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    • 2. 发明公开
    • METHOD AND APPARATUS FOR MOLDING OPTICAL DEVICE
    • VERFAHREN UND VORRICHTUNG ZUM FORMEN VON OPTISCHEN BAUTEILEN
    • EP1108688A1
    • 2001-06-20
    • EP00917398.0
    • 2000-04-21
    • MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
    • KAMOHARA, KiyotakaFUJII, TakeyukiKAITO, HiroakiNOGUCHI, ToshihikoSAKAI, Yasuyuki
    • C03B11/12C03B11/00
    • C03B11/16C03B11/08C03B11/122C03B2215/60
    • The present invention provides a method and an apparatus for forming an optical element readily and stably by measuring a change in the shape of a glass material and using its data for the forming process without injuring the glass material and its molds. The apparatus comprises, for heating and forming the glass material (1) into a desired shape, an upper mold (2) joined with a heating member (15) having heaters 6a built therein, a lower mold (3) joined with a heating member 16 having heaters 6b built therein, a set of an upper shaft (7), a lower shaft (8), and a cylinder (9) for applying two or more level of the forming pressure, a nozzle 13 for holding and conveying the glass material (1), a rotary table (11) having a group of pockets (12) provided therein, means for calculating and controlling the speed of a movement of the molds, means for gradually increasing or decreasing the forming pressure in response to the speed of the movement of the molds to control the forming process, a sensor (10) for measuring the movement of the mold, and means for performing a controlling the forming process according to a setting temperature which is higher than the transition temperature of the glass material (1), the movement of the molds, and the speed of the movement of the molds.
    • 本发明提供一种用于通过测量玻璃材料的形状变化并且使用其数据进行成型而不损伤玻璃材料及其模具而容易且稳定地形成光学元件的方法和装置。 该装置包括用于将玻璃材料(1)加热和成形为所需形状的上模具(2),其与内置加热器6a的加热构件(15)接合,下模具(3)与加热构件 16,其内置有加热器6b,一组上轴(7),下轴(8)和用于施加两级或更多级成形压力的气缸(9),用于保持和输送玻璃的喷嘴13 材料(1),具有设置在其中的一组袋(12)的旋转台(11),用于计算和控制模具移动速度的装置,用于响应于速度逐渐增加或减小成形压力的装置 模具的移动以控制成形过程,用于测量模具运动的传感器(10),以及用于根据高于玻璃材料的转变温度的设定温度进行成型处理的控制装置 (1),模具的运动,以及 模具运动的速度。
    • 3. 发明公开
    • Method and apparatus for parallel alignment of opposing mold surfaces
    • Verfahren und Vorrichtung zum parallel Ausrichten von gegenseitigenMatrizoberflächen。
    • EP0508065A2
    • 1992-10-14
    • EP92102706.6
    • 1992-02-19
    • Corning Incorporated
    • Menihan, Robert Merrick, Corning IncorporatedPitbladdo, Richard Bruce, Corning IncorporatedTrentelman, Jackson Phelps, Corning Incorporated
    • C03B11/06C03B11/12
    • C03B11/06C03B2215/60G11B7/26
    • In a mold apparatus, the receiving molding surface and the opposing molding surface are each mounted coaxially and in sliding fashion within an alignment means. Both of these alignment means have an equal number of spaced apart alignment pads which are positioned such that opposing pads will be in cooperable engagement with each other during pressing.
      Utilizing the disclosed apparatus, a method for molding precisely shaped articles, such as magnetic memory disc substrates which require precisely parallel, opposite molded surfaces, is described. Simply stated, the method utilizes the alignment pads' thermal expansion characteristics to induce a controlled level of thermal distortion to obtain pad lengths which result in parallel opposing molding surfaces. There are two means for accomplishing this pad length required for parallel molding surfaces: the first method, controlled heating, consists of introducing heat to a pad to cause it to expand, thereby extending the length thereof; the second method, controlled cooling, consists of introducing cooling to a pad to cause it to contract, thereby shortening the length thereof.
