JPS6341689A - Screw compressor - Google Patents
Screw compressorInfo
- Publication number
- JPS6341689A JPS6341689A JP18511986A JP18511986A JPS6341689A JP S6341689 A JPS6341689 A JP S6341689A JP 18511986 A JP18511986 A JP 18511986A JP 18511986 A JP18511986 A JP 18511986A JP S6341689 A JPS6341689 A JP S6341689A
- Authority
- JP
- Japan
- Prior art keywords
- slide valve
- face
- contact
- discharge side
- casing
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
Links
- 230000000452 restraining effect Effects 0.000 claims description 4
- 230000000694 effects Effects 0.000 description 3
- 230000002159 abnormal effect Effects 0.000 description 2
- 238000005452 bending Methods 0.000 description 2
- 238000005516 engineering process Methods 0.000 description 2
- 230000006835 compression Effects 0.000 description 1
- 238000007906 compression Methods 0.000 description 1
- 239000007788 liquid Substances 0.000 description 1
- 239000003507 refrigerant Substances 0.000 description 1
- 239000011435 rock Substances 0.000 description 1
- 239000010802 sludge Substances 0.000 description 1
Landscapes
- Applications Or Details Of Rotary Compressors (AREA)
Abstract
Description
【発明の詳細な説明】
〔産業上の利用分野〕
本発明はスライド弁を有するスクリュー圧縮機に関する
ものである。DETAILED DESCRIPTION OF THE INVENTION [Field of Industrial Application] The present invention relates to a screw compressor having a slide valve.
従来のスクリュー圧縮機は特公昭56−17557号に
記載のように容量側側1磯構はスライド弁方式が多用さ
れている。そして、運転Vi該ススライド弁負荷に応じ
て開閉し、圧縮ガスの一部を吸入側へ戻して容量制御運
転を行っている。該スライド弁は油圧、g@されるピス
トンによって移動するように構成されているが、スライ
ド弁の一部が回転するスクリューロータの半円形に沿っ
た円弧状の形状をしており、該円弧状部分の一部が回転
スクリューロータに接触して異音を発生することがある
。このような状態が発生するとスクリューロータの摩耗
も激しくなり性能低下につhi・る。In conventional screw compressors, as described in Japanese Patent Publication No. Sho 56-17557, a slide valve system is often used for the first rock structure on the capacity side. Then, during the operation Vi, the slide valve opens and closes depending on the load, and a portion of the compressed gas is returned to the suction side to perform capacity control operation. The slide valve is configured to be moved by a piston that is operated by hydraulic pressure, and a part of the slide valve has an arc shape that follows the semicircle of the rotating screw rotor. Some of the parts may come into contact with the rotating screw rotor and generate abnormal noise. If such a situation occurs, the screw rotor will wear more severely, leading to a decrease in performance.
特に起動時は前記スライド弁を全開にして始動−亡るの
が一般的に行われているが、起動時は液冷媒?吸込み漱
圧縮を行う場合もあって、このような場合はスクリュー
ロータ内部および吐出室ニ過犬な圧力変動が発生する。In particular, when starting up, it is common practice to fully open the slide valve and start-up, but when starting up, liquid refrigerant? In some cases, suction sludge is compressed, and in such a case, large pressure fluctuations occur inside the screw rotor and in the discharge chamber.
このような環境の中に置かれているスライド弁はストッ
パー等がないのでフリーな状態にあ如、前記ピストンと
スライド弁を連結するロットに曲げ応力が発生し、スラ
イド弁の外周部ギツプの範囲内で自由に上下運動、回動
運動を行うことになる。このために回転中のスクリュー
ロータとスライド弁の一部が接触してスクリユーロータ
を摩耗させると言う点については充分な配慮がなされて
いなかった。Since the slide valve placed in such an environment has no stopper etc., it is in a free state, and bending stress is generated in the rod that connects the piston and the slide valve, and the range of the gap on the outer periphery of the slide valve is You can freely move up and down and rotate inside. For this reason, sufficient consideration has not been given to the fact that the rotating screw rotor and a portion of the slide valve come into contact with each other, causing wear on the screw rotor.
