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    • 1. 发明授权
    • Lip seal
    • 唇形密封
    • US06517082B2
    • 2003-02-11
    • US09845832
    • 2001-05-01
    • Takeshi YamadaTakayuki ImaiYasuhiro Ikeda
    • Takeshi YamadaTakayuki ImaiYasuhiro Ikeda
    • F16J1532
    • F16J15/3232F16J15/322F16J15/3244
    • An elastomer lip member with its rear supported by a pressure resisting back-up ring, and a synthetic resin lip member arranged on a rear side of the elastomer lip are comprised, and on the inner circumferential surface of the seal lip portion of the elastomer lip member, helical grooves generating a pumping action of a fluid introducing direction from an inner space of machine side when a shaft rotates are formed. When a pressure in the inner space of machine is MPa (gage), by making a contact width between the seal lip portion of the elastomer lip member and a shaft at least 0.6 mm, so that a surface pressure maximum portion of the seal lip portion of the elastomer lip member to the shaft is biased or maldistributed toward its rear side whereby a fluid introduction by said helical grooves is performed satisfactorily.
    • 弹性体唇缘构件,其背面由耐压支撑环支撑,并且配置在弹性体唇缘的后侧的合成树脂唇缘构件,并且在弹性体唇缘的密封唇部的内周面上 形成了当轴旋转时从机器侧的内部空间产生流体引入方向的泵送作用的螺旋槽。 当机器内部空间的压力为MPa(量具)时,通过使弹性体唇形构件的密封唇部与轴之间的接触宽度至少为0.6mm,使得密封唇部的表面压力最大部分 弹性体唇缘构件向轴的偏压或向其后侧分布不均,由此令人满意地执行所述螺旋槽的流体引入。
    • 2. 发明授权
    • Lip type seal
    • US06422570B1
    • 2002-07-23
    • US09809353
    • 2001-03-16
    • Yasuhiro IkedaTakeshi YamadaTakayuki Imai
    • Yasuhiro IkedaTakeshi YamadaTakayuki Imai
    • F16J1532
    • A lip type seal is provided with an outer ring part (31) which is tightly fitted to a seal installation part (12) of a housing (1); a seal main body (32) which is fixed to the outer ring part (31) and whose inner circumferential part extending in a bent state to the side of a sealed space (A) is sealably brought into slidable contact with an outer circumferential surface of a rotary shaft (2) inserted in the housing (1); a rear surface support plate (33) which is arranged on the rear side of the seal main body and whose outer circumferential part together with the seal main body (32) is fixed to the outer ring part (31); and a movable support plate (34) which is engaged movably in a radial direction between the seal main body (32) and the rear surface support plate (33) and whose inner diameter is clearance fitted to the outer circumferential surface of the rotary shaft (2). Therefore, such a gap in which the seal main body (32) enters is not formed between the inner circumferential surface of the movable support plate (34) and the outer circumferential surface of the rotary shaft (2).
    • 3. 发明授权
    • Lip type seal
    • 唇型密封
    • US06565096B2
    • 2003-05-20
    • US09810330
    • 2001-03-19
    • Yasuhiro IkedaTakeshi YamadaTakayuki Imai
    • Yasuhiro IkedaTakeshi YamadaTakayuki Imai
    • F16J1532
    • F16J15/3228F16J15/3216
    • In a lip type seal, a case is tightly fitted and fixed to an inner circumferential surface of a housing through a gasket. A resin lip member constituted by an inner circumferential part extending in a bent state from a diameter direction part and its inner circumference to a sealed space side and forming a seal surface between an outer circumferential part of a rotary shaft and the resin lip member; a rear surface support plate disposed to abut on a rear surface of the diameter direction part of the resin lip member; and a stopper with a rear surface supported to a support surface of the housing through a second resin lip member and a second rear surface support plate and the top end coming close to or coming into contact with a rear surface of the inner circumferential part of the rear surface support plate, are provided on the inner circumference of the housing.
