WO2012174937A1 - 一种搭载负载敏感主阀与正流量泵的挖掘机液压系统 - Google Patents

一种搭载负载敏感主阀与正流量泵的挖掘机液压系统 Download PDF

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Publication number
WO2012174937A1
WO2012174937A1 PCT/CN2012/074333 CN2012074333W WO2012174937A1 WO 2012174937 A1 WO2012174937 A1 WO 2012174937A1 CN 2012074333 W CN2012074333 W CN 2012074333W WO 2012174937 A1 WO2012174937 A1 WO 2012174937A1
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Prior art keywords
main
valve
port
pump
load
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PCT/CN2012/074333
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English (en)
French (fr)
Inventor
曹东辉
张涛
张媛
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湖南三一智能控制设备有限公司
上海三一重机有限公司
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Publication of WO2012174937A1 publication Critical patent/WO2012174937A1/zh

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Classifications

    • EFIXED CONSTRUCTIONS
    • E02HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
    • E02FDREDGING; SOIL-SHIFTING
    • E02F9/00Component parts of dredgers or soil-shifting machines, not restricted to one of the kinds covered by groups E02F3/00 - E02F7/00
    • E02F9/20Drives; Control devices
    • E02F9/22Hydraulic or pneumatic drives
    • E02F9/2278Hydraulic circuits
    • E02F9/2296Systems with a variable displacement pump
    • EFIXED CONSTRUCTIONS
    • E02HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
    • E02FDREDGING; SOIL-SHIFTING
    • E02F9/00Component parts of dredgers or soil-shifting machines, not restricted to one of the kinds covered by groups E02F3/00 - E02F7/00
    • E02F9/20Drives; Control devices
    • E02F9/22Hydraulic or pneumatic drives
    • E02F9/2221Control of flow rate; Load sensing arrangements
    • E02F9/2232Control of flow rate; Load sensing arrangements using one or more variable displacement pumps
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F15FLUID-PRESSURE ACTUATORS; HYDRAULICS OR PNEUMATICS IN GENERAL
    • F15BSYSTEMS ACTING BY MEANS OF FLUIDS IN GENERAL; FLUID-PRESSURE ACTUATORS, e.g. SERVOMOTORS; DETAILS OF FLUID-PRESSURE SYSTEMS, NOT OTHERWISE PROVIDED FOR
    • F15B11/00Servomotor systems without provision for follow-up action; Circuits therefor
    • F15B11/16Servomotor systems without provision for follow-up action; Circuits therefor with two or more servomotors
    • F15B11/161Servomotor systems without provision for follow-up action; Circuits therefor with two or more servomotors with sensing of servomotor demand or load
    • F15B11/168Servomotor systems without provision for follow-up action; Circuits therefor with two or more servomotors with sensing of servomotor demand or load with an isolator valve (duplicating valve), i.e. at least one load sense [LS] pressure is derived from a work port load sense pressure but is not a work port pressure itself
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F15FLUID-PRESSURE ACTUATORS; HYDRAULICS OR PNEUMATICS IN GENERAL
    • F15BSYSTEMS ACTING BY MEANS OF FLUIDS IN GENERAL; FLUID-PRESSURE ACTUATORS, e.g. SERVOMOTORS; DETAILS OF FLUID-PRESSURE SYSTEMS, NOT OTHERWISE PROVIDED FOR
    • F15B2211/00Circuits for servomotor systems
    • F15B2211/20Fluid pressure source, e.g. accumulator or variable axial piston pump
    • F15B2211/205Systems with pumps
    • F15B2211/2053Type of pump
    • F15B2211/20546Type of pump variable capacity
    • F15B2211/20553Type of pump variable capacity with pilot circuit, e.g. for controlling a swash plate
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F15FLUID-PRESSURE ACTUATORS; HYDRAULICS OR PNEUMATICS IN GENERAL
    • F15BSYSTEMS ACTING BY MEANS OF FLUIDS IN GENERAL; FLUID-PRESSURE ACTUATORS, e.g. SERVOMOTORS; DETAILS OF FLUID-PRESSURE SYSTEMS, NOT OTHERWISE PROVIDED FOR
    • F15B2211/00Circuits for servomotor systems
    • F15B2211/60Circuit components or control therefor
    • F15B2211/605Load sensing circuits
    • F15B2211/6058Load sensing circuits with isolator valves

