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    • 2. 发明申请
    • Cylinder liner and cylinder block
    • 气缸套和气缸体
    • US20060156917A1
    • 2006-07-20
    • US11330338
    • 2006-01-12
    • Teruyuki OdaTsuyoshi NozawaKazuo Koyama
    • Teruyuki OdaTsuyoshi NozawaKazuo Koyama
    • F16J10/00F01B11/02F02F1/10
    • F02F1/004F02F1/18
    • A cast iron cylinder liner of the present invention includes a plurality of grooves formed on an outer surface of the cylinder liner. Each of the grooves extends in a circumferential direction of the cylinder liner in a ring or spiral shape, and the grooves divide the outer surface of the cylinder liner into a plurality of ring or spiral sections. The outer surfaces of the ring sections have a uniform distance from the central axis of the cylinder liner over the entire area of the outer surfaces, and the grooves being arranged symmetrically with respect to the center of the cylinder liner in an axial direction thereof. Each of the grooves has a J-shaped longitudinal cross-section including a first inclination part and a groove bottom part. The first inclination part extends from the outer surface of one of the ring sections or of one turn of the spiral sections toward the center of the cylinder liner in an axial direction thereof. The groove bottom part has a longitudinal cross-section approximately in the form of a circular arc, and extends from the first inclination part in a direction away from the center of the cylinder liner in an axial direction thereof
    • 本发明的铸铁气缸套包括形成在气缸套的外表面上的多个槽。 每个凹槽在气缸套的圆周方向上以环形或螺旋形状延伸,并且凹槽将气缸套的外表面分成多个环形或螺旋形部分。 环形部分的外表面在外表面的整个区域上与气缸套的中心轴线具有均匀的距离,并且凹槽相对于气缸套的中心在其轴向方向上对称地布置。 每个凹槽具有包括第一倾斜部分和凹槽底部部分的J形纵向横截面。 第一倾斜部分从环形部分中的一个的外表面或螺旋部分的一匝沿其轴向朝向气缸套的中心延伸。 槽底部具有大致呈圆弧形状的纵向截面,并且沿着其轴向方向从气缸套的中心向远离第一倾斜部的方向延伸
    • 3. 发明授权
    • Cylinder liner and cylinder block
    • 气缸套和气缸体
    • US07273029B2
    • 2007-09-25
    • US11330338
    • 2006-01-12
    • Teruyuki OdaTsuyoshi NozawaKazuo Koyama
    • Teruyuki OdaTsuyoshi NozawaKazuo Koyama
    • F02F1/00
    • F02F1/004F02F1/18
    • A cast iron cylinder liner of the present invention includes a plurality of grooves formed on an outer surface of the cylinder liner. Each of the grooves extends in a circumferential direction of the cylinder liner in a ring or spiral shape, and the grooves divide the outer surface of the cylinder liner into a plurality of ring or spiral sections. The outer surfaces of the ring sections have a uniform distance from the central axis of the cylinder liner over the entire area of the outer surfaces, and the grooves being arranged symmetrically with respect to the center of the cylinder liner in an axial direction thereof. Each of the grooves has a J-shaped longitudinal cross-section including a first inclination part and a groove bottom part. The first inclination part extends from the outer surface of one of the ring sections or of one turn of the spiral sections toward the center of the cylinder liner in an axial direction thereof. The groove bottom part has a longitudinal cross-section approximately in the form of a circular arc, and extends from the first inclination part in a direction away from the center of the cylinder liner in an axial direction thereof.
