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    • 3. 发明授权
    • Process for forming a powdered EPDM terpolymer (C-955)
    • 形成粉末状EPDM三元共聚物(C-955)的方法
    • US4294744A
    • 1981-10-13
    • US136366
    • 1980-04-01
    • Robert R. KleinHenry S. Makowski, deceased
    • Robert R. KleinHenry S. Makowski, deceased
    • C08J3/07C08J3/16C08F6/12
    • C08J3/16C08J3/07C08J2323/16
    • A process for forming a powdered EPDM terpolymer, wherein the powder of said EPDM terpolymer has a volume density of about 10 to about 30 lb/ft.sup.3 which includes the steps of adding a cement of an EPDM terpolymer in a hydrocarbon solvent to water, a volume ratio of the water to the cement being about 60 to 1 to about 2 to 1; emulsify under high-shear the blend of the water and the cement thereby forming a dispersion of particles of the EPDM terpolymer in the water; steam stripping under high agitation the emulsified blend of the EPDM terpolymer, the water and the solvent thereby removing the solvent from the emulsified blend; filtering the dispersion of the particles of the EPDM terpolymer in the water to recover a wet powder of the EPDM terpolymer; and hot-air drying the wet powder of the EPDM terpolymer in a fluid-bed dryer.
    • 一种用于形成粉末状EPDM三元共聚物的方法,其中所述EPDM三元共聚物的粉末具有约10至约30lb / ft 3的体积密度,其包括以下步骤:将EPDM三元共聚物在烃溶剂中的水泥添加到水中, 水与水泥的比例为约60:1至约2:1; 在高剪切下在水和水泥的共混物中乳化,从而在水中形成EPDM三元共聚物颗粒的分散体; 在高搅拌下蒸汽汽提EPDM三元共聚物,水和溶剂的乳化共混物,从而从乳化混合物中除去溶剂; 过滤EPDM三元共聚物的颗粒在水中的分散体,以回收EPDM三元共聚物的湿粉末; 并在流化床干燥器中热风干燥EPDM三元共聚物的湿粉末。
    • 4. 发明授权
    • Component mount assembly providing active control of vehicle vibration
    • 组件安装组件提供车辆振动的主动控制
    • US5219037A
    • 1993-06-15
    • US822795
    • 1992-01-21
    • Stanley E. SmithRobert R. KleinWilliam E. GossmanScott K. Miller
    • Stanley E. SmithRobert R. KleinWilliam E. GossmanScott K. Miller
    • B60K5/12F16F1/36F16F15/00F16F15/02F16F15/03
    • F16F15/03B60K5/1283F16F1/3615F16F15/02
    • A mount assembly is provided for mounting a component, such as an engine, to a vehicle for active control of vibration. The assembly includes first and second mounting members and, an intermediate insert with first and second elastomeric systems connecting said first and second mounting members with the intermediate insert in between. An actuator in parallel with said first elastomeric system provides vertical force to said first elastomeric system to provide a relatively soft vertical rate. A controller operates the actuator in response to sensed vibration so that the vertical force tends to avoid or cancel it. A relatively high fore/aft and lateral dynamic rate of the first system protects the actuator. The second elastomeric system connects the second mounting member with the intermediate insert and exhibits a relatively high vertical rate and a relatively soft fore/aft and lateral rate. One or more sensors feeds data to a controller that analyzes the vibrations to determine the harmonics thereof. The controller then constructs one or more output waveforms and feeds them to the actuator so that a force is applied across the first elastomeric system between the first mounting member and the intermediate insert, thereby tending to produce the relatively soft vertical rate for component isolation and noise suppression.
