CN102889192A - Linear compressor driven by moving magnet type linear oscillation motor - Google Patents
Linear compressor driven by moving magnet type linear oscillation motor Download PDFInfo
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Abstract
本发明涉及线性压缩机技术领域,公开了一种采用动磁式直线振荡电机驱动的线性压缩机,包括动磁式直线振荡电机、气缸、活塞、吸排气装置及谐振部件;动磁式直线振荡电机包括定子部件、动子部件、第一固定连接件、第二固定连接件、第三固定连接件;活塞设置在动子部件上;吸排气装置设置在气缸的端部;谐振部件安装于动子部件与第三固定连接件之间;定子部件包括中柱绕有励磁线圈的、位于中间的第一磁导体,以及两个位于第一磁导体两侧的第二磁导体;第一磁导体与两侧的第二磁导体之间形成对称的两个气隙;动子部件包括两组分别对称安装于两个气隙中的片式永磁体。本发明能提高线圈材料的利用率,适合低矮空间的应用。
The invention relates to the technical field of linear compressors, and discloses a linear compressor driven by a moving magnet linear oscillating motor, including a moving magnet linear oscillating motor, a cylinder, a piston, a suction and exhaust device, and a resonant component; The oscillating motor includes a stator part, a mover part, a first fixed connector, a second fixed connector, and a third fixed connector; the piston is arranged on the mover part; the suction and exhaust device is arranged at the end of the cylinder; the resonance part is installed Between the mover part and the third fixed connection part; the stator part includes a first magnetic conductor in the middle with an excitation coil wound around the center column, and two second magnetic conductors located on both sides of the first magnetic conductor; the first Two symmetrical air gaps are formed between the magnetic conductor and the second magnetic conductors on both sides; the mover component includes two sets of piece-type permanent magnets respectively symmetrically installed in the two air gaps. The invention can improve the utilization rate of the coil material and is suitable for the application of low space.
Description
技术领域 technical field
本发明涉及一种线性压缩机,具体涉及一种采用动磁式直线振荡电机驱动的线性压缩机。The invention relates to a linear compressor, in particular to a linear compressor driven by a moving magnet linear oscillating motor.
背景技术 Background technique
线性压缩机采用直线振荡电机驱动,取消了旋转驱动和往复压缩之间的转换装置,大大提高了压缩机的效率,还具有结构紧凑、重量轻、无油或少润滑油、变容量特性优异等优点。因此,从空压机、真空泵,到冷藏箱、冰箱等小型制冷装置,线性压缩机正得到越来越广泛的应用,是小型制冷装置用高效压缩机的一个主要发展方向。The linear compressor is driven by a linear oscillating motor, which eliminates the conversion device between rotary drive and reciprocating compression, which greatly improves the efficiency of the compressor. It also has compact structure, light weight, no oil or less lubricating oil, and excellent variable capacity characteristics. advantage. Therefore, from air compressors, vacuum pumps, to small refrigeration devices such as refrigerators and refrigerators, linear compressors are being used more and more widely, and are a major development direction of high-efficiency compressors for small refrigeration devices.
直线振荡电机包括动磁式直线振荡电机和动圈式直线振荡电机。其中,动磁式直线振荡电机是由永磁材料作为动子的一种直线振荡电机,永磁材料产生的恒定磁场和励磁线圈产生的交变磁场相互作用推动永磁材料做往复交替运动,相比于采用励磁线圈作为动子的动圈式直线振荡电机,其动子质量更小,推力更大,效率更高。随着新型永磁材料的发展,动磁式直线振荡电机的优势愈加明显。Linear oscillating motors include moving magnet linear oscillating motors and moving coil linear oscillating motors. Among them, the moving magnet linear oscillating motor is a linear oscillating motor in which the permanent magnet material is used as the mover. The constant magnetic field generated by the permanent magnet material and the alternating magnetic field generated by the excitation coil interact to drive the permanent magnet material to do reciprocating and alternating motions. Compared with the moving coil linear oscillation motor using the excitation coil as the mover, the mover has smaller mass, greater thrust and higher efficiency. With the development of new permanent magnet materials, the advantages of moving magnet linear oscillation motors are becoming more and more obvious.
