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    • 1. 发明授权
    • Method for manufacturing trochoid pump and trochoid pump obtained
    • 获得的摆线泵和次摆线泵的制造方法
    • US07967586B2
    • 2011-06-28
    • US12216961
    • 2008-07-14
    • Kenichi FujikiTakatoshi Watanabe
    • Kenichi FujikiTakatoshi Watanabe
    • F01C1/10F04C2/10F04C18/10
    • F04C2/101F04C2/084Y10T29/49242
    • The present invention enables the manufacture of a trochoid pump having a crescent which has been considered theoretically impossible, by employing an inner rotor of a trochoid pump. An inner rotor having a predetermined number N of teeth that is equal to or larger than 4 is formed in advance. In order to manufacture an outer rotor with a predetermined number (N plus a natural number equal to or larger than 2) of teeth, row circles of a diameter slightly smaller than that of a drawn circle are disposed so as to bring the row circles into contact with the tooth bottomland of the inner rotor tooth profile, the inner rotor tooth profile is rotated by half a tooth about the center of the inner rotor and the outer rotor tooth profile is also rotated by half a tooth of the predetermined number (N plus a natural number equal to or larger than 2) of teeth about a virtual center of the outer rotor including the row circles, an established center is determined from the virtual center or the like at the time at which the contact state is assumed, a reference circle is drawn that has a radius from the established center to the row circles and that has the total predetermined number (N plus a natural number equal to or larger than 2) of the equidistantly spaced row circles to form the row circles as outer rotor tooth tips, thereby manufacturing the outer rotor tooth profile.
    • 本发明能够通过使用次摆线泵的内转子来制造具有理论上不可能理解的具有月牙的次摆线泵。 预先形成具有等于或大于4的预定数量N个齿的内转子。 为了制造具有预定数量(N加上等于或大于2的自然数)的齿的外转子,布置直径稍小于拉圆的直径的行圆,以使行圆圈 与内转子齿廓的齿底接触,内转子齿廓绕内转子的中心旋转半个齿,外转子齿廓也旋转预定数量的半齿(N加 围绕包括行圆的外转子的虚拟中心的等于或大于2的齿的自然数,在假定接触状态时从虚拟中心等确定建立的中心,参考 绘制圆,其具有从建立的中心到行圆的半径,并且具有等距离间隔的行圆的总预定数(N加上等于或大于2的自然数),以形成ro w为外转子齿尖,由此制造外转子齿廓。
    • 2. 发明申请
    • Method for manufacturing trochoid pump and trochoid pump obtained
    • 获得的摆线泵和次摆线泵的制造方法
    • US20090185940A1
    • 2009-07-23
    • US12216954
    • 2008-07-14
    • Kenichi FujikiMasaru AmanoKeiichi KaiTakatoshi Watanabe
    • Kenichi FujikiMasaru AmanoKeiichi KaiTakatoshi Watanabe
    • F04C2/10B23P11/00
    • F04C2/101F04C2/084Y10T29/49236
    • The present invention enables the manufacture of a trochoid pump having a crescent which has been considered theoretically impossible by employing an inner rotor of a trochoid pump. An inner rotor having a predetermined number N of teeth that is equal to or larger than 4 is formed in advance. In order to manufacture an outer rotor with a predetermined number (N plus a natural number equal to or larger than 2) of teeth, row circles that are identical to a drawn circle are disposed so as to bring the row circles into contact with the tooth bottomland of the inner rotor tooth profile, the inner rotor tooth profile is rotated by half a tooth about the center of the inner rotor and the outer rotor tooth profile is also rotated by half a tooth of the predetermined number (N plus a natural number equal to or larger than 2) of teeth about a virtual center of the outer rotor including the row circles, an established center is determined from the virtual center or the like at the time at which the contact state is assumed, a reference circle is drawn that has a radius from the established center to the row circles and that has the total predetermined number (N plus a natural number equal to or larger than 2) of the equidistantly spaced row circles to form the row circles as outer rotor tooth tips, thereby manufacturing the outer rotor tooth profile.
