Abstract:
A method and system for assembling a component within a medical device that includes a support device fixedly positioning the medical device and a weld head capable of being advanced towards a bottom portion of the support device so that the seal member, the front wall, the rear wall and the side walls of the weld head form a gas suite for generating a weld along the component and the device. A test station determines whether the component is in a predetermined working state, and an orientation sensor senses an orientation vector of the component. A first sensor senses a position of the component within an aperture of the device and plots a weld path associated with the component. An installation head obtains the component, advances the component between the test station, the orientation sensor and the first sensor, and through the aperture.
Abstract:
A method for designing a weld fixture. The method includes modeling a set of distortions produced by applied mechanical forces on a material (102) to be welded, modeling a set of distortions produced by applied thermal forces on the material (102) to be welded, determining a set of reaction forces at a series of locations on a simulated weld fixture as a function of the modeled distortions, and designing a weld fixture as a function of the set of reaction forces.
Abstract:
The securing component which can be arc-welded to a structural component takes the form of a springy sleeve (1) and has a longitudinal slot (2). In a preferred embodiment, both frontal sides (3) are the same in order to simplify correct pre-positioning in the welding device, and have a thread-like internal drilling (4). The welding device for welding longitudinal securing devices has a feed channel and an axially movable holder for the securing devices. Instead of a slotted clamp, the axially movable holder (5) takes the form of a rigid tube in which the securing components formed as springy sleeves (1) are held. The arrangement for securing an assembly component to the securing component has an assembly component (21) which can be frictionally and positively fitted on the securing component. The assembly component (21) can have a shoulder (28) in its drilling (27) in order to engage behind retaining components (23) fitted on the outer wall of the securing component (20).
Abstract:
A composite machine tool wherein a punching center and a cutting work position coincide with each other in order not to restrict a moving space of a workpiece at the time of cutting work as well as at the time of punching work. The tool is provided with a movable plasma torch (16) that is provided on that part of a main body located close to the work position, retracted from the work position at the time of the punching work and advanced to the work position at the time of the cutting work of a workpiece (5). Further, the composite machine tool is provided with protecting devices (18, 19) for protecting a lower turret (3) and other members adjacent thereto from dross and heat at the time of the cutting work by the plasma torch.
Abstract:
A press for welding magnetic yokes comprises first and second frames movable toward and away from each other, on which there are defined respective confronting and parallel pressure surfaces (12, 35), a motive means (50) acting between the frames (11, 30) to produce the aforesaid movements, and a presser (14, 36) associated with each of the pressure surfaces (12, 35) to define a saddle-piece for receiving the yoke (3). Between at least one of the pressers (14, 36) and its respective pressure surface (12, 35) there intervening an elastically deformable pillow (39) functioning as an adjuster of the deformation under load undergone by the corresponding pressure surface (12, 35). This pillow is composed of an elastic material which has a behavior under load, within a predetermined range of specific loads, that approaches a hydrostatic behavior, that is, such that for a given increase in the deformation there corresponds a proportionally low pressure increase.
Abstract:
본 문건은 복수 개의 피용접물을 대상으로 한 레이저 용접시, 피용접물들을 고정하는 용도로 사용되고, 미리 설정된 모든 용접 개소의 피용접물들 사이의 갭을 용이하게 규제할 수 있는 용접용 지그 장치를 개시한다. 실시예에 따른 지그 장치는, 베이스; 상기 베이스의 상면에 구비되고, 하나로 포개진 제1 피용접물과 제2 피용접물을 지지하는 받침대; 용접홀과 플런저를 구비하고, 상기 받침대의 상방에 배치되는 가압판; 및, 상기 베이스에 구비되고, 하나로 포개진 제1 피용접물과 제2 피용접물이 상기 가압판에 의해 가압된 상태일 때, 상기 가압판을 고정하는 클램프;를 포함한다.
Abstract:
본 발명은 종래 구조와 다른 완전히 새로운 구조를 도입하여 오랜 사용에도 쉽게 파손되지 않아 반영구적으로 사용할 수 있고, 그에 따라 잦은 교체 및 수리가 필요없어 높은 생산성을 보장할 수 있는 스터드 용접건의 스터드척에 관한 것으로, 건바디의 전방에 설치된 어댑터에 결합되고, 상기 어댑터로부터 중공인 내부를 향해 스터드를 공급받은 후 스터드헤드가 전방으로 돌출되도록 스터드몸체를 파지하는 스터드 용접건의 스터드척에 있어서, 중공의 원통형상으로 상기 어댑터의 전방에 설치되고, 전방에 그립퍼장착부가 형성된 척바디와, 각각이 상기 척바디의 그립퍼장착부에 방사상으로 결합되고, 상기 스터드헤드의 전진에 따라 각각이 함께 방사상으로 확장되어 벌어진 후 상기 스터드헤드가 상기 척바디의 전방으로 돌출되면 각각이 탄성 복귀하여 함께 방사상으로 닫히면서 상기 스터드몸체를 파지하는 복수의 그립퍼와, 상기 척바디의 그립퍼장착부 후방에 설치되고, 상기 그립퍼 각각이 닫힌 상태를 유지하도록 상기 그립퍼 각각의 후단과 접촉되어 탄성 지지하는 그립퍼지지부를 포함하여 이루어진다.