上記従来技術はスライド弁が回転中のスクリューロータ
に接触し7てスクリューロータを摩耗させるという点に
ついては充分な配慮がされでおらず、スクリューロータ
の摩耗による性能低下という問題があった。The above-mentioned conventional technology does not give sufficient consideration to the fact that the slide valve comes into contact with the rotating screw rotor and causes the screw rotor to wear out, and there is a problem in that the performance deteriorates due to the wear of the screw rotor.
本発明の目的は、スライド弁のスクリューローの
りとヰ接触をなくシ、スクリューロータの摩耗をなくす
ことにあめ。The object of the present invention is to eliminate contact with the screw rotor of the slide valve and to eliminate wear on the screw rotor.
上記目的は、スライド弁の上下運転、回動運転全拘束す
る手段をスライド弁とケーシングの吐出側壁面との間に
設けることにより達成される。The above object is achieved by providing means for completely restraining the vertical and rotational movements of the slide valve between the slide valve and the discharge side wall surface of the casing.
〔作用〕
スライド弁が全開VCなると、該スライド弁は最もケー
シングの吐出側へ移動し、該スライド弁の端面ばケーシ
ングの吐出側壁面と接触するように位置決めされる。こ
の両者の接触摩擦によってスライド弁の上下運動、回動
運動は拘束される。[Operation] When the slide valve is fully opened VC, the slide valve moves furthest toward the discharge side of the casing, and is positioned so that the end surface of the slide valve comes into contact with the discharge side wall surface of the casing. The vertical and rotational movements of the slide valve are restricted by the contact friction between the two.
以下、本発明の一実施例を第1図乃至第3図により説明
する。An embodiment of the present invention will be described below with reference to FIGS. 1 to 3.
1はスクリューロータでケーシング4内に図示してない
ラジアル軸受、スラスト軸受によって回転自在に支承さ
れている。6は吐出室で前記スクリューロータ1の圧縮
全問に導通しており、更に吐出配管に接線されている。A screw rotor 1 is rotatably supported in a casing 4 by a radial bearing and a thrust bearing (not shown). Reference numeral 6 denotes a discharge chamber, which is connected to the entire compression chamber of the screw rotor 1, and is also tangential to the discharge pipe.
7はスライド弁でロッド8によってピストン9と一体に
形成されている。そして、該スライド弁子は前記スクリ
ューロータ1およびケーシング4の内壁41との間に適
宜なギャップを維持して摺動自在に収納されている。1
0はスライド弁の吸入側端面で全負荷運転のときけ前記
ケーシング4の端面42と密着して接触しスライド弁を
閉じている。11けバイパス通路で低圧側に連通してい
る。12は油圧シリンダー13のカバーである。14は
ケーシング4の吐出側端面で、15はスライド弁7の吐
出側端面である。この両端面は垂直に形成されて全面接
触しスライド弁7の上下運動、回動運動を拘束する手段
全構成している。第2図はスライド弁16の吐出側端面
17とケーシング18の吐出11ill端而19ケ傾斜
させ全面接触させた場合である。第3図はスライド弁1
9の吐出側面20を突起状にしてロッド8の軸芯よりス
クリューロータ1側すなわら図においてロッド8より下
側のみに形成している。A slide valve 7 is integrally formed with a piston 9 by a rod 8. The slide valve element is slidably housed with an appropriate gap maintained between the screw rotor 1 and the inner wall 41 of the casing 4. 1
0 is an end face on the suction side of the slide valve, which comes into close contact with the end face 42 of the casing 4 during full load operation to close the slide valve. It communicates with the low pressure side through an 11 bypass passage. 12 is a cover of the hydraulic cylinder 13. 14 is a discharge side end face of the casing 4, and 15 is a discharge side end face of the slide valve 7. These end surfaces are vertically formed and in full contact with each other to constitute a means for restraining the vertical and rotational movements of the slide valve 7. FIG. 2 shows a case where the discharge side end face 17 of the slide valve 16 and the discharge end face 19 of the casing 18 are inclined and brought into full contact with each other. Figure 3 shows slide valve 1
The discharge side surface 20 of 9 is formed into a protruding shape and is formed only on the side of the screw rotor 1 from the axis of the rod 8, that is, on the lower side of the rod 8 in the figure.