    • 本发明能够制造具有新月形的次摆线泵,其通过使用次摆线泵的内转子在理论上是不可能的。 预先形成具有等于或大于4的预定数量N个齿的内转子。 为了制造具有预定数量(N加上等于或大于2的自然数)的齿的外转子,设置与拉圆相同的行圆,以使行圆与齿接触 内转子齿廓的底部,内转子齿廓围绕内转子的中心旋转半个齿,外转子齿廓也旋转预定数量的半齿(N加自然数相等 大于2)的齿围绕包括行圆的外转子的虚拟中心,在假定接触状态时从虚拟中心等确定建立的中心,绘制参考圆, 具有从建立的中心到行圆的半径,并且具有等距间隔行圆的总预定数(N加上等于或大于2的自然数),以形成行圆作为外腐蚀 或齿尖,从而制造外转子齿廓。
    • 3. 发明申请
    • Internal gear pump
    • 内齿轮泵
    • US20090010791A1
    • 2009-01-08
    • US12216483
    • 2008-07-07
    • Kenichi FujikiTakatoshi WatanabeMasashi Sadatomi
    • Kenichi FujikiTakatoshi WatanabeMasashi Sadatomi
    • F01C1/10
    • F04C2/084F04C2/101F04C15/0049
    • An internal gear pump which has a crescent disposed between an outer rotor and an inner rotor having a trochoidal tooth profile, and which reduces vibrations caused by pulsations generated when the fluid is discharged. The internal gear pump has an outer rotor having internal teeth formed therein, an inner rotor disposed on the inner peripheral side of the outer rotor and having formed therein external teeth that mesh with the internal teeth, and a crescent disposed in a clearance between the outer rotor and the inner rotor. Pitch spacings of the external teeth of the inner rotor are formed as non-equal spacings, and pitch spacings of the internal teeth of the outer rotor correspond to the pitch spacings of the external teeth of the inner rotor.
    • 一种内齿轮泵,其具有设置在外转子和具有摆动齿形的内转子之间的新月形,并且减少当流体排出时产生的脉动引起的振动。 内齿轮泵具有形成有内齿的外转子,内转子,其设置在外转子的内周侧,并且在其中形成有与内齿啮合的外齿,以及设置在外齿之间的间隙中的新月形 转子和内转子。 内转子的外齿的间距形成为不等间隔,外转子的内齿的间距对应于内转子的外齿的间距。
    • 4. 发明授权
    • Method for manufacturing trochoid pump and trochoid pump obtained
    • 获得的摆线泵和次摆线泵的制造方法
    • US07967585B2
    • 2011-06-28
    • US12216954
    • 2008-07-14
    • Kenichi FujikiMasaru AmanoKeiichi KaiTakatoshi Watanabe
    • Kenichi FujikiMasaru AmanoKeiichi KaiTakatoshi Watanabe
    • F01C1/10F04C2/10F04C18/10
    • F04C2/101F04C2/084Y10T29/49236
    • The present invention enables the manufacture of a trochoid pump having a crescent which has been considered theoretically impossible by employing an inner rotor of a trochoid pump. An inner rotor having a predetermined number N of teeth that is equal to or larger than 4 is formed in advance. In order to manufacture an outer rotor with a predetermined number (N plus a natural number equal to or larger than 2) of teeth, row circles that are identical to a drawn circle are disposed so as to bring the row circles into contact with the tooth bottomland of the inner rotor tooth profile, the inner rotor tooth profile is rotated by half a tooth about the center of the inner rotor and the outer rotor tooth profile is also rotated by half a tooth of the predetermined number (N plus a natural number equal to or larger than 2) of teeth about a virtual center of the outer rotor including the row circles, an established center is determined from the virtual center or the like at the time at which the contact state is assumed, a reference circle is drawn that has a radius from the established center to the row circles and that has the total predetermined number (N plus a natural number equal to or larger than 2) of the equidistantly spaced row circles to form the row circles as outer rotor tooth tips, thereby manufacturing the outer rotor tooth profile.
