JP2008263663A - Manufacturing method of permanent magnet embedded rotor and permanent magnet embedded rotor manufactured using method - Google Patents
Manufacturing method of permanent magnet embedded rotor and permanent magnet embedded rotor manufactured using method Download PDFInfo
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- JP2008263663A JP2008263663A JP2007102322A JP2007102322A JP2008263663A JP 2008263663 A JP2008263663 A JP 2008263663A JP 2007102322 A JP2007102322 A JP 2007102322A JP 2007102322 A JP2007102322 A JP 2007102322A JP 2008263663 A JP2008263663 A JP 2008263663A
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- 238000004519 manufacturing process Methods 0.000 title claims abstract description 12
- 238000007906 compression Methods 0.000 claims abstract description 16
- 239000003921 oil Substances 0.000 claims description 57
- 239000010721 machine oil Substances 0.000 claims description 21
- 239000003507 refrigerant Substances 0.000 claims description 16
- 229910000831 Steel Inorganic materials 0.000 claims description 4
- 239000010959 steel Substances 0.000 claims description 4
- 238000005057 refrigeration Methods 0.000 claims 1
- 239000000463 material Substances 0.000 abstract description 5
- XEEYBQQBJWHFJM-UHFFFAOYSA-N iron Chemical group [Fe] XEEYBQQBJWHFJM-UHFFFAOYSA-N 0.000 abstract description 4
- 238000007789 sealing Methods 0.000 abstract 1
- 230000004308 accommodation Effects 0.000 description 3
- 230000000149 penetrating Effects 0.000 description 3
- 241000282890 Sus Species 0.000 description 1
- 230000001174 ascending Effects 0.000 description 1
- 238000009434 installation Methods 0.000 description 1
- 230000002452 interceptive Effects 0.000 description 1
- 238000010030 laminating Methods 0.000 description 1
- 238000005461 lubrication Methods 0.000 description 1
- 230000005415 magnetization Effects 0.000 description 1
- 230000002093 peripheral Effects 0.000 description 1
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本発明は、密閉形圧縮機に使用される電動機の永久磁石埋め込み形回転子の製造方法と、その製造方法を用いた永久磁石埋め込み形回転子に関する。 The present invention relates to a method for manufacturing a permanent magnet embedded rotor for an electric motor used in a hermetic compressor, and a permanent magnet embedded rotor using the manufacturing method.
従来の回転子は、特許文献1(実開平5−18246号公報)に示すような回転子構造がある。本願では図5に示している。この回転子90は薄板電磁鋼板を積層した回転子鉄心10で構成され、この積層した回転子鉄心10の外周部に永久磁石20を装着し、その永久磁石20の上からキャン50を嵌着し、積層した回転子鉄心10の両側から端板40a、40bを配置し、回転子鉄心10を貫通する貫通穴にカシメピン80を挿入し回転子軸方向の一端側にカシメピン80を延長させスペーサ60を介してオイルセパレータ70を取り付けることによって、オイルセパレータ70と端板40aとの間に開口部300bが設けられている。 A conventional rotor has a rotor structure as shown in Patent Document 1 (Japanese Utility Model Laid-Open No. 5-18246). This application is shown in FIG. The rotor 90 is composed of a rotor core 10 in which thin electromagnetic steel plates are laminated. A permanent magnet 20 is attached to the outer periphery of the laminated rotor core 10 and a can 50 is fitted over the permanent magnet 20. The end plates 40a and 40b are arranged from both sides of the laminated rotor core 10, and the caulking pin 80 is inserted into a through hole penetrating the rotor core 10 so that the caulking pin 80 is extended to one end side in the rotor axial direction. By attaching the oil separator 70 via the opening 300b, an opening 300b is provided between the oil separator 70 and the end plate 40a.
