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    • 5. 发明授权
    • Method and apparatus for manufacturing different types of tyres
    • 用于制造不同类型轮胎的方法和装置
    • US08936058B2
    • 2015-01-20
    • US11315298
    • 2005-12-23
    • Renato CarettaFiorenzo Mariani
    • Renato CarettaFiorenzo Mariani
    • B29D30/10B29D30/00B29C37/00
    • B29D30/0016B29C2037/80B29D30/00B29D30/005B29D2030/105
    • A method of manufacturing tires includes making a plurality of structural components for tires, assembling the components following a pre-established sequence at respective work stations disposed along a manufacturing line, transferring the tires to a curing line, and curing the tires in respective vulcanization molds. The tires are sequentially transferred along the manufacturing line from a first work station to successive work stations. At least one series of tires is simultaneously processed on the manufacturing line and the curing line, and the at least one series of tires includes at least one first tire model and at least one second tire model different from the at least one first tire model. The tires are transferred from the manufacturing line to the curing line at a same rate as the tires are sequentially transferred along the manufacturing line from the first work station to the successive work stations.
    • 制造轮胎的方法包括制造多个轮胎结构部件,按照沿着制造线设置的各个工位,按照预先确定的顺序组装所述部件,将轮胎转移到固化线,以及在各个硫化模具中固化轮胎 。 轮胎沿着生产线从第一工作站顺序转移到连续的工作站。 在制造线和固化线上同时处理至少一系列轮胎,并且至少一系列轮胎包括至少一个第一轮胎模型和至少一个不同于该至少一个第一轮胎模型的第二轮胎模型。 轮胎以与轮胎沿着生产线从第一工作站顺序地转移到连续的工作站相同的速率从生产线转移到固化线。
    • 6. 发明申请
    • METHOD FOR CONTROLLING THE DEFORMATION OF A SURFACE OF A SAIL OF A SAILING BOAT DURING A DIRECTION CHANGE MANOEUVRE
    • 控制方向改变时的救生艇舷侧表面变形的方法
    • US20110114003A1
    • 2011-05-19
    • US12971606
    • 2010-12-17
    • Cristiano PUPPIPier Giuseppe PiantanidaRenato CarettaThomas Mattia Mauro Ponta
    • Cristiano PUPPIPier Giuseppe PiantanidaRenato CarettaThomas Mattia Mauro Ponta
    • B63H9/06
    • B63H9/0642
    • There is described a method for controlling the deformation of a surface of a sail (1) of a sailing boat (100) during a direction change manoeuvre, said method comprising the step of arranging at least one inflatable batten (10) into a respective seat (3) formed on a side surface (2a) of the sail (1), said at least one batten (10) being inflated at a predetermined working pressure, said working pressure being such as to impart to said at least one batten (10) a bending stiffness having, with no bending load, a predetermined value and the step of carrying out a manoeuvre for changing the direction of the sailing boat (100), wherein in a first part of said manoeuvre said at least one batten (10) is subjected to the action of an increasing bending load and in a second part of said manoeuvre, said bending load ends its action on said at least one batten (10), during said manoeuvre the mechanical properties of said at least one batten (10) being changed so that as said bending load increases in said first part of the manoeuvre, the value of the bending stiffness of said at least one batten (10) decreases considerably, and as the action of said bending load ends in said second part of the manoeuvre, the bending stiffness of said at least one batten (10) returns to said predetermined value. Such method is carried out by using a sail (1) provided with at least one batten (10) comprising a fluid impervious wrapping (31) adapted to be inflated by a fluid under pressure and a reinforcing structure (33) associated externally with said wrapping (31) and comprising a plurality of reinforcing thread-like elements (34a, 34b) arranged crossed with an angle comprised between about 65° and about 115°.