    • 本发明的铸铁气缸套包括形成在气缸套的外表面上的多个槽。 每个凹槽在气缸套的圆周方向上以环形或螺旋形状延伸,并且凹槽将气缸套的外表面分成多个环形或螺旋形部分。 环形部分的外表面在外表面的整个区域上与气缸套的中心轴线具有均匀的距离,并且凹槽相对于气缸套的中心在其轴向方向上对称地布置。 每个凹槽具有包括第一倾斜部分和凹槽底部部分的J形纵向横截面。 第一倾斜部分从环形部分中的一个的外表面或螺旋部分的一匝沿其轴向朝向气缸套的中心延伸。 槽底部具有大致呈圆弧形状的纵向截面,并且沿着其轴向方向从气缸套的中心沿远离中心的方向从第一倾斜部延伸。
    • 4. 发明申请
    • Iron species preform
    • 铁种预制棒
    • US20070077447A1
    • 2007-04-05
    • US11529200
    • 2006-09-28
    • Teruyuki OdaHiroshi Takiguchi
    • Teruyuki OdaHiroshi Takiguchi
    • B32B3/30
    • F16C9/02B22D19/00F02F7/0053F16C33/14F16C2220/20F16C2223/08Y10T428/12229Y10T428/12264Y10T428/12368Y10T428/12389Y10T428/12396Y10T428/12451Y10T428/12757Y10T428/12951
    • An iron species preform for forming a metal matrix composite is inserted in an aluminum species alloy member to be cast-in. The aluminum species alloy member has bearing faces having a section in a semicircular arc shape. An inner peripheral face of the iron species preform is provided with a plurality of inner side grooves. The inner side groove includes flat portions and groove bottom portions continuous to two end edges continuous to the inner peripheral face and opposed to each other. In a cast-in step, shrinkage in a peripheral direction accompanied by solidifying a melted aluminum species alloy is uniformly received by the respective inner side grooves, movement in the peripheral direction is restrained, a clearance at an interface can be prevented from being brought about, so that a cast-in performance is excellent, and stable bonding strength and close contact of the interface can be ensured.
    • 将用于形成金属基质复合材料的铁种预型件插入铝铸件合金构件中以便铸造。 铝合金构件具有具有半圆弧形状的截面的支承面。 铁种预型件的内周面设置有多个内侧槽。 内侧槽包括与连接到内周面并且彼此相对的两个端部边缘连续的平坦部分和槽底部分。 在铸造步骤中,伴随着熔化的铝合金的固化的圆周方向的收缩被各内侧槽均匀地接收,从而抑制了沿周向的移动,可以防止界面处的间隙产生 ,因此,铸造性能优异,可以确保接合强度的稳定性和界面的紧密接触。
    • 5. 发明申请
    • Iron based sintered body excellent in enveloped casting property in light metal alloy and method for producing the same
    • 轻金属合金的包封铸造性优异的铁基烧结体及其制造方法
    • US20060073065A1
    • 2006-04-06
    • US11280217
    • 2005-11-17
    • Hiroshi TakiguchiTeruyuki Oda
    • Hiroshi TakiguchiTeruyuki Oda
    • B22F3/12
    • C22C33/0278B22F3/24B22F7/08B22F2003/166B22F2003/245B32B15/012C22C33/0207C22C38/10C22C38/12F05C2251/042
    • An iron based sintered body suitable for being enveloped in a light metal alloy such as an aluminum alloy by casting, and a method for producing the same. A mixed powder is prepared by mixing an iron based powder, a copper powder and a graphite powder blended so that the Cu content and the C content are 5 to 40% by mass and 0.5 to 2.5% by mass, respectively, in the mixed powder. A lubricant powder and a fine particle powder for improving machinability may be further added in the mixed powder. Then, the mixed powder is filled into a mold formed to a green compact, and is sintered into a sintered body so that the sintered body has a desired average thermal expansion coefficient. The surface of the sintered body may be adjusted to have a surface roughness Rz of 10 to 100 μm optionally by applying a shot blast treatment or by a shot blast treatment and an additional steam treatment. This process permits the sintered body to be enhanced in adhesive property and bonding strength while being improved in enveloping casting property when the sintered body is enveloped in the light metal alloy by casting. A martesitic stainless steel powder or ferritic stainless steel powder may be used instead of the pure iron powder, or Cr, Mo and W powders may be further blended.