これによって密閉形圧縮機内の圧縮機構部からの巻き上げた冷媒と冷凍機油を含んだ混合ガスをオイルセパレ−タ70にぶつけ端板40aとオイルセパレータ70との間に開口した開口部300bから回転子円周方向に飛ばすことにより分離し油だめ部に冷凍機油が戻るようにしているので冷凍機油が巻き上がり圧縮機内の吐出管から冷媒回路に流出しないようにしている。 As a result, the mixed gas containing the refrigerant and the refrigerating machine oil wound up from the compression mechanism in the hermetic compressor is brought into contact with the oil separator 70 and the rotor circle from the opening 300b opened between the end plate 40a and the oil separator 70. The refrigerating machine oil is separated by being blown in the circumferential direction so that the refrigerating machine oil returns to the oil sump portion, so that the refrigerating machine oil is rolled up so as not to flow out of the discharge pipe in the compressor to the refrigerant circuit.
しかしながら、図5の様に積層した回転子鉄心10の両側に端板40a、40bを配置し、回転子鉄心10を貫通する貫通穴にカシメピン80を挿入し回転子軸方向の一端側にカシメピン80を延長させスペーサ60を介してオイルセパレータ70と端板40aとの間に開口部300bを設けた永久磁石表面形回転子90では、端板40aとオイルセパレータ70との間に開口部300bを設けるためにカシメピン80にスペーサ60を挿入している。このように図5の永久磁石表面形回転子90においてはスペーサ60をカシメピン80の1本1本に挿入し手間が係り作業性が悪い。また、当然ではあるがスペーサ60の別部材としての材料費も係ってしまう。また、カシメピン80が端板40aより飛び出しているのでカシメピン80が挫屈し易い。 However, end plates 40a and 40b are arranged on both sides of the rotor core 10 laminated as shown in FIG. 5, and caulking pins 80 are inserted into through holes penetrating the rotor core 10, and caulking pins 80 are arranged on one end side in the rotor axial direction. In the permanent magnet surface rotor 90 in which the opening 300b is provided between the oil separator 70 and the end plate 40a through the spacer 60, the opening 300b is provided between the end plate 40a and the oil separator 70. Therefore, a spacer 60 is inserted into the caulking pin 80. As described above, in the permanent magnet surface rotor 90 of FIG. 5, the spacers 60 are inserted into the caulking pins 80 one by one, which is troublesome and poor in workability. Of course, the material cost as a separate member of the spacer 60 is also involved. Further, since the caulking pin 80 protrudes from the end plate 40a, the caulking pin 80 is easily bent.
本発明は、これに鑑みて永久磁石埋め込み形回転子におけるオイルセパレータの取り付けに関して、作業性が良好で、材料費も軽減できる永久磁石埋め込み形回転子の製造方法と、その製造方法を用いた永久磁石埋め込み形回転子を提供するものである。 In view of this, the present invention relates to a method for manufacturing a permanent magnet embedded rotor that has good workability and can reduce material costs with respect to the installation of an oil separator in a permanent magnet embedded rotor, and a permanent using the manufacturing method. A magnet embedded rotor is provided.
本発明は冷媒と冷凍機油を含んだ混合ガスを圧縮する密閉形圧縮機に搭載される電動機の回転子であって、回転子は薄板電磁鋼板を積層した回転子鉄心で構成され、その回転子鉄心には永久磁石を回転子軸方向から挿入する磁石収容孔が設けられ、磁石収容孔に永久磁石を挿入した後、回転子鉄心の軸方向両端部を端板で覆い、更に、回転軸心回りに偏心した偏心部を有する圧縮機構のアンバランス量を回転子で補正するためのバランスウエイトを回転子鉄心の軸方向端部の少なくともどちらか一方に備え、少なくともどちらか一方のバランスウィトには圧縮機構で圧縮した冷媒から冷凍機油を分離するためのオイルセパレータが取り付けられ、それらを複数の締結部材により一体に固定した永久磁石埋め込み形回転子において、
締結部材はオイルセパレータが取り付けられる側とは反対方向から回転子鉄心に挿入しオイルセパレータ側で締結されるものであって、
オイルセパレータは、オイルセパレータ側のバランスウェイトと締結していない締結部材の締結箇所と対向しているオイルセパレータ側の少なくとも一箇所の位置において、オイルセパレータに切り欠いた切り欠き部が設けられた永久磁石埋め込み形回転子とし、前記切り欠き部から、締結部材の締結治具を挿入し締結した永久磁石埋め込み形回転子の製造方法と、その製造方法を用いた永久磁石埋め込み形回転子である。
