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    • 6. 发明授权
    • Optical element molding method
    • 光学元件成型法
    • US5549855A
    • 1996-08-27
    • US260969
    • 1994-06-15
    • Hiroshi NakanishiNorihisa SaitoToshinori AndoHisakazu Morinaga
    • Hiroshi NakanishiNorihisa SaitoToshinori AndoHisakazu Morinaga
    • B29C33/38B29C45/37B29C45/76B29D11/00B29L11/00G02B3/00G02B26/10G02B26/12
    • B29C33/3835B29C45/766B29D11/00009G02B26/124B29L2011/00Y10S425/808
    • It is an object of this invention to provide an optical element molding method capable of correcting local processing errors in an optical element without increasing the size of an apparatus or raising the manufacturing cost. To achieve this object, an optical element molding method includes the first step of setting molding conditions before molding of said optical element, such that a constant shape error is stably formed on an optical function surface of the optical element, the second step of dividing the optical function surface of the optical element to be molded under the molding conditions into a plurality of regions, and approximating the shape error by using a function so that the divided regions are continuous in the boundaries between the regions, the third step of processing the shape of the cavity surface of the optical-insert member into a shape by which the constant shape error is canceled, on the basis of the function obtained in the second step, and the fourth step of molding the optical element by using the optical insert member processed in the third step.
    • 本发明的目的是提供一种能够在不增加设备尺寸或提高制造成本的情况下校正光学元件中的局部加工误差的光学元件模制方法。 为了实现该目的,光学元件成型方法包括:在成型前设定成形条件的第一步骤,使得在光学元件的光学功能表面上稳定地形成恒定的形状误差;第二步骤, 在模塑条件下将要模制的光学元件的光学功能表面形成多个区域,并且通过使用功能来近似形状误差,使得分割区域在区域之间的边界中是连续的,处理形状的第三步骤 基于第二步骤中获得的功能,将光学插入构件的空腔表面形成为消除恒定形状误差的形状;以及第四步骤,通过使用加工的光学插入构件来模制光学元件 在第三步。
    • 8. 发明授权
    • Optical element, method of molding the same, and laser scanning optical
system
    • 光学元件,其成型方法和激光扫描光学系统
    • US6091532A
    • 2000-07-18
    • US652318
    • 1996-05-23
    • Hiroshi NakanishiNorihisa SaitoToshinori AndoHisakazu Morinaga
    • Hiroshi NakanishiNorihisa SaitoToshinori AndoHisakazu Morinaga
    • B29C33/38B29C45/37B29C45/76B29D11/00B29L11/00G02B3/00G02B26/10G02B26/12G02B26/08
    • B29C33/3835B29C45/766B29D11/00009G02B26/124B29L2011/00Y10S425/808
    • It is an object of this invention to provide an optical element molding method capable of correcting local processing errors in an optical element without increasing the size of an apparatus or raising the manufacturing cost. To achieve this object, an optical element molding method includes the first step of setting molding conditions before molding of said optical element, such that a constant shape error is stably formed on an optical function surface of the optical element, the second step of dividing the optical function surface of the optical element to be molded under the molding conditions into a plurality of regions, and approximating the shape error by using a function so that the divided regions are continuous in the boundaries between the regions, the third step of processing the shape of the cavity surface of the optical insert member into a shape by which the constant shape error is canceled, on the basis of the function obtained in the second step, and the fourth step of molding the optical element by using the optical insert member processed in the third step.
    • 本发明的目的是提供一种能够在不增加设备尺寸或提高制造成本的情况下校正光学元件中的局部加工误差的光学元件模制方法。 为了实现该目的,光学元件成型方法包括:在成型前设定成形条件的第一步骤,使得在光学元件的光学功能表面上稳定地形成恒定的形状误差;第二步骤, 在模塑条件下将要模制的光学元件的光学功能表面形成多个区域,并且通过使用功能来近似形状误差,使得分割区域在区域之间的边界中是连续的,处理形状的第三步骤 基于第二步骤中获得的功能,将光学插入构件的空腔表面形成为消除恒定形状误差的形状,以及第四步骤,通过使用加工成的光学插入构件来模制光学元件 第三步。