Definitions

  • the invention relates to an excavator hydraulic system, in particular to an excavator hydraulic system equipped with a load sensitive main valve and a positive flow main pump.
  • the hydraulic system of the excavator is mainly composed of a main pump, a main valve, an actuator, hydraulic oil and auxiliary components.
  • the main pump is the main power source of the excavator hydraulic system, and converts the output power of the engine into hydraulic energy to provide the excavator. Pressure oil;
  • the main valve is the core control component of the hydraulic system of the excavator. It is responsible for distributing the high-pressure oil output from the main pump to each actuator as needed, ensuring the smooth operation of the excavator's actuators and the coordination of the excavator's compound action;
  • the mechanism is the actuator of the excavator, which converts the hydraulic energy distributed by the main valve into mechanical energy.
  • the actuators of different excavators are slightly different depending on the object of the excavator.
  • the main pump, main valve and corresponding control mode are the core of the excavator hydraulic system, which has a significant impact on the operability, energy saving and responsiveness of the excavator.
  • load-sensing systems use load-sensitive main valves and load-sensing main pumps, which are closed-loop systems, main pump outputs. All the flow enters the working device, no flow is wasted, and the energy saving is high. Moreover, the load sensitive system keeps the pressure difference between the main valve cores at a relatively constant value, and realizes the flow distribution by the opening area, which is not affected by the load, and ensures the compounding.
  • the negative flow system uses a negative flow main valve and a negative flow main pump. The central bypass circuit pressure is used to control the main pump displacement.
  • the main pump control pressure is opposite to the main pump displacement.
  • the main pump control pressure is larger.
  • the smaller the displacement the change of the displacement of the main pump is related to the change of the central bypass pressure, so the response performance is relatively poor;
  • the positive flow system adopts the positive flow main pump and the positive flow main valve, and the handle is directly
  • the output pressure is used for main pump displacement control and is therefore highly responsive.
  • a positive flow main pump its normal output flow is proportional to the main spool stroke, and the proper flow required by the excavator work unit and the main spool stroke are often For a multiple square curve relationship, as shown in Fig.
  • 100 represents the positive flow pump output flow curve.
  • 200 represents the appropriate flow curve required by the working device.
  • the positive flow main pump output flow 100 is more than the suitable flow rate required by the working device 200, resulting in waste of flow, so there is waste of traffic, energy saving. Bad question.
  • an object of the present invention is to provide an excavator hydraulic system equipped with a load-sensitive main valve and a positive flow pump, combining the respective advantages of the load-sensing system and the positive-flow system, and real-time adjustment of the main load according to the magnitude of the load. Pump flow, good energy efficiency, and fast response to positive flow systems.
  • An excavator hydraulic system equipped with a load-sensitive main valve and a positive flow pump comprising a main pump, a main valve with a main spool, and corresponding actuators and auxiliary components, wherein the utility model further comprises adjusting the main pump row a quantity adjustment valve, the main pump is a positive flow main pump, and the main valve is a load sensitive main valve;
  • the adjusting valve is provided with a main pump pressure oil port P port, a main valve LS oil port LS port, a pilot pressure input port Pp port, a return oil port T port and an output port Pi port, and the positive flow main pump pressure oil
  • the output is connected to the regulating valve P port
  • the load-sensitive main valve LS oil is connected to the adjusting valve LS port
  • the adjusting valve Pp port is connected to the maximum pressure output of the pilot handle
  • the regulating valve is connected with the T port to the fuel tank.
  • the adjusting valve Pi port is connected to the displacement control port of the positive flow main pump, and the positive flow main pump, the load sensitive main valve and the working device are sequentially connected;