The present invention is a rotor of an electric motor mounted on a hermetic compressor that compresses a mixed gas containing refrigerant and refrigerating machine oil, and the rotor is composed of a rotor core in which thin electromagnetic steel plates are laminated, and the rotor The iron core is provided with a magnet housing hole for inserting a permanent magnet from the rotor axial direction. After inserting the permanent magnet into the magnet housing hole, both ends of the rotor core in the axial direction are covered with end plates. At least one of the axial ends of the rotor core is provided with a balance weight for correcting the unbalance amount of the compression mechanism having an eccentric portion eccentrically around at least one of the axial ends of the rotor core. In the permanent magnet embedded rotor in which the oil separator for separating the refrigerating machine oil from the refrigerant compressed by the compression mechanism is attached and fixed integrally by a plurality of fastening members,
The fastening member is inserted into the rotor core from the direction opposite to the side on which the oil separator is attached and fastened on the oil separator side,
The oil separator is provided with a notched portion in which the oil separator has a notch at least at one position on the oil separator side facing the fastening position of the fastening member that is not fastened to the balance weight on the oil separator side. A permanent magnet embedded rotor manufactured by inserting a fastening jig of a fastening member from the notch and fastening the rotor, and a permanent magnet embedded rotor using the manufacturing method.
本発明の永久磁石埋め込み形回転子の製造方法を用いることにより、冷媒と冷凍機油を含んだ混合ガスを、回転子鉄心の軸方向の両端部を覆う端板と、圧縮機構部の回転子軸心回りに偏心した偏心部のアンバランス量を補正するために回転子鉄心の軸方向端部の少なくともどちらか一方に取り付けられたバランスウェイトと、少なくともどちらか一方のバランスウェイトの上に取り付けたオイルセパレータとを、締結部材において一体化した永久磁石埋め込み形回転子とすることにより、余分なスペーサを用いることなく端板とオイルセパレータとの間に開口部を設けることができ、材料費を低減し、締結部材にスペーサを通す作業も低減できる。 By using the method for manufacturing an embedded permanent magnet rotor according to the present invention, a mixed gas containing refrigerant and refrigerating machine oil is coated with end plates that cover both axial ends of the rotor core, and the rotor shaft of the compression mechanism section. Balance weight attached to at least one of axial ends of the rotor core and oil attached on at least one balance weight to correct the unbalance amount of the eccentric part eccentric about the center. By making the separator and the permanent magnet embedded rotor integrated in the fastening member, an opening can be provided between the end plate and the oil separator without using an extra spacer, thereby reducing material costs. The work of passing the spacer through the fastening member can also be reduced.
更に、バランスウェイトを締結していない締結部材の締結箇所と対向しているオイルセパレータ側では、オイルセパレータを切り欠いた切か欠き部を設けて、締結部材の長さを短くすることができる。これにより締結部材を固定する際、回転子端部から締結部材が飛び出していないので締結を安定して行うことができ、締結部材が挫屈することもない。尚、この切り欠き部は、オイルセパレータの外径から凹状に切り欠いた切り欠き部、またオイルセパレータの回転子軸方向から穴を開けた形状でも良い。 Furthermore, the length of the fastening member can be shortened by providing a notch portion in which the oil separator is notched on the oil separator side facing the fastening portion of the fastening member to which the balance weight is not fastened. As a result, when the fastening member is fixed, the fastening member does not protrude from the end of the rotor, so that the fastening can be performed stably, and the fastening member does not buckle. In addition, this notch part may be a notch part notched concavely from the outer diameter of the oil separator, or a shape having a hole from the rotor axial direction of the oil separator.
一方、オイルセパレータを切り欠いた切り欠き構造となっているので、締結部材を固定するための治具が回転子鉄心の端部(端板を装着している位置)まで挿入できるので、締結部材の固定作業が安定して容易にできる。これにより、締結部材の挫屈不良を低減することができる。 On the other hand, since it has a notch structure in which the oil separator is cut out, a jig for fixing the fastening member can be inserted up to the end of the rotor core (position where the end plate is mounted). Can be fixed stably and easily. Thereby, the buckling defect of a fastening member can be reduced.