    • 本发明能够制造具有新月形的次摆线泵,其通过使用次摆线泵的内转子在理论上是不可能的。 预先形成具有等于或大于4的预定数量N个齿的内转子。 为了制造具有预定数量(N加上等于或大于2的自然数)的齿的外转子,设置与拉圆相同的行圆,以使行圆与齿接触 内转子齿廓的底部,内转子齿廓围绕内转子的中心旋转半个齿,外转子齿廓也旋转预定数量的半齿(N加自然数相等 大于2)的齿围绕包括行圆的外转子的虚拟中心,在假定接触状态时从虚拟中心等确定建立的中心,绘制参考圆, 具有从建立的中心到行圆的半径,并且具有等距间隔行圆的总预定数(N加上等于或大于2的自然数),以形成行圆作为外腐蚀 或齿尖,从而制造外转子齿廓。
    • 5. 发明申请
    • Method for manufacturing trochoid pump and trochoid pump obtained
    • 获得的摆线泵和次摆线泵的制造方法
    • US20090104064A1
    • 2009-04-23
    • US12216961
    • 2008-07-14
    • Kenichi FujikiTakatoshi Watanabe
    • Kenichi FujikiTakatoshi Watanabe
    • F04C2/10B23P15/00B23F15/00
    • F04C2/101F04C2/084Y10T29/49242
    • The present invention enables the manufacture of a trochoid pump having a crescent which has been considered theoretically impossible, by employing an inner rotor of a trochoid pump. An inner rotor having a predetermined number N of teeth that is equal to or larger than 4 is formed in advance. In order to manufacture an outer rotor with a predetermined number (N plus a natural number equal to or larger than 2) of teeth, row circles of a diameter slightly smaller than that of a drawn circle are disposed so as to bring the row circles into contact with the tooth bottomland of the inner rotor tooth profile, the inner rotor tooth profile is rotated by half a tooth about the center of the inner rotor and the outer rotor tooth profile is also rotated by half a tooth of the predetermined number (N plus a natural number equal to or larger than 2) of teeth about a virtual center of the outer rotor including the row circles, an established center is determined from the virtual center or the like at the time at which the contact state is assumed, a reference circle is drawn that has a radius from the established center to the row circles and that has the total predetermined number (N plus a natural number equal to or larger than 2) of the equidistantly spaced row circles to form the row circles as outer rotor tooth tips, thereby manufacturing the outer rotor tooth profile.
    • 本发明能够通过使用次摆线泵的内转子来制造具有理论上不可能理解的具有月牙的次摆线泵。 预先形成具有等于或大于4的预定数量N个齿的内转子。 为了制造具有预定数量(N加上等于或大于2的自然数)的齿的外转子,布置直径稍小于拉圆的直径的行圆,以使行圆圈 与内转子齿廓的齿底接触,内转子齿廓绕内转子的中心旋转半个齿,外转子齿廓也旋转预定数量的半齿(N加 围绕包括行圆的外转子的虚拟中心的等于或大于2的齿的自然数,在假定接触状态时从虚拟中心等确定建立的中心,参考 绘制圆,其具有从建立的中心到行圆的半径,并且具有等距离间隔的行圆的总预定数(N加上等于或大于2的自然数),以形成ro w为外转子齿尖,由此制造外转子齿廓。
    • 8. 发明申请
    • Method for controlling memories of a plurality of kinds and circuit for controlling memories of a plurality of kinds
    • 用于控制多种存储器的方法和用于控制多种存储器的电路
    • US20060041714A1
    • 2006-02-23
    • US11205221
    • 2005-08-17
    • Takatoshi Watanabe
    • Takatoshi Watanabe
    • G06F12/00
    • G06F13/1694
    • It is made possible to control RAMs of a plurality of kinds differing in control system by using a single memory controller (LSI). A memory control circuit having an LSI configuration receives a RAM access request signal, which does not depend on a classification of a RAM device, from a high rank control unit such as a CPU (not shown), and transmits a RAM control signal & data group to a subordinate RAM device to control it. Upon receiving the RAM access request signal, the memory access RAM busy management circuit generates RAM control command & data suitable for the currently connected RAM device, and transmits it to the memory access common control circuit. Upon receiving the RAM control command & data, the memory access common control circuit generates RAM control signal & data group and transmits it to the RAM device.
    • 通过使用单个存储器控制器(LSI),可以控制控制系统的不同种类的RAM。 具有LSI配置的存储器控​​制电路从诸如CPU(未示出)的高等级控制单元接收不依赖于RAM设备的分类的RAM访问请求信号,并且发送RAM控制信号和数据 组合到一个从属RAM设备来控制它。 在接收到RAM访问请求信号时,存储器存取RAM忙管理电路产生适用于当前连接的RAM设备的RAM控制命令和数据,并将其发送到存储器存取通用控制电路。 存储器访问共用控制电路接收到RAM控制命令和数据后,生成RAM控制信号和数据组,并将其发送到RAM装置。