1992年美国的Beale和Redlich等人研制了Redlich型结构的动磁式直线振荡电机,90年代末,Sunpower公司开发了采用圆筒形Redlich直线振荡电机的制冷压缩机。2003年,LGE公司在该结构的基础上进行改进,首次实现了线性压缩机的商用化。这种圆筒形结构的动磁直线振荡电机是在励磁线圈的圆周上安装导磁材料,形成与励磁线圈同心的圆筒形气隙的磁路结构,径向充磁的圆筒形永磁体在气隙中做往复运动。导磁材料由圆筒形的内、外定子组成,气缸与活塞部件设置在内定子的圆筒内。In 1992, Beale and Redlich in the United States developed a moving magnet linear oscillating motor with a Redlich structure. In the late 1990s, Sunpower developed a refrigeration compressor using a cylindrical Redlich linear oscillating motor. In 2003, LGE improved on the basis of this structure and realized the commercialization of linear compressors for the first time. The moving magnet linear oscillating motor of this cylindrical structure installs the magnetic permeable material on the circumference of the exciting coil to form a magnetic circuit structure with a cylindrical air gap concentric with the exciting coil, and the radially magnetized cylindrical permanent magnet Do reciprocating motion in the air gap. The magnetically permeable material is composed of cylindrical inner and outer stators, and the cylinder and piston components are arranged in the cylinder of the inner stator.
2000年新西兰的内维尔等人提出了一种采用气体轴承的无油线性压缩机,该结构的线性压缩机采用的动磁式直线振荡电机是由两组冲片叠装后对称放置的定子形成气隙,永磁在两组定子中间的气隙中运动。2010年,巴西恩布拉科宣布完成了该结构线性压缩机在电冰箱上的应用开发。2006年浙江大学的叶云岳等人提出了一种双定子直线振荡电机,其定子由圆环形冲片叠合而成。相比于圆筒形结构,冲片直接叠装的电机结构形式可以减小其加工及装配难度。In 2000, Neville and others in New Zealand proposed an oil-free linear compressor using gas bearings. The moving magnet linear oscillating motor used in the linear compressor of this structure is formed by a symmetrically placed stator after stacking two sets of punching plates. Air gap, the permanent magnet moves in the air gap between the two sets of stators. In 2010, Brazil's Embraco announced that it had completed the application and development of the linear compressor with this structure in refrigerators. In 2006, Ye Yunyue of Zhejiang University and others proposed a double-stator linear oscillating motor, the stator of which is made of circular ring-shaped punches. Compared with the cylindrical structure, the motor structure in which the stamping sheets are directly stacked can reduce the difficulty of processing and assembly.
现有的采用圆筒形Redlich结构动磁式直线振荡电机作为驱动器的线性压缩机的外形特点是磁路结构设计较优,磁路损失小,但长径比较小,偏向于短而高,内、外定子在圆周上辐射分布的装配难度也较大。且其中的电机结构,其加工及装配难度较小,但其磁路损失相对较大。The shape of the existing linear compressor using a cylindrical Redlich structure moving magnet linear oscillating motor as a driver is characterized by a better design of the magnetic circuit structure and a small loss of the magnetic circuit, but the long diameter is relatively small, and it tends to be short and high. , The assembly of the radial distribution of the outer stator on the circumference is also relatively difficult. In addition, the motor structure is less difficult to process and assemble, but its magnetic circuit loss is relatively large.
发明内容 Contents of the invention
(一)要解决的技术问题(1) Technical problems to be solved
本发明要解决的技术问题,其一是如何提高线圈材料的利用率;其二是如何使压缩机适合低矮空间的应用。The technical problems to be solved by the present invention are, firstly, how to improve the utilization rate of the coil material; and secondly, how to make the compressor suitable for low space applications.
