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    • 3. 发明申请
    • Method of Optimizing Volume Utilization of An Autoclave
    • 高压灭菌器体积利用率优化方法
    • US20120173203A1
    • 2012-07-05
    • US12983566
    • 2011-01-03
    • Shatil SinhaRam UpadhyayNicholas KrayJian MiThomas Lednicky
    • Shatil SinhaRam UpadhyayNicholas KrayJian MiThomas Lednicky
    • G06F17/50
    • B01J3/04B29C35/0227
    • A method of optimizing an autoclave volume utilization includes, in an exemplary embodiment, determining process parameters of an autoclave; modeling an autoclave configuration to determine airflow patterns in the autoclave, temperature variation throughout the autoclave, and the distribution of turbulent intensity in the autoclave; and modifying the autoclave configuration with hardware changes to the autoclave to alter the airflow patterns in the autoclave. The method also includes modeling the modified autoclave configuration to determine modified airflow patterns in the autoclave, modified temperature variation throughout the autoclave, and the modified distribution of turbulent intensity in the autoclave; and modeling the modified autoclave configuration with parts to be cured in the modified autoclave configuration to determine an arrangement of parts that maximizes the number of parts in the autoclave that meet predetermined cured properties of the parts.
    • 在一个示例性实施方案中,优化高压釜体积利用的方法包括确定高压釜的工艺参数; 对高压釜构造进行建模以确定高压釜中的气流模式,整个高压釜内的温度变化以及高压釜中湍流强度的分布; 并且用高压釜的硬件改变来改变高压釜配置以改变高压釜中的气流模式。 该方法还包括对改进的高压灭菌器配置进行建模以确定高压釜中的改变的气流模式,整个高压釜中的改变的温度变化以及高压釜中湍流强度的改变分布; 以及在改进的高压釜结构中对要修复的待固化部件对改进的高压釜构造进行建模,以确定最大化高压釜中部件数量达到预定固化性能的部件的布置。
    • 4. 发明授权
    • Method of optimizing volume utilization of an autoclave
    • 优化高压釜体积利用率的方法
    • US08457937B2
    • 2013-06-04
    • US12983566
    • 2011-01-03
    • Shatil SinhaRam UpadhyayNicholas KrayJian MiThomas Lednicky
    • Shatil SinhaRam UpadhyayNicholas KrayJian MiThomas Lednicky
    • G06G7/48
    • B01J3/04B29C35/0227
    • A method of optimizing an autoclave volume utilization includes, in an exemplary embodiment, determining process parameters of an autoclave; modeling an autoclave configuration to determine airflow patterns in the autoclave, temperature variation throughout the autoclave, and the distribution of turbulent intensity in the autoclave; and modifying the autoclave configuration with hardware changes to the autoclave to alter the airflow patterns in the autoclave. The method also includes modeling the modified autoclave configuration to determine modified airflow patterns in the autoclave, modified temperature variation throughout the autoclave, and the modified distribution of turbulent intensity in the autoclave; and modeling the modified autoclave configuration with parts to be cured in the modified autoclave configuration to determine an arrangement of parts that maximizes the number of parts in the autoclave that meet predetermined cured properties of the parts.
    • 在一个示例性实施方案中,优化高压釜体积利用的方法包括确定高压釜的工艺参数; 对高压釜构造进行建模以确定高压釜中的气流模式,整个高压釜内的温度变化以及高压釜中湍流强度的分布; 并且用高压釜的硬件改变来改变高压釜配置以改变高压釜中的气流模式。 该方法还包括对改进的高压灭菌器配置进行建模以确定高压釜中的改变的气流模式,整个高压釜中的改变的温度变化以及高压釜中湍流强度的改变分布; 以及在改进的高压釜结构中对要修复的待固化部件对改进的高压釜构造进行建模,以确定最大化高压釜中部件数量达到预定固化性能的部件的布置。