WO2021035522A1 - Linear motor plunger pump - Google Patents

Linear motor plunger pump Download PDF

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Publication number
WO2021035522A1
WO2021035522A1 PCT/CN2019/102786 CN2019102786W WO2021035522A1 WO 2021035522 A1 WO2021035522 A1 WO 2021035522A1 CN 2019102786 W CN2019102786 W CN 2019102786W WO 2021035522 A1 WO2021035522 A1 WO 2021035522A1
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WO
WIPO (PCT)
Prior art keywords
plunger
valve box
linear motor
cylinder
hole
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PCT/CN2019/102786
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French (fr)
Chinese (zh)
Inventor
崔海萍
王继鑫
李海龙
Original Assignee
烟台杰瑞石油装备技术有限公司
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Application filed by 烟台杰瑞石油装备技术有限公司 filed Critical 烟台杰瑞石油装备技术有限公司
Priority to PCT/CN2019/102786 priority Critical patent/WO2021035522A1/en
Publication of WO2021035522A1 publication Critical patent/WO2021035522A1/en

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B17/00Pumps characterised by combination with, or adaptation to, specific driving engines or motors
    • F04B17/03Pumps characterised by combination with, or adaptation to, specific driving engines or motors driven by electric motors
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B53/00Component parts, details or accessories not provided for in, or of interest apart from, groups F04B1/00 - F04B23/00 or F04B39/00 - F04B47/00
    • F04B53/10Valves; Arrangement of valves
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B53/00Component parts, details or accessories not provided for in, or of interest apart from, groups F04B1/00 - F04B23/00 or F04B39/00 - F04B47/00
    • F04B53/16Casings; Cylinders; Cylinder liners or heads; Fluid connections

Definitions

  • the invention relates to the technical field of plunger pumps, in particular to a linear motor plunger pump.
  • Traditional plunger pumps generally convert the rotary motion of the prime mover into linear reciprocating motion of the plunger through a crank connecting rod mechanism, so that the liquid is intermittently sucked into the pump cylinder and discharged out of the pipeline at high pressure to achieve the purpose of conveying liquid.
  • This kind of rotary drive plunger pump has the following problems: the traditional rotary drive plunger pump has many intermediate transmission links, high friction and wear, and low system efficiency; complex structure, difficult manufacturing and processing, high cost, many vulnerable parts, and failure It is difficult to maintain and maintain; the plunger speed varies greatly, the displacement of the plunger pump fluctuates, and the discharge pressure is unstable; limited by the structure of the power end of the traditional crankshaft connecting rod, it is difficult to achieve long stroke, low stroke, and large displacement. High-quantity operation requirements; complex structure, large friction and wear, large pressure fluctuations, resulting in low life of wearing parts, and serious vibration and noise during operation.
  • the purpose of the present invention overcomes the shortcomings of the prior art and provides a linear motor plunger pump, which drives the plunger pump through a linear motor, and controls the movement law of components by controlling the movement law of the linear motor, thereby overcoming the current plunger pump
  • the shortcomings maximize the advantages of the plunger pump.
  • a linear motor plunger pump including a linear motor and a hydraulic end assembly
  • the linear motor is connected to the hydraulic end assembly
  • the hydraulic end assembly includes a plunger , A valve box, an upper valve body and a lower valve body
  • the valve box is provided with a plunger hole, a suction hole and a discharge hole
  • the plunger is arranged in the plunger hole
  • the upper valve body is sealingly mounted on the In the discharge hole
  • the lower valve body is sealed and installed in the suction hole
  • the linear motor drives the plunger to make linear reciprocating motion in the valve box plunger hole
  • the linear motor is a single-acting linear motor.
  • valve box is a single-cylinder combined valve box or a multi-cylinder valve box.
  • the single-cylinder combined valve box includes a two-cylinder combined valve box, a three-cylinder combined valve box, a four-cylinder combined valve box, a five-cylinder combined valve box, a six-cylinder combined valve box, and a seven-cylinder combined valve box.
  • a plunger hole, a suction hole and a discharge hole are opened on each cylinder of the single-cylinder combined valve box, the plunger is arranged in the plunger hole, and the upper valve body is sealed and mounted on the In the discharge hole, the lower valve body is sealed and installed in the suction hole.
  • the multi-cylinder valve box includes a two-cylinder valve box, a three-cylinder valve box, a four-cylinder valve box, a five-cylinder valve box, a six-cylinder valve box, and a seven-cylinder valve box.
  • Each cylinder of the multi-cylinder valve box The upper part is provided with a plunger hole, a suction hole and a discharge hole, the plunger is arranged in the plunger hole, the upper valve body is sealed and installed in the discharge hole, and the lower valve body is sealed and installed with the suction hole.
  • linear motor is directly connected with the plunger of the hydraulic end assembly.
  • the beneficial effects of the present invention are: to solve the problem of the traditional plunger pump, the linear motor can directly convert the electrical energy into the mechanical energy of linear motion, omit the intermediate transmission link, reduce the friction and wear, and the system efficiency is high. , It has the advantages of simple structure, non-contact movement, low noise, convenient maintenance, high reliability, long life, and can meet the operation requirements of long stroke, low stroke and large displacement.
