序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
121 ハウジングおよびその製造方法 JP2013090452 2013-04-23 JP6189077B2 2017-08-30 萩田 貴幸; 河嵜 雅樹
122 Uniaxial eccentric screw pump JP2010290366 2010-12-27 JP2012137038A 2012-07-19 HASHIMA TAKASHI; OGAWA MASAKI
PROBLEM TO BE SOLVED: To provide: a uniaxial eccentric thread pump which allows a stator to be easily separated into an outer tube and a lining member, and tightening tolerance to be easily adjusted; and a uniaxial eccentric screw pump which allows a stator to be easily separated into an outer cylinder and a lining member, and tightening margin to be easily adjusted.SOLUTION: The stator 20 has an outer tube part 24 and a tubular liner part 22 integrally formed so that an inner circumferential surface thereof forms a female thread. Flange parts 26 and 26 extending diametrically outward are provided at both ends of the liner part 22, and an outer tube-mounting part 28 is provided between the flanges. The outer tube part 24 is mounted in the outer-tube mounting part 28 in a non-bonded manner, and both ends thereof abut on the flange parts 26 and 26. The tightening tolerance can be adjusted by inserting/removing a shim 25 between the liner part 22 and the outer tube part 24.
123 Oil rotary vacuum pump and a method of manufacturing the same JP2005128507 2005-04-26 JP4632847B2 2011-02-23 デ パルマ ギュセップ; カルボネリ ロベルト
124 Vane compressor JP2003556676 2002-12-26 JP2005513354A 2005-05-12 リー,チャン−スー
樹脂や金属材質のベーン母材に繊維材を挿合して製作される圧縮機のベーンを、シリンダー(40)のベーンスロットに挿合されて回転ピストンの空回転と共に直線状往復運動をしながら、シリンダー(40)の圧縮空間(P)を吸入領域と圧縮領域とに区画するとき、ベーンの耐摩耗性及び振動吸収性が優秀になるように構成することで、ベーン及び該ベーンと相対運動をする各部品の破損を抑制するだけでなく、振動騷音を減少して信頼性を高め、且つ、軽くて直線状動きを円滑にさせて、入電源を減少させる。
125 Method of manufacturing scroll wings JP30572187 1987-12-04 JP2547801B2 1996-10-23 HATSUTORI HITOSHI; SAKATA KANJI; HAYANO MAKOTO; MOROZUMI NAOYA; SUZUKI ISAO; SONE JUNJI
126 Scroll shape processing device JP1558091 1991-02-06 JPH0699306A 1994-04-12 HIGUCHI TOSHIRO; MIURA YASUHIRO
PURPOSE:To suppress dispersion of performance of a scroll type compressor ad raise its compression efficienty, by raising the processing dimensional accuracy of a revolving scroll member and a fixed scroll member and raising the dimensional accuracy of both scroll members under their assembled condition. CONSTITUTION:As synchronously rotating a revolving scroll 9 supported by a revolving scroll jig 7 and a fixed scroll 10 supported by a fixed scroll jig 8, scroll parts 9a, 10a are processed by main spindles 14, 20 for processing. At this time, the shape error of the scroll part 9a of the revolving scroll member 9 is measured, processing data for the fixed scroll 10 matching with the measurement is calculated by an arithmetic and control unit, the behavoir of the main spindle 20 for processing of the fixed scroll 10 is corrected based on the calculated data and the scroll part 10a of the scroll 10 is processed.
127 JPH0223681B2 - JP13752983 1983-07-29 JPH0223681B2 1990-05-25 IKEGAWA MASATO; SATO EIJI; TOJO KENJI
128 Manufacture of scroll body JP9934088 1988-04-23 JPH01273891A 1989-11-01 SUGIMOTO KAZUO; IIZUKA JIRO
PURPOSE:To enable the manufacturing and processing of a scroll body through turning working without doing end mill working, by manufacturing a scroll body with a process of joining plural semicircle cylinder walls of two parts together while shifting them at a fixed pitch. CONSTITUTION:Two parts 3, 3' having plural number of semicircle cylinder walls 8 with different diameters one another arranged concentricly at a fixed pitch and a plate 17 with one end in the axis direction of each semicircle cylinder wall 8 united into one body are prepared. Semicircle cylinder walls 8 and the plate 17 of these two parts are joined together with the respective axis centers of the semicircle cylinder walls 8 being shifted one another at a fixed pitch. In such a way the scroll body is manufactured.