      Once pad lengths are adjusted and thus the molding surfaces are parallel, the glass article may be pressed. This method is suitable for press molding any glass article which requires parallel opposing surfaces, regardless of the article's thickness.
    • 在模具设备中,接收成型表面和相对的成型表面各自以对齐方式同轴地并且以滑动方式安装。 这两个对准装置都具有相等数量的间隔开的对准焊盘,其定位成使得相对的焊盘在压制期间将彼此协作地接合。 利用所公开的装置,描述了精确成型制品的成型方法,例如需要精确平行的相对模制表面的磁记录盘基片。 简单地说,该方法利用对准焊盘的热膨胀特性来诱导受控的热变形水平以获得导致平行相对的成型表面的焊盘长度。 实现平行成型表面所需的该垫长度有两种方法:第一种方法,受控加热,包括将热量引入衬垫以使其膨胀,从而延长其长度; 第二种方法是控制冷却,其特征在于:将冷却液引入衬垫以使其收缩,从而缩短其长度。 一旦衬垫长度被调节并且因此模制表面是平行的,则玻璃制品可以被按压。 该方法适用于任何需要平行相对表面的任何玻璃制品的压制成型,而与制品的厚度无关。
    • 8. 发明公开
    • Precision device molding machine and method of molding by using it
    • PräzisionsvorrichtungfürFormmaschine und Verfahren zur Verwendung derselben
    • EP1177887A2
    • 2002-02-06
    • EP01110614.3
    • 2001-04-30
    • MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
    • Kamohara, KiyotakaFujii, TakeyukiKaito, Hiroaki
    • B30B15/00
    • B30B15/007C03B11/08C03B2215/60
    • The present invention provides a precision device molding machine and a molding method to make it possible for an adjustment of parallelism to be performed with a high degree of accuracy and excellent workability. The precision device molding machine includes a parallelism adjustment mechanism held by a supporting plate (3,7,8,8a,15), a pressure applying plate (1) that is movable up and down, a lower die (13b) disposed on the upper surface of the pressure applying plate and an upper die (13a) disposed on the parallelism adjustment mechanism, The parallelism adjustment mechanism includes a pressure receiving member (3,15), an adjusting plate (8,8a), a transmitting member (7,7a) disposed between the pressure receiving member and the adjusting plate, a fixed fulcrum (7) and an operating member (10,10a). By having the operating member (10,10a) manipulated, the adjusting plate (8,8a) is moved, the pressure receiving member (3,15) is slanted via the transmitting member (7,7a) with the fixed fulcrum (7) acting as a pivot and the gradient of the pressure receiving member (3,15) is adjusted, thereby allowing the parallelism between the upper die (13a) and the lower die (13b) to be adjusted and allowing a compound in a cavity formed with the molding die to be molded. Preferably, the adjusting plate has two adjusting plates (8,8a) and the respective adjusting plates are located on the apexes of a regular triangle and each respective adjusting plate (8,8a) has a slanting surface.
    • 本发明提供了一种精密装置成型机和成型方法,可以以高精度和优异的可加工性进行平行度的调整。 精密装置成型机包括由支撑板(3,7,8,8a,15)保持的平行度调节机构,可上下移动的加压板(1),设置在 压力施加板的上表面和设置在平行度调节机构上的上模(13a)。平行度调节机构包括受压构件(3,15),调节板(8,8a),传递构件(7) ,7a),设置在压力接收构件和调节板之间,固定支点(7)和操作构件(10,10a)。 通过操作操作构件(10,10a),调节板(8,8a)移动,压力接收构件(3,15)经由传动构件(7,7a)与固定支点(7)倾斜, 作为枢轴并且调节压力接收构件(3,15)的梯度,从而允许上模(13a)和下模(13b)之间的平行度被调节并且允许在形成有空腔 待模制的模具。 优选地,调节板具有两个调节板(8,8a),并且相应的调节板位于正三角形的顶点上,并且每个相应的调节板(8,8a)具有倾斜表面。