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    • 4. 发明申请
    • FOLDING KNIFE
    • 折叠刀
    • WO9958302A8
    • 2000-01-27
    • PCT/US9909545
    • 1999-04-30
    • FISKARS INC
    • DUGDALE DANIEL J
    • B26B1/04B26B1/02
    • B26B1/046
    • A folding knife (10) includes a handle (12) and a blade (14) pivotally coupled to the handle (12). The handle (12) has first and second ends (16, 18) and a pair of side walls (20) extending between the two ends (16, 18). The handle (12) also includes a longitudinal slot (22) disposed between the pair of side walls (20) for housing the blade (14). The blade (14) is pivotally coupled to the first end (16) of the handle (12) and is rotatable between a folded position, in which the blade (14) is situated in the longitudinal slot (22), and an extended position. Formed in a shank portion (46) of the blade (14) is an opening (48) for receiving a user's finger and improving the user's control of the knife (10) during a cutting operation.
    • 折叠刀(10)包括手柄(12)和枢转地联接到手柄(12)的刀片(14)。 手柄(12)具有在两端(16,18)之间延伸的第一和第二端(16,18)和一对侧壁(20)。 手柄(12)还包括设置在一对侧壁(20)之间以容纳叶片(14)的纵向槽(22)。 叶片(14)枢转地联接到手柄(12)的第一端(16),并且可在叶片(14)位于纵向槽(22)中的折叠位置和延伸位置之间旋转 。 形成在刀片(14)的柄部(46)中的是在切割操作期间接收使用者的手指并改善使用者对刀(10)的控制的开口(48)。
    • 5. 发明申请
    • SURGE SUPPRESSING DEVICE
    • 超声波抑制装置
    • WO1998040943A1
    • 1998-09-17
    • PCT/US1998004614
    • 1998-03-09
    • FISKARS INC.LORENZ, Ronald, N.PARKER, Frederick
    • FISKARS INC.
    • H02H01/00
    • H01C7/10
    • A surge suppressing device (10) includes a voltage-dependent resistor (12) having an opening (14) formed therethrough. A pair of preformed pads (18) formed of an electrically conductive material is located adjacent a first and second side (16, 18) respectively of the voltage dependent resistor (12) proximate the opening (14). The electrically conductive material flows through the opening (14) creating an electrical short between the first and second sides (16, 18) when the voltage-dependent resistor (12) is heated in response to excessive leakage current flowing therethrough.
    • 浪涌抑制装置(10)包括具有通过其形成的开口(14)的电压依赖电阻(12)。 由导电材料形成的一对预成型焊盘(18)分别位于靠近开口(14)的电压相关电阻(12)的第一和第二侧(16,18)附近。 导电材料流过开口(14)时,当电压依赖电阻(12)响应于过多的漏电流而被加热时,在第一和第二侧(16,18)之间产生电短路。