  • Figure 1 is a schematic diagram of the structure of the hydraulic end assembly of the present invention
  • FIG. 2 is a schematic diagram of the structure of a plunger pump driven by a single-acting linear motor of the present invention
  • FIG. 3 is a schematic diagram of the combined structure of the five-cylinder combined valve box in the first embodiment of the present invention.
  • FIG. 4 is a schematic diagram of the combined structure of the five-cylinder valve box in the first embodiment of the present invention.
  • Figure 5 is a schematic diagram of the structure of a plunger pump driven by a double-acting linear motor of the present invention
  • FIG. 6 is a schematic diagram of the combined structure of the five-cylinder valve box in the second embodiment of the present invention.
  • FIG. 7 is a schematic diagram of the combined structure of the five-cylinder combined valve box in the second embodiment of the present invention.
  • Figure 8 is a schematic view of the structure of the single-acting plunger pump driving two hydraulic end assemblies of the present invention
  • FIG. 9 is a schematic diagram of the combined structure of the five-cylinder combined valve box in the fifth embodiment of the present invention.
  • Figure 10 is a schematic diagram of the combined structure of the five-cylinder valve box in the sixth embodiment of the present invention.
  • a linear motor plunger pump includes a linear motor and a hydraulic end assembly.
  • the linear motor is a single-acting linear motor 1 or a double-acting linear motor 9.
  • the end assembly is connected.
  • the hydraulic end assembly includes a plunger 2, a valve box 3, an upper valve body 4 and a lower valve body 5.
  • the valve box 3 is a single-cylinder combined valve box 31 or a multi-cylinder valve box 32.
  • the single-cylinder combined valve box 31 includes a two-cylinder combined valve box, a three-cylinder combined valve box, a four-cylinder combined valve box, a five-cylinder combined valve box, a six-cylinder combined valve box, and a seven-cylinder combined valve. box.
  • the multi-cylinder valve box 32 includes a two-cylinder valve box, a three-cylinder valve box, a four-cylinder valve box, a five-cylinder valve box, a six-cylinder valve box, and a seven-cylinder valve box.
  • Each cylinder of the valve box 3 is provided with a plunger hole 35, a suction hole 34, and a discharge hole 33.
  • the plunger 2 is provided in the plunger hole 35, and the upper valve body 4 is sealed and mounted on the discharge hole.
  • the lower valve body 5 is sealed and installed in the suction hole 34.
  • the linear motor drives the plunger 2 to make a linear reciprocating movement in the plunger hole 35 of the valve box 3, so as to realize the suction and discharge of liquid and realize the pumping operation.
  • the structure is simple and the maintenance is convenient. Compared with the traditional crankshaft and connecting rod crosshead plunger pump, the linear motor drives the plunger pump, eliminating the need for an intermediate conversion mechanism that converts rotary motion to linear motion.
  • the overall structure is greatly simplified and saved The cost, the volume is reduced, and the maintenance of the plunger pump is more convenient.
  • the transmission rigidity is large and it is directly driven, which avoids the hysteresis caused by the elastic deformation, friction and wear and backlash of the intermediate transmission link during starting, shifting and reversing, and greatly improves the transmission rigidity.
  • the stroke length is not limited. It is driven by a linear motor.
  • the plunger stroke can be set according to the needs.
  • the linear motor direct transmission has a fast response speed, high sensitivity, and Good mobility and high accuracy.
  • the mechanical friction of the components is eliminated, the noise during movement is greatly reduced, and the current situation of high noise in existing equipment is improved.
  • Multiple linear motors can be connected in parallel without interfering with each other. When multiple linear motors work, the total thrust is equal to the sum of the thrusts of each motor without interfering with each other. There is no load imbalance when multiple linear motors are used together. The assembly flexibility is large. Meet different working conditions and different installation requirements.
  • connection between the linear motor and the hydraulic end assembly can be roughly divided into the following two types: the mover of the linear motor is directly connected to the plunger 2 in the hydraulic end assembly or the mover of the linear motor is connected to the hydraulic end assembly through the connection assembly. The plunger 2 in the hydraulic end assembly is connected.
  • the connecting assembly includes a plunger connector 6, a support rod 7 and a mover connector 8.
  • One end of the support rod 7 is connected to the plunger connector 6, and the other end of the support rod 7 is connected to the mover connector. 8 is connected, the other end of the plunger connector 6 is connected to the plunger 2, and the other end of the mover connector 8 is connected to the linear motor.
  • the single-acting linear motor 1, the double-acting linear motor 9, the single-cylinder combined valve box 31 and the multi-cylinder valve box 32 are combined to form different linear motor plunger pump implementations.
  • the linear motor plunger pump includes a single-acting linear motor 1, a plunger 2, a multi-cylinder valve box 32, an upper valve body 4, and a lower valve body 5.
  • the mover of the single-acting linear motor 1 is directly connected to the plunger 2.
  • the mover of each linear motor drives a plunger 2 individually.
  • 2-7 linear motors can be used in combination.
  • the number of valve boxes 3 cylinders of the multi-cylinder valve box 32 is the same as the number of linear motors.
  • the linear motor plunger pump includes a single-acting linear motor 1, a plunger 2, a single-cylinder combined valve box 31, an upper valve body 4, and a lower valve body 5.
  • the linear motor is directly connected to the plunger 2, and each linear motor is directly connected to the plunger 2.
  • the mover of the motor drives a plunger 2 individually.
  • 2-7 single-acting linear motors 1 can be combined according to requirements.