    • 在唇形密封件中,壳体通过垫圈紧密地装配并固定到壳体的内周面。 一种树脂唇形构件,由从直径方向部分和内周向弯曲状态延伸到密封空间侧的内周部分,并且在旋转轴的外圆周部分和树脂唇形构件之间形成密封面; 后表面支撑板,设置成邻接树脂唇形构件的直径方向部分的后表面; 以及具有通过第二树脂唇部件和第二后表面支撑板支撑在所述壳体的支撑表面上的后表面的止动件,并且所述顶端靠近或接触所述壳体的内周部分的后表面 后表面支撑板设置在壳体的内周上。
    • 9. 发明授权
    • Seal device
    • 密封装置
    • US08052153B2
    • 2011-11-08
    • US12096600
    • 2006-12-20
    • Hiroshi EbiharaYasuhisa AritaYasuhiro Ikeda
    • Hiroshi EbiharaYasuhisa AritaYasuhiro Ikeda
    • F16J15/32
    • F16J15/3232
    • [PROBLEMS] A seal device where a seal lip reliably maintains shaft sealing relative to high-pressure fluid that is to be sealed and where the equivalent Mises stress occurring in the seal lip is reduced to extend the durable term of the seal lip longer.[MEANS FOR SOLVING PROBLEMS] A backup ring (2) has a tapered section (23) continuously extending from a fixation section (21) of the backup ring (2) and also has a forward end section (24). A rounded surface (E) with a curvature radius (R-1) is formed at least at a boundary (26) where a surface (D) of the tapered section (23) changes to a surface (F) of the forward end section (24). A portion of the surface (D) of the tapered surface (23), which portion is in contact with the rounded surface (E) at the boundary (26), is a projected curvature surface having a curvature radius greater than the curvature radius (R-1) of the boundary (26).
    • 一种密封装置,其中密封唇相对于待密封的高压流体可靠地保持轴密封,并且其中在密封唇中发生的等效米塞斯应力减小,以延长密封唇的耐用期。 解决问题的手段备用环(2)具有从支撑环(2)的固定部(21)连续延伸的锥形部(23),并且还具有前端部(24)。 至少在锥形部分(23)的表面(D)变化到前端部分的表面(F)的边界(26)处形成具有曲率半径(R-1)的圆形表面(E) (24)。 锥形表面(23)的表面(D)的一部分在边界(26)处与圆形表面(E)接触的是曲率半径大于曲率半径的投影曲率表面(D) R-1)。
    • 10. 发明申请
    • CYLINDRICAL SIEVE AND CYLINDRICAL SIFTER
    • 圆柱形和圆柱形
    • US20110226676A1
    • 2011-09-22
    • US13131916
    • 2010-05-31
    • Yasuhiro Ikeda
    • Yasuhiro Ikeda
    • B07B1/22B07B1/46B07B1/20
    • B07B1/22B07B1/24B07B1/4654B07B1/469B07B13/16
    • An integrally-rotating cylindrical sieve 1 includes a hollow rotating shaft 2, which a driveshaft 21 is inserted into and fixed to, support members 3 radially extended from the rotating shaft 2, a cylindrical sieve body 4 made from a thin plate with a large number of apertures 5 formed therein, such as punching metal, and coupled with the support members 3, and sieve frames 6a and 6b attached to axial ends of the sieve body 4. The rotating shaft 2, the support members 3, the sieve body 4, the sieve frames 6a and 6b, and the driveshaft 21 are coaxially rotated together. The sieve body 4 is a cylindrical corrugated plate having wave crests and wave troughs arranged along its circumference and has a large number of apertures 5 formed in the corrugated plate. This arrangement improves the sieving efficiency of the granular material and effectively prevents potential destruction and cracking of the granular material, thus enhancing the commercial value of the sieved granular material.
    • 一体旋转的圆筒筛1包括中空旋转轴2,驱动轴21插入并固定到从旋转轴2径向延伸的支撑构件3,圆柱形筛体4由具有大量的薄板制成 形成在其中的孔5,例如冲孔金属,并且与支撑构件3相连,以及安装在筛体4的轴向端部的筛架6a和6b。旋转轴2,支撑构件3,筛体4, 筛架6a和6b以及驱动轴21同时旋转。 筛体4是具有沿着其圆周布置的波峰和波谷的圆柱形波纹板,并且在波纹板中形成有大量的孔5。 由此,能够提高粒状材料的筛分效率,有效地防止颗粒状物的潜在的破坏和破裂,从而提高筛分粒状材料的商业价值。