  • the pressure oil flowing out of the positive flow main pump is distributed to each of the actuators through the load-sensitive main valve to realize various actions of the excavator, and the adjustment valve input is the pilot handle
  • the maximum pressure, the output is the displacement control pressure of the main pump, comparing the main pump output flow rate and the appropriate flow rate required by the working device, when the positive flow main pump output flow rate is greater than the suitable flow rate required by the working device, Reducing the regulating valve output pressure, the main pump displacement control pressure is decreased, so that the displacement of the positive flow main pump is reduced, thereby reducing the output flow rate of the positive flow main pump to a suitable working device flow.
  • the above-described excavator hydraulic system equipped with a load-sensitive main valve and a positive flow pump, wherein the adjustment valve is a two-position three-way solenoid valve.
  • the invention has the advantages that: combining the respective advantages of the positive flow hydraulic system and the load-sensitive hydraulic system, adjusting the flow rate of the pump in real time according to the size of the load, the energy saving is good, and the positive flow hydraulic pressure is inherited.
  • the system responds quickly.
  • Figure 1 is a graph showing the relationship between the appropriate flow rate of the excavator working device and the positive flow pump output flow rate and the main spool stroke;
  • FIG. 2 is a schematic view showing the structure of an excavator hydraulic system equipped with a load-sensitive main valve and a positive flow pump according to the present invention.
  • the hydraulic system of the excavator of the present invention is provided with a load-sensitive main valve and a positive flow pump, and specifically includes a main pump 1, a main valve 2 with a main spool, and corresponding actuators and auxiliary components, and includes
  • the regulating valve 3 for adjusting the displacement of the main pump 1 is a positive flow main pump
  • the main valve 2 is a load sensitive main valve.
  • the regulating valve 3 is a two-position three-way solenoid valve, and the regulating valve 3 is provided with a main pump pressure oil port P port, a main valve LS oil port LS port, a pilot pressure input port Pp port, and a return oil port T.
  • the pressure oil output of the positive flow main pump 1 is connected to the P port of the regulating valve 3
  • the LS oil of the load sensitive main valve 2 is connected to the LS port of the regulating valve 3
  • the Pp port of the regulating valve 3 is connected to the pilot.
  • the maximum pressure output of the handle 4 the T port on the regulating valve 3 is connected to the fuel tank 5, the Pi port of the regulating valve 3 is connected to the displacement control port of the positive flow main pump 1, and the positive flow main pump 1, the load sensitive main valve 2, the work Device 0 is connected in sequence.
  • the pressure oil flowing out of the positive flow main pump 1 is distributed to the actuators through the load-sensitive main valve 2, and the various actions of the excavator are realized, and the input of the adjustment valve 3 is
  • the maximum pressure of the pilot handle 4 is output to the displacement control pressure of the main pump 1, and the output flow rate of the main pump 1 and the appropriate flow rate required for the working device 0 are compared, specifically by comparing the main pump The output pressure of 1 and the LS oil port pressure of the load-sensitive main valve 2, when the positive flow main pump 1 output flow rate is greater than the appropriate flow rate required by the working device 0, the output pressure of the regulating valve 3 is lowered, and the main pump displacement control pressure is lowered.
  • main valve 2 is further provided with a compensating valve 21 corresponding to each of the main spools 22 for compensating for the pressure at the low load end, so as to achieve coordination during the composite operation of the whole machine.
  • the invention combines the advantages of the positive flow hydraulic system and the load-sensitive hydraulic system, adjusts the flow rate of the pump in real time according to the size of the load, has excellent energy saving, and inherits the characteristics of fast positive flow response speed, and adjusts the positive by using the adjusting valve
  • the flow main pump displacement reduces the flow loss of the hydraulic system before point A in Figure 1 above.

