GB1105310A

GB1105310A – Improvements in or relating to impregnating stator windings
– Google Patents

GB1105310A – Improvements in or relating to impregnating stator windings
– Google Patents
Improvements in or relating to impregnating stator windings

Info

Publication number
GB1105310A

GB1105310A
GB33598/65A
GB3359865A
GB1105310A
GB 1105310 A
GB1105310 A
GB 1105310A
GB 33598/65 A
GB33598/65 A
GB 33598/65A
GB 3359865 A
GB3359865 A
GB 3359865A
GB 1105310 A
GB1105310 A
GB 1105310A
Authority
GB
United Kingdom
Prior art keywords
stator
support means
resin
mixing
hardener
Prior art date
1964-08-21
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

Application number
GB33598/65A
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.)

ELEKTROTECHNIK MIT Beschrankter

Original Assignee
ELEKTROTECHNIK MIT Beschrankter
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.)
1964-08-21
Filing date
1965-08-05
Publication date
1968-03-06

1965-08-05
Application filed by ELEKTROTECHNIK MIT Beschrankter
filed
Critical
ELEKTROTECHNIK MIT Beschrankter

1968-03-06
Publication of GB1105310A
publication
Critical
patent/GB1105310A/en

Status
Expired
legal-status
Critical
Current

Links

Espacenet

Global Dossier

Discuss

Classifications

H—ELECTRICITY

H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER

H02K—DYNAMO-ELECTRIC MACHINES

H02K15/00—Methods or apparatus specially adapted for manufacturing, assembling, maintaining or repairing of dynamo-electric machines

H02K15/12—Impregnating, heating or drying of windings, stators, rotors or machines

Abstract

In impregnating stator windings with a mixture of resin and liquid hardener the stator is mounted on a rotary and pivotable support means, is preheated to a predetermined temperature, is trickle coated with said mixture and is thermically cured; the preheating of the stator winding and the curing are controlled electrically in a self monitoring manner in that electrical impulses control the heating of the stator with a measurement process by a Wheatstone bridge to monitor the actual temperature of the stator at any time with the support means pivoted out of a horizontal position; pumps for delivering the resin and hardener to a mixing chamber are controlled according to a function of the heating current flux for preheating the stator; a discharge valve of the mixing chamber is controlled by electrical impulses according to the desired temperature of the stator at zero bridge reading and the commencement of the curing process is initiated as a function of the discharge of the mixing chamber by an electrical impulse triggered by the latter when the stator support means are pivoted back into a horizontal position. In the apparatus shown there are two work stations A and B independent of each other and a common trickle coating device movable from one to the other. At each station there are a number of work positions 11-15, provided on a pivotally mounted plate 16, each consisting of support means 17 to receive a stator 18 retained on a clamping fork 19, each support means including an electrical terminal box 20 for clamping the connecting wires 21 of the stator winding. The stator support means are rotated by a common driving chain 23 from a motor 22 and at least one support driving means has a control cam 24 which cooperates with a limit switch 25 in such a manner that when the drive means is switched off the supports come to rest in a position to facilitate the connection and disconnection of the connecting wires 21. The mixing and metering device c has two storage tanks 26, 27 for the resin and the hardener, with pairs of pumps 28, 29 for delivery to mixing chambers 30-34 and discharge valves 35 at the outlets from the mixing chambers.

GB33598/65A
1964-08-21
1965-08-05
Improvements in or relating to impregnating stator windings

Expired

GB1105310A
(en)

Applications Claiming Priority (1)

Application Number
Priority Date
Filing Date
Title

DEG41367A

DE1212204B
(en)

1964-08-21
1964-08-21

Process for the impregnation of single and multi-phase stator windings as well as device for practicing the process

Publications (1)

Publication Number
Publication Date

GB1105310A
true

GB1105310A
(en)

1968-03-06

Family
ID=7126669
Family Applications (1)

Application Number
Title
Priority Date
Filing Date

GB33598/65A
Expired

GB1105310A
(en)

1964-08-21
1965-08-05
Improvements in or relating to impregnating stator windings

Country Status (4)

Country
Link

US
(1)

US3456615A
(en)

CH
(1)

CH443467A
(en)

DE
(1)

DE1212204B
(en)

GB
(1)

GB1105310A
(en)

Cited By (2)

* Cited by examiner, † Cited by third party

Publication number
Priority date
Publication date
Assignee
Title

WO1998023023A1
(en)

*

1996-11-21
1998-05-28
Schenectady International, Inc.
Process for impregnating components

RU2516243C1
(en)

*

2012-10-04
2014-05-20
Федеральное государственное бюджетное образовательное учреждение высшего профессионального образования Томский государственный университет систем управления и радиоэлектроники
Method for jet impregnating coils of electric machines

Families Citing this family (19)

* Cited by examiner, † Cited by third party

Publication number
Priority date
Publication date
Assignee
Title

US3645228A
(en)

*

1967-06-15
1972-02-29
Western Electric Co
Apparatus for sealing the ends of electrical components

CH564977A5
(en)

*

1974-03-20
1975-08-15
Concast Ag

US4194463A
(en)

*

1978-07-24
1980-03-25
Rca Corporation
Apparatus for applying sealing material to a cathode-ray tube

US4559698A
(en)

