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    • 21. 发明申请
    • Prism and method for producing the same
    • 棱镜及其制造方法
    • US20050122601A1
    • 2005-06-09
    • US10507086
    • 2003-03-05
    • Hirokazu TakeuchiNagaharu NakajimaTadashi SetoMitsutaka Nakae
    • Hirokazu TakeuchiNagaharu NakajimaTadashi SetoMitsutaka Nakae
    • C03B23/047C03B33/06G02B5/04
    • G02B17/006C03B23/047C03B33/06G02B5/04G02B19/0019G02B19/0033
    • A prism is produced by the steps of feeding a glass base material into a heating furnace, the glass base material having surfaces to be prism surfaces after forming, the Ra value of the surface roughness of the surface being less than the Ra value corresponding to #170, the glass base material having a predetermined dimensional ratio, grasping the glass base material with feeding means, and feeding the glass base material into a heating furnace to heat the glass base material to a temperature so that a minimum viscosity of the glass base material becomes equal to or more than 104 Pa·s and less than 106 Pa·s, drawing and forming the lower portion of the glass base material, and then cutting the glass base material to obtain a longer body having a desired dimension and prism surfaces with the Ra value of the surface roughness equal to or less than a quarter of the wavelength of incident light, and cutting the longer body into desired length.
    • 通过以下步骤制造棱镜:将玻璃基材进料到加热炉中,玻璃基材在成形后具有作为棱镜面的表面,表面粗糙度的Ra值小于对应于# 170,具有预定尺寸比的玻璃基材,用进料装置夹持玻璃基材,并将玻璃基材进料到加热炉中以将玻璃基材加热到使玻璃基材的最小粘度 变成等于或大于10 4 Pa.s和小于10 6 Pa.s,拉制和形成玻璃基材的下部,然后切割 玻璃基材,以获得具有所需尺寸的长体和具有等于或小于入射光波长的四分之一的表面粗糙度的Ra值的棱镜表面,并将较长体切割成所需长度。
    • 22. 发明授权
    • Method of positioning and feeding fabric in sewing machine
    • 缝纫机定位和送料织物的方法
    • US5222451A
    • 1993-06-29
    • US836730
    • 1992-02-19
    • Kohichi AkahaneEtsuzo NomuraHirosumi ItoHirokazu Takeuchi
    • Kohichi AkahaneEtsuzo NomuraHirosumi ItoHirokazu Takeuchi
    • D05B21/00D05B33/00D05B35/00D05B35/10
    • D05B35/102D05B33/00
    • A fabric position correcting device detects the position of at least one of an outer profile line and a pattern of a fabric portion corresponding to one of pressers, corrects the position of the fabric portion while holding the same whose position has been detected, and presses the fabric portion with the presser after the position thereof has been corrected. The aligning process composed of the above three steps is carried out four times successively with respect to fabric portions corresponding to the respective pressers from the leading end of the fabric in the direction in which it is fed. Then, the positionally corrected fabrics are fed to the sewing start position. Therefore, the positional correction of the fabrics relative to at least one of the outer profile line and the pattern thereof can be accurately, reliably, and automatically carried out from the leading end to trailing end of the fabrics.
    • 织物位置校正装置检测与压紧件之一相对应的织物部分的外部轮廓线和图案中的至少一个的位置,同时保持其位置已被检测到的织物部分的位置,并且按压 在其位置被校正之后具有压脚的织物部分。 由上述三个步骤构成的对准处理相对于从织物的前端沿其进给方向相应于相应压力的织物部分连续进行四次。 然后,将位置校正织物送入缝制开始位置。 因此,织物相对于外轮廓线及其图案中的至少一个的位置校正可以从织物的前端到尾端精确而可靠地自动进行。