Abstract

一种搭载负载敏感主阀与正流量泵的挖掘机液压系统,包括主泵(1)、带主阀芯(21)的主阀(2)、以及相应的执行元件和辅助元件,其中,还包括用来调节所述正泵(1)排量的调整阀(3),所述主泵(1)为正流量泵,所述主阀(2)为负载敏感主阀;比较所述主泵输出流量和工作装置所需的合适流量,当所述正流量主泵输出流量大于工作装置所需的合适流量时,降低所述调整阀输出压力,所述主泵排量控制压力降低,以使得所述正流量主泵的排量减小,从而将所述正流量主泵的输出流量降低至工作装置所需合适流量。该系统结合了正流量液压系统和负载敏感液压系统,根据负载的大小实时调整泵的流量,节能性好,并且具有响应速度快的特点。

Description

一种搭载负载敏感主阀与正流量泵的挖掘机'; ½系统 本申请要求于 2011 年 06 月 23 日提交中国专利局、 申请号为 201110170456.9、 发明名称为"一种搭栽负载敏感主阀与正流量泵的挖掘机 ¾J£系统"的中国专利申请的优先权, 其全部内容通过引用结合在本申请 中。
技术领域
本发明涉及一种挖掘机液压系统, 尤其涉及一种搭载负载敏感主阀与 正流量主泵的挖掘机液压系统。
背景技术
挖掘机液压系统主要由主泵、 主阀、 执行机构、 液压油和辅助元件构 成, 其中, 主泵是挖掘机液压系统的主要动力源, 将发动机输出的功率转 换为液压能, 给挖掘机提供压力油; 主阀为挖掘机液压系统的核心控制元 件, 负责将主泵输出的高压油按需要分配给各执行元件, 保证挖掘机各执 行机构的顺利动作和挖掘机复合动作的协调性; 执行机构是挖掘机的执行 元件, 将主阀分配的液压能转换为机械能, 不同挖掘机的执行机构根据挖 掘机作业对象的不同而略微有所区别。 在挖掘机液压系统中, 主泵、 主阀 和相应的控制方式是挖掘机液压系统的核心,对挖掘机的操作性、节能性、 响应性有重大影响。
目前挖掘机行业中, 广泛采用的液压系统有负载敏感系统、 负流量系 统、 正流量系统等: ( 1 )负载敏感系统采用负载敏感主阀和负载敏感主泵, 为一闭环系统, 主泵输出流量全部进入工作装置, 没有流量浪费, 具有较 高的节能性, 而且负载敏感系统使主阀芯两侧压差保持在相对恒定值, 实 现流量由开口面积进行分配, 不受负载影响, 保证复合动作协调性; (2 ) 负流量系统采用负流量主阀和负流量主泵, 采用中央旁通回路压力控制主 泵排量, 主泵控制压力与主泵排量相反, 主泵控制压力越大, 其排量越小, 其主泵排量的变化与中央旁通压力的变化相关, 因此响应性能相对较差; ( 3 )正流量系统采用正流量主泵与正流量主阀, 直接将手柄输出压力用于 主泵排量控制, 因而响应性高。 但是, 采用正流量主泵, 其正常输出流量 与主阀芯行程成正比, 而挖掘机工作装置所需合适流量与主阀芯行程往往 为一多次方曲线关系, 如图 1所示, 图 1所示的正流量泵输出流量 Q及工 作装置所需流量与主阀芯行程 S的关系曲线中, 100代表正流量泵输出流 量曲线, 200代表工作装置所需合适流量曲线, 当主阀芯行程在 A点之前 时, 正流量主泵输出流量 100多于工作装置所需合适流量 200, 造成了流 量浪费, 因而存在流量浪费, 节能性不好的问题。
发明内容
针对上述存在的问题, 本发明的目的是提供一种搭载负载敏感主阀与 正流量泵的挖掘机液压系统, 结合了负载敏感系统和正流量系统各自的部 分优点, 能根据负载的大小实时调整主泵的流量, 具有较好的节能性, 并 且具有正流量系统的快速响应性。
本发明的目的是通过下述技术方案实现的:
一种搭载负载敏感主阀与正流量泵的挖掘机液压系统, 包括主泵、 带 主阀芯的主阀、 以及相应的执行元件和辅助元件, 其中, 还包括用来调节 所述主泵排量的调整阀, 所述主泵为正流量主泵, 所述主阀为负载敏感主 阀;
所述调整阀上设有主泵压力油接口 P口、 主阀 LS油接口 LS口、先导 压力输入接口 Pp口、 回油接口 T口及输出接口 Pi口, 将所述正流量主泵 压力油输出接到所述调整阀 P口, 所述负载敏感主阀 LS油连接所述调整 阀 LS口, 所述调整阀 Pp口接先导手柄最大压力输出, 所述调整阀上 T口 接油箱, 所述调整阀 Pi口接所述正流量主泵的排量控制口, 并将所述正流 量主泵、 所述负载敏感主阀、 工作装置依次相连;
