JP4503722B2 - Vertical submersible electric pump - Google Patents

Vertical submersible electric pump Download PDF

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Publication number
JP4503722B2
JP4503722B2 JP02911499A JP2911499A JP4503722B2 JP 4503722 B2 JP4503722 B2 JP 4503722B2 JP 02911499 A JP02911499 A JP 02911499A JP 2911499 A JP2911499 A JP 2911499A JP 4503722 B2 JP4503722 B2 JP 4503722B2
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JP
Japan
Prior art keywords
oil
oil chamber
chamber
pump
motor frame
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.)
Expired - Lifetime
Application number
JP02911499A
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Japanese (ja)
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JP2000227088A (en
Inventor
泰人 窪
静夫 田中
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Tsurumi Manufacturing Co Ltd
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Tsurumi Manufacturing Co Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
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Priority to JP02911499A priority Critical patent/JP4503722B2/en
Publication of JP2000227088A publication Critical patent/JP2000227088A/en
Application granted granted Critical
Publication of JP4503722B2 publication Critical patent/JP4503722B2/en
Anticipated expiration legal-status Critical
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Description

【0001】
【発明の技術分野】
本発明は、立型水中電動ポンプに関するものである。
【0002】
【従来技術とその問題点】
立型水中電動ポンプは従来、図9に示すよう渦巻室102とモータ113との間にオイル室122が介在しているが、ポンプ駆動中は渦巻室102内が高圧となりオイル室122内との圧力差が大きくなるため、揚水がメカニカルシール121の摺動面を伝ってオイル室122内へ侵入するおそれがある。また、オイル室122内への給油に際しては熱膨張による体積増を見込んで通常80%程度の油量にとどめているため、オイル室122の上方部には空気溜りAが形成せられ、メカニカルシール121の上方部では潤滑不良を起すことになる。
【0003】
【発明の目的】
本発明の目的は、渦巻室からオイル室内への揚液洩れを生じるおそれがなく、かつ、メカニカルシールに潤滑不良を来すことのない、立型水中電動ポンプを提供することにある。
【0004】
【発明の構成】
本発明に係る立型水中電動ポンプにおいては、メカニカルシール潤滑のためのオイル熱膨張によるオイル体積の増加を吸収させると共にポンプ駆動中に生じる渦巻室とオイル室内との圧力差を減殺させるための伸縮性弾性材料で中空状に作られたオイルチャンバーをメカニカルシールが内装された第1オイル室の下方部から外方へ穿設された通油孔を介して連通し一体化された第2オイル室に内設させ、該オイルチャンバーの中空状内部とポンプケーシング内の渦巻室とを連通させてポンプケーシングのシールプレート上に立設された、上記第1オイル室を囲繞するようモータフレームの外周面に、その筒軸方向へ伸延される水路と隣接して第2オイル室および電装室が円周方向へ並列状に縦設されたモータフレーム内モータを収容し、該モータフレームの上端部をヘッドカバーにより蓋装させた。
【0005】
【作用】
オイルチャンバーが膨張している状態でオイル室内へ満杯状態に封入されたオイルが熱膨張により体積を増大するのに伴いオイルチャンバーは次第に収縮してオイル室の有効容積は拡げられ、また、温度低下でオイル体積が減少するのに伴いオイルチャンバーは次第に膨張してオイル室の有効容積は狭められ、オイル室内のオイルは常にメカニカルシールの上方部まで達している状態に保たれる。また、ポンプ駆動中に生じる渦巻室とオイル室内との圧力差はオイルチャンバーにより減殺される。
【0006】
【実施例】
以下本発明実施例の図面により説明をする。
【0007】
1はゴム等の耐摩耗性材料で作られたポンプケーシングであって、内部は渦巻室2に形成されている。3はモータ軸4の導下部に嵌着されてポンプケーシング1内に収容された羽根車、5はポンプケーシング1の下縁部に定着せられ中央にポンプ吸込口6を開口させたサクションカバー、7はストレーナ、8はポンプケーシング1の背部に定着されたシールプレート、9は耐摩耗性材料で作られてシールプレート8の下面に添着された保護シート、10はポンプケーシング1が水圧によって外側へ変形することを阻止するための補強壁であり、シールプレート8の周辺部から導下されてポンプケーシング1の巻の外周へ当接する。11はポンプケーシング1のシールプレート8上に立設された筒状モータフレームであって、上端面はヘッドカバー12を装着するなどにより閉塞せられ内部にはモータ13が収容されている。モータフレーム11の外周面には、その筒軸方向へ伸延される水路14と隣接して第2オイル室15および電装室16が円周方向へ並列状に縦設されている。17・・・・17は上記各室を区画する隔壁である。前記渦巻室2における巻の終端部2Eは水路14の下端部と通じ、水路14の上端部はヘッドカバー12の内周部に形成される誘導路18を経てポンプ吐出口19へ通じている。実施例の図面に示すよう、2個の水路14,14が対向状に配設せられ、それぞれの下端部が二重渦巻室2の巻の終端部2E,2Eとそれぞれ各別に導通させてある場合には、各水路14,14の上端部がヘッドカバー12内の誘導路18で合流してポンプ吐出口19へ通じるのである。第2オイル室15は隔壁17を介して水路14,14間に狭まれるようにして縦設されており、その下端部はモータフレーム11の下方部に穿設された通油孔20を介して、メカニカルシール21の周辺部に形成された第1オイル室22へ通じ、上端部はヘッドカバー12の上面から開設された給油口23へ通じている。24は給油口23に施される給油プラグである。電装室16はその内側面に設けられたリード線引出孔25を介してモータフレーム11内へ通じ上端面がモータフレーム11上方部の電源ケーブル挿通口26へ通じている。27は合成ゴム等の伸縮性弾性材料で中空状に作られたオイルチャンバーであり、その中空状内部をポンプケーシング1内の渦巻室2へ連通させるようにしてオイル室内に内設されており、実施例の図面では第2オイル室15内へ内設させた事例が示されているが、第1オイル室22内へ内設しても効果は同じである。
【0008】
ポンプの使用に先立ち、給油口23から給油して第1オイル室22内および第2オイル室15内のオイルを満杯状態とする。ポンプ駆動中は、ポンプ吸込口6から渦巻室2内へ吸込まれた水が、巻の終端部2Eから水路14内を上昇する過程でモータフレーム11内のモータ13を冷却しつつ誘導路18を経てポンプ吐出口19から吐出される。ポンプの運転時間経過と共にメカニカルシール21の潤滑とモータ13の発熱吸収により、第1オイル室22内および第2イル室15内のオイルが次第に昇温して体積を増大するのに伴い、オイルチャンバー27は次第に収縮して第1オイル室22および第2オイル室15の有効容積は拡げれる。ポンプが停止して時間が経てば温度低下によってオイル体積は減少するが、オイル体積の減少に伴いオイルチャンバー27は次第に膨張して第1オイル室22および第2オイル室15の有効容積は狭められるので、オイルがメカニカルシール21の上方部まで達している状態に保たれる。従って再びポンプの運転を開始してもメカニカルシール21の潤滑機能が損なわれることはない。また、ポンプの駆動中は揚水の一部が渦巻室2からオイルチャンバー27内へ流入し続けるので、渦巻室2内とオイル室15,22内の圧力差は減殺されオイル室内への揚水侵入が阻止される。
【0009】
【発明の効果】
本発明によれば、渦巻室内の圧力とオイル室内の圧力とを均衡させることで揚液洩れを解消し、また、オイル室内のオイルを常に満杯状態に保持させることでメカニカルシールの潤滑効果を高めることができる。
【図面の簡単な説明】
【図1】本発明立型水中電動ポンプの水路および第2オイル室が表示される部位での縦断側面図である。
【図2】本発明立型水中電動ポンプの水路および電装室が表示される部位での縦断側面図である。
【図3】本発明立型水中電動ポンプにおけるモータフレームの平面図である。
【図4】本発明立型水中電動ポンプにおけるモータフレームの底面図である。
【図5】図3のA−A線における縦断側面図である。
【図6】図3のB−B線における縦断側面図である。
【図7】図3ないし図6に示されたモータフレームの上端面を閉塞するためのヘッドカバーの底面図である。
【図8】図1のC−C線における横断平面図である。
【図9】従来における立型水中電動ポンプの縦断側面図であって、オイル室内のオイルがメカニカルシールの上方部に達していない事例を示す。
【符号の説明】
1 ポンプケーシング
2 渦巻室
8 シールプレート
11 モータフレーム
12 ヘッドカバー
15 第2オイル室
20 通油孔
21 メカニカルシール
22 第1オイル室
27 オイルチャンバー
[0001]