  • the single-cylinder combined valve box 31 has 3 valve boxes and 1 single-acting linear motor. The numbers are the same.
  • the linear motor plunger pump includes a double-acting linear motor 9, a plunger 2, a single-cylinder combined valve box 31, an upper valve body 4, and a lower valve body 5.
  • the left and right ends of the mover of the double-acting linear motor 9 are directly connected respectively
  • One plunger 2 each double-acting linear motor 9 alternately drives the plunger 2 on the left and right sides.
  • 1-4 double-acting linear motors 9 can be used for combination according to requirements.
  • the single-cylinder combined valve box 31 is the valve box The number of 3 is twice the number of 9 double-acting linear motors.
  • the linear motor plunger pump includes a double-acting linear motor 9, a plunger 2, a multi-cylinder valve box 32, an upper valve body 4, and a lower valve body 5.
  • the left and right ends of the mover of the double-acting linear motor 9 are respectively directly connected to a column Plug 2, each double-acting linear motor 9 alternately drives the plunger 2 on the left and right sides.
  • This embodiment can be combined with 1-4 double-acting linear motors 9 according to the needs.
  • the number of valve boxes of the multi-cylinder valve box 32 is double Two times the number of 9 linear motors acting.
  • the linear motor plunger pump includes a single-acting linear motor 1, a plunger 2, a multi-cylinder valve box 32, an upper valve body 4, and a lower valve body 5.
  • the mover of the single-acting linear motor 1 is connected to a hydraulic end through a connection assembly
  • the plunger 2 in the assembly is connected.
  • the plunger connector 6 in the connecting assembly is connected to a plunger 2 on the left and right sides.
  • the mover connector 8 in the connecting assembly moves with the single-acting linear motor 1
  • the sub-connection is driven by the reciprocating motion of the single-acting linear motor 1 to drive the connection assembly to move left and right, and then the plunger 2 on the left and right sides can be alternately driven.
  • This embodiment can be combined with 1-7 single-acting linear motors 1 according to the needs, multi-cylinder
  • the number of valve boxes in the valve box 32 is twice the number of single-acting linear motors.
  • the linear motor plunger pump includes a single-acting linear motor 1, a plunger 2, a single-cylinder combined valve box 31, an upper valve body 4, and a lower valve body 5.
  • the plunger 2 in the end assembly is connected, the plunger connecting piece 6 in the connecting assembly is connected to a plunger 2 on the left and right sides, and the mover connecting piece 8 in the connecting assembly is connected to the single-acting linear motor 1
  • the mover is connected.
  • the single-acting linear motor 1 drives the connection assembly to move left and right through the reciprocating motion, so as to alternately drive the plunger 2 on the left and right sides.
  • This embodiment can be combined with 1-7 single-acting linear motors 1 according to requirements.
  • the number of 3 valve boxes of the cylinder combined valve box 31 is twice the number of 9 double-acting linear motors.
  • the linear motors include but are not limited to: DC linear motors, AC linear motors, linear asynchronous motors, linear synchronous motors, linear stepping motors.

Abstract

A linear motor plunger pump, comprising a linear motor (1) and a fluid end assembly. The linear motor (1) is connected with the fluid end assembly; the linear motor (1) is a single-action or double-action linear motor; the fluid end assembly comprises a plunger (2), a valve box (3), an upper valve body (4), and a lower valve body (5); a plunger hole (35), a suction hole (34), and a discharge hole (33) are formed on the valve box (3); the plunger (2) is provided in the plunger hole (35); the upper valve body (4) is sealingly mounted in the discharge hole (33); the lower valve body (5) is sealingly mounted in the suction hole (34); the linear motor (1) drives the plunger (2) to perform a linear reciprocating motion in the plunger hole (35) of the valve box (3), thereby realizing the suction and discharge of a liquid, and realizing a pumping operation. The linear motor plunger pump is simple in structure and convenient to maintain.

Description

一种直线电机柱塞泵A linear motor plunger pump 技术领域Technical field
本发明涉及柱塞泵技术领域,具体涉及一种直线电机柱塞泵。The invention relates to the technical field of plunger pumps, in particular to a linear motor plunger pump.
背景技术Background technique
传统柱塞泵一般通过曲柄连杆机构将原动机的旋转运动变为柱塞的直线往复运动,使液体间断地被吸入泵缸并高压排出管路达到输送液体的目的。这种回转驱动式柱塞泵存在以下问题:传统回转驱动柱塞泵中间传递环节较多,摩擦磨损大,系统效率低;结构复杂,制造加工难度大,成本高,易损部件多,发生故障的几率大,维护保养不方便;柱塞速度变化幅度大,柱塞泵排量波动大,排出压力不稳定;受传统曲轴连杆动力端结构限制,难以实现长冲程、低冲次、大排量的作业要求;结构复杂、摩擦磨损大、压力波动大,造成易损件寿命低,运转时振动噪音严重。Traditional plunger pumps generally convert the rotary motion of the prime mover into linear reciprocating motion of the plunger through a crank connecting rod mechanism, so that the liquid is intermittently sucked into the pump cylinder and discharged out of the pipeline at high pressure to achieve the purpose of conveying liquid. This kind of rotary drive plunger pump has the following problems: the traditional rotary drive plunger pump has many intermediate transmission links, high friction and wear, and low system efficiency; complex structure, difficult manufacturing and processing, high cost, many vulnerable parts, and failure It is difficult to maintain and maintain; the plunger speed varies greatly, the displacement of the plunger pump fluctuates, and the discharge pressure is unstable; limited by the structure of the power end of the traditional crankshaft connecting rod, it is difficult to achieve long stroke, low stroke, and large displacement. High-quantity operation requirements; complex structure, large friction and wear, large pressure fluctuations, resulting in low life of wearing parts, and serious vibration and noise during operation.
