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    • 32. 发明授权
    • Linear motor, a linear compressor, a method of controlling a linear compressor, a cooling system, and a linear compressor controlling a system
    • 线性电动机,线性压缩机,控制线性压缩机的方法,冷却系统和控制系统的线性压缩机
    • US08033795B2
    • 2011-10-11
    • US10587234
    • 2005-01-19
    • Paulo Sergio DainezDietmar Erich Bernhard LillieMarcio Roberto Thiessen
    • Paulo Sergio DainezDietmar Erich Bernhard LillieMarcio Roberto Thiessen
    • F04B49/06
    • F04B49/06F04B35/04F04B35/045F04B2201/0201F04B2203/0401F04B2203/0402H02K33/16H02P25/06
    • A linear motor (10), a linear compressor (100), a method of controlling a linear compressor (100), a cooling system (20) and a system of controlling a linear compressor (100) to operate a linear compressor (100) in resonance in it's the greatest possible efficiency throughout its operation are described. One of the ways of achieving these objectives is by means of a linear compressor (100) applicable to a cooling system (20), the linear compressor (100) comprising a piston (1) driven by a linear motor (10), the piston (1) having displacement range controlled by means of a controlled voltage (VM), the controlled voltage (VM) having a voltage frequency (φP) applied to the linear motor (10) and adjusted by a processing unit (22), the range of piston (1) displacement being dynamically controlled in function of a variable demand of the cooling system (20), the linear compressor (100) having a resonance frequency, the processing unit (22) adjusting the range of piston (1) displacement, so that the linear compressor (100) will be dynamically kept on resonance throughout the variations in demand of the cooling system (20).
    • 线性电动机(10),线性压缩机(100),线性压缩机(100)的控制方法,冷却系统(20)和控制线性压缩机(100)的操作线性压缩机(100)的系统, 在其共鸣中,描述了其运行中最大可能的效率。 实现这些目标的方法之一是通过适用于冷却系统(20)的线性压缩机(100),所述线性压缩机(100)包括由线性马达(10)驱动的活塞(1),所述活塞 (1)具有通过受控电压(VM)控制的位移范围,所述受控电压(VM)具有施加到所述线性电动机(10)并由处理单元(22)调节的电压频率(& P) 根据冷却系统(20)的可变需求,线性压缩机(100)具有共振频率来动态地控制活塞(1)位移的范围,处理单元(22)调节活塞(1)的范围, 使得在整个冷却系统(20)的需求变化中,线性压缩机(100)将被动态保持共振。
    • 33. 发明申请
    • PISTON AND CYLINDER COMBINATION DRIVEN BY LINEAR MOTOR WITH CYLINDER POSITION RECOGNITION SYSTEM AND LINEAR MOTOR COMPRESSOR, AND AN INDUCTIVE SENSOR
    • 线性电机与气缸位置识别系统和线性电动机压缩机及电感式传感器驱动的活塞和气缸组合
    • US20110008191A1
    • 2011-01-13
    • US12810953
    • 2008-12-29
    • Dietmar Erich Bernhard LiliePaulo Sergio DainezNerian Fernando FerreiraMarcelo Knies
    • Dietmar Erich Bernhard LiliePaulo Sergio DainezNerian Fernando FerreiraMarcelo Knies
    • F04B35/04H02K33/00
    • F04B35/045F04B2201/0201F04B2203/0402
    • The present invention discloses a piston and cylinder combination driven by linear motor with cylinder position recognition system, comprising a support structure (4) forming an air gap (12); a motor winding (6) generating a variable magnetic flow at least along part of the air gap (12); a cylinder (2) having a head at one of its ends; a piston (1) connected to a magnet (5), the magnet being driven by the magnetic flow of the motor winding (6) to move inside a displacement path including at least partially the air gap (12); the displacement of the magnet making the piston (1) reciprocatingly move inside the cylinder (2); and an inductive sensor (8) disposed at a point of the displacement path of the magnet (5), such that when the piston (1) reaches a position of closest approach to the cylinder head, the inductive sensor detects a variation in the magnetic field resulting from the corresponding position of the magnet, and generates a voltage signal arising from this magnetic field variation. The invention also discloses a linear motor compressor, which comprises a piston and cylinder combination of the kind of the present invention, and is capable of recognizing the position of the cylinder.
    • 本发明公开了一种由具有气缸位置识别系统的线性电动机驱动的活塞和气缸组合,包括形成气隙(12)的支撑结构(4); 至少沿气隙(12)的一部分产生可变磁流的电动机绕组(6); 一个在其一个端部具有头部的圆柱体(2); 连接到磁体(5)的活塞(1),所述磁体由所述电机绕组(6)的磁流驱动以在至少部分地包括所述气隙(12)的位移路径内移动; 使活塞(1)的磁体的位移在气缸(2)内往复运动; 以及设置在所述磁体(5)的位移路径的点处的感应传感器(8),使得当所述活塞(1)到达最接近所述气缸盖的位置时,所述电感式传感器检测所述磁体 磁场产生的电场信号,产生由该磁场变化引起的电压信号。 本发明还公开了一种线性电动机压缩机,其包括本发明的活塞和气缸组合,并且能够识别气缸的位置。
    • 39. 发明授权
    • Device and method for controlling a thick matter pump
    • 用于控制厚物质泵的装置和方法
    • US07581935B2
    • 2009-09-01
    • US10558938
    • 2005-03-18
    • Wilhelm HofmannStefan Höfling
    • Wilhelm HofmannStefan Höfling
    • F04B49/00F04B17/00F04B53/10
    • F04B15/023F04B7/0241F04B9/1178F04B2201/0201F04B2203/0903Y10S417/90
    • The invention relates to a device and a method for controlling a two-cylinder thick matter pump comprising delivery pistons that are actuated in a push-pull manner by means of a hydraulic reversible pump (6) and hydraulic drive cylinders controlled by said pump. For each pressure stroke, the delivery cylinders (50, 50′) are connected to a delivery conduit (58) by means of a pipe junction (56). At the end of a pressure stroke, a reversal process of the reversible pump (6) and the pipe junction (56) is triggered. The aim of the invention is to obtain a targeted reversal of the reversal pump and the pipe junction, even when the deliverable quantity is varied, whereby the delivery cylinders are completely emptied, but also without pistons banging the ends of the cylinders. To this end, a computer-assisted reversal device is provided, said device comprising a measuring and evaluating routine for detecting the temporal displacement course of the piston along the path thereof between the two cylinder ends, by measurement and/or calculation, and for calculating a triggering time derived therefrom for the subsequent reversal of the reversible pump and the pipe switch.
    • 本发明涉及一种用于控制双缸厚料泵的装置和方法,包括通过液压可逆泵(6)和由所述泵控制的液压驱动缸以推拉方式致动的输送活塞。 对于每个压力冲程,输送缸(50,50')通过管接头(56)连接到输送管道(58)。 在压力行程结束时,触发可逆泵(6)和管接头(56)的反转过程。 本发明的目的是为了获得反转泵和管接头的目标反转,即使可交付量变化,由此输送缸完全排空,而且没有活塞撞击气缸的端部。 为此,提供了一种计算机辅助反向装置,所述装置包括测量和评估程序,用于通过测量和/或计算来检测活塞沿着两个气缸端之间的路径的时间位移过程,并用于计算 由此导致的触发时间用于随后反转可逆泵和管道开关。