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    • 4. 发明授权
    • Riving knife drive mechanism for a portable circular saw
    • 用于便携式圆锯的刀刀驱动机构
    • US5235752A
    • 1993-08-17
    • US995499
    • 1992-12-23
    • William D. SauerweinWilliam R. Stumpf
    • William D. SauerweinWilliam R. Stumpf
    • B27G19/04B27G19/08
    • B27G19/08B27G19/04
    • A portable circular saw includes motor-and-gear case pivotally supported on a guide shoe by a rear pivot mechanism for rotation about a transverse rear pivot axis, thus allowing for selective adjustment of the blade cutting depth on the opposite side of the shoe. In such an arrangement, the depth of cut setting is increased and decreased when the motor-and-gear case is rotated relative to the shoe in respective first and second directions, while an upper pivotal blade guard, which is mounted on the motor-and-gear case for rotation about the spindle, rotates in opposite rotational directions in response to respective increases and decreases in the depth of cut setting. Cam and cam follower mechanisms are provided for maintaining the riving knife and the blade and shoe in the same relative angular orientation in a fore-and-aft cutting plane regardless of the depth of cut setting. Such riving knife actuation is accomplished by such mechanisms in response to the rotation of the rear-pivoted motor-and-gear case and the corresponding opposite rotation of the front-pivoted upper gear case.
    • 便携式圆锯包括通过后枢转机构可枢转地支撑在导靴上的马达和齿轮箱,用于围绕横向后枢转轴线旋转,从而允许选择性地调整在鞋的相对侧上的叶片切割深度。 在这种布置中,当马达和齿轮箱相对于鞋在相应的第一和第二方向上旋转时,切割深度的设定被增加和减少,而安装在马达上的上枢转叶片护罩和 响应于相应的切割深度设置的增加和减小,用于围绕主轴旋转的齿形壳体以相反的旋转方向旋转。 提供凸轮和凸轮从动机构,用于将切割刀和刀片和鞋子保持在前后切割平面中相同的相对角度取向上,而与切割深度设置无关。 这种铆钉刀致动是通过响应于后转动的马达和齿轮箱的旋转以及前部枢转的上部齿轮箱的相应的相反旋转而由这种机构实现的。
    • 5. 发明授权
    • Method of making a field subassembly
    • 制作现场组件的方法
    • US4765054A
    • 1988-08-23
    • US846566
    • 1986-03-31
    • William D. SauerweinJohn E. Dibbern, Jr.Frank J. O'haraRobert G. Moores, Jr.
    • William D. SauerweinJohn E. Dibbern, Jr.Frank J. O'haraRobert G. Moores, Jr.
    • H02K1/18H02K3/52H02K5/14H02K15/10
    • H02K3/522H02K1/185H02K5/148Y10T29/49009
    • A field subassembly is assembled by positioning two coil supports adjacent respective core end faces of a ferromagnetic core. The core-engaging surfaces of the coil supports and the core end faces have respective surfaces which are uninterrupted by projections. During the assembly of the field, fasteners are pushed into the respective coil supports and the core such that the fasteners engage mounting holes in the coil support with a press-fit. After the field is wound, a brush holder subassembly is also pressed onto the fasteners and the resultant core subassembly is connected to a field housing by driving the fasteners in a conventional fashion. In the preferred embodiment, the fasteners provide a three-point contact with mounting holes formed in the coil supports and the brush holder subassembly. This enables the fasteners to maintain the coil supports and the brush holder subassembly in alignment with the core while shearing a minimum of material from the coil supports and brush holder subassembly when the fasteners are pushed into their respective mounting holes. Then, the same fasteners remain with the subassembly to connect the field subassembly to the field housing.
    • 通过将两个线圈支撑件定位在铁磁芯的相应芯端面附近来组装现场子组件。 线圈支撑件和芯端面的芯接合表面具有不突出的不间断的相应表面。 在场的组装期间,紧固件被推入相应的线圈支撑件和芯中,使得紧固件与压配合件接合在线圈支架中的安装孔。 在磁场被缠绕之后,电刷架子组件也被压到紧固件上,并且所得的芯子组件通过以常规方式驱动紧固件而连接到磁场外壳。 在优选实施例中,紧固件提供与形成在线圈支架和电刷架子组件中的安装孔的三点接触。 这使得当紧固件被推入其相应的安装孔时,紧固件能够将线圈支撑件和电刷架子组件保持与芯体对准,同时从线圈支架和电刷架子组件剪切最少的材料。 然后,与子组件保持相同的紧固件将现场组件连接到现场壳体。
    • 8. 发明授权
    • Methods of assembling field subassemblies
    • 组装现场组件的方法
    • US4578852A
    • 1986-04-01
    • US636367
    • 1984-07-31
    • William D. SauerweinJohn E. Dibbern, Jr.Frank J. O'HaraRobert G. Moores, Jr.
    • William D. SauerweinJohn E. Dibbern, Jr.Frank J. O'HaraRobert G. Moores, Jr.
    • H02K1/18H02K3/52H02K5/14H02K15/085H02K15/10
    • H02K3/522H02K1/185H02K5/148Y10T29/49009Y10T29/49945
    • A field subassembly is assembled by positioning two coil supports adjacent respective core end faces of a ferromagnetic core. The core-engaging surfaces of the coil supports and the core end faces have respective surfaces which are uninterrupted by projections. During the assembly of the field, fasteners are pushed into the respective coil supports and the core such that the fasteners engage mounting holes in the coil support with a press-fit. After the field is wound, a brush holder subassembly is also pressed onto the fasteners and the resultant core subassembly is connected to a field housing by driving the fasteners in a conventional fashion. In the preferred embodiment, the fasteners provide a three-point contact with mounting holes formed in the coil supports and the brush holder subassembly. This enables the fasteners to maintain the coil supports and the brush holder subassembly in alignment with the core while shearing a minimum of material from the coil supports and brush holder subassembly when the fasteners are pushed into their respective mounting holes. Then, the same fasteners remain with the subassembly to connect the field subassembly to the field housing.
    • 通过将两个线圈支撑件定位在铁磁芯的相应芯端面附近来组装现场子组件。 线圈支撑件和芯端面的芯接合表面具有不突出的不间断的相应表面。 在场的组装期间,紧固件被推入相应的线圈支撑件和芯中,使得紧固件与压配合件接合在线圈支架中的安装孔。 在磁场被缠绕之后,电刷架子组件也被压到紧固件上,并且所得的芯子组件通过以常规方式驱动紧固件而连接到磁场外壳。 在优选实施例中,紧固件提供与形成在线圈支架和电刷架子组件中的安装孔的三点接触。 这使得当紧固件被推入其相应的安装孔时,紧固件能够将线圈支撑件和电刷架子组件保持与芯体对准,同时从线圈支架和电刷架子组件剪切最少的材料。 然后,与子组件保持相同的紧固件将现场组件连接到现场壳体。