<div dir="ltr">Hi Thomas,<div><br></div><div>Thank you very much for your response. Is there a published graph of how the ramp up or ramp down algorithm scales? Is there a reference with the scaling equation?</div><div><br></div><div>Best Regards,</div><div>Dev<br><div><br>On Monday, April 27, 2020 at 7:26:39 PM UTC-4, tkuehne wrote:<blockquote class="gmail_quote" style="margin: 0;margin-left: 0.8ex;border-left: 1px #ccc solid;padding-left: 1ex;"><div style="word-wrap:break-word;line-break:after-white-space">Nope, <div><br></div><div>values smaller are for annelaing/quenching, whereas values </div><div>larger than 1 can be used to exponentially increase the </div><div>temperature. The value is used to rescale the temperature, </div><div>which is then used as the target temperature for your </div><div>thermostat. </div><div><br></div><div>Cheers, </div><div>Thomas<br><div><br><blockquote type="cite"><div>Am 27.04.2020 um 23:58 schrieb Dev Rana <<a href="javascript:" target="_blank" gdf-obfuscated-mailto="_qZCtNmfAwAJ" rel="nofollow" onmousedown="this.href='javascript:';return true;" onclick="this.href='javascript:';return true;">d...@gmail.com</a>>:</div><br><div><div dir="ltr">Thanks Thomas!<div><br></div><div>I'm assuming that values higher than 1 are for annealing, and values lower than 1 are for quenching?</div><div><br></div><div>Is there a specific way of using this function either by itself or with a thermostat?</div><div><br></div><div>Is there a tutorial or sample code you can refer me to?</div><div><br></div><div>Best Regards,</div><div>Dev<br><br>On Monday, April 27, 2020 at 5:29:48 PM UTC-4, tkuehne wrote:<blockquote class="gmail_quote" style="margin:0;margin-left:0.8ex;border-left:1px #ccc solid;padding-left:1ex"><div style="word-wrap:break-word;line-break:after-white-space">Dear Dev, <div><br></div><div>this can be done using TEMPERATURE_ANNEALING. </div><div>Values smaller and larger than 1 are necessary for either </div><div>case. </div><div><br></div><div>Cheers, </div><div>Thomas<br><div><br><blockquote type="cite"><div>Am 27.04.2020 um 21:24 schrieb Dev Rana <<a rel="nofollow">d...@gmail.com</a>>:</div><br><div><div dir="ltr">Hello Friends! Hopefully everyone is staying safe during these crazy times.<div><br></div><div>I'm modeling metal aluminum conformations and relaxation due to heat.<br><div><br></div><div>I'm attempting to take a solid aluminum block (Al) at 298K from crystal and take it to a molten state at 1000K. After some time at 1000K, when the block begins to exhibit equilibrium conditions, I'd like to take it back to a solid room temperature state at 298K. What is the best method to accomplish this? I'm using a CSVR thermostat currently at 1000K. But I'm not sure how to accomplish the annealing (298K to 1000K), quenching (1000K to 298K), and tempering (400K) steps or how to use the annealing function to accomplish all of these three.</div><div><br></div><div>Any advice would be fantastic!</div><div><br></div><div>Thanks!</div><div>Dev</div></div></div><div><br></div>

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