发明名称 Calculation method and calculation device for sublimation interface temperature, bottom part temperature, and sublimation rate of material to be dried in freeze-drying device
摘要 [Object];To provide a calculation method and calculation device for an average sublimation interface temperature, bottom part temperature, and sublimation rate of the whole to-be-dried material introduced into a drying chamber of a freeze-drying device without contaminating or collapsing the to-be-dried material.;[Solution];The present invention is applied to a freeze-drying device that includes a drying chamber DC, a cold trap CT, vacuum adjustment means for adjusting the degree of the vacuum in the drying chamber DC, and a control device CR for automatically controlling the operations of the above elements. The control device CR stores a required relational expression and a calculation program, drives the vacuum adjusting means during a primary drying period of the to-be-dried material to temporarily change the drying chamber's degree of vacuum Pdc in an increasing direction, and calculates the average sublimation interface temperature Ts, bottom part temperature Tb, and sublimation rate Qm of the to-be-dried material during the primary drying period in accordance with the relational expression and with measured data including the drying chamber's degree of vacuum Pdc and the cold trap's degree of vacuum Pdt, which are obtained before and after the temporary change.
申请公布号 US9488410(B2) 申请公布日期 2016.11.08
申请号 US201213984200 申请日期 2012.02.08
申请人 Kyowa Vacuum Engineering, Ltd. 发明人 Sawada Hiroyuki;Tonegawa Kazunori;Hosomi Hiroshi;Sunama Ryouji
分类号 F26B5/06 主分类号 F26B5/06
代理机构 Crowell & Moring LLP 代理人 Crowell & Moring LLP
主权项 1. A calculation method for a sublimation interface temperature and a sublimation rate of a material to be dried in a freeze-drying device, in the calculation method for the sublimation interface temperature, a bottom part temperature, and the sublimation rate of the material to be dried in the freeze-drying device comprising: a drying chamber (DC) into which the to-be-dried material is introduced; a cold trap (CT) for condensing and trapping water vapor generated from the to-be-dried material introduced into the drying chamber (DC); a main pipe (a) for providing communication between the drying chamber (DC) and the cold trap (CT); a main valve (MV) for opening and closing the main pipe (a); vacuum adjustment means for adjusting a degree of vacuum in the drying chamber (DC); vacuum detection means for detecting an absolute pressure in the drying chamber (DC) and an absolute pressure in the cold trap (CT); and a control device (CR) for automatically controlling operations of the drying chamber (DC), of the cold trap (CT), and of the opening adjustment means, wherein the control device (CR) stores a required relational expression and a calculation program, drives the vacuum adjustment means during a primary drying period of the to-be-dried material to temporarily change the degree of vacuum (Pdc) in the drying chamber (DC) in an increasing direction, and calculates an average sublimation interface temperature, an average bottom part temperature, and the sublimation rate of the to-be-dried material that prevail during the primary drying period in accordance with the relational expression and with measured data including at least the degree of vacuum (Pdc) in the drying chamber (DC) and the degree of vacuum (Pdt) in the cold trap (CT), which are obtained before and after the temporary change.
地址 Tokyo JP