129 JPH0127273B2 - JP3296681 1981-03-06 JPH0127273B2 1989-05-29 INOE SHUICHI; KARATO HIROSHI
130 Scroll member for scroll compressor JP29150987 1987-11-18 JPH01134086A 1989-05-26 KANAI YASUYUKI; KUNIKATA MASARU; MAEDA EIJI; KANEDA AIZO; OGATA MASAJI; NAKAKADO MASAAKI
PURPOSE:To secure such one that is high in fatigue strength and excellent in abrasion resistance and dimensional accuracy by covering a resin constituent, made up of mixing a filler of globular quarts glass in epoxy resin or the like as much as more than a specified quantity, on a scroll base material. CONSTITUTION:A scroll base material 14 is made up of sticking a tooth 12, formed by bending a metallic rectangular plate into a spiral form, to a bottom plate 13. This scroll base material 14 is covered with an even thick resin layer 15 made up of mixing globular quarts glass in epoxy resin as an inorganic charging filler except a tooth forming opposite surface 13b of the bottom plate 13. This globular quarts glass as the inorganic charging filler is mixed in more than 77wt.%. With this constitution, it is excellent in dimensional accuracy of the tooth 12, very good in an adhesive property with the scroll base material 1, and good abrasion resistance in addition.
131 Scroll blade JP15434987 1987-06-23 JPS64380A 1989-01-05 SAKATA KANJI; MURAZAKI HIROAKI; HAYANO MAKOTO; MOROZUMI NAOYA; HATORI MITSUO
PURPOSE:To increase the seal effect between a scroll groove and a scroll lap and improve the volume efficiency by inserting an elastic body between them in a scroll blade press-fitted with the scroll lap into the scroll groove formed on an end plate. CONSTITUTION:A spiral scroll lap 2 is press-fitted into a scroll groove 3 formed on an end plate 1 to constitute a scroll blade. In this case, an elastic body 4 made of a low-elasticity material such as elastic rubber or foaming urethane is inserted between the scroll groove 3 and the scroll lap 2. The elastic body 4 is formed into a band with a U-shaped cross section, for example, and inserted at the bottom section of the scroll lap 2. The gap between the scroll lap 2 and the scroll groove 3 is sealed with the elastic body 4, and the thermal deformation due to the difference of the thermal expansion coefficient between the end plate 1 and the scroll lap 2 is absorbed with the elastic body 4.
132 JPS59142481U - JP3634083 1983-03-15 JPS59142481U 1984-09-22
133 Manufacture of scroll compressor JP9123582 1982-05-31 JPS58210392A 1983-12-07 TANIGAWA MINORU; IMAIZUMI YUTAKA; SUZUKI MASAKI; AIBA KAZUMI; SATOU MINORU; TAKAHASHI MINEO
PURPOSE:To improve the mass productivity and the accuracy by manufacturing the mirror board of a scroll and a spirally formed wrap independently, while molding a continuous plastic work joint on the mirror board then jointing the end face of wrap and the mirror board. CONSTITUTION:A spirally molded wrap 10 is restricted by a positioning zig not shown, and after confirming the dimensional accuracy mounted on a plurality of projections 12 on an upper mirror board 11 and secured through resistance welding. The upper mirror board 11 and the lower mirror board 15 are jointed by fitting the projection 17 in a hole 13, then a bearing box 18 is jointed to the under side of the lower mirror board 15 through resistance welding or friction welding to form a swing scroll. Then the mirror board 20 and the wrap 22 are resistance welded at the projection 21 and fitted in the step 25 of a tube 24 to be brazed thereafter the flange 26 is fitted in the step 27 of the tube 24 and brazed to form a fixed scroll.
