]] 
-  * [[en:materialdaten:allgemeineangaben|]] 
-  * [[en:materialdaten:rheologische_materialdaten|]] 
-  * [[en:materialdaten:thermodynamische_daten|]] 
-  * [[en:materialdaten:dichtedaten_bzw._spezifisches_volumen|]] 
-  * [[en:materialdaten:tribologische_daten|]] 
-  * [[en:materialdaten:technologische_daten|]] 
-  * [[en:materialdaten:molekulargewicht|]] 
-  * [[en:materialdaten:faserabbau|]] 
-  * [[en:materialdaten:eingabe_von_mischungen|]]