发明内容Summary of the invention
本发明的目的克服现有技术的不足,提供一种直线电机柱塞泵,通过直线电机驱动柱塞泵,并通过控制直线电机的运动规律,来控制组件的运动规律,从而克服目前柱塞泵的缺点,最大限度地发挥柱塞泵的优势。The purpose of the present invention overcomes the shortcomings of the prior art and provides a linear motor plunger pump, which drives the plunger pump through a linear motor, and controls the movement law of components by controlling the movement law of the linear motor, thereby overcoming the current plunger pump The shortcomings, maximize the advantages of the plunger pump.
本发明的目的是通过以下技术措施达到的:一种直线电机柱塞泵,包括直线电机和液力端总成,所述直线电机与液力端总成连接,液力端总成包括柱塞、阀箱、上阀体和下阀体,所述阀箱上开有柱塞孔、吸入孔和排出孔,所述柱塞设在柱塞孔中,所述上阀体密封安装于所述排出孔内,所述下阀体密封安装与所述吸入孔内,直线电机驱动柱塞在阀箱柱塞孔内做直线往复运动,所述直线电机为单作用直线电机。The purpose of the present invention is achieved through the following technical measures: a linear motor plunger pump, including a linear motor and a hydraulic end assembly, the linear motor is connected to the hydraulic end assembly, the hydraulic end assembly includes a plunger , A valve box, an upper valve body and a lower valve body, the valve box is provided with a plunger hole, a suction hole and a discharge hole, the plunger is arranged in the plunger hole, and the upper valve body is sealingly mounted on the In the discharge hole, the lower valve body is sealed and installed in the suction hole, the linear motor drives the plunger to make linear reciprocating motion in the valve box plunger hole, and the linear motor is a single-acting linear motor.
进一步地,所述阀箱为单缸组合式阀箱或多缸阀箱。Further, the valve box is a single-cylinder combined valve box or a multi-cylinder valve box.
进一步地,所述单缸组合式阀箱包括两缸组合式阀箱、三缸组合式阀箱、四缸组合式阀箱、五缸组合式阀箱、六缸组合式阀箱和七缸组合式阀箱,所述单缸组合式阀箱的每个缸上开有柱塞孔、吸入孔和排出孔,所述柱塞设在柱塞孔中,所述上阀体密封安装于所述排出孔内,所述下阀体密封安装与所述吸入孔内。Further, the single-cylinder combined valve box includes a two-cylinder combined valve box, a three-cylinder combined valve box, a four-cylinder combined valve box, a five-cylinder combined valve box, a six-cylinder combined valve box, and a seven-cylinder combined valve box. A plunger hole, a suction hole and a discharge hole are opened on each cylinder of the single-cylinder combined valve box, the plunger is arranged in the plunger hole, and the upper valve body is sealed and mounted on the In the discharge hole, the lower valve body is sealed and installed in the suction hole.
进一步地,所述多缸阀箱包括两缸阀箱、三缸阀箱、四缸阀箱、五缸阀箱、六缸阀箱和七缸阀箱,所述多缸阀箱的每个缸上开有柱塞孔、吸入孔和排出孔,所述柱塞设在柱塞孔中,所述上阀体密封安装于所述排出孔内,所述下阀体密封安装与所述吸入孔内。Further, the multi-cylinder valve box includes a two-cylinder valve box, a three-cylinder valve box, a four-cylinder valve box, a five-cylinder valve box, a six-cylinder valve box, and a seven-cylinder valve box. Each cylinder of the multi-cylinder valve box The upper part is provided with a plunger hole, a suction hole and a discharge hole, the plunger is arranged in the plunger hole, the upper valve body is sealed and installed in the discharge hole, and the lower valve body is sealed and installed with the suction hole. Inside.
进一步地,所述直线电机与液力端总成柱塞直接连接。Further, the linear motor is directly connected with the plunger of the hydraulic end assembly.
与现有技术相比,本发明的有益效果是:解决传统柱塞泵的问题,直线电动机可以将电能直接转化为直线运动的机械能,省去了中间传递环节,摩擦磨损减小,系统效率高,具有结构简单、无接触运动、噪音低、维护保养方便、可靠性高、寿命长、能满足长冲程、低冲次、大排量的作业要求等优点。Compared with the prior art, the beneficial effects of the present invention are: to solve the problem of the traditional plunger pump, the linear motor can directly convert the electrical energy into the mechanical energy of linear motion, omit the intermediate transmission link, reduce the friction and wear, and the system efficiency is high. , It has the advantages of simple structure, non-contact movement, low noise, convenient maintenance, high reliability, long life, and can meet the operation requirements of long stroke, low stroke and large displacement.
下面结合附图和具体实施方式对本发明作详细说明。The present invention will be described in detail below with reference to the drawings and specific embodiments.