134 Fluid compressor JP14883181 1981-09-22 JPS5851289A 1983-03-25 UCHIKAWA NAOSHI; TAKAHASHI MINEO; WATANABE HIROSHI
PURPOSE: To improve sealing performance at the top of laps and to thereby reduce frictional loss, by applying a member provided with high accuracy by grinding or polishing an independent flat plate easy to machine over the surface to be held in sliding contact with the top of laps. CONSTITUTION: Members 17, 18, obtained from independent flat plates easy to machine to have a surface held in sliding contact with the top of laps and punched out to have grooves shaped in the same form as the laps, are applied over the bottom surface of a turning scroll 2 and a fixed scroll 1. The surfaces of these members 17, 18 are kept in sliding contact with the top of laps 1b, 2b to constitute compression chambers. With such an arrangement, it is enabled to improve the sealing performance at the top of the laps and to thereby reduce the frictional loss caused by sliding contact of the top of the laps with the surfaces of the members 17, 18. COPYRIGHT: (C)1983,JPO&Japio
135 Manufacture of scroll JP13780481 1981-09-03 JPS5841290A 1983-03-10 MATSUDA KEIICHI; TERAUCHI KUNITSUGU
PURPOSE:To enhance accuracy of products and reduce manufacturing cost by a method wherein hardening resin is applied on the surface of a roughly machined scroll, which is molded in a mold fabricated accurately in dimensions. CONSTITUTION:hardening resin 12 which is a mixture of an exclusive hardening agent and resin is applied on material for the scroll 11 using a brush or the like in a specified thickness. The material for the scroll 11 is engaged with a master mold 13 on which parting agent is applied in a way to be free from distortion and then clamped togethr. After complete hardening of resin by leaving it for 24 hours at room temperature, the scroll is separated from the master mold 13 and flashes and hardened residual pieces of resin 12 on the surface are then cut off and removed. In this way, accuracy of the product can be improved and manufacturing cost can be reduced.
136 Scroll fluid machinery JP3296681 1981-03-06 JPS57148085A 1982-09-13 INOUE SHIYUUICHI; KARATO HIROSHI
PURPOSE:To improve the manufacturing accuracy and obtain high performance by fixing the second end plate on the first end plate, said second end plate having a through hole formed the helical curve in the same shape as that of a lap, putting the lap through such through hole when fixing. CONSTITUTION:A stationary scroll having a lap 19 of a helical curve such as involute and the like is formed integrally on its first end plate and a movable scroll are engaged each other with the lap 29 facing inward, and the movable scroll is rotated against the stationary scroll. The second end plate 21 having a through hole 22 formed in the same helical curve as that of the lap 19 is fixed on the first end plate 20 with the lap 19 going through the through hole 22. The surface of the second end plate 21 is polished prior to the assembly thereby eliminating the need for polishing the surface of the first end plate 20.
137 固定スクロール体及びスクロール式流体機械 JP2013072383 2013-03-29 JP6170320B2 2017-07-26 藤岡 完; 浅見 淳一
138 一軸偏心ねじポンプ JP2010290366 2010-12-27 JP5821058B2 2015-11-24 橋間 隆; 小川 雅樹
139 封液排出口を有する液封式ポンプの切替方法及び液封式ポンプ JP2012517546 2010-06-02 JP5689120B2 2015-03-25 ビッセル,ダグラス,エリック; ビアス,チャールズ,ハワード
140 固定スクロール体及びスクロール式流体機械 JP2013072383 2013-03-29 JP2014196690A 2014-10-16 FUJIOKA KAN; ASAMI JUNICHI
【課題】固定スクロール体を低コスト化すると共に、固定スクロール体及び旋回スクロール体相互間の位置決めを容易にする。【解決手段】固定スクロール体32は、別々に製造された端板32Aと支持体32Bとで構成されている。端板32Aは、内側端板32Aaと、渦巻き形状のラップ32Abと、内側端板32Aaの背面33に形成された冷却フィン群52とからなる。支持体32Bは、中心に内側端板32Aaが挿入される円形孔32Baを有し、ピンクランク機構40を収納するケーシング39が一体に形成されている。端板32Aと支持体32Bとは、ケーシング12bの内部で着脱可能に結合されている。固定スクロール体32及び旋回スクロール体26の外周端に夫々一体形成されたケーシング39にピンクランク機構40が収納されている。【選択図】図4
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