次にその作用を説明する。Next, its effect will be explained.
図はスライド弁が作動して最も吐出側に移動している状
態を示している。この状態は圧縮機の最少容量に対応し
ており、スライド弁7の吐出側端面15がケーシング4
の吐出側端面14と全面接触している。このとき、ピス
トン9はカバー12からいくらか離れている。このよう
にしてスライド弁り)位置を決めることにより、スクリ
ュー圧縮機の起動時にスライド弁lけピストン9の図に
おいて右方向に働く駆動力によシ吐出側端面15でケー
シング4の吐出側端面14に押付けられており、スライ
ド弁7の上下運動、回動運動を拘束し一4=
ている。したがって、スクリューロータ1とスライド弁
7との接触に伴う異音発生およびスクリューロータ1の
摩耗全防止する効果がある。また、スライド弁7が拘束
されるため、ロッド8に作用する応力はピスト/9の駆
動力による引張り応力のみであり、従来問題となってい
た過大な曲げ応力は発生しない。The figure shows a state in which the slide valve is activated and moved to the farthest discharge side. This state corresponds to the minimum capacity of the compressor, and the discharge side end surface 15 of the slide valve 7 is connected to the casing 4.
The entire surface is in contact with the discharge side end surface 14 of. At this time, the piston 9 is some distance from the cover 12. By determining the position of the slide valve in this manner, when the screw compressor is started, the slide valve is moved to the discharge side end surface 15 of the casing 4 by the driving force acting in the right direction in the drawing of the piston 9. The vertical movement and rotational movement of the slide valve 7 are restricted. Therefore, there is an effect of completely preventing the generation of abnormal noise due to contact between the screw rotor 1 and the slide valve 7 and the wear of the screw rotor 1. Further, since the slide valve 7 is restrained, the stress acting on the rod 8 is only the tensile stress due to the driving force of the piston/9, and the excessive bending stress that has been a problem in the past does not occur.
また第2図のように、スライド弁16の吐出側端面17
とケーシング18の吐出側端面19を傾斜させて全面接
触させること1てより、ピストン9の駆動力に対してス
ライド弁16の吐出側端面17の接触面に作用する反力
の接触面に沿った接線成分がスライド弁16を押し上げ
る方向に作用するため、スライド弁16とスクリューロ
ータ1の接触防止をより確実に行うことができる。Further, as shown in FIG. 2, the discharge side end surface 17 of the slide valve 16
By tilting the discharge side end surface 19 of the casing 18 so that they are in full contact with each other, the reaction force acting on the contact surface of the discharge side end surface 17 of the slide valve 16 against the driving force of the piston 9 is applied along the contact surface. Since the tangential component acts in the direction of pushing up the slide valve 16, contact between the slide valve 16 and the screw rotor 1 can be more reliably prevented.
また、第3図のように、スライド弁21の吐出側端面2
0を突起状にすればロッド8の軸芯に作用するピストン
9の1駆動力とスライド弁21の吐出側端面の反力との
作用位1直の相違により、スライド弁19を時計回り方
向に回転させようとする回転力が発生し、スライド弁2
1の先端が上側に押上げられてケーシング4の内壁41
と接触し上下運動、回動運動を拘束する。In addition, as shown in FIG. 3, the discharge side end surface 2 of the slide valve 21
If 0 is made into a protruding shape, the slide valve 19 will be moved clockwise due to the difference in the position of action between the driving force of the piston 9 acting on the axis of the rod 8 and the reaction force on the discharge side end surface of the slide valve 21. A rotational force is generated to rotate the slide valve 2.
1 is pushed upward and the inner wall 41 of the casing 4
Contact with and restrict vertical and rotational movements.
本発明によれば、スライド弁のスクリューロータとの接
触をなくすことができるので、スクリューロータの摩耗
を防止できる。According to the present invention, since it is possible to eliminate contact between the slide valve and the screw rotor, wear of the screw rotor can be prevented.