附图说明Description of the drawings
图1为本发明液力端总成结构示意图;Figure 1 is a schematic diagram of the structure of the hydraulic end assembly of the present invention;
图2为本发明单作用直线电机驱动柱塞泵结构示意图;2 is a schematic diagram of the structure of a plunger pump driven by a single-acting linear motor of the present invention;
图3为本发明实施列1中五缸组合式阀箱组合形式结构示意图;3 is a schematic diagram of the combined structure of the five-cylinder combined valve box in the first embodiment of the present invention;
图4为本发明实施列1中五缸阀箱组合形式结构示意图;4 is a schematic diagram of the combined structure of the five-cylinder valve box in the first embodiment of the present invention;
图5为本发明双作用直线电机驱动柱塞泵结构示意图;Figure 5 is a schematic diagram of the structure of a plunger pump driven by a double-acting linear motor of the present invention;
图6为本发明实施列2中五缸阀箱组合形式结构示意图;6 is a schematic diagram of the combined structure of the five-cylinder valve box in the second embodiment of the present invention;
图7为本发明实施列2中五缸组合式阀箱组合形式结构示意图;7 is a schematic diagram of the combined structure of the five-cylinder combined valve box in the second embodiment of the present invention;
图8为本发明单作用柱塞泵驱动两台液力端总成结构示意图;Figure 8 is a schematic view of the structure of the single-acting plunger pump driving two hydraulic end assemblies of the present invention;
图9为本发明实施列5中五缸组合式阀箱组合形式结构示意图;9 is a schematic diagram of the combined structure of the five-cylinder combined valve box in the fifth embodiment of the present invention;
图10为本发明实施列6中五缸阀箱组合形式结构示意图Figure 10 is a schematic diagram of the combined structure of the five-cylinder valve box in the sixth embodiment of the present invention
其中,1、单作用直线电机,2、柱塞,3、阀箱,31、单缸组合式阀箱,32、多缸阀箱,33、排出孔,34、吸入孔,35、柱塞孔,4、上阀体,5、下阀体,6、柱塞连接件,7、支撑杆,8、动子连接件,9、双作用直线电机。Among them, 1, single-acting linear motor, 2, plunger, 3, valve box, 31, single-cylinder combined valve box, 32, multi-cylinder valve box, 33, discharge hole, 34, suction hole, 35, plunger hole , 4. Upper valve body, 5. Lower valve body, 6. Plunger connector, 7. Support rod, 8. Mover connector, 9. Double-acting linear motor.
具体实施方式detailed description
如图1至10所示,一种直线电机柱塞泵,包括直线电机和液力端总成,所述直线电机为单作用直线电机1或双作用直线电机9,所述直线电机与液力端总成连接,液力端总成包括柱塞2、阀箱3、上阀体4和下阀体5,所述阀箱3为单缸组合式阀箱31或多缸阀箱32。所述单缸组合式阀箱31包括两缸组合式阀箱、三缸组合式阀箱、四缸组合式阀箱、五缸组合式阀箱、六缸组合式阀箱和七缸组合式阀箱。所述多缸阀箱32包括两缸阀箱、三缸阀箱、四缸阀箱、五缸阀箱、六缸阀箱和七缸阀箱。所述阀箱3的每个缸上开有柱塞孔35、吸入孔34和排出孔33,所述柱塞2设在柱塞孔35中,所述上阀体4密封安装于所述排出孔33内,所述下阀体5密封安装与所述吸入孔34内。直线电机驱动柱塞2在阀箱3柱塞孔35内做直线往复运动,从而实现液体的吸入和排出,实现泵送作业。结构简单,维保方便,与传统曲轴、连 杆十字头柱塞泵相比,直线电机驱动柱塞泵,省去了把旋转运动转化为直线运动的中间转换机构,整体结构大大简化,节约了成本,缩小了体积,使柱塞泵维护保养更加便利。传动刚度大,直接驱动,避免了启动、变速和换向时因中间传动环节的弹性变形、摩擦磨损和反向间隙造成的滞后现象,大大提高了其传动刚度。行程长度不受限制,利用直线电机驱动,柱塞冲程可以根据需要设置,可实现往复泵的长冲程、大排量、低冲刺及高压力,大大提高其阀箱、柱塞、阀门及密封件的使用寿命。效率高、响应快,由于无中间传动环节,不存在中间传动机构的惯量和阻力的影响,消除了机械摩擦时的能量损耗,提高了传动效率,直线电动机直接传动反应速度快,灵敏度高,随动性好,准确度高。消除了部件的机械摩擦,其运动时噪音大大降低,改善现有设备工作噪音大的现状。可多台并联,互不干扰,多台直线电机工作时,总推力等于各台电机推力之和,互不干扰,也不存在多台并用时出现负载不平衡等问题,装配灵活度大,可以满足不同工况、不同安装需求。As shown in Figures 1 to 10, a linear motor plunger pump includes a linear motor and a hydraulic end assembly. The linear motor is a single-acting linear motor 1 or a double-acting linear motor 9. The end assembly is connected. The hydraulic end assembly includes a plunger 2, a valve box 3, an upper valve body 4 and a lower valve body 5. The valve box 3 is a single-cylinder combined valve box 31 or a multi-cylinder valve box 32. The single-cylinder combined valve box 31 includes a two-cylinder combined valve box, a three-cylinder combined valve box, a four-cylinder combined valve box, a five-cylinder combined valve box, a six-cylinder combined valve box, and a seven-cylinder combined valve. box. The multi-cylinder valve box 32 includes a two-cylinder valve box, a three-cylinder valve box, a four-cylinder valve box, a five-cylinder valve box, a six-cylinder valve box, and a seven-cylinder valve box. Each cylinder of the valve box 3 is provided with a plunger hole 35, a suction hole 34, and a discharge hole 33. The plunger 2 is provided in the plunger hole 35, and the upper valve body 4 is sealed and mounted on the discharge hole. In the hole 33, the lower valve body 5 is sealed and installed in the suction hole 34. The linear motor drives the plunger 2 to make a linear reciprocating movement in the plunger hole 35 of the valve box 3, so as to realize the suction and discharge of liquid and realize the pumping operation. The structure is simple and the maintenance is convenient. Compared with the traditional crankshaft and connecting rod crosshead plunger pump, the linear