所述液压系统工作时, 所述正流量主泵流出的压力油经所述负载敏感 主阀分配给各所述执行机构, 实现挖掘机的各个动作, 所述调整阀输入为 所述先导手柄的最大压力, 输出为所述主泵的排量控制压力, 比较所述主 泵输出流量和工作装置所需的合适流量, 当所述正流量主泵输出流量大于 工作装置所需的合适流量时, 降低所述调整阀输出压力, 所述主泵排量控 制压力降低, 以使得所述正流量主泵的排量减小, 从而将所述正流量主泵 的输出流量降低至工作装置所需合适流量。
上述搭载负载敏感主阀与正流量泵的挖掘机液压系统, 其中, 所述主 阀上对应每个所述主阀芯还配置有补偿阀, 用于补偿低负载端的压力, 以 实现整机复合动作时的协调性。
上述搭载负载敏感主阀与正流量泵的挖掘机液压系统, 其中, 所述比 较所述主泵输出流量和工作装置所需的合适流量是通过比较所述主泵的输 出压力和所述负载敏感主阀 LS油接口压力来实现的。
上述搭载负载敏感主阀与正流量泵的挖掘机液压系统, 其中, 所述调 整阀为二位三通电磁阀。
与已有技术相比, 本发明的有益效果在于: 结合了正流量液压系统和 负载敏感液压系统各自的部分优点, 根据负载的大小实时调整泵的流量, 节能性好, 并且继承了正流量液压系统响应速度快的特点。
附图说明
图 1是挖掘机工作装置所需合适流量及正流量泵输出流量与主阀芯行 程关系曲线图;
图 2是本发明搭载负载敏感主阀与正流量泵的挖掘机液压系统的结构 示意图。
具体实施方式
下面结合原理图和具体操作实施例对本发明作进一步说明。
如图 2所示,本发明搭载负载敏感主阀与正流量泵的挖掘机液压系统, 具体包括主泵 1、 带主阀芯的主阀 2、 以及相应的执行元件和辅助元件, 还 包括用来调节主泵 1排量的调整阀 3, 主泵 1为正流量主泵, 主阀 2为负 载敏感主阀。 在本实施例中, 调整阀 3为二位三通电磁阀, 调整阀 3上设 有主泵压力油接口 P口、主阀 LS油接口 LS口、先导压力输入接口 Pp口、 回油接口 T口及输出接口 Pi口,将正流量主泵 1的压力油输出接到调整阀 3的 P口, 负载敏感主阀 2的 LS油连接调整阀 3的 LS口,调整阀 3的 Pp 口接先导手柄 4最大压力输出, 调整阀 3上的 T口接油箱 5, 调整阀 3的 Pi口接正流量主泵 1的排量控制口, 并将正流量主泵 1、 负载敏感主阀 2、 工作装置 0依次相连。
继续参看图 2并配合图 1所示, 本液压系统工作时, 正流量主泵 1流 出的压力油经负载敏感主阀 2分配给各执行机构,实现挖掘机的各个动作, 调整阀 3输入为先导手柄 4的最大压力, 输出为主泵 1的排量控制压力, 比较主泵 1的输出流量和工作装置 0所需的合适流量, 具体通过比较主泵 1的输出压力和负载敏感主阀 2的 LS油接口压力,当正流量主泵 1输出流 量大于工作装置 0所需的合适流量时, 降低调整阀 3输出压力, 主泵排量 控制压力降低, 以使得正流量主泵 1的排量减小, 从而将正流量主泵 1的 输出流量降低至工作装置 0所需合适流量, 从而降低了正流量泵的流量, 实现节能效果, 而且响应速度快。
进一步地, 主阀 2上对应每个主阀芯 22还配置有补偿阀 21 , 用于补 偿低负载端的压力, 以实现整机复合动作时的协调性。
本发明结合了正流量液压系统和负载敏感液压系统的优点, 根据负载 的大小实时调整泵的流量, 具有卓越的节能性, 并且继承了正流量响应速 度快的特点, 通过利用调整阀来调节正流量主泵排量, 降低了液压系统在 上述图 1中 A点之前的流量损失。
以上对本发明的具体实施例进行了详细描述, 但本发明并不限制于以 上描述的具体实施例, 其只是作为范例。 对于本领域技术人员而言, 任何 对该搭载负载敏感主阀与正流量泵的挖掘机液压系统进行的等同修改和替 代也都在本发明的范畴之中。 因此, 在不脱离本发明的精神和范围下所作 出的均等变换和修改, 都应涵盖在本发明的范围内。