第1図乃至第3図は本発明の一実施例の部分断面図であ
る。
1・・・スクリューロータ 4・・・ケーシング”/
、 + 6 、2 +・・・スライド弁 8=−ロ
ッド9・・・ピストン +5,17.20・・・スラ
イド弁の吐出側端面 14.19・・・ケーシングの
吐出側端面。1 to 3 are partial cross-sectional views of one embodiment of the present invention. 1...Screw rotor 4...Casing"/
, +6, 2 +...Slide valve 8=-rod 9...Piston +5,17.20...Discharge side end face of slide valve 14.19...Discharge side end face of casing.
Claims (1)
記スライド弁を全開にしたとき、該スライド弁の端面と
ケーシングの壁面とが接触する前記スライド弁の上下運
動、回動運動を拘束する手段を設けたことを特徴とする
スクリュー圧縮機。 2、拘束する手段が、スライド弁端面とケーシングの壁
面とが垂直あるいは傾斜して全面接触してなる特許請求
の範囲第1項記載のスクリュー圧縮機。[Claims] 1. In a screw compressor having a slide valve, when the slide valve is fully opened, the vertical movement and rotational movement of the slide valve in which the end face of the slide valve and the wall surface of the casing come into contact are controlled. A screw compressor characterized by being provided with a means for restraining. 2. The screw compressor according to claim 1, wherein the restraining means is such that the end face of the slide valve and the wall face of the casing are in full contact with each other in a vertical or inclined manner.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP18511986A JPS6341689A (en) | 1986-08-08 | 1986-08-08 | Screw compressor |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP18511986A JPS6341689A (en) | 1986-08-08 | 1986-08-08 | Screw compressor |
Publications (1)
Publication Number | Publication Date |
---|---|
JPS6341689A true JPS6341689A (en) | 1988-02-22 |
Family
ID=16165197
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP18511986A Pending JPS6341689A (en) | 1986-08-08 | 1986-08-08 | Screw compressor |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPS6341689A (en) |
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS62108894A (en) * | 1985-11-06 | 1987-05-20 | Wakoudou Kk | Crystal lactose and production thereof |
US6220143B1 (en) | 1997-12-04 | 2001-04-24 | Howa Machinery, Ltd. | Rotary cylinder device |
KR100421286B1 (en) * | 2001-10-27 | 2004-03-09 | 엘지전선 주식회사 | A vertically symmetric screw compressor for refrigeration |
JP2007169893A (en) * | 2005-12-19 | 2007-07-05 | Raito Kogyo Co Ltd | Opening cut-off device |
CN107013465A (en) * | 2017-06-16 | 2017-08-04 | 珠海格力电器股份有限公司 | Screw compressor |
Citations (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS56121893A (en) * | 1980-02-29 | 1981-09-24 | Hitachi Ltd | Screw compressor |
JPS57126589A (en) * | 1980-10-30 | 1982-08-06 | Svenska Rotor Maskiner Ab | Control apparatus of spiral screw rotor machine for elastic fluid |
-
1986
- 1986-08-08 JP JP18511986A patent/JPS6341689A/en active Pending
Patent Citations (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS56121893A (en) * | 1980-02-29 | 1981-09-24 | Hitachi Ltd | Screw compressor |
JPS57126589A (en) * | 1980-10-30 | 1982-08-06 | Svenska Rotor Maskiner Ab | Control apparatus of spiral screw rotor machine for elastic fluid |
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS62108894A (en) * | 1985-11-06 | 1987-05-20 | Wakoudou Kk | Crystal lactose and production thereof |
US6220143B1 (en) | 1997-12-04 | 2001-04-24 | Howa Machinery, Ltd. | Rotary cylinder device |
KR100421286B1 (en) * | 2001-10-27 | 2004-03-09 | 엘지전선 주식회사 | A vertically symmetric screw compressor for refrigeration |
JP2007169893A (en) * | 2005-12-19 | 2007-07-05 | Raito Kogyo Co Ltd | Opening cut-off device |
CN107013465A (en) * | 2017-06-16 | 2017-08-04 | 珠海格力电器股份有限公司 | Screw compressor |
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