motor drives the plunger pump, eliminating the need for an intermediate conversion mechanism that converts rotary motion to linear motion. The overall structure is greatly simplified and saved The cost, the volume is reduced, and the maintenance of the plunger pump is more convenient. The transmission rigidity is large and it is directly driven, which avoids the hysteresis caused by the elastic deformation, friction and wear and backlash of the intermediate transmission link during starting, shifting and reversing, and greatly improves the transmission rigidity. The stroke length is not limited. It is driven by a linear motor. The plunger stroke can be set according to the needs. It can realize the long stroke, large displacement, low sprint and high pressure of the reciprocating pump, and greatly improve its valve box, plunger, valve and seal. Life. High efficiency and fast response. Because there is no intermediate transmission link, there is no inertia and resistance of the intermediate transmission mechanism, which eliminates the energy loss during mechanical friction and improves the transmission efficiency. The linear motor direct transmission has a fast response speed, high sensitivity, and Good mobility and high accuracy. The mechanical friction of the components is eliminated, the noise during movement is greatly reduced, and the current situation of high noise in existing equipment is improved. Multiple linear motors can be connected in parallel without interfering with each other. When multiple linear motors work, the total thrust is equal to the sum of the thrusts of each motor without interfering with each other. There is no load imbalance when multiple linear motors are used together. The assembly flexibility is large. Meet different working conditions and different installation requirements.
所述直线电机与液力端总成的连接方式大体可以分为以下两种:直线电机的动子直接与液力端总成中的柱塞2连接或直线电机的动子通过连接总成与液力端总成中的柱塞2连接。The connection between the linear motor and the hydraulic end assembly can be roughly divided into the following two types: the mover of the linear motor is directly connected to the plunger 2 in the hydraulic end assembly or the mover of the linear motor is connected to the hydraulic end assembly through the connection assembly. The plunger 2 in the hydraulic end assembly is connected.
所述连接总成包括柱塞连接件6、支撑杆7和动子连接件8,所述支撑杆7的一端与柱塞连接件6连接,所述支撑杆7的另一端与动子连接件8连接,所述柱塞连接件6的另一端与柱塞2连接,动子连接件8的另一端与直线电机连接。The connecting assembly includes a plunger connector 6, a support rod 7 and a mover connector 8. One end of the support rod 7 is connected to the plunger connector 6, and the other end of the support rod 7 is connected to the mover connector. 8 is connected, the other end of the plunger connector 6 is connected to the plunger 2, and the other end of the mover connector 8 is connected to the linear motor.
所述单作用直线电机1、双作用直线电机9、单缸组合式阀箱31及多缸阀箱32组合形成不同的直线电机柱塞泵实施列。The single-acting linear motor 1, the double-acting linear motor 9, the single-cylinder combined valve box 31 and the multi-cylinder valve box 32 are combined to form different linear motor plunger pump implementations.
实施列1 Implementation column 1
直线电机柱塞泵包括单作用直线电机1、柱塞2、多缸阀箱32、上阀体4、下阀体5,所述单作用直线电机1动子与所述柱塞2直接连接,每个直线电机的动子单独驱动一个柱塞2,本实施列可以采用2-7个直线电机进行组合,所述多缸阀箱32的阀箱3缸数与直线电机个数相同。The linear motor plunger pump includes a single-acting linear motor 1, a plunger 2, a multi-cylinder valve box 32, an upper valve body 4, and a lower valve body 5. The mover of the single-acting linear motor 1 is directly connected to the plunger 2. The mover of each linear motor drives a plunger 2 individually. In this embodiment, 2-7 linear motors can be used in combination. The number of valve boxes 3 cylinders of the multi-cylinder valve box 32 is the same as the number of linear motors.
实施列2 Implementation column 2
直线电机柱塞泵包括单作用直线电机1、柱塞2、单缸组合式阀箱31、上阀体4、下阀体5,所述直线电机与所述柱塞2直接连接,每个直线电机的动子单独驱动一个柱塞2,本实施列可以根据需求采用2-7个单作用直线电机1进行组合,单缸组合式阀箱31的阀箱3个数与单作用直线电机1个数相同。The linear motor plunger pump includes a single-acting linear motor 1, a plunger 2, a single-cylinder combined valve box 31, an upper valve body 4, and a lower valve body 5. The linear motor is directly connected to the plunger 2, and each linear motor is directly connected to the plunger 2. The mover of the motor drives a plunger 2 individually. In this embodiment, 2-7 single-acting linear motors 1 can be combined according to requirements. The single-cylinder combined valve box 31 has 3 valve boxes and 1 single-acting linear motor. The numbers are the same.