本発明を図面を用いて説明する。本実施形態の永久磁石埋め込み形回転子9を搭載した密閉形圧縮機の断面図を図1に示している。 The present invention will be described with reference to the drawings. FIG. 1 shows a cross-sectional view of a hermetic compressor equipped with a permanent magnet embedded rotor 9 of this embodiment.
圧縮機100の主な構造は、圧縮機構部102、アキュムレータ103、固定子110と回転子9(永久磁石埋め込み形回転子)とで構成された圧縮機100である。圧縮機構部102と電動機は密閉容器101の内部に配置され、密閉容器101には、吸入管105と吐出管104が設けられている。圧縮機構部102で圧縮された冷媒と冷凍機油を含んだ混合ガスは、固定子110に形成された通路110a(穴、切り欠き部)や回転子9に設けられた通路9a(穴、切り欠き部)、固定子110と回転子9との間の隙間110b(ギャップ)等を通り、吐出管104から吐出される。 The main structure of the compressor 100 is a compressor 100 including a compression mechanism unit 102, an accumulator 103, a stator 110, and a rotor 9 (permanent magnet embedded rotor). The compression mechanism unit 102 and the electric motor are disposed inside the sealed container 101, and the sealed container 101 is provided with a suction pipe 105 and a discharge pipe 104. The mixed gas containing the refrigerant and the refrigerating machine oil compressed by the compression mechanism unit 102 includes a passage 110a (hole, notch) formed in the stator 110 and a passage 9a (hole, notch) provided in the rotor 9. Part), the gap 110b (gap) between the stator 110 and the rotor 9 and the like, and the like.
ここで特に縦型に設置する図1に示した圧縮機100のタイプでは、冷凍機油を含んだ混合ガスはそのまま吐出管104から吐出されてしまうと、密閉容器内101の冷凍機油がなくなり圧縮機構部102の潤滑が悪くなり温度上昇や圧縮機構部102の焼付き等を起してしまう。そこで、冷凍機油を含んだ混合ガスが極力、圧縮機100の吐出管104から吐出されないように回転子9等に冷媒と冷凍機油とを分離するためにオイルセパレータ7が取り付けられている。 In the type of the compressor 100 shown in FIG. 1 installed particularly vertically here, if the mixed gas containing the refrigerating machine oil is discharged from the discharge pipe 104 as it is, the refrigerating machine oil in the sealed container 101 disappears and the compression mechanism. Lubrication of the part 102 is deteriorated, and the temperature rises and the compression mechanism part 102 is seized. Therefore, an oil separator 7 is attached to the rotor 9 or the like so as to separate the refrigerant and the refrigerating machine oil from the discharge pipe 104 of the compressor 100 as much as possible so that the mixed gas containing the refrigerating machine oil is not discharged from the discharge pipe 104 of the compressor 100.
オイルセパレータ7は圧縮機100内の圧縮機構部102で圧縮された冷媒と冷凍機油を含んだ混合ガスが電動機の下部から回転子9に設けられて通路9aや固定子110と回転子9の隙間110bを通って上昇し、オイルセパレータ7にぶつかった後、回転子9が回転することにより回転子9の円周方向へ遠心分離され冷媒と冷凍機油に分離している。これにより分離された冷凍機油は固定子110などに設けた通路110a等から油だめ部106へ戻るようになる。 In the oil separator 7, a mixed gas containing refrigerant and refrigerating machine oil compressed by the compression mechanism 102 in the compressor 100 is provided in the rotor 9 from the lower part of the electric motor, and the gap between the passage 9 a and the stator 110 and the rotor 9 is provided. After ascending through 110b and hitting the oil separator 7, the rotor 9 rotates to be centrifuged in the circumferential direction of the rotor 9 and separated into refrigerant and refrigerating machine oil. The refrigerating machine oil thus separated returns to the oil sump section 106 from the passage 110a provided in the stator 110 or the like.