Claims

权 利 要 求
1、 一种搭载负载敏感主阀与正流量泵的挖掘机液压系统, 包括主泵、 带主阀芯的主阀、 以及相应的执行元件和辅助元件, 其特征在于, 还包括 用来调节所述主泵排量的调整阀, 所述主泵为正流量主泵, 所述主阀为负 载敏感主阀;
所述调整阀上设有主泵压力油接口 P口、主阀 LS油接口 LS口、先导 压力输入接口 Pp口、 回油接口 T口及输出接口 Pi口, 将所述正流量主泵 压力油输出接到所述调整阀 P口, 所述负载敏感主阀 LS油连接所述调整 阀 LS口, 所述调整阀 Pp口接先导手柄最大压力输出, 所述调整阀上 T口 接油箱, 所述调整阀 Pi口接所述正流量主泵的排量控制口, 并将所述正流 量主泵、 所述负载敏感主阀、 工作装置依次相连;
所述液压系统工作时, 所述正流量主泵流出的压力油经所述负载敏感 主阀分配给各所述执行机构, 实现挖掘机的各个动作, 所述调整阀输入为 所述先导手柄的最大压力, 输出为所述主泵的排量控制压力, 比较所述主 泵输出流量和工作装置所需的合适流量, 当所述正流量主泵输出流量大于 工作装置所需的合适流量时, 降低所述调整阀输出压力, 所述主泵排量控 制压力降低, 以使得所述正流量主泵的排量减小, 从而将所述正流量主泵 的输出流量降低至工作装置所需合适流量。
2、根据权利要求 1所述的搭载负载敏感主阀与正流量泵的挖掘机液压 系统, 其特征在于, 所述主阀上对应每个所述主阀芯还配置有补偿阀, 用 于补偿低负载端的压力, 以实现整机复合动作时的协调性。
3、根据权利要求 1所述的搭载负载敏感主阀与正流量泵的挖掘机液压 系统, 其特征在于, 所述比较所述主泵输出流量和工作装置所需的合适流 量是通过比较所述主泵的输出压力和所述负载敏感主阀 LS油接口压力来 实现的。
4、根据权利要求 1至 3中任意一项所述的搭载负载敏感主阀与正流量 泵的挖掘机液压系统, 其特征在于, 所述调整阀为二位三通电磁阀。
PCT/CN2012/074333 2011-06-23 2012-04-19 一种搭载负载敏感主阀与正流量泵的挖掘机液压系统 WO2012174937A1 (zh)

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