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    • 42. 发明专利
    • Grasping structure for ceramic shaft
    • 陶瓷轴的抛光结构
    • JPS6179025A
    • 1986-04-22
    • JP19857684
    • 1984-09-25
    • Asahi Glass Co Ltd
    • TSUCHIMOTO YOSHIHIROSHIMIZU NAOYA
    • F16D1/00F16D1/08F16D1/091F16D1/094
    • F16D1/094F16D1/0888F16D2001/0945
    • PURPOSE:To maintain always excellent grasping condition regardless of a change in the temperature by forming axial two sides of a grasping implement in such a manner as they are in phase with each other due to similarity of their right sections and further they make conical surfaces of two different virtual cones holding the apex in common. CONSTITUTION:An annular groove 2, which is a notch part, is formed on the outer periphery of the end part of a ceramic shaft 1, while the middle parts of sides 3, 4 of said groove 2 form conical surfaces of symmetrical cones holding the apex in common on the axis. A partition ring 10, which is a grasping implement, is positioned outside the groove 2 while keeping touch with the sides 3, 4. Thus, since assembling and disassembling are eased, excellent grasping condition for the ceramic shaft can be maintained even in case of a change in the temperature.
    • 目的:通过形成把持装置的轴向两侧,由于它们的右侧部分的相似性而使它们彼此同相的方式,来保持始终优良的抓握状态,并且进一步使它们形成锥形表面 两个不同的虚拟锥体共同保持顶点。 构成:在陶瓷轴1的端部的外周形成有作为切口部的环状槽2,而所述槽2的侧面3,4的中间部分形成保持着的陶瓷轴的对称锥体的锥形表面 顶点在轴上共同。 作为把持装置的分隔环10在与侧面3,4保持接触的同时位于槽2的外侧。因此,由于组装和拆卸得以缓解,因此即使在陶瓷轴的情况下也可以保持良好的抓住状态 温度的变化。
    • 43. 发明专利
    • Tightening metal for power transmission
    • 用于电力传输的紧密金属
    • JPS60215121A
    • 1985-10-28
    • JP7251684
    • 1984-04-10
    • Hiroyasu Shiokawa
    • SHIOKAWA HIROYASU
    • F16B3/04F16B3/06F16D1/09F16D1/091F16D1/094
    • F16D1/094
    • PURPOSE:To improve a coupling force and to facilitate a mounting work, by a method wherein a tightening metal for power transmission is formed with an inner ring, which has a spiral projection on its outer peripheral surface and can be decreased in size, and an outer ring which engages with the inner ring and can be increased in size. CONSTITUTION:A tightening metal is formed with an inner ring 28, which has a saw tooth-shaped projection 31 provided on its outer peripheral surface in a spiral manner along the direction of an axis, and an outer ring which has a saw tooth-shaped projection 33 engaged with the projection 31 and provided on its inner peripheral surface in a spiral manner. The tightening metal is coupled such that the inner and outer rings 28 and 29 are assembled together in a manner to gear the two projections 31 and 33 with each other, the inner ring is decreased in size to bring it into pressure contact with a shaft-shaped part 20, and the outer ring 29 is increased in size to force it into pressure contact with a ring- shaped part 21. This causes the two rings to be forced into pressure contact with each other through a high contact pressure, resulting in an increase in a coupling force and facilitation of a mounting work.