このように回転子9に取り付けたオイルセパレータ7が回転することにより遠心分離して冷媒と冷凍機油を回転子9の円周方向に飛ばすため、オイルセパレータ7と回転子鉄心1に装着した端板4aとの間には回転子外径方向に開口した開口部300aを設ける必要がある。 In this way, the oil separator 7 attached to the rotor 9 is rotated so as to be centrifugally separated and the refrigerant and the refrigerating machine oil are blown in the circumferential direction of the rotor 9. It is necessary to provide an opening 300a that opens in the direction of the outer diameter of the rotor.
図2には本実施形態における永久磁石埋め込み形回転子9を示している。
図2に示した永久磁石埋め込み形回転子9は、薄板電磁鋼板を積層し回転子鉄心1を構成している。この回転子鉄心1には永久磁石2を回転子鉄心1内の軸方向に挿入できるように回転子鉄心1の軸方向に貫通した永久磁石収容孔3が設けられている。この回転子鉄心1の永久磁石収容孔3に永久磁石2を挿入した後、回転子鉄心1の両端部を塞ぐように端板4a、4bを配置している。
FIG. 2 shows a permanent magnet embedded rotor 9 according to this embodiment.
The embedded permanent magnet rotor 9 shown in FIG. 2 comprises a rotor core 1 formed by laminating thin electromagnetic steel plates. The rotor core 1 is provided with a permanent magnet accommodation hole 3 penetrating in the axial direction of the rotor core 1 so that the permanent magnet 2 can be inserted in the axial direction of the rotor core 1. After the permanent magnet 2 is inserted into the permanent magnet accommodation hole 3 of the rotor core 1, end plates 4 a and 4 b are arranged so as to close both ends of the rotor core 1.
また、圧縮機100の圧縮機構部102は、回転軸500により駆動される偏心ロータを有している。この回転軸500の偏心ロータのアンバランス量を補正するために回転子鉄心1に装着した端板4a上にバランスウェイト400aを取り付けている。これにより回転軸500により駆動される偏心ロータのアンバランス量を補正することができる。 The compression mechanism 102 of the compressor 100 has an eccentric rotor that is driven by the rotation shaft 500. In order to correct the unbalance amount of the eccentric rotor of the rotating shaft 500, a balance weight 400a is attached on the end plate 4a attached to the rotor core 1. Thereby, the unbalance amount of the eccentric rotor driven by the rotating shaft 500 can be corrected.
このバランスウェイト400aの端面には、先の圧縮機100の圧縮機構部102で圧縮された冷媒と冷凍機油を含んだ混合ガスが噴出し直接圧縮機100の外部の冷媒回路に吐出されてしまわないようにオイルセパレータ7が取り付けられている。これにより回転子9が回転することにより巻き上げられた冷媒と冷凍機油を含んだ混合ガスがオイルセパレータ7にぶつかり、バランスウェイト400aとオイルセパレータ7との間に設けられた回転子9の外径方向に開口した開口部300aから円周方向に吹き飛ばされ冷媒と冷凍機油を遠心分離している。冷凍機油はその後、固定子110などに設けた通路110a等から油だめ部106へ戻る。 On the end face of the balance weight 400a, the mixed gas containing the refrigerant compressed by the compression mechanism 102 of the previous compressor 100 and the refrigerating machine oil is not ejected and discharged directly to the refrigerant circuit outside the compressor 100. Thus, an oil separator 7 is attached. Thereby, the mixed gas containing the refrigerant and the refrigerating machine oil wound up by the rotation of the rotor 9 collides with the oil separator 7, and the outer diameter direction of the rotor 9 provided between the balance weight 400 a and the oil separator 7. The refrigerant and the refrigerating machine oil are centrifuged by being blown off in the circumferential direction from the opening 300a that is opened to the center. Thereafter, the refrigerating machine oil returns to the oil sump section 106 from a passage 110a provided in the stator 110 and the like.