实施列3 Implementation column 3
直线电机柱塞泵包括双作用直线电机9、柱塞2、单缸组合式阀箱31、上阀体4、下阀体5,所述双作用直线电机9的动子左右两端分别直接连接一个柱塞2,每个双作用直线电机9交替驱动左右两侧柱塞2,本实施列可以根据需求采用1-4个双作用直线电机9进行组合,单缸组合式阀箱31的阀箱3个数为双作用直线电机9个数的两倍。The linear motor plunger pump includes a double-acting linear motor 9, a plunger 2, a single-cylinder combined valve box 31, an upper valve body 4, and a lower valve body 5. The left and right ends of the mover of the double-acting linear motor 9 are directly connected respectively One plunger 2, each double-acting linear motor 9 alternately drives the plunger 2 on the left and right sides. In this embodiment, 1-4 double-acting linear motors 9 can be used for combination according to requirements. The single-cylinder combined valve box 31 is the valve box The number of 3 is twice the number of 9 double-acting linear motors.
实施列4Implementation column 4
直线电机柱塞泵包括双作用直线电机9、柱塞2、多缸阀箱32、上阀体4、下阀体5,所述双作用直线电机9的动子左右两端分别直接连接一个柱塞2,每个双作用直线电机9交替驱动左右两侧柱塞2,本实施列可以根据需求采用1-4个双作用直线电机9进行组合,多缸阀箱32的阀箱3数为双作用 直线电机9个数的两倍。The linear motor plunger pump includes a double-acting linear motor 9, a plunger 2, a multi-cylinder valve box 32, an upper valve body 4, and a lower valve body 5. The left and right ends of the mover of the double-acting linear motor 9 are respectively directly connected to a column Plug 2, each double-acting linear motor 9 alternately drives the plunger 2 on the left and right sides. This embodiment can be combined with 1-4 double-acting linear motors 9 according to the needs. The number of valve boxes of the multi-cylinder valve box 32 is double Two times the number of 9 linear motors acting.
实施列5 Implementation column 5
直线电机柱塞泵包括单作用直线电机1、柱塞2、多缸阀箱32、上阀体4、下阀体5,所述单作用直线电机1的动子通过连接总成与液力端总成中的柱塞2连接,所述连接总成中的柱塞连接件6左右两侧各连接一个柱塞2,所述连接总成中的动子连接件8与单作用直线电机1动子连接,通过单作用直线电机1往复运动驱动连接总成左右运动,进而实现交替驱动左右两侧柱塞2,本实施列可以根据需求采用1-7个单作用直线电机1进行组合,多缸阀箱32的阀箱3数为单作用直线电机1个数的两倍。The linear motor plunger pump includes a single-acting linear motor 1, a plunger 2, a multi-cylinder valve box 32, an upper valve body 4, and a lower valve body 5. The mover of the single-acting linear motor 1 is connected to a hydraulic end through a connection assembly The plunger 2 in the assembly is connected. The plunger connector 6 in the connecting assembly is connected to a plunger 2 on the left and right sides. The mover connector 8 in the connecting assembly moves with the single-acting linear motor 1 The sub-connection is driven by the reciprocating motion of the single-acting linear motor 1 to drive the connection assembly to move left and right, and then the plunger 2 on the left and right sides can be alternately driven. This embodiment can be combined with 1-7 single-acting linear motors 1 according to the needs, multi-cylinder The number of valve boxes in the valve box 32 is twice the number of single-acting linear motors.
实施列6 Implementation column 6
直线电机柱塞泵包括单作用直线电机1、柱塞2、单缸组合式阀箱31、上阀体4、下阀体5,所述单作用直线电机1动子通过连接总成与液力端总成中的柱塞2连接,所述连接总成中的柱塞连接件6左右两侧各连接一个柱塞2,所述连接总成中的动子连接件8与单作用直线电机1动子连接,通过单作用直线电机1往复运动驱动连接总成左右运动,进而实现交替驱动左右两侧柱塞2,本实施列可以根据需求采用1-7个单作用直线电机1进行组合,单缸组合式阀箱31的阀箱3个数为双作用直线电机9个数的两倍。The linear motor plunger pump includes a single-acting linear motor 1, a plunger 2, a single-cylinder combined valve box 31, an upper valve body 4, and a lower valve body 5. The plunger 2 in the end assembly is connected, the plunger connecting piece 6 in the connecting assembly is connected to a plunger 2 on the left and right sides, and the mover connecting piece 8 in the connecting assembly is connected to the single-acting linear motor 1 The mover is connected. The single-acting linear motor 1 drives the connection assembly to move left and right through the reciprocating motion, so as to alternately drive the plunger 2 on the left and right sides. This embodiment can be combined with 1-7 single-acting linear motors 1 according to requirements. The number of 3 valve boxes of the cylinder combined valve box 31 is twice the number of 9 double-acting linear motors.
所述直线电机包括但不限于:直流直线电机、交流直线电机、直线异步电机、直线同步电机、直线步进电机。The linear motors include but are not limited to: DC linear motors, AC linear motors, linear asynchronous motors, linear synchronous motors, linear stepping motors.