    • 提供了用于将诸如发动机的部件安装到车辆上用于主动控制振动的安装组件。 该组件包括第一和第二安装构件,以及具有第一和第二弹性体系统的中间插入件,其将所述第一和第二安装构件与中间插入件连接在其间。 与所述第一弹性体系统平行的致动器向所述第一弹性体系统提供垂直的力以提供相对较软的垂直速率。 控制器响应于感测到的振动来操作致动器,使得垂直力倾向于避免或取消它。 第一系统的相对较高的前/后和横向动态速率保护致动器。 第二弹性体系统将第二安装构件与中间插入件连接,并且呈现相对高的垂直速率和相对较软的前/后和横向速率。 一个或多个传感器将数据馈送到分析振动的控制器以确定其谐波。 然后,控制器构造一个或多个输出波形并将其馈送到致动器,使得在第一安装构件和中间插入件之间跨越第一弹性体系统施加力,从而趋向于产生用于部件隔离和噪声的相对柔软的垂直速率 抑制。
    • 5. 发明授权
    • Hydraulic mount with triple decouplers
    • 带三重分离器的液压支架
    • US5112032A
    • 1992-05-12
    • US638925
    • 1991-01-09
    • Robert R. KleinJohn F. Hoying
    • Robert R. KleinJohn F. Hoying
    • F16F13/10
    • F16F13/105
    • A hydraulic mount assembly includes an elastomeric hollow body connected to a pair of opposed mounting members. A resilient diaphragm closes the hollow body and forms therewith a closed cavity that is filled with a damping liquid. A partition plate is provided in the hollow body to divide the cavity into a primary chamber and a secondary chamber. The secondary chamber is enclosed by the diaphragm. An orifice track is provided in the partition plate. The orifice track provides communication between the primary and secondary chambers so as to effect damping. Three decouplers are provided in the partition plate centered relative to distinctive dome areas in the primary chamber; two recessed domes and a center projecting dome. The decouplers respond independently to localized dynamic pressure variations. Together, the orifice track and decouplers serve to restrict and control liquid flow between the chambers so as to passively provide a tunable distinctive dip in dynamic rate to adjust the stiffness at selected high frequencies. A relatively low dynamic rate for small displacements is provided at relatively high frequencies while maintaining damping for large displacements.
    • 液压安装组件包括连接到一对相对的安装构件的弹性体中空体。 弹性膜片关闭中空体并与其形成填充有阻尼液体的封闭空腔。 分隔板设置在中空体中以将空腔分成主室和次室。 次级室由隔膜封闭。 在隔板中设有孔口。 孔口轨道提供主室和次室之间的连通,以便实现阻尼。 在隔板中设置有三个分离器,它们相对于主室中的特殊圆顶区域居中; 两个凹陷的圆顶和一个中心突出的圆顶。 解耦器独立响应局部动态压力变化。 孔口跟踪和分离器一起用于限制和控制腔室之间的液体流动,以便被动地提供动态速率下的可调谐特征下降以调整所选高频下的刚度。 在相对高的频率下提供小的位移的相对低的动态速率,同时保持大的位移的阻尼。
    • 8. 发明授权
    • Tiered decoupler for improved high frequency tuning of hydraulic mounts
    • 分层分离器,用于改进液压支架的高频调谐
    • US5263693A
    • 1993-11-23
    • US876558
    • 1992-04-30
    • Robert R. Klein
    • Robert R. Klein
    • F16F13/10F16F13/00
    • F16F13/105
    • The hydraulic mount assembly includes a hollow body connected to a pair of mounting members. A resilient diaphragm closes the hollow body thereby forming a closed cavity that is filled with damping liquid. A partition divides the cavity into primary chamber and secondary chambers. An orifice track and a decoupler passage are provided in the partition to communicate with both the primary and secondary chambers. A tiered decoupler is positioned for limited reciprocal movement in the decoupler passage. The tiered decoupler includes a plate, that is received and held for limited reciprocal movement within an annular groove in the partition. A pair of plungers that are interconnected by slide rods extending through apertures in the plate and reciprocate in tandem with respect to the plate. This relative reciprocal movement between the plate and plungers generates laminar flow around the decoupler during transition in response to high frequency vibrations for a reduced dynamic rate and smoother/quieter operation.