    • 目的:为了提高耦合力并促进安装工作,通过一种方法,其中用于动力传递的紧固金属形成有内环,该内环在其外周表面上具有螺旋突起并且可以减小尺寸, 外环与内圈接合并且可以增大尺寸。 构成:紧固金属形成有内圈28,内圈28具有沿着轴线的螺旋方式设置在其外周面上的锯齿状突起31和具有锯齿状的外圈 突起33与突起31接合并以螺旋方式设置在其内周表面上。 紧固金属联接成使得内环28和外环29以将两个突起31和33彼此齿轮的方式组装在一起,内环的尺寸减小以使其与轴 - 并且外圈29的尺寸增加以迫使其与环形部21压力接触。这使得两个环通过高接触压力被迫使彼此压力接触,导致一个 增加耦合力并促进安装工作。
    • 46. 发明申请
    • SPANNANORDNUNG SOWIE ABDRÜCK- UND KONUSRING DAFÜR
    • SPAN整理与胎圈分离锥环THEREFOR
    • WO2009015899A1
    • 2009-02-05
    • PCT/EP2008/006358
    • 2008-08-01
    • BIKON-TECHNIK GMBHDIZDAREVIC, Zlatko
    • DIZDAREVIC, Zlatko
    • F16D1/094
    • F16D1/094F16D2001/0945Y10T403/1641Y10T403/635Y10T403/7056Y10T403/7069
    • Die Erfindung betrifft eine Spannanordnung zur kraftschlüssigen Verbindung einer Nabe (1) auf einer Welle (2), mit einem inneren Konusring (3) und mit einem äußeren Konusring (4), wobei einer der Konusringe (3) Bohrungen (16) zum Durchstecken von Spannschrauben (5) und der jeweils andere der Konusringe (4) Gewindebohrungen (17) zum Einschrauben der Spannschrauben (5) zum Verspannen der Konusringe (3, 4) gegeneinander und gegen die Nabe und Welle aufweisen, wobei eine Bohrung (16) zum Durchstecken einer Spannschraube (5) ein Abdrückgewinde (20) für eine Abdrückschraube (21) aufweist, deren Durchmesser größer ist als der Durchmesser der entsprechenden Spannschraube (5), und ein Abdrückring (22) mit einer Bohrung (23) zum Durchstecken der in das Abdrückgewinde (20) einschraubbaren Abdrückschraube (21) vorgesehen ist und eine Abdrückfläche für einen Spanschraubenkopf (18) einer unvollständig in eine entsprechende Gewindebohrung (17) eingeschraubte Spannschraube (5) zum Übertragen einer Abdrückkraft darauf beim Einschrauben der Abdrückschraube (21) aufweist. Die Erfindung betrifft ferner einen Konus- sowie einen Abdrückring.
    • 本发明涉及一种用于轮毂(1)的上的轴(2)的非刚性连接的夹紧装置,与内锥环(3)和与外部锥形环(4),所述锥形环(3)孔的其中一个(16),用于获得通过 夹紧螺钉(5),而另一个锥形环(4)的螺纹孔(17),用于夹紧所述锥形环的夹紧螺钉(5)螺纹连接(3,4)相对于彼此并具有抗用于通道中的轮毂和轴,其中一个孔(16) 具有用于推力螺钉(21),其直径小于相应的夹紧螺钉(5)的直径大具有孔(23),用于插入到所述强制夹紧螺钉(5)迫使螺纹(20),和喷射器环(22) (20)螺旋千斤顶螺丝(21)被提供,并用于在对应的螺纹孔的不完全的夹紧螺钉头(18)的喷射器表面(17)拧入夹紧螺钉(5)用于将 携带一个胎圈分离它,该顶起螺钉(21)旋拧时。 本发明还涉及到一个锥体和喷射器环。
    • 47. 发明申请
    • MOUNTING DEVICE
    • 安装设备
    • WO1998015742A1
    • 1998-04-16
    • PCT/US1997018225
    • 1997-10-08
    • FENNER, INC.GEIB, Randall, R.
    • FENNER, INC.
    • F16B02/14
    • F16D1/094F16B2/065F16B7/025F16B9/026F16B21/20Y10T403/7054Y10T403/7056Y10T403/7058
    • A mounting device (10, 10') for coaxially anchoring a machine element (11, 11') upon a rotary shaft (12, 12'). The device fits between the interior bore (13, 13') of the machine element and the cylindrical surface of the shaft and is effective to position the element at any desired position longitudinally of the shaft and at any angular position circumferentially of the shaft. The device has inner (20, 20') and outer (50, 50') sleeves, the mating surfaces of which are similarly tapered so that relative axial displacement of the sleeves effects expansion and contraction of the interior bore (13, 13') and external surface of the combined elements. Rotation of a threaded nut (23, 45') at one end of the device effects the relative axial displacement of the inner and outer sleeves to afford expansion and contraction of the outer sleeve (50, 50').