TECHNICAL FIELD OF THE INVENTION
The present invention relates to a vertical submersible electric pump.
[0002]
[Prior art and its problems]
Conventionally, the vertical submersible electric pump has an oil chamber 122 interposed between the swirl chamber 102 and the motor 113 as shown in FIG. Since the pressure difference increases, the pumped water may enter the oil chamber 122 through the sliding surface of the mechanical seal 121. In addition, when oil is supplied into the oil chamber 122, the amount of oil due to thermal expansion is anticipated and the amount of oil is normally limited to about 80%. Therefore, an air reservoir A is formed above the oil chamber 122, and a mechanical seal In the upper part of 121, lubrication failure occurs.
[0003]
OBJECT OF THE INVENTION
An object of the present invention is to provide a vertical submersible electric pump that does not cause a liquid leakage from a spiral chamber to an oil chamber and that does not cause poor lubrication of a mechanical seal.
[0004]
[Structure of the invention]
In Vertical water electric pump according to the present invention, an oil of thermal expansion for the mechanical seal lubrication, in order to counteract the pressure difference between the swirl chamber and the oil chamber that occurs during the pump drive with to absorb the increase in oil volume A second oil chamber, which is made of a hollow elastic material, is connected and integrated through an oil passage hole drilled outward from a lower portion of the first oil chamber in which a mechanical seal is installed. A motor frame is installed in the oil chamber so that the hollow interior of the oil chamber communicates with the spiral chamber in the pump casing so as to surround the first oil chamber standing on the seal plate of the pump casing . on the outer peripheral surface, housing the motor in the motor frame part which is Tate設in parallel form the second oil chamber and the machine room adjacent to the water channel to be distracted to the tube axis direction to the circumferential direction And the upper end portion of the motor frame is FutaSo by the head cover.
[0005]
[Action]
As the oil enclosed in the oil chamber is fully expanded with the oil chamber expanded, the oil chamber gradually contracts as the volume increases due to thermal expansion, and the effective volume of the oil chamber increases, and the temperature decreases. As the oil volume decreases, the oil chamber gradually expands to reduce the effective volume of the oil chamber, and the oil in the oil chamber is always kept reaching the upper part of the mechanical seal. Further, the pressure difference between the spiral chamber and the oil chamber generated during the driving of the pump is reduced by the oil chamber.
[0006]
【Example】
Embodiments of the present invention will be described below with reference to the drawings.
[0007]
Reference numeral 1 denotes a pump casing made of a wear-resistant material such as rubber, and the inside is formed in a spiral chamber 2. 3 is an impeller that is fitted in the lower part of the motor shaft 4 and accommodated in the pump casing 1, 5 is a suction cover that is fixed to the lower edge of the pump casing 1 and has a pump suction port 6 opened in the center, 7 is a strainer, 8 is a seal plate fixed to the back of the pump casing 1, 9 is a protective sheet made of a wear-resistant material and attached to the lower surface of the seal plate 8, and 10 is a pump casing 1 that is moved outward by water pressure. It is a reinforcing wall for preventing deformation, is guided from the peripheral portion of the seal plate 8 and abuts on the outer periphery of the winding of the pump casing 1. Reference numeral 11 denotes a cylindrical motor frame standing on the seal plate 8 of the pump casing 1. The upper end surface is closed by attaching a head cover 12 or the like, and a motor 13 is accommodated therein. On the outer peripheral surface of the motor frame 11, a second oil chamber 15 and an electrical component chamber 16 are vertically arranged in parallel in the circumferential direction adjacent to a water channel 14 extending in the cylinder axis direction. 17... 