この様に構成された回転子9を一体化するために回転子9に設けた貫通穴に締結部材8a〜8dを反オイルセパレータ側から挿入し、オイルセパレータ7側で締結している。この場合、締結部材8a〜8dとしてカシメピンを用いる場合はカシメピンを反オイルセパレータ側から挿入しオイルセパレータ7側でかしめて一体固定している。これにより締結部材8a〜8dを締結する際に回転子鉄心1の内径が倒れて回転軸500が挿入できなくなることのないように、反オイルセパレータ側から締結治具ベース201と一体となった仮シャフト510を挿入し、締結部材8a〜8dを締結することができる。このようにすることによりオイルセパレータ7が邪魔することなく仮シャフト510を挿入することができる。締結部材8a〜8dが締結された後は、締結治具ベース201と一体となった仮シャフト510を抜くことができる。(図4参照) In order to integrate the thus configured rotor 9, fastening members 8 a to 8 d are inserted into through holes provided in the rotor 9 from the anti-oil separator side and fastened on the oil separator 7 side. In this case, when caulking pins are used as the fastening members 8a to 8d, the caulking pins are inserted from the anti-oil separator side and caulked on the oil separator 7 side to be integrally fixed. As a result, when fastening the fastening members 8a to 8d, the temporary core integrated with the fastening jig base 201 from the anti-oil separator side is prevented so that the inner diameter of the rotor core 1 does not fall down and the rotary shaft 500 cannot be inserted. The shaft 510 can be inserted to fasten the fastening members 8a to 8d. By doing so, the temporary shaft 510 can be inserted without the oil separator 7 interfering. After the fastening members 8a to 8d are fastened, the temporary shaft 510 integrated with the fastening jig base 201 can be pulled out. (See Figure 4)
このオイルセパレータ7は、回転子9の外周形状からはみださない円形の形状をしており、オイルセパレータ側のバランスウェイト400aと締結していない前記締結部材8dの締結箇所において、前記オイルセパレータ7に切り欠いた切り欠き部7aが設けられている。この切り欠き部7aは、オイルセパレータ7の外径から切り欠いた凹形状でも良く、オイルセパレータ7の回転子軸方向から切り欠いた穴形状でも良い。このようにすることによりオイルセパレータ7に設けた切り欠き部7aから締結治具を挿入することができ締結部材8dを安定させ締結させることができる。この切り欠き部は複数設けても良い。バランスウェイト400aの固定位置及び方法により異なる。 The oil separator 7 has a circular shape that does not protrude from the outer peripheral shape of the rotor 9, and the oil separator 7d is not fastened to the balance weight 400a on the oil separator side. 7 is provided with a notch 7a. The notch 7a may have a concave shape cut out from the outer diameter of the oil separator 7 or a hole shape cut out from the rotor axial direction of the oil separator 7. By doing in this way, a fastening jig can be inserted from the notch part 7a provided in the oil separator 7, and the fastening member 8d can be stabilized and fastened. A plurality of the notches may be provided. It depends on the fixed position and method of the balance weight 400a.
図3は、図2に示した永久磁石埋め込み形回転子9のA矢視図である。回転子鉄心1の端部に端板4aを付けバランスウェイト400aの上にオイルセパレータ7をのせて締結部材8a〜8dにより締結している。図2及び図3からも解るように締結部材8a〜8dの長さはバランスウェイト400aを回転子鉄心1に固定する場合の長さと、バランスウェイト400aを固定していない場合の長さとは異なっている。このバランスウェイト400aを固定していない締結部材8dの位置、つまり、締結部材8dが回転子鉄心1の端部に装着させた端板4aを直接締結している締結箇所においてオイルセパレータ7の外径から凹状に切り欠いた切り欠き部分7aを設けている。 FIG. 3 is a view of the embedded permanent magnet rotor 9 shown in FIG. An end plate 4a is attached to the end of the rotor core 1, and an oil separator 7 is placed on the balance weight 400a and fastened by fastening members 8a to 8d. 2 and 3, the length of the fastening members 8a to 8d is different from the length when the balance weight 400a is fixed to the rotor core 1 and the length when the balance weight 400a is not fixed. Yes. The outer diameter of the oil separator 7 at the position of the fastening member 8d to which the balance weight 400a is not fixed, that is, at the fastening location where the fastening member 8d directly fastens the end plate 4a attached to the end of the rotor core 1. A notch portion 7a that is notched in a concave shape is provided.