    • 描述了一种用于在方向改变操作期间控制帆船(100)的帆(1)的表面的变形的方法,所述方法包括将至少一个充气板条(10)布置在相应的座中 (3),其形成在所述帆(1)的侧表面(2a)上,所述至少一个板条(10)以预定工作压力膨胀,所述工作压力使所述至少一个板条(10 )具有没有弯曲载荷的预定值的弯曲刚度和执行用于改变帆船(100)的方向的操纵的步骤,其中在所述操纵的第一部分中所述至少一个板条(10) 受到增加的弯曲载荷的作用,并且在所述操纵的第二部分中,所述弯曲载荷在所述操纵过程中在所述至少一个板条(10)的作用下结束其作用,所述至少一个板条(10)的机械性能 被改变,使得随着所述弯曲载荷的增加 在所述操纵的所述第一部分中,所述至少一个板条(10)的弯曲刚度的值显着降低,并且当所述弯曲载荷的作用在所述操纵的所述第二部分中结束时,所述所述至少一个 至少一个板条(10)返回到所述预定值。 这种方法通过使用设置有至少一个板条(10)的帆(1)来进行,所述板条(10)包括适于由压力下的流体充气的流体不可渗透的包裹物(31)和与所述包装件外部相关联的加强结构(33) (31)并且包括多个加强螺纹状元件(34a,34b),所述多个加强螺纹状元件(34a,34b)以约65°至约115°的角度交叉排列。
    • 7. 发明授权
    • Method for determining a force at the hub of a wheel of a vehicle while traveling and wheel suitable for allowing said method to be carried out
    • 用于确定行驶中的车轮的轮毂处的力的方法和适合于允许执行所述方法的车轮
    • US07832288B2
    • 2010-11-16
    • US11579318
    • 2004-05-12
    • Renato CarettaFederico MancosuAndrea CalatroniGiorgio DianaFederico CheliAlfredo Cigada
    • Renato CarettaFederico MancosuAndrea CalatroniGiorgio DianaFederico CheliAlfredo Cigada
    • G01L3/02
    • G01L5/16G01L5/20G01M17/013
    • A method for determining the force at the hub of a wheel of a vehicle while traveling. The wheel includes a rim and at least one deformation sensor directly associated with the rim in at least one predetermined position and arranged according to at least one predetermined orientation. The method includes the steps of detecting at least one deformation component of the rim during travel through the at least one deformation sensor; applying to the at least one deformation component, during travel, a correlation parameter characteristic of the rim, between the force at the hub and the relative deformation of the rim to determine at least one force component at the hub correlated with the at least one deformation component of the rim. The determining of the correlation parameter preferably takes place through experimental tests that include the steps of providing a sample wheel having a rim substantially the same as that of the wheel and determining at least one correlation coefficient between at least one force component acting upon the sample wheel at the hub along at least one predetermined direction and at least one respective deformation component of the rim of the wheel.
    • 一种用于在行驶时确定车辆的车轮的轮毂处的力的方法。 所述轮包括轮辋和至少一个变形传感器,所述至少一个变形传感器在至少一个预定位置处直接与所述轮辋相关联并且根据至少一个预定取向被布 该方法包括以下步骤:在行进通过至少一个变形传感器期间检测轮辋的至少一个变形分量; 在所述至少一个变形分量期间,在行进期间,所述边缘的相关参数特征,所述轮毂的力与所述轮辋的相对变形之间,以确定所述轮毂处的至少一个力分量与所述至少一个变形相关联 边缘部件。 相关参数的确定优选通过实验测试进行,包括以下步骤:提供具有与车轮的轮辋基本相同的轮辋的轮辋的步骤,并确定作用于样品车轮的至少一个力分量之间的至少一个相关系数 在轮毂上沿着至少一个预定方向和轮的轮缘的至少一个相应的变形部件。
    • 8. 发明授权
    • Plant for producing types of tyres different from each other
    • 用于生产不同类型的轮胎的设备
    • US07770622B2
    • 2010-08-10
    • US11115138
    • 2005-04-27
    • Renato CarettaFiorenzo Mariani
    • Renato CarettaFiorenzo Mariani
    • B29D30/10
    • B29D30/0016B29D30/00B29D30/005B29D2030/0055B29D2030/105
    • A plant for producing types of tyres different from each other includes a manufacturing unit including a plurality of work stations, devices for transfer and movement of the tyres being produced, and a vulcanizing unit including vulcanizing moulds for the tyres being produced. Each work station is designed to assemble at least one corresponding structural component on at least one type of tyre being produced. The devices for transfer and movement operate between the work stations and provide selective movement for each of the types of tyres being produced in proximity to corresponding work stations. The plant may also include a central processing unit. The central processing unit may control the devices for transfer and movement to coordinate processing stages for each type of tyre in the manufacturing unit and in the vulcanizing unit. Additionally, the plant may include holding stations associated with at least some of the work stations.