17 are partition walls that divide the chambers. The end portion 2E of the winding in the spiral chamber 2 communicates with the lower end portion of the water passage 14, and the upper end portion of the water passage 14 communicates with the pump discharge port 19 via the guide passage 18 formed in the inner peripheral portion of the head cover 12. As shown in the drawings of the embodiment, two water passages 14 and 14 are arranged opposite to each other, and their lower ends are respectively connected to terminal ends 2E and 2E of the double spiral chamber 2 respectively. In this case, the upper ends of the water channels 14 and 14 are joined at the guide channel 18 in the head cover 12 and communicate with the pump discharge port 19. The second oil chamber 15 is vertically provided so as to be narrowed between the water channels 14 and 14 via a partition wall 17, and the lower end portion thereof is connected to an oil passage hole 20 formed in a lower portion of the motor frame 11. Thus, the first oil chamber 22 formed in the peripheral portion of the mechanical seal 21 is communicated, and the upper end portion is communicated from the upper surface of the head cover 12 to the oil supply port 23 established. Reference numeral 24 denotes an oil supply plug applied to the oil supply port 23. The electrical component chamber 16 communicates with the motor frame 11 through a lead wire extraction hole 25 provided on the inner surface thereof, and the upper end surface communicates with the power cable insertion port 26 at the upper part of the motor frame 11. 27 is a hollow oil chambers made with stretchable elastic material such as synthetic rubber, which is provided inside the oil chamber so as to communicate the interior thereof hollow to swirl chamber 2 in the pump casing 1, In the drawings of the embodiment, an example in which the second oil chamber 15 is installed in the second oil chamber 15 is shown.
[0008]
Prior to the use of the pump, the oil in the first oil chamber 22 and the second oil chamber 15 is filled by supplying oil from the oil supply port 23. While the pump is being driven, the water sucked into the spiral chamber 2 from the pump suction port 6 goes through the induction path 18 while cooling the motor 13 in the motor frame 11 in the process of rising in the water path 14 from the winding end portion 2E. Then, it is discharged from the pump discharge port 19. As the operating time of the pump elapses, the oil in the first oil chamber 22 and the second yl chamber 15 gradually increases in temperature due to the lubrication of the mechanical seal 21 and the heat absorption of the motor 13, and the oil chamber increases. 27 gradually contracts, and the effective volumes of the first oil chamber 22 and the second oil chamber 15 are expanded. If the pump stops and time passes, the oil volume decreases due to the temperature drop. However, as the oil volume decreases, the oil chamber 27 gradually expands and the effective volumes of the first oil chamber 22 and the second oil chamber 15 are reduced. Therefore, the oil is maintained in a state reaching the upper part of the mechanical seal 21. Therefore, even if the operation of the pump is started again, the lubrication function of the mechanical seal 21 is not impaired. Further, part of the pumped water continues to flow into the oil chamber 27 from the swirl chamber 2 while the pump is being driven, so that the pressure difference between the swirl chamber 2 and the oil chambers 15 and 22 is reduced, and the pumped water enters the oil chamber. Be blocked.
[0009]
【The invention's effect】
According to the present invention, pumping leakage is eliminated by balancing the pressure in the swirl chamber and the pressure in the oil chamber, and the lubrication effect of the mechanical seal is enhanced by keeping the oil in the oil chamber always full. be able to.
[Brief description of the drawings]
FIG. 1 is a longitudinal side view of a portion where a water channel and a second oil chamber of a vertical submersible electric pump of the present invention are displayed.
FIG. 2 is a longitudinal side view of the vertical submersible electric pump of the present invention at a site where a water channel and an electrical component room are displayed.
FIG. 3 is a plan view of a motor frame in the vertical hydroelectric pump of the present invention.
FIG. 4 is a bottom view of a motor frame in the vertical hydroelectric pump of the present invention.
5 is a longitudinal side view taken along the line AA in FIG. 3. FIG.
6 is a longitudinal side view taken along line BB in FIG. 3. FIG.
7 is a bottom view of a head cover for closing the upper end surface of the motor frame shown in FIGS. 3 to 6; FIG.
8 is a cross-sectional plan view taken along line CC in FIG. 1. FIG.
FIG. 9 is a longitudinal side view of a conventional vertical submersible electric pump, showing an example in which oil in the oil chamber does not reach the upper part of the mechanical seal.
[Explanation of symbols]
1 Pump casing 2 Swirl chamber 8 Seal plate 11 Motor frame
12 Head cover 15 Second oil chamber
20 Oil passage hole 21 Mechanical seal 22 First oil chamber 27 Oil chamber

