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    • 31. 发明申请
    • SYSTEM FOR MEASURING GLASS TRANSITION TEMPERATURE OF A POLYMER
    • 测量聚合物玻璃过渡温度的系统
    • US20160153921A1
    • 2016-06-02
    • US14558646
    • 2014-12-02
    • KUWAIT INSTITUTE FOR SCIENTIFIC RESEARCH
    • SALAH T. AL-ENEZI
    • G01N25/04G01N33/38
    • G01N25/04G01N33/386G01N33/44
    • A system for measuring glass transition temperature of a polymer can include a cell having a closed bottom and a peripheral wall extending from the bottom, a sample holder having a first supporting pin and a second supporting pin spaced apart from the first supporting pin, a loading probe in the cell for selectively contacting a polymer sample disposed on the sample holder, a temperature probe in the cell, a heater in the cell, a temperature sensor, a source of pressure, a source of gas in communication with the cell, and a data acquisition system operably connected to the loading probe, the temperature probe and the source of pressure. The first and second supporting pins and the loading probe in the cell provide a three-point flexural bending assembly for measuring bending of the polymer sample under varied conditions of temperature and pressure in the presence of a gas.
    • 用于测量聚合物的玻璃化转变温度的系统可以包括具有封闭底部和从底部延伸的周壁的电池,具有第一支撑销和与第一支撑销间隔开的第二支撑销的样品架,负载 在电池中探针,用于选择性地接触设置在样品架上的聚合物样品,电池中的温度探针,电池中的加热器,温度传感器,压力源,与电池连通的气体源,以及 数据采集​​系统可操作地连接到加载探头,温度探头和压力源。 电池中的第一和第二支撑销和负载探针提供三点弯曲弯曲组件,用于在存在气体的情况下在不同的温度和压力条件下测量聚合物样品的弯曲度。
    • 34. 发明授权
    • Gob inspection system for glass product
    • 玻璃制品检验系统
    • US09019365B2
    • 2015-04-28
    • US13823399
    • 2010-09-17
    • Koichi Akaji
    • Koichi Akaji
    • G01T5/00G06T7/00B07C5/34G01N21/85G01N33/38G01N21/958G01N21/896
    • G06T7/0004B07C5/3408C03B7/005C03B7/10C03B7/16G01B11/24G01N21/85G01N21/896G01N21/958G01N33/386Y02P40/57
    • The problem is solved by generating a gob image A by capturing, with a line scanning camera, an image of a falling gob that has been cut off at an orifice; generating an image B by binarizing the gob image A with a boundary value that turns a general part of the gob black and turns a peripheral lustrous portion and a defect of the gob white; generating an image C by binarizing the gob image A with a boundary value that turns the entire gob white and turns a background black and inverting the black and white; generating an image D by combining the image B and the image C together; setting a region located a given number of pixels inside an outer edge of the black area of the image D as an inspection region; and inspecting the inspection region of the gob image A to determine whether the gob is good.
    • 通过用线扫描照相机捕获已经在孔口处被切断的下降料滴的图像来生成料滴图像A来解决该问题; 通过将料滴图像A二次化来生成图像B,边界值使得料滴的一般部分变黑,并使周边光泽部分和料滴的缺陷为白色; 通过利用将整个料滴白化并使背景变黑并使黑白反转的边界值来二值化图案A来生成图像C. 通过将图像B和图像C组合在一起生成图像D; 将位于图像D的黑色区域的外边缘内的给定数量的像素的区域设置为检查区域; 并检查料滴图像A的检查区域以确定料滴是否良好。
    • 38. 发明申请
    • GOB INSPECTION SYSTEM FOR GLASS PRODUCT
    • GOB玻璃产品检测系统
    • US20130176421A1
    • 2013-07-11
    • US13823399
    • 2010-09-17
    • Koichi Akaji
    • Koichi Akaji
    • G06T7/00
    • G06T7/0004B07C5/3408C03B7/005C03B7/10C03B7/16G01B11/24G01N21/85G01N21/896G01N21/958G01N33/386Y02P40/57
    • The present invention addresses the problem of facilitating detection of foreign objects or bubbles trapped in a gob.The problem is solved by generating a gob image A by capturing, with a line scanning camera, an image of a falling gob that has been cut off at an orifice; generating an image B by binarizing the gob image A with a boundary value that turns a general part of the gob black and turns a peripheral lustrous portion and a defect of the gob white; generating an image C by binarizing the gob image A with a boundary value that turns the entire gob white and turns a background black and inverting the black and white; generating an image D by combining the image B and the image C together; setting a region located a given number of pixels inside an outer edge of the black area of the image D as an inspection region; and inspecting the inspection region of the gob image A to determine whether the gob is good.
    • 本发明解决了容易检测被捕获在料滴中的异物或气泡的问题。 通过用线扫描照相机捕获已经在孔口处被切断的下降料滴的图像来生成料滴图像A来解决该问题; 通过将料滴图像A二次化来生成图像B,边界值使得料滴的一般部分变黑,并使周边光泽部分和料滴的缺陷为白色; 通过利用将整个料滴白化并使背景变黑并使黑白反转的边界值来二值化图案A来生成图像C. 通过将图像B和图像C组合在一起生成图像D; 将位于图像D的黑色区域的外边缘内的给定数量的像素的区域设置为检查区域; 并检查料滴图像A的检查区域以确定料滴是否良好。