    • 一种用于将机器元件(11,11')同轴地固定在旋转轴(12,12')上的安装装置(10,10')。 该装置装配在机器元件的内孔(13,13')和轴的圆柱形表面之间,并且有效地将元件定位在轴的纵向和轴的任何角度位置的任何期望位置处。 该装置具有内部(20,20')和外部(50,50')套筒,其配合表面类似地是锥形的,使得套筒的相对轴向位移会影响内部孔(13,13')的膨胀和收缩, 和组合元件的外表面。 在装置的一端处的螺纹螺母(23,45')的旋转会影响内套筒和外套筒的相对轴向位移,以提供外套筒(50,50')的膨胀和收缩。
    • 48. 发明申请
    • MOUNTING DEVICE
    • 安装设备
    • WO1998011353A1
    • 1998-03-19
    • PCT/US1997012924
    • 1997-08-08
    • FENNER, INC.GEIB, Randall, R.
    • FENNER, INC.
    • F16B02/14
    • F16D1/094F16B7/149Y10T403/7054Y10T403/7058
    • A mounting device (10) for coaxially anchoring a machine element (11) upon a rotary shaft (12). Device (10) fits between the interior bore of machine element (11) and the cylindrical surface of shaft (12) and is effective to position element (11) at any desired position longitudinally of shaft (12) and at any angular position circumferentially of shaft (12). Device (10) has inner and outer sleeves (20, 50), the mating surfaces of which are similarly tapered so that relative axial dispacement of the sleeves (20, 50) effects expansion and contraction of the interior bore and external surface of the combined elements. Rotation of a threaded nut (40) at one end of device (10) effects the relative axial displacement of inner and outer sleeves (20, 50) to afford expansion and contraction of outer sleeve (50) without straining the material of sleeve (50) or nut (40).
    • 一种用于将机器元件(11)同轴地固定在旋转轴(12)上的安装装置(10)。 装置(10)装配在机械元件(11)的内孔和轴(12)的圆柱形表面之间,并且有效地将元件(11)定位在轴(12)的纵向的任何期望位置处, 轴(12)。 装置(10)具有内外套(20,50),其配合表面类似地是锥形的,使得套筒(20,50)的相对轴向布置可以实现组合的内孔和外表面的膨胀和收缩 元素。 在装置(10)的一端处的螺纹螺母(40)的旋转影响内部和外部套筒(20,50)的相对轴向位移,从而使外套筒(50)不会使套筒(50)的材料变紧 )或螺母(40)。
    • 49. 发明申请
    • A FASTENING DEVICE AND A TOOL FOR SECURING THE SAME
    • 一个紧固装置和一个用于保护它的工具
    • WO1988009444A1
    • 1988-12-01
    • PCT/NO1988000045
    • 1988-05-26
    • KOLVEREID, Harald
    • F16D01/06
    • F16D1/094B25B13/48B25B13/488B25B13/50
    • A fixing device in the shape of an outer clamping sleeve member (2, 7, 14, 18, 26, 28) with an internal thread, and an inner clamping sleeve member (3, 8, 13, 16, 24, 29) with an external thread, said clamping sleeve members being mutually rotatable. One or both clamping sleeve members may be provided with an axial through slot (19, 20, 21, 25, 30, 31) or may have mutually parallel, axially extending and partly overlapping slots (13). The threads of said clamping sleeve members may have a cylindrical or a conical shape. A central sleeve (6) may, if desired, be provided between said outer and inner clamping sleeve members for cooperation with them. If the wrench holds of said fixing device are designed as teeth and slots, a complementary securing tool (33, 34; 36, 37) may be inserted to engage said teeth and slots for mutual turning said clamping sleeve members. Utilization, e.g. to mount a shaft (5) in a wheel-hub (4), to connect pipe ends (11, 12), or as a non-threaded nut.