*

1983-12-21
1985-12-24
General Electric Company
Method of treating a loose wound core, method of fabricating a loose wound core, and method of operating apparatus

US4485126A
(en)

*

1983-12-21
1984-11-27
General Electric Company
Method of treating winding means of dynamoelectric machine core

US6569243B2
(en)

*

2000-02-23
2003-05-27
Odawara Automation, Inc.
Method and apparatus for coating an electric coil including vibration

US6797315B2
(en)

*

2000-02-23
2004-09-28
Odawara Automation, Inc.
Method for coating an electric coil including heating

DE10252435A1
(en)

*

2002-11-12
2004-05-27
Abb Technology Ag
Oven-hardening of coils rotated to prevent resin from dripping-off, passes direct current through coil conductors to cause heating

DE102017001940A1
(en)

2017-02-28
2018-08-30
copperING GmbH

Process for trickle impregnation of the stator or armature of an electric machine

DE202017007015U1
(en)

2017-02-28
2019-03-07
copperING GmbH

Apparatus for the trickle impregnation of a stator or armature of an electric machine

DE102017001939A1
(en)

2017-02-28
2018-08-30
copperING GmbH

Apparatus for the trickle impregnation of a stator or armature of an electric machine

DE102017005532A1
(en)

2017-06-10
2018-12-13
copperING GmbH

Method and device for inductive heating of a stator or armature of an electric machine

DE202017007013U1
(en)

2017-06-10
2019-03-07
copperING GmbH

Device for inductive heating of a stator or armature of an electric machine

WO2019123137A1
(en)

*

2017-12-22
2019-06-27
Tecnofirma S.P.A.
Impregnation plant and method for components of electric motors

DE102019111726A1
(en)

*

2019-03-22
2020-09-24
Vaf Gmbh

Impregnation device for impregnating bodies, in particular wound goods, impregnation system and method for operating at least one impregnation device

DE202019001441U1
(en)

2019-03-28
2019-05-06
copperING GmbH

Impregnating device for trickle impregnation of a stator of an electric machine

DE102019002234A1
(en)

2019-03-28
2020-10-01
Gehring E-Tech Gmbh

Impregnation device for trickle impregnation of a strator of an electric machine

EP3872962A1
(en)

*

2020-02-25
2021-09-01
Siemens Aktiengesellschaft
Method for impregnating, reinforcing or electrically insulating a body carrying single-layer or multilayer windings

EP4024685B1
(en)

*

2020-12-30
2023-05-03
Wobben Properties GmbH
Method for manufacturing a rotor of a wind turbine generator and device for producing the rotor

Family Cites Families (12)

* Cited by examiner, † Cited by third party

Publication number
Priority date
Publication date
Assignee
Title

US1675419A
(en)

*

1927-02-09
1928-07-03
Us Electrical Mfg Company
Process of insulating motor windings

US2442183A
(en)

*

1944-09-25
1948-05-25
Harry C Stearns
Means for impregnating electric coils

US2417538A
(en)

*

1946-04-02
1947-03-18
Sterling Varnish Company
Varnishing armatures and the like

US2574686A
(en)

*

1948-08-26
1951-11-13
Electrolux Corp
Method of impregnating electrical coils

US2561982A
(en)

*

1948-12-22
1951-07-24
Westinghouse Electric Corp
Varnish treatment of electrical apparatus

GB681860A
(en)

*

1949-01-21
1952-10-29
Westinghouse Electric Int Co
Improvements in or relating to the treatment of electrical windings

US2784288A
(en)

*

1952-01-03
1957-03-05
Knapp Monarch Co
Temperature control for electric blankets

US3025706A
(en)

*

1957-11-20
1962-03-20
Victory Engineering Corp
Temperature sensing device

US3195044A
(en)

*

1960-03-29
1965-07-13
Texas Instruments Inc
Resistance-change temperature-measuring apparatus for motor windings and the like

US3102183A
(en)

*

1960-12-16
1963-08-27
Gen Dynamics Corp
Absolute temperature control

CH406398A
(en)

*

1962-06-15
1966-01-31
Baer Maschf Josef

Method and device for impregnating electrical windings

US3215818A
(en)

*

1963-04-29
1965-11-02
Gen Motors Corp
Temperature control electric circuit

1964

1964-08-21
DE
DEG41367A
patent/DE1212204B/en
active
Pending

1965

1965-06-15
CH
CH857965A
patent/CH443467A/en
unknown

1965-08-05
GB
GB33598/65A
patent/GB1105310A/en
not_active
Expired

1965-08-20
US
US481219A
patent/US3456615A/en
not_active
Expired – Lifetime

Cited By (2)

* Cited by examiner, † Cited by third party

Publication number
Priority date
Publication date
Assignee
Title

WO1998023023A1
(en)

*

1996-11-21
1998-05-28
Schenectady International, Inc.
Process for impregnating components

RU2516243C1
(en)

*

2012-10-04
2014-05-20
Федеральное государственное бюджетное образовательное учреждение высшего профессионального образования Томский государственный университет систем управления и радиоэлектроники
Method for jet impregnating coils of electric machines

Also Published As

Publication number
Publication date

US3456615A
(en)

1969-07-22

CH443467A
(en)

1967-09-15

DE1212204B
(en)

1966-03-10

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