Claims (1)

メカニカルシール潤滑のためのオイル熱膨張によるオイル体積の増加を吸収させると共にポンプ駆動中に生じる渦巻室とオイル室内との圧力差を減殺させるための伸縮性弾性材料で中空状に作られたオイルチャンバーをメカニカルシールが内装された第1オイル室の下方部から外方へ穿設された通油孔を介して連通し一体化された第2オイル室に内設させ、該オイルチャンバーの中空状内部とポンプケーシング内の渦巻室とを連通させてポンプケーシングのシールプレート上に立設された、上記第1オイル室を囲繞するようモータフレームの外周面に、その筒軸方向へ伸延される水路と隣接して第2オイル室および電装室が円周方向へ並列状に縦設されたモータフレーム内モータを収容し、該モータフレームの上端部をヘッドカバーにより蓋装させたことを特徴とする、立型水中電動ポンプ。An oil of thermal expansion for the mechanical seal lubrication were made hollow with stretchable elastic material for offset the pressure difference between the swirl chamber and the oil chamber that occurs during the pump drive with to absorb the increase in oil volume The oil chamber is installed in a second oil chamber integrated through an oil passage hole drilled outward from a lower portion of the first oil chamber having a mechanical seal, and the oil chamber is hollow. The inner periphery of the motor frame communicates with the spiral chamber in the pump casing and is extended on the outer peripheral surface of the motor frame so as to surround the first oil chamber standing on the seal plate of the pump casing in the cylinder axis direction. the second oil chamber and the machine room is housed a motor in the motor frame part which is Tate設in parallel form circumferentially adjacent to waterways, cover the upper portions of the motor frame Characterized in that is more FutaSo, Vertical water electric pump.
JP02911499A 1999-02-05 1999-02-05 Vertical submersible electric pump Expired - Lifetime JP4503722B2 (en)