本行业的技术人员应该了解,本发明的整体技术不受上述实施例的限制,上述实施例和说明书中描述的只是说明本发明的原理,在不脱离本发明精神和范围的前提下,本发明还会有各种变化和改进,这些变化和改进 都落入要求保护的本发明范围内。本发明要求保护范围由所附的权利要求书及其等效物界定。Those skilled in the industry should understand that the overall technology of the present invention is not limited by the above-mentioned embodiments. The above-mentioned embodiments and descriptions only illustrate the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention There will be various changes and improvements, and these changes and improvements fall within the scope of the claimed invention. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.

Claims (5)

  1. 一种直线电机柱塞泵,其特征在于:包括直线电机和液力端总成,所述直线电机与液力端总成连接,液力端总成包括柱塞、阀箱、上阀体和下阀体,所述阀箱上开有柱塞孔、吸入孔和排出孔,所述柱塞设在柱塞孔中,所述上阀体密封安装于所述排出孔内,所述下阀体密封安装与所述吸入孔内,直线电机驱动柱塞在阀箱柱塞孔内做直线往复运动,所述直线电机为单作用直线电机。A linear motor plunger pump is characterized in that it comprises a linear motor and a hydraulic end assembly, the linear motor is connected to the hydraulic end assembly, and the hydraulic end assembly includes a plunger, a valve box, an upper valve body and The lower valve body, the valve box is provided with a plunger hole, a suction hole and a discharge hole, the plunger is arranged in the plunger hole, the upper valve body is sealed and installed in the discharge hole, the lower valve The body is sealed and installed in the suction hole, the linear motor drives the plunger to make linear reciprocating motion in the valve box plunger hole, and the linear motor is a single-acting linear motor.
  2. 根据权利要求1所述的直线电机柱塞泵,其特征在于:所述阀箱为单缸组合式阀箱或多缸阀箱。The linear motor plunger pump according to claim 1, wherein the valve box is a single-cylinder combined valve box or a multi-cylinder valve box.
  3. 根据权利要求2所述的直线电机柱塞泵,其特征在于:所述单缸组合式阀箱包括两缸组合式阀箱、三缸组合式阀箱、四缸组合式阀箱、五缸组合式阀箱、六缸组合式阀箱和七缸组合式阀箱,所述单缸组合式阀箱的每个缸上开有柱塞孔、吸入孔和排出孔,所述柱塞设在柱塞孔中,所述上阀体密封安装于所述排出孔内,所述下阀体密封安装与所述吸入孔内。The linear motor plunger pump according to claim 2, wherein the single-cylinder combined valve box includes a two-cylinder combined valve box, a three-cylinder combined valve box, a four-cylinder combined valve box, and a five-cylinder combined valve box. Valve box, six-cylinder combined valve box and seven-cylinder combined valve box, each cylinder of the single-cylinder combined valve box is provided with a plunger hole, a suction hole and a discharge hole, and the plunger is arranged on the column In the plug hole, the upper valve body is sealed and installed in the discharge hole, and the lower valve body is sealed and installed in the suction hole.
  4. 根据权利要求2所述的直线电机柱塞泵,其特征在于:所述多缸阀箱包括两缸阀箱、三缸阀箱、四缸阀箱、五缸阀箱、六缸阀箱和七缸阀箱,所述多缸阀箱的每个缸上开有柱塞孔、吸入孔和排出孔,所述柱塞设在柱塞孔中,所述上阀体密封安装于所述排出孔内,所述下阀体密封安装与所述吸入孔内。The linear motor plunger pump according to claim 2, wherein the multi-cylinder valve box includes a two-cylinder valve box, a three-cylinder valve box, a four-cylinder valve box, a five-cylinder valve box, a six-cylinder valve box, and a seven-cylinder valve box. A cylinder valve box, each cylinder of the multi-cylinder valve box is provided with a plunger hole, a suction hole and a discharge hole, the plunger is arranged in the plunger hole, and the upper valve body is sealed and mounted on the discharge hole Inside, the lower valve body is sealed and installed in the suction hole.
  5. 根据权利要求1所述的直线电机柱塞泵,其特征在于:所述直线电机与液力端总成柱塞直接连接。The linear motor plunger pump according to claim 1, wherein the linear motor is directly connected to the plunger of the hydraulic end assembly.
PCT/CN2019/102786 2019-08-27 2019-08-27 Linear motor plunger pump WO2021035522A1 (en)

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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN202040039U (en) * 2011-04-29 2011-11-16 天津市鹏晟机电设备有限公司 Single-acting hydraulic driving reciprocating plunger pump
CN102305203A (en) * 2011-08-16 2012-01-04 北京工业大学 Linear motor-driven plunger pump
JP2016155050A (en) * 2015-02-23 2016-09-01 株式会社松岡機械製作所 Intermittent coater
CN106286197A (en) * 2016-11-09 2017-01-04 北京工业大学 One is done more physical exercises unit straight line motor drive type plunger displacement pump

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN202040039U (en) * 2011-04-29 2011-11-16 天津市鹏晟机电设备有限公司 Single-acting hydraulic driving reciprocating plunger pump
CN102305203A (en) * 2011-08-16 2012-01-04 北京工业大学 Linear motor-driven plunger pump
JP2016155050A (en) * 2015-02-23 2016-09-01 株式会社松岡機械製作所 Intermittent coater
CN106286197A (en) * 2016-11-09 2017-01-04 北京工业大学 One is done more physical exercises unit straight line motor drive type plunger displacement pump

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