    • 用于生产彼此不同的轮胎类型的设备包括制造单元,其包括多个工作站,用于生产的轮胎的转移和移动的装置,以及包括用于轮胎的硫化模具的硫化单元。 每个工作台被设计成在所生产的至少一种类型的轮胎上组装至少一个对应的结构部件。 用于传送和移动的装置在工作站之间运行,并为在相应工作站附近生产的每种类型的轮胎提供选择性运动。 工厂还可以包括中央处理单元。 中央处理单元可以控制用于传送和移动的装置以协调制造单元和硫化单元中的每种轮胎的处理阶段。 另外,工厂可以包括与至少一些工作站相关联的保持站。
    • 9. 发明授权
    • Tyre for a vehicle wheel
    • 轮胎车轮
    • US07416007B2
    • 2008-08-26
    • US10984226
    • 2004-11-09
    • Renato CarettaMaurizio Marchini
    • Renato CarettaMaurizio Marchini
    • B60C9/02B60C15/00
    • B29D30/165B29D30/10B29D30/1621B29D30/48B29D2030/1685B60C9/023B60C15/0018B60C15/06Y10T152/10819Y10T152/10828Y10T152/10855
    • A tyre for a vehicle wheel includes a carcass structure, belt structure, tread band, and at least one pair of sidewalls. The carcass structure includes at least one first carcass ply and at least two annular reinforcing structures. The at least one first carcass ply includes elongated sections circumferentially distributed around the tyre's geometric rotation axis. Each elongated section extends in a U-shaped configuration around a cross-section outline of the carcass structure to define two side portions and one crown portion. Each elongated section substantially lies in a plane parallelly offset relative to a meridian plane of the carcass structure. The crown portion of each elongated section is oriented, relative to a radial reference plane passing through a transition region between the crown portion and at least one corresponding side portion, at an angle having a different value from an inclination of the at least one corresponding side portion.
    • 用于车轮的轮胎包括胎体结构,带结构,胎面带和至少一对侧壁。 胎体结构包括至少一个第一胎体帘布层和至少两个环形加强结构。 至少一个第一胎体帘布层包括围绕轮胎的几何旋转轴线周向分布的细长部分。 每个细长部分围绕胎体结构的横截面轮廓以U形构型延伸以限定两个侧部和一个冠部。 每个细长部分基本上位于相对于胎体结构的子午线平面偏移的平面中。 每个细长部分的冠部相对于穿过冠部部分和至少一个对应侧部分之间的过渡区域的径向参考平面以与至少一个对应侧部的倾斜度不同的角度定向 一部分。
    • 10. 发明授权
    • Method of manufacturing tires
    • 制造轮胎的方法
    • US07005023B2
    • 2006-02-28
    • US10132128
    • 2002-04-26
    • Renato CarettaFiorenzo Mariani
    • Renato CarettaFiorenzo Mariani
    • B29D30/10
    • B29D30/0016B29C2037/80B29D30/00B29D30/005B29D2030/105
    • A method of manufacturing tires includes the steps of making structural components for tires, assembling the structural components of each tire following a pre-established sequence at respective work stations disposed along a manufacturing line, transferring the tires to a curing line, and curing the tires in respective vulcanization molds. The tires are sequentially transferred along the manufacturing line from a first work station to successive work stations. At least one series of tires is simultaneously processed on the manufacturing line and the curing line. The at least one series of tires comprises at least one first tire model and at least one second tire model different from the at least one first tire model. The tires are transferred from the manufacturing line to the curing line at a same rate as the tires are sequentially transferred along the manufacturing line from the first work station to the successive work stations.
    • 制造轮胎的方法包括以下步骤:制造轮胎的结构部件,按照沿着制造线设置的各个工位,按照预先确定的顺序组装各轮胎的结构部件,将轮胎转移到固化线,以及固化轮胎 在各自的硫化模具中。 轮胎沿着生产线从第一工作站顺序转移到连续的工作站。 在生产线和固化线上同时处理至少一系列轮胎。 所述至少一系列轮胎包括至少一个第一轮胎模型和与所述至少一个第一轮胎模型不同的至少一个第二轮胎模型。 轮胎以与轮胎沿着生产线从第一工作站顺序地转移到连续的工作站相同的速率从生产线转移到固化线。