これにより締結部材8dは回転子鉄心1の端部に装着した端板4aの部分から飛び出ていないので締結部材8dを固定する際、不安定となり締結部材8dが挫屈することがない。また、締結部材8dの長さを短くすることができ余分なスペーサ等の別部材を必要とせず、締結部材自体の長さも短くすることができるので材料費も低減することができる。 As a result, the fastening member 8d does not protrude from the end plate 4a attached to the end of the rotor core 1, so that when the fastening member 8d is fixed, it becomes unstable and the fastening member 8d does not buckle. Further, the length of the fastening member 8d can be shortened, no extra member such as an extra spacer is required, and the length of the fastening member itself can be shortened, so that the material cost can be reduced.
また、このような回転子9の構造を達成するためには、このオイルセパレータ7の切り欠いた切り欠き部7aから、締結部材8dを締結するための締結治具200dを挿入させて締結させている。
図4では、その締結治具200dの構造を示している。図2〜図3に示した永久磁石埋め込み形回転子9のバランスウェイト400aを締結した締結部材8a〜8cの3本と、バランスウェイト400aを締結していない締結部材8dの1本を、其々の締結部材と相対関係にある締結治具200a〜200dにより固定している。
In order to achieve such a structure of the rotor 9, a fastening jig 200d for fastening the fastening member 8d is inserted and fastened from the notched portion 7a of the oil separator 7. Yes.
FIG. 4 shows the structure of the fastening jig 200d. Two fastening members 8a to 8c to which the balance weight 400a of the embedded permanent magnet rotor 9 shown in FIGS. 2 to 3 is fastened and one fastening member 8d to which the balance weight 400a is not fastened are respectively provided. Are fastened by fastening jigs 200a to 200d which are in a relative relationship with the fastening members.
締結治具200a〜200dは締結治具ベース202から4本飛び出している。締結治具ベース202から飛び出している長さが其々異なっている。バランスウェイト400aと相対関係を有する締結治具8a〜8cの3本は、バランスウェイト400aを締結していない位置と相対関係を有する締結治具8dの1本より短く構成されている。この締結治具200dの締結治具ベース202からの飛び出し長さXは、バランスウェイト400aとオイルセパレータ7の合計の長さと略同じになっている。 Four fastening jigs 200 a to 200 d protrude from the fastening jig base 202. The lengths protruding from the fastening jig base 202 are different. Three of the fastening jigs 8a to 8c having a relative relationship with the balance weight 400a are configured to be shorter than one of the fastening jigs 8d having a relative relationship with a position where the balance weight 400a is not fastened. The protruding length X of the fastening jig 200d from the fastening jig base 202 is substantially the same as the total length of the balance weight 400a and the oil separator 7.
締結治具200dは、図4に示すようにオイルセパレータ7に設けた凹状の切り欠き部7aから挿入し、締結部材8dを固定している。先に説明しているようにバランスウェイト400aとオイルセパレータ7の高さの差分だけ差を設けているので永久磁石埋め込み形回転子9の4本の締結部材8a〜8dを同時に固定することができる。これにより永久磁石埋め込み形回転子9の締結部材8a〜8dを1本1本順番に固定することなく同時に固定することができ作業工数を大幅に低減することができる。また、切り欠き部は複数設けても良い。バランスウェイト400aの固定位置及び方法により締結部材8a〜8dの締結位置、締結方法により異なる。 As shown in FIG. 4, the fastening jig 200d is inserted from a concave notch 7a provided in the oil separator 7, and fixes the fastening member 8d. As described above, since the difference is provided by the difference in height between the balance weight 400a and the oil separator 7, the four fastening members 8a to 8d of the embedded permanent magnet rotor 9 can be fixed simultaneously. . Accordingly, the fastening members 8a to 8d of the permanent magnet embedded rotor 9 can be fixed simultaneously without fixing them one by one, and the number of work steps can be greatly reduced. A plurality of notches may be provided. It depends on the fastening position and the fastening method of the fastening members 8a to 8d depending on the fixing position and the method of the balance weight 400a.
