Abstract:
PURPOSE: To enhance the appearance and improve the strength and dimensional stability by constituting a door assembly from two skins having touch patterns formed thereon, a decorative member, a stopper and a means for retaining the decorative means. CONSTITUTION: This door assembly comprises a pair of compressed skins 11, 12 having outside surfaces 15, 22 with grain touch or rough touch, and stoppers 33 are integrally formed in positions of the skins 11, 12 where the outside surfaces of decorative members 30, 31 are flush with angles 19, 26 and angles 20, 27 when the decorative members 30, 31 are inserted between the skins 11, 12. A pair of decorative members 30, 31 made of PVC, wood, aluminum or other metals are formed. The decorative members 30, 31 are inserted between the skins 11, 12 and the decorative members 30, retained by adhesive layers formed thereon, and a core 13 consisting of a foamed body is filled in the internal space formed by the skins 11, 12 and the decorative members 30, 31 to form a door assembly 10.
Abstract:
A series of time-sequenced heat energy data arrays or data stream sets of a weld process region are processed by a weld data array or data stream processing system to produce a heat energy data set output that is related to weld process region features or weld process region heat energy data. The heat energy data set output can be displayed to a system user and modified by system user input to the weld data array or data stream processing system; alternatively, or in combination, the system user output and input, the heat energy data set output, or data produced from the heat energy data set output by the weld data array or data stream processing system, can be transmitted to a weld process controller to adjust parameters in the weld process responsive to the output of the weld data array or data stream processing system.
Abstract:
A series of time-sequenced heat energy data arrays or data stream sets of a weld process region are processed by a weld data array or data stream processing system to produce a heat energy data set output that is related to weld process region features or weld process region heat energy data. The heat energy data set output can be displayed to a system user and modified by system user input to the weld data array or data stream processing system; alternatively, or in combination, the system user output and input, the heat energy data set output, or data produced from the heat energy data set output by the weld data array or data stream processing system, can be transmitted to a weld process controller to adjust parameters in the weld process responsive to the output of the weld data array or data stream processing system.
Abstract:
Method and system for monitoring and controlling at least one of the plurality of quantifiable heat affected zone ("HAZ") characteristics in a weld of metal pieces provides a user with information concerning at least a first quantifiable HAZ characteristic for a weld, and also provides for control of an operating condition of a welding apparatus to obtain a weld having a quantifiable HAZ characteristic that satisfies success criteria relating to performance of the fabricated component.
Abstract:
High frequency electrical heating apparatus in which metal parts (10) are heated as they are advanced, either for annealing or forge welding purposes, and in which the electrical heating current is supplied by a solid state D.C. to A.C. inverter (2-5, 8) through a load matching and frequency control circuit (13) which maintains the desired load current and current frequency with changes in the load impedance caused by the metal parts (10) as they are advanced.
Abstract:
PURPOSE: To enhance dimensional stability of a compression molded door assembly with respect to changes in temperature and humidity by combining compression molded plates and panels. CONSTITUTION: This compression molded door assembly 10 includes a pair of opposed compression molded door panels or skins 11, 12. The interior of the door assembly 10 is filled with a foamed core 13. The skin 12 is molded with one or more central openings 14. The door assembly 10 has one or more central panels 21. The central panel 21 is formed as an integral part of the compression molded skin 11.