(二)技术方案(2) Technical solution
为解决上述技术问题,本发明提供了一种采用动磁式直线振荡电机驱动的线性压缩机,包括动磁式直线振荡电机、气缸、活塞、吸排气装置及谐振部件;其中,In order to solve the above technical problems, the present invention provides a linear compressor driven by a moving magnet linear oscillating motor, including a moving magnet linear oscillating motor, a cylinder, a piston, a suction and exhaust device, and a resonant component; wherein,
所述动磁式直线振荡电机包括定子部件、动子部件、第一固定连接件、第二固定连接件、第三固定连接件;所述活塞设置在动子部件上;所述吸排气装置设置在气缸的端部;所述谐振部件安装于动子部件与第三固定连接件之间;The moving magnet linear oscillating motor includes a stator part, a mover part, a first fixed connector, a second fixed connector, and a third fixed connector; the piston is arranged on the mover part; the suction and exhaust device It is arranged at the end of the cylinder; the resonant component is installed between the mover component and the third fixed connection piece;
所述定子部件包括中柱绕有励磁线圈的、位于中间的第一磁导体,以及两个位于第一磁导体两侧的第二磁导体;所述第一磁导体与两侧的第二磁导体之间形成对称的两个气隙;The stator part includes a first magnetic conductor in the middle with an excitation coil wound around the central column, and two second magnetic conductors located on both sides of the first magnetic conductor; the first magnetic conductor and the second magnetic conductors on both sides Two symmetrical air gaps are formed between the conductors;
所述动子部件包括两组分别对称安装于所述两个气隙中的片式永磁体。The mover component includes two sets of piece-type permanent magnets respectively symmetrically installed in the two air gaps.
优选地,所述动子部件还包括连接部件,所述片式永磁体安装在所述连接部件上。Preferably, the mover component further includes a connecting part, and the piece-type permanent magnet is mounted on the connecting part.
优选地,所述第一固定连接件为设有装配孔的板状连接件;所述第二固定连接件为设有装配孔和条缝的板状连接件;所述第三固定连接件为设有装配孔的连接件;第一固定连接件和第二固定连接件装配在第一磁导体和第二磁导体的两侧,通过第一装配孔组固定连接;第三固定连接件与第二固定连接件通过第二装配孔组固定装配;两组片式永磁体分别通过第二固定连接件上的条缝插入所述定子部件的两个气隙中。Preferably, the first fixed connector is a plate-shaped connector provided with assembly holes; the second fixed connector is a plate-shaped connector provided with assembly holes and slits; the third fixed connector is A connecting piece with assembly holes; the first fixed connecting piece and the second fixed connecting piece are assembled on both sides of the first magnetic conductor and the second magnetic conductor, and are fixedly connected through the first assembly hole group; the third fixed connecting piece is connected to the second fixed connecting piece The two fixed connectors are fixedly assembled through the second assembly hole group; two sets of piece permanent magnets are respectively inserted into the two air gaps of the stator part through the slits on the second fixed connector.
优选地,所述活塞安装于气缸内,且二者相配合,以实现片式永磁体在气隙中的定位,以及所述动子部件的轴向定位。Preferably, the piston is installed in the cylinder, and the two cooperate to realize the positioning of the piece permanent magnet in the air gap and the axial positioning of the mover component.
优选地,所述谐振部件安装于第三固定连接件与连接部件,以及第二固定连接件与连接部件之间。Preferably, the resonance component is installed between the third fixed connection part and the connection part, and between the second fixed connection part and the connection part.
优选地,所述气缸设置在所述第三固定连接件上,安装方向与活塞相同。Preferably, the cylinder is arranged on the third fixed connection member, and the installation direction is the same as that of the piston.
优选地,两组所述片式永磁体相互平行,且平行的两组片式永磁体分别装配在连接部件一侧的两端,连接部件的另一侧与所述活塞相连,且所述活塞插入所述气缸中。Preferably, the two sets of piece permanent magnets are parallel to each other, and the parallel two sets of piece permanent magnets are respectively assembled at both ends of one side of the connecting part, the other side of the connecting part is connected with the piston, and the piston Insert into the cylinder.
优选地,所述吸排气装置设置在气缸的端部,包括排气腔、吸气腔、排气阀和吸气阀,排气腔和吸气腔为两个相互独立的腔体,所述吸气阀与排气阀同向设置在气缸的端部或与排气阀相对设置的活塞的端部。Preferably, the suction and exhaust device is arranged at the end of the cylinder, including an exhaust cavity, a suction cavity, an exhaust valve and a suction valve, and the exhaust cavity and the suction cavity are two independent cavities, so The suction valve and the exhaust valve are arranged in the same direction at the end of the cylinder or at the end of the piston opposite to the exhaust valve.