尚、このオイルセパレータ7の切り欠き部7aは永久磁石埋め込み形回転子9の回転子鉄心1の永久磁石収容孔3に埋め込んだ永久磁石2を、密閉形圧縮機100に組み込んだ後に固定子110を着磁ヨークとして着磁する際、永久磁石埋め込み形回転子9の着磁位置決め用の目印溝とすることもできる。 The notch 7a of the oil separator 7 has a stator 110 after the permanent magnet 2 embedded in the permanent magnet housing hole 3 of the rotor core 1 of the embedded permanent magnet rotor 9 is incorporated in the hermetic compressor 100. When the magnet is magnetized as a magnetized yoke, it can be used as a mark groove for positioning the magnetization of the embedded permanent magnet rotor 9.
1、10・・・回転子鉄心
2、20・・・永久磁石
3、30・・・永久磁石収容孔
4a、4b、40a、40b・・・端板
7、70・・・オイルセパレータ
7a・・・切り欠き部
8a〜8d、80・・・締結部材
9・・・永久磁石埋め込み形回転子
9a・・・回転子の通路
50・・・SUS管
60・・・スペーサ
90・・・永久磁石表面形回転子
100・・・密閉形圧縮機
101・・・密閉容器
102・・・圧縮機構部
103・・・アキュムレータ
104・・・吐出管
105・・・吸入管
106・・・油だめ部
110・・・固定子
110a・・・固定子の通路
110b・・・隙間
200a〜200d・・・締結治具
201、202・・・締結治具ベース
300a、300b・・・開口部
400a、400b・・・バランスウェイト
500・・・回転軸
510・・・仮シャフト
DESCRIPTION OF SYMBOLS 1,10 ... Rotor core 2, 20 ... Permanent magnet 3, 30 ... Permanent magnet accommodation hole 4a, 4b, 40a, 40b ... End plate 7, 70 ... Oil separator 7a ... Notches 8a to 8d, 80 ... Fastening member 9 ... Embedded permanent magnet rotor 9a ... Rotor passage 50 ... SUS pipe 60 ... Spacer 90 ... Permanent magnet surface Type rotor 100... Hermetic compressor 101... Hermetically sealed container 102... Compression mechanism 103... Accumulator 104 ... discharge pipe 105 ... suction pipe 106. .. Stator 110a ... Stator passage 110b ... Gap 200a-200d ... Fastening jigs 201, 202 ... Fastening jig bases 300a, 300b ... Openings 400a, 400b ... Balance weight 500 ... Rotation axis 510 ... temporary shaft
Claims (2)
少なくともどちらか一方の前記バランスウェイトには、前記圧縮機構で圧縮した冷媒から冷凍機油を分離するためのオイルセパレータが取り付けられ、それらを複数の締結部材により一体に固定した永久磁石埋め込み形回転子において、
前記締結部材は前記オイルセパレータが取り付けられる側とは反対側から回転子鉄心に挿入し前記オイルセパレータ側で締結されるものであって、
前記オイルセパレータ側の前記バランスウェイトを締結していない前記締結部材の締結箇所と対向している前記オイルセパレータ側に少なくとも一箇所の切り欠いた切り欠き部が設けられ、
前記切り欠き部から、締結治具を挿入し前記締結部材を締結したことを特徴とする永久磁石埋め込み形回転子の製造方法。 In the rotor of an electric motor mounted on a hermetic compressor that compresses a mixed gas containing refrigerant and refrigeration oil, the rotor is composed of a rotor core in which thin electromagnetic steel plates are laminated, and the rotor core is permanent. A magnet housing hole for inserting a magnet from the rotor axial direction is provided, and after inserting a permanent magnet into the magnet housing hole, both axial end portions of the rotor core are covered with end plates, and the rotor is formed of a compression mechanism section. A balance weight is attached to at least one of the axial ends of the rotor core in order to correct the unbalance amount of the eccentric portion eccentric about the rotor axis.
In at least one of the balance weights, an oil separator for separating the refrigerating machine oil from the refrigerant compressed by the compression mechanism is attached, and the permanent magnet embedded rotor in which they are integrally fixed by a plurality of fastening members ,
The fastening member is inserted into the rotor core from the side opposite to the side on which the oil separator is attached and fastened on the oil separator side,
At least one notch cutout portion is provided on the oil separator side facing the fastening portion of the fastening member that does not fasten the balance weight on the oil separator side,
A manufacturing method of a permanent magnet embedded rotor, wherein a fastening jig is inserted from the notch and the fastening member is fastened.
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