Abstract:
본 발명은 화학강화를 이용한 강화유리 제조장치 및 제조방법에 관한 것으로, 본 발명은 판유리를 제1,2차예열부에서 단계별로 승온시켜 예열하고, 화학강화부의 질산칼륨 용액내에서 칼륨 이온으로 치환한 후, 제1,2차서냉부에서 1,2차 서냉과정을 거쳐 냉각하며, 세척부에서 유리의 안정성을 확보한 상태로 미세한 기포에 의해 세척함으로써, 유리의 표면에 압축응력을 부가하여 강화유리를 제조함에 있어 제조공정 시간을 최대한 단축하여 수율을 크게 향상시킴과 아울러 불량률을 개선하고, 판유리의 규격에 관계없이 박판 및 후판과 같은 모든 판유리를 화학 강화유리로 제조할 수 있도록 한 것이다.
Abstract:
본 발명은 적어도 한 장 이상의 진공창용 유리판을 운반할 수 있도록 유리판이 안착되는 파레트에 관한 것으로서, 유리판을 지지하는 적어도 하나 이상의 유리 지지대가 상면에 설치되는 프레임; 상기 프레임의 일측면에 설치되고, 상기 유리판을 선택적으로 고정시키는 유리판 고정부재; 및 상기 프레임의 다른 일측면에 설치되고, 상기 프레임이 이동될 수 있도록 이동체와 맞물리는 물림 부재;를 포함하기 때문에 열팽창에 의한 변형이나 외부 충격이 발생하더라도 복수개의 진공창용 유리판을 자동화 라인을 따라 장비에서 장비로 안전하게 운반할 수 있는 효과를 갖는다.
Abstract:
A glass sheet guidance apparatus includes a guidance member extending adjacent a conveyance path. In one example, an adjustment device selectively adjusts a length of the guidance member extending between a first holding structure and a second holding structure. In another example, the glass sheet guidance apparatus is configured to traverse a length of the guidance member and the glass sheet in a common direction of a conveyance path. Further examples include methods of guiding a glass sheet with the glass sheet guidance apparatus. In still further examples a method of manufacturing a glass sheet includes guiding the glass sheet.
Abstract:
본 발명은 유리, 강판, 반도체용 웨이퍼 등과 같은 평판 이송물을 이송하는 장치에 있어서, 진공흡착패드를 복수로 배열설치하여 진공흡착패드에 의해 평판 이송물을 석션 그립핑함과 동시에 평판 이송물을 센터링 정렬하고, 평판 이송물 간의 흡착 및 딸려올라감을 방지하면서 안전하게 이송할 수 있도록 한 평판 이송물 정렬픽업 이송장치에 관한 것르오, 더욱 상세하게는, 평판 이송물을 흡착하여 이송할 수 있도록 수평으로 배열 설치되는 1개 이상의 진공흡착패드와; 상기 진공흡착패드의 하측방향 둘레를 따라 하향으로 갈수록 넓어지는 상협하광형태로 설치되어 상기 진공흡착패드 중앙방향으로 평판 이송물의 센터링을 유도하는 가이드부재와; 평판 이송물의 측면에 설치되어 평판 이송물이 센터링되거나, 평판 이송물 간의 흡착 및 딸려올라감이 방지되도록 평판 이송물 방향으로 측면수평 및 측면상향경사방향 유체를 분사하는 유체분사노즐을 포함하여 구성되는 것을 특징으로 하는 평판 이송물 정렬픽업 이송장치에 관한 것이다.
Abstract:
In an embodiment of the invention, a tong assembly for handling glass articles such as bottles, jars, and the like during the manufacture of same, utilizes replaceable matched pairs of components that vertically seat and are captured on features on the pair of tongs. The components may be in an interlocking, gravity restrained engagement and that may be replaced by lifting the components out of their interlocking engagement, removing them and replacing same by lowering the replacement components into the interlocking engagement whereby the replacement components are then captured and constrained by pairs of engagement surfaces. Lowering may be by lowering the entirety of the insert or lowering a portion such as the component is rotated into seating engagement. The components may be inserts held in place with the resiliency of spring clips that are themselves retained on the inserts also by the spring clips resiliency. Matched pairs of components are movable toward and away from one another as the tongs are closed and opened for grasping and releasing the upper portions of glass articles such as bottles and jars. The matched pair of components may be inserts for engaging the upper portion of the glass articles, the inserts captured within interlocking portions of takeout jaws. The matched pair of components may be protective covers.
Abstract:
Verfahren und Vorrichtung zur Umkehr der Beschickung einer Sputter-Beschichtungsanlage, insbesondere bei der Beschichtung eines photovoltaischen Moduls, in Reinräumen, mit den folgenden Merkmalen: a) einem Transportrahmen (11) zur Aufnahme einer Substratscheibe (19) eines photovoltaischen Moduls, b) einer Dreheinrichtung mit Mitteln zur Halterung des Transportrahmens (11), mit Mitteln zum Drehen des Transportrahmens (11) und mit Mitteln zum Transport des Transportrahmens (11), c) Mittel zur genauen Ausrichtung der Dreheinrichtung in Bezug zur Sputter-Beschichtungsanlage, d) einer Detektiereinrichtung (18) zur Prüfung eines Sputter-Prozesses, und Computerprogramm mit einem Programmcode zur Durchführung der Verfahrensschritte.
Abstract:
Methods for heat treating glass sheets (13) are disclosed in which the sheets (13) are held in a vertical orientation in a treatment container (15) during the heat treatment. The container (15) includes a support system for the glass sheets (13) that comprises a bottom support (17), two side supports (19a, 19b), and a top support (21). The sheets (13) are slid into the container (15) without contact between their side edges (23a, 23b) and the side supports (19a, 19b). The top support (21) is then slid onto the tops of the sheets (13) without contacting the sheets' top edges (25). In certain embodiments, flushing air which has been HEPA filtered and pre-heated is passed through the container (15) during the heat treatment. Apparatus for practicing the methods of the invention are also disclosed.
Abstract:
Apparatus and a method for forming glass sheets includes a topside transfer platen (44) that releases a heated glass sheet onto a mold supported in an upper position by a mold support frame assembly (62) which then moves the mold vertically downward and rotationally to a lower position for movement horizontally on a track (66) from below the topside transfer platen for continuation of the forming. The apparatus includes an elevator mechanism (84) having a pair of elevators (86) and an associated pair of actuators (88) that are movable different extents in order to provide the vertical and rotational movement of the mold frame support assembly (62).
Abstract:
The invention relates to a method for bending an outer and an inner glass pane of bent composite security glass sheets according to a predetermined curvature. The bending press has a bending station, an outer glass pane discharging station, an inner glass pane discharging station, and a transport shuttle between the bending station and the discharging station. The glass panes which are to be bent are introduced into the bending station one by one using a transfer path and are bent in the bending station according to the predetermined curvature of the composite security glass sheets. The outer and the inner glass panes are subjected to optimized bending in the discharging station allocated thereto at a temperature which still lies in the lower bending temperature range. In order to carry out said bending process, the glass panes are lifted from the transport shuttle by means of a take-out device with at least one optimizing contour in its edge area. The glass panes are placed on the optimizing contour and undergo optimized bending as a result. The invention also relates to an installation for implementing said method.