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Application Number Priority Date Filing Date Title
JP02911499A JP4503722B2 (en) 1999-02-05 1999-02-05 Vertical submersible electric pump

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP02911499A JP4503722B2 (en) 1999-02-05 1999-02-05 Vertical submersible electric pump

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JP2000227088A JP2000227088A (en) 2000-08-15
JP4503722B2 true JP4503722B2 (en) 2010-07-14

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Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP4107408B2 (en) * 2002-02-15 2008-06-25 荏原機電株式会社 Structure of mechanical seal chamber of vertical axis pump
JP5159371B2 (en) * 2008-03-04 2013-03-06 新明和工業株式会社 Shaft seal device and electric pump provided with the same
US9518767B2 (en) 2013-01-25 2016-12-13 Trane International Inc. Refrigerant cooling and lubrication system
CN110529398A (en) * 2019-09-30 2019-12-03 郑建兵 The explosion-proof sewage dirt submersible pump of oil immersed type

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS59107561U (en) * 1982-12-30 1984-07-19 株式会社荏原製作所 submersible motor pump
JPS63162993U (en) * 1987-04-14 1988-10-25
JPS6439493U (en) * 1987-09-02 1989-03-09
JPH01130099U (en) * 1988-02-29 1989-09-05
JPH05231377A (en) * 1992-02-24 1993-09-07 Shin Meiwa Ind Co Ltd Submerged pump
JPH07293496A (en) * 1994-04-27 1995-11-07 Terada Pump Seisakusho:Kk Submerged pump

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0710076Y2 (en) * 1989-03-15 1995-03-08 三浦工業株式会社 Seal structure of multi-stage centrifugal pump

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS59107561U (en) * 1982-12-30 1984-07-19 株式会社荏原製作所 submersible motor pump
JPS63162993U (en) * 1987-04-14 1988-10-25
JPS6439493U (en) * 1987-09-02 1989-03-09
JPH01130099U (en) * 1988-02-29 1989-09-05
JPH05231377A (en) * 1992-02-24 1993-09-07 Shin Meiwa Ind Co Ltd Submerged pump
JPH07293496A (en) * 1994-04-27 1995-11-07 Terada Pump Seisakusho:Kk Submerged pump

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