    • 液压安装组件包括连接到一对安装构件的空心体。 弹性膜片关闭中空体,从而形成填充有阻尼液体的封闭空腔。 分隔器将空腔分成主室和次室。 在隔板中设置有孔口轨道和解耦器通道,以与主腔室和次腔室连通。 分层去耦器被定位成在去耦器通道中有限的相互运动。 分层分离器包括板,其被接收并保持用于分隔件内的环形槽内的有限的往复运动。 一对柱塞,其通过滑杆相互连接,所述滑杆延伸穿过板中的孔并相对于板串联地往复运动。 板和柱塞之间的这种相对往复运动响应于高频振动而在转变期间围绕解耦器产生层流,以减小动态速率和更平滑/更安静的操作。
    • 9. 发明授权
    • Hydraulic mount with spring-loaded decoupler for tuned rate dip
    • 具有弹簧加载解耦器的液压支架,用于调节速率下降
    • US5246211A
    • 1993-09-21
    • US912358
    • 1992-07-13
    • Robert R. KleinStanley E. Smith
    • Robert R. KleinStanley E. Smith
    • F16F13/10
    • F16F13/105
    • A hydraulic mount assembly includes a pair of mounting members connected together to form a hollow elastomeric body closed by a resilient diaphragm so as to form a cavity for a damping liquid. A partition divides the cavity into a primary chamber formed between the partition and the hollow body and a secondary chamber formed between the partition and the diaphragm. The partition also includes a primary orifice track, a secondary orifice track and a decoupler passage providing fluid communication between the chambers. A first decoupler is mounted for limited reciprocating movement in the decoupler passage. A spring biases the first decoupler to a seated position sealing the passage. A second decoupler is mounted for limited reciprocating movement in the secondary orifice track. The primary orifice track establishes a first resonance frequency for the damping liquid. Similarly, the secondary orifice track establishes second, higher resonance frequency. Further, the force provided by the coil spring against the first decoupler is overcome by fluid pressure at a third resonance frequency higher than that of the second resonance frequency. Together these structures function to provide a rate dip and improved relatively high frequency tuning in a fully passive mount assembly.
    • 液压安装组件包括连接在一起的一对安装构件,以形成由弹性隔膜封闭的中空弹性体,以形成用于阻尼液体的空腔。 隔板将空腔分成形成在隔板和中空本体之间的主室,以及形成在隔板和隔膜之间的次室。 分隔件还包括主孔口轨道,辅助孔口轨道和解耦器通道,提供腔室之间的流体连通。 第一解耦器被安装用于去耦器通道中有限的往复运动。 弹簧将第一解耦器偏置到密封通道的就座位置。 第二分离器被安装用于次级孔道中的有限的往复运动。 主孔口轨道为阻尼液体建立了第一共振频率。 类似地,次级孔径轨迹建立第二较高的共振频率。 此外,螺旋弹簧相对于第一解耦器提供的力通过比第二共振频率高的第三共振频率的流体压力来克服。 这些结构一起用于在完全被动安装组件中提供速率下降和改进的相对高频调谐。
    • 10. 发明授权
    • Process for the sulfonation of an elastomeric polymer
    • 磺化弹性聚合物的方法
    • US4532302A
    • 1985-07-30
    • US627080
    • 1984-07-02
    • Joseph WagensommerRobert R. KleinRobert D. Lundberg
    • Joseph WagensommerRobert R. KleinRobert D. Lundberg
    • C08C19/20C08F8/36
    • C08C19/20C08F8/44C08F2800/20
    • A continuous process for sulfonating elastomeric polymers to form neutralized sulfonated elastomeric polymers with improved physical properties includes the steps of; (a) contacting a cement of an elastomeric polymer with a sulfonating agent in a staged reaction vessel for a sufficient period of time at a temperature of about -50.degree. C. to about +100.degree. C. to form an unneutralized sulfonated elastomeric polymer; (b) continuously transferring the cement of the unneutralized sulfonated elastomeric polymer to a neutralization vessel; (c) continuously adding a quenching agent and neutralizing agent to the cement of the unneutralized sulfonated elastomeric polymer in a staged neutralization vessel wherein the sulfonated cement is quenched and the neutralization agent reacts with the unneutralized sulfonated polymer to form the neutralized sulfonated elastomeric polymer; and (d) isolating said neutralized sulfonated elastomeric polymer.
    • 用于磺化弹性体聚合物以形成具有改进的物理性质的中和的磺化弹性体聚合物的连续方法包括以下步骤: (a)在分级反应容器中将弹性体聚合物的水泥与磺化剂在约-50℃至约+ 100℃的温度下接触足够的时间以形成未中和的磺化弹性体聚合物; (b)将未中和的磺化弹性体聚合物的水泥连续转移到中和容器中; (c)在分级中和容器中向未中和磺化弹性体聚合物的水泥中连续加入淬火剂和中和剂,其中磺化水泥淬火并且中和剂与未中和的磺化聚合物反应以形成中和的磺化弹性体聚合物; 和(d)分离所述中和的磺化弹性体聚合物。