优选地,所述气缸设置在第二固定连接件上,安装方向与活塞的相反。Preferably, the cylinder is arranged on the second fixed connection member, and the installation direction is opposite to that of the piston.
优选地,两组所述片式永磁体相互平行,且平行的两组片式永磁体装配在所述连接部件一侧,所述连接部件装配有片式永磁体的一侧与所述活塞相连,且活塞插入所述气缸中,所述吸排气装置设置在气缸与第二固定连接件之间,包括排气腔、吸气腔、排气阀和吸气阀,排气腔和吸气腔为两个相互独立的腔体,所述吸气阀与排气阀同向设置在气缸的端部或与排气阀相对设置的活塞的端部。Preferably, the two sets of piece permanent magnets are parallel to each other, and the parallel two sets of piece permanent magnets are assembled on one side of the connecting part, and the side of the connecting part equipped with the piece permanent magnets is connected to the piston , and the piston is inserted into the cylinder, the suction and exhaust device is arranged between the cylinder and the second fixed connection, including the exhaust chamber, the suction chamber, the exhaust valve and the suction valve, the exhaust chamber and the suction The cavity is two mutually independent cavities, and the suction valve and the exhaust valve are arranged in the same direction at the end of the cylinder or at the end of the piston opposite to the exhaust valve.
(三)有益效果(3) Beneficial effects
本发明电机的磁路结构对称分布(两个片式永磁体与第一磁导体及第二磁导体形成对称式磁路),这种对称的磁路结构,可以通过加大线圈的长宽比的设计来减小线圈端部的磁路损失,最大程度的利用线圈周边产生磁场,提高线圈材料的利用率。气缸、活塞等压缩部件设置在电机的外侧,使得压缩机呈细长形的卧式结构,适合于一些低矮空间的应用。The magnetic circuit structure of the motor of the present invention is symmetrically distributed (two piece permanent magnets form a symmetrical magnetic circuit with the first magnetic conductor and the second magnetic conductor), and this symmetrical magnetic circuit structure can increase the aspect ratio of the coil The design is to reduce the magnetic circuit loss at the end of the coil, maximize the use of the magnetic field around the coil, and improve the utilization rate of the coil material. Compression components such as cylinders and pistons are arranged on the outside of the motor, making the compressor a slender horizontal structure, which is suitable for some low space applications.
附图说明 Description of drawings
图1是本发明实施例一的俯视图;Fig. 1 is a top view of
图2是本发明实施例一的轴侧示意图;Fig. 2 is a schematic diagram of the axial side of
图3是本发明实施例二的俯视图;Fig. 3 is a top view of
图4是本发明实施例二的轴侧示意图。Fig. 4 is a schematic axial view of
其中,第一磁导体1;励磁线圈2;第二磁导体3;气隙4;第一固定连接件5;第二固定连接件6;片式永磁体7;连接部件8;谐振部件9;第三固定连接件10;活塞11;气缸12;吸排气装置13;第一装配孔组14;第二装配孔组15;条缝16。Among them, the first
具体实施方式 Detailed ways
下面结合附图和实施例,对本发明的具体实施方式作进一步详细描述。以下实施例用于说明本发明,但不用来限制本发明的范围。The specific implementation manners of the present invention will be further described in detail below in conjunction with the accompanying drawings and embodiments. The following examples are used to illustrate the present invention, but are not intended to limit the scope of the present invention.