    • 一种适于通过铸造包封在诸如铝合金的轻金属合金中的铁基烧结体及其制造方法。 通过混合铁粉,铜粉和石墨粉混合制备混合粉末,使得混合粉末中Cu含量和C含量分别为5〜40质量%和0.5〜2.5质量% 。 可以在混合粉末中进一步添加用于提高机械加工性的润滑剂粉末和细颗粒粉末。 然后,将混合粉末填充到形成为压坯的模具中,并烧结成烧结体,使得烧结体具有期望的平均热膨胀系数。 烧结体的表面可以任意地通过喷丸处理或喷丸处理和附加的蒸汽处理来调节为表面粗糙度Rz为10-100μm。 当烧结体通过铸造包封在轻金属合金中时,该工艺允许烧结体的粘合性能和结合强度提高,同时提高包封铸造性能。 可以使用马氏体不锈钢粉末或铁素体不锈钢粉末代替纯铁粉,或者可以进一步混合Cr,Mo和W粉末。
    • 9. 发明授权
    • Cylinder liner and cylinder block and method of manufacturing the same
    • 缸套和气缸体及其制造方法
    • US06298818B1
    • 2001-10-09
    • US09709792
    • 2000-11-08
    • Shigeru KoyamaTeruyuki Oda
    • Shigeru KoyamaTeruyuki Oda
    • F02F100
    • F02F1/004F05C2201/021F16J10/04
    • The cylinder liner is capable of being tightly adhered to an aluminium block. The cylinder liner is made of cast iron and formed into a cylindrical shape. In the cylinder liner, slender section is provided in a middle portion, and outer diameter of the cylinder liner is gradually made greater toward both end sections from the slender section. A plurality of projected lines are formed on an outer circumferential face of the cylinder liner with regular separations and extended in the axial direction thereof. With this structure, the cylinder liner can securely stay in a cylinder block even if an external force in the axial direction works to the cylinder liner. In the cylinder block of the present invention, a plurality of the cylinder liners are enclosed with casted aluminium.
    • 气缸套能够紧密地粘附在铝块上。 气缸套由铸铁制成,形成圆柱形。 在气缸套中,细长部分设置在中间部分,并且气缸套的外径逐渐地从细长部分朝向两个端部部分变大。 多个突出线形成在气缸套的外周面上,具有规则的分离并且在其轴向方向上延伸。 利用这种结构,即使在轴向上的外力作用于气缸套也能够将气缸套牢固地保持在气缸体中。 在本发明的气缸体中,多个气缸套用铸铝包住。
    • 10. 发明授权
    • Iron based sintered body excellent in enveloped casting property in light metal alloy and method for producing the same
    • 轻金属合金的包封铸造性优异的铁基烧结体及其制造方法
    • US07014677B2
    • 2006-03-21
    • US10743325
    • 2003-12-23
    • Hiroshi TakiguchiTeruyuki Oda
    • Hiroshi TakiguchiTeruyuki Oda
    • B22F3/00
    • C22C33/0278B22F3/24B22F7/08B22F2003/166B22F2003/245B32B15/012C22C33/0207C22C38/10C22C38/12F05C2251/042
    • The object of the invention is to provide an iron based sintered body suitable for being enveloped in light metal alloy such as an aluminum alloy by casting, and a method for producing the same. A mixed powder is prepared by mixing an iron based powder, a copper powder and a graphite powder blended so that the Cu content and the C content are 5 to 40% by mass and 0.5 to 2.5% by mass, respectively, in the mixed powder. A lubricant powder and a fine particle powder for improving machinability may be further added in the mixed powder. Then, the mixed powder is filled into a mold formed to a green compact, and is sintered into a sintered body so that the sintered body has a desired average thermal expansion coefficient. The surface of the sintered body may be adjusted to have a surface roughness Rz of 10 to 100 μm optionally by applying a shot blast treatment or by a shot blast treatment and an additional steam treatment. This process permits the sintered body to be enhanced in an adhesive property and bonding strength while being improved in enveloping casting property when the sintered body is enveloped in the light metal alloy by casting. A martesitic stainless steel powder or ferritic stainless steel powder may be used instead of the pure iron powder, or Cr, Mo and W powders may be further blended.
    • 本发明的目的是提供一种适用于通过铸造包封在诸如铝合金的轻金属合金中的铁基烧结体及其制造方法。 通过混合铁粉,铜粉和石墨粉混合制备混合粉末,使得混合粉末中Cu含量和C含量分别为5〜40质量%和0.5〜2.5质量% 。 可以在混合粉末中进一步添加用于提高机械加工性的润滑剂粉末和细颗粒粉末。 然后,将混合粉末填充到形成为压坯的模具中,并烧结成烧结体,使得烧结体具有期望的平均热膨胀系数。 烧结体的表面可以任意地通过喷丸处理或喷丸处理和附加的蒸汽处理来调节为表面粗糙度Rz为10-100μm。 当烧结体通过铸造包封在轻金属合金中时,该工艺允许烧结体的粘合性能和粘合强度提高,同时提高包封铸造性能。 可以使用马氏体不锈钢粉末或铁素体不锈钢粉末代替纯铁粉,或者可以进一步混合Cr,Mo和W粉末。