    • 具有内螺纹的外夹紧套筒构件(2,7,14,18,26,28)形状的固定装置和内夹紧套筒构件(3,8,13,16,24,29),其具有 外螺纹,所述夹紧套筒构件可相互旋转。 一个或两个夹紧套筒构件可以设置有轴向通孔(19,20,21,25,30,31),或者可以具有相互平行的,轴向延伸的和部分重叠的狭槽(13)。 所述夹紧套筒构件的螺纹可以具有圆柱形或圆锥形。 如果需要,中心套筒(6)可以设置在所述外夹紧套筒部件和内夹紧套筒部件之间以与它们配合。 如果所述固定装置的扳手固定件被设计成齿和槽,则可以插入互补的固定工具(33,34,36,37)以接合所述齿和槽,以相互转动所述夹紧套筒构件。 利用率,例如 以将轴(5)安装在轮毂(4)中,以连接管端(11,12)或作为非螺纹螺母。
    • 50. 发明申请
    • MOUNTING DEVICE
    • 安装设备
    • WO1980000179A1
    • 1980-02-07
    • PCT/US1979000480
    • 1979-07-10
    • TRANTORQUE CORPSOUSSLOFF D
    • TRANTORQUE CORP
    • F16B02/14
    • F16D1/094Y10T279/17495Y10T403/7054
    • A mounting device (21, 22, 23) for anchoring a machine element (11) coaxially on a rotary shaft (12). The device fits between the machine element and the shaft and is effective to position the element at any desired position longitudinally of the shaft and at any angular position circumferentially of the shaft. The device has similarly tapered inner (21) and outer (22) segmented sleeves, so that relative axial displacement of the sleeves effects radial expansion and contraction of the combined elements. At one end (29) the inner sleeve cooperates with a nut (23) to effect the axial displacement of the sleeves. The outer sleeve has separate segments (36) coupled with said nut to permit limited pivotal movement of the segments. In another embodiment (Fig. 6), the sleeves (121, 122) are constructed to avoid relative rotation between the sleeves by a locking portion (146). In a third embodiment (Fig. 9), the inner sleeve (221) also has separable segments (226) and a tubular element (260) which are interconnected similarly to the interlocking of the outer sleeve segments with the nut. Improved performance is provided (Fig. 10) by providing anti-friction bearing elements (350) between the nut (323) and the outer sleeve (321) and anti-friction screw threads (338) between the nut (323) and the inner anti-friction coating (450) may be applied to the nut (425).
    • 一种用于将机器元件(11)同轴地固定在旋转轴(12)上的安装装置(21,22,23)。 该装置安装在机器元件和轴之间,并且有效地将元件定位在轴的纵向和轴的任何角度位置的任何所需位置处。 该装置具有类似的锥形内部(21)和外部(22)分段的套筒,使得套筒的相对轴向位移影响组合元件的径向膨胀和收缩。 在一端(29),内套筒与螺母(23)配合以实现套筒的轴向位移。 外套筒具有与所述螺母联接的分离段(36),以允许段的有限枢转运动。 在另一个实施例(图6)中,套筒(121,122)被构造成通过锁定部分(146)避免套筒之间的相对旋转。 在第三实施例(图9)中,内套筒(221)还具有可拆卸的段(226)和管状元件(260),其类似于外套管段与螺母的互锁。 通过在螺母(323)和外套筒(321)之间提供抗摩擦轴承元件(350)和在螺母(323)和内套筒(321)之间的抗摩擦螺纹(338),提供了改进的性能(图10) 可以将抗摩擦涂层(450)施加到螺母(425)上。