实施例一Embodiment one
如图1、2所示,本实施例包括动磁式直线振荡电机、气缸12、活塞11、吸排气装置13及谐振部件9。As shown in FIGS. 1 and 2 , this embodiment includes a moving magnet linear oscillating motor, a
所述动磁式直线振荡电机包括定子部件、动子部件、第一固定连接件5、第二固定连接件6、第三固定连接件10;所述气缸12设置在第三固定连接件10上,安装方向与活塞11相同;所述活塞11设置在动子部件上;所述吸排气装置13设置在气缸12的端部;所述谐振部件9安装于动子部件与第三固定连接件10之间。The moving magnet linear oscillating motor includes a stator part, a mover part, a first
定子部件包括中柱绕有励磁线圈2的、位于中间的第一磁导体1,以及两个置于第一磁导体1两侧的第二磁导体3(近似为梯形)。两个第一磁导体1的纵截面形如两个“山”形,面对面上下对称放置,第一磁导体1与两侧的第二磁导体3之间形成对称的两个长条形气隙4。所述的第一磁导体1和第二磁导体3为硅钢片叠摞而成的磁导体,或为铁氧体粉、非晶纳米晶合金或铍莫合金等导磁材料加工而成的磁导体。The stator component includes a first
动子部件包括两个对称安装于两侧长条形气隙4中的片式永磁体7和用于装配永磁片的连接部件8。两组梯形的片式导磁材料沿高度方向叠摞,对称放置在第一磁导体1的两侧,形成第二磁导体3。两组平行的片式永磁体7装配在连接部件8一侧的两端,连接部件8另一侧与外表面光滑的活塞11相连。The mover component includes two piece-type
固定连接件包括:一个设有装配孔的板状第一固定连接件5,一个设有装配孔和一对平行条缝的板状第二固定连接件6,一个设有装配孔的第三固定连接件10。第一固定连接件5和第二固定连接件6装配在第一磁导体1和第二磁导体3的两侧,通过第一装配孔组14固定连接。第二固定连接件6上设有一对与气隙4高度、宽度及位置都一致的平行的条缝16。两端的片式永磁体7分别通过第二固定连接件6上的条缝16插入定子部件的气隙中,同时活塞11插入第三固定连接件10上的气缸12中,第三固定连接件10与第二固定连接件6通过第二装配孔组15固定装配。通过活塞11与气缸12之间高光滑度的精度配合实现片式永磁体7在气隙中的定位。The fixed connector includes: a plate-shaped first fixed
设置在动子部件上的活塞11配合安装于气缸12内,实现动子部件的轴向定位。气缸12设置在第三固定连接件10上。The
谐振部件9安装于第三固定连接件10与连接部件8之间,以及第二固定连接件6与连接部件8之间。谐振部件9由一个或多个圆柱弹簧或板弹簧组成。The
吸排气装置13设置在气缸12的端部,包括排气腔、吸气腔、排气阀和吸气阀等部件,排气腔和吸气腔为两个相互独立的腔体,所述吸气阀与排气阀同向设置在气缸12的端部或与排气阀相对设置的活塞11的端部。Suction and
上述线性压缩机的工作原理如下:The working principle of the above linear compressor is as follows:
两个片式永磁体7在与气隙4长度方向垂直的方向对称充磁,与第一磁导体1及第二磁导体3形成对称式磁路,第一磁导体1的中柱上绕着的励磁线圈2接通交流电从而在长条形气隙4中产生正反方向交替的磁场,动子部件在交变磁场的作用下与谐振部件9一起沿气隙4的长度方向做往复振荡运动。与动子部件连接的活塞11在气缸12中作往复运动:活塞11向一侧运动,当气缸12内压力小于吸气压力时,吸气阀打开并吸入气体,活塞11反向运动,气体受到压缩,当气缸12内压力大于排气压力时,排气阀打开并排出气体,如此往复。这种对称的磁路结构,可以通过加大励磁线圈的长宽比设计来减小励磁线圈端部的磁路损失,最大程度地利用励磁线圈周边产生磁场,提高材料的利用率。The two piece
实施例二Embodiment two
如图2所示,本实施例的动磁式直线振荡电机结构和实施例一的动磁式直线振荡电机结构相同,所不同的是:连接部件8的装配有两组平行的片式永磁体7的一侧与外表面光滑的活塞11相连。气缸12设置在第二固定连接件6上,安装方向与活塞11相反。活塞11插入第二固定连接件6上的气缸12中。吸排气装置13设置在气缸12与第二固定连接件6之间。As shown in Figure 2, the structure of the moving magnet linear oscillating motor of this embodiment is the same as the structure of the moving magnet linear oscillating motor of
实施例二与实施例一的工作原理相同。The working principle of the second embodiment is the same as that of the first embodiment.
以上所述仅是本发明的实施方式,应当指出,对于本技术领域的普通技术人员来说,在不脱离本发明技术原理的前提下,还可以做出若干改进和变型,这些改进和变型也应视为本发明的保护范围。The foregoing is only an embodiment of the present invention. It should be pointed out that for those of ordinary skill in the art, some improvements and modifications can be made without departing from the technical principle of the present invention. It should be regarded as the protection scope of the present invention.
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