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DE1780273U - SPRING FOR SOLENOID ANCHOR. - Google Patents

SPRING FOR SOLENOID ANCHOR.

Info

Publication number
DE1780273U
DE1780273U DE1958E0011804 DEE0011804U DE1780273U DE 1780273 U DE1780273 U DE 1780273U DE 1958E0011804 DE1958E0011804 DE 1958E0011804 DE E0011804 U DEE0011804 U DE E0011804U DE 1780273 U DE1780273 U DE 1780273U
Authority
DE
Germany
Prior art keywords
spring
armature
solenoid
coil
solenoid anchor
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
Application number
DE1958E0011804
Other languages
German (de)
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.)
Erso Vertrieb Adrion & Co
Original Assignee
Erso Vertrieb Adrion & Co
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
Application filed by Erso Vertrieb Adrion & Co filed Critical Erso Vertrieb Adrion & Co
Priority to DE1958E0011804 priority Critical patent/DE1780273U/en
Publication of DE1780273U publication Critical patent/DE1780273U/en
Expired legal-status Critical Current

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  • Electromagnets (AREA)

Description

Federfür Solenoidankar Bei Solenoidspule werden Anker verwendet, die beim Stromdurchgang der Spule angezogen werden. Wird Wechselstrom verwendet, dann erfolgt die Anziehung des Ankers im Rhytmus der Netzfrequenz, sofern der Anker durch eine Kraft im stromlosen Zustand der Spule oder beim Nulldurchgang der Wechselspannung aus der Spule herausgezogen wird. Als Federn werden hierfür meist metallische Federn in Form von Blatt-oder Spiralfedern verwendet. Metallische Federn ermüden sehr leicht, neigen auch schnell zur Bildung von Eigenfrequenzen, und sofern es sich um Stahlfedern handelt, besteht auch eine Korrosiongefahr. Spring for solenoid anchoring In the case of solenoid coils, armatures are used that are attracted when the current passes through the coil. If alternating current is used, the armature is attracted in the rhythm of the mains frequency, provided that the armature is pulled out of the coil by a force when the coil is de-energized or when the alternating voltage crosses zero. The springs used for this are mostly metallic springs in the form of leaf or spiral springs. Metallic springs tire very easily and also tend to develop natural frequencies quickly, and if they are steel springs, there is also a risk of corrosion.

Nachstehend wird eine Feder für Solenoidanker beschrieben, welcher die vorbesohriebenen Nachteile nicht anhaften, weil eine gebogene Feder zwischen Auflageplatte der Spule und einer Nut im Anker verwendet wird. Diese gebogene Feder wird zweckmäßigaus einem elastischen Kunststoffe beispielsweise Kunstkautshuk, mit kreisringförmigem Querschnitt gestaltet.The following describes a spring for solenoid armatures, which the pre-designed disadvantages do not adhere, because a bent spring between Support plate of the coil and a groove in the armature is used. That bent spring is expediently made of an elastic plastic, for example synthetic rubber designed circular cross-section.

Die vorbesohriebene Feder für Solenoidanker hat den Vorteile außer der Federwirkung auch eine Zentrierung des Ankers her- beizuführen, was insbesondere dann zweckmäßig ist, wenn der Anker nicht immer in senkrechter Lage betätigt wird. Außer- dem erfordert die gebogene Feder keinerlei Präzision bei Herstellung und Montage des Systems und hat bei Verwendung des vorgeschlagenen elastischen Kunststoffes weder Korrosion noch Ermüdungserscheinungen. Es kann auch eine Abdichtung des Solenoidankers hiermit erreicht werden.The pre-drilled spring for solenoid armatures has the advantages of centering the armature in addition to the spring effect. to be added, which is particularly useful if the Armature is not always operated in a vertical position. Except- the bent spring does not require any precision in the manufacture and assembly of the system and has neither corrosion nor signs of fatigue when using the proposed elastic plastic. Sealing of the solenoid armature can also be achieved in this way.

In der Abbildung bezeichnet 1 die Spule. die auf den Spulenkörper 2 aufgewickelt ist. Der Spulenkörper 2 sitzt auf einer ferromagnetischen Platte 3 auf, wobei der Rückfluß der magnetischen Kraftlinie@ über den Bügel 4 aus ferromagnetischem Material geführt wird. Innerhalb des Spulenkörpers 2 bewegt sich der Solenoidanker 5, der mit einer Nut 6 versehen ist9 in welche die gebogene Feder 7 mit kreisringförmigem Querschnitt eingreift und sich gegen die glatte 3 abstützt. Der Solenoidanker 5 kann oberhalb des Spulenkörpers 2 durch einen Bolzen 8 aus nicht magnetischem Werkstoff geführt werden, Die Feder 7 zieht den Anker 5 über die Nut 6 gegen eine feste Auflage 9 ;In the figure, 1 denotes the coil. those on the bobbin 2 is wound. The bobbin 2 sits on one ferromagnetic Plate 3, the return flow of the magnetic line of force @ over the bracket 4 from ferromagnetic material is performed. Moves within the bobbin 2 the solenoid armature 5, which is provided with a groove 69 in which the bent tongue 7 engages with a circular cross-section and is supported against the smooth 3. The solenoid armature 5 cannot be above the bobbin 2 by a bolt 8 magnetic material, the spring 7 pulls the armature 5 over the groove 6 against a fixed support 9;

Claims (1)

S c h u t z a n e p f ü e h e
1). Feder für Solenoidanker, gekennzeichnet durch eine gebogene Feder (7), die zwischen Auflageplatte (3) der Spule (1) und einer tut (6) im Anker (5) wirk- samist. 2}.. Feder für S&lenoidanker nach Anspruch 1), gekenn- zeichnet durch eine Feder (7) aus elastischem gunstotoft, beispielsweise Zunatkantaohnke mit kreiaringfötzigemQuerschnitt.
Protection before
1). Spring for solenoid armature, characterized by a curved spring (7) between the support plate (3) the coil (1) and one does (6) in the armature (5) samist. 2} .. spring for S & lenoid anchor according to claim 1), marked characterized by a spring (7) made of elastic gunstotoft, for example Zunatkantaohnke with circular ring-shaped cross-section.
DE1958E0011804 1958-11-05 1958-11-05 SPRING FOR SOLENOID ANCHOR. Expired DE1780273U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
DE1958E0011804 DE1780273U (en) 1958-11-05 1958-11-05 SPRING FOR SOLENOID ANCHOR.

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE1958E0011804 DE1780273U (en) 1958-11-05 1958-11-05 SPRING FOR SOLENOID ANCHOR.

Publications (1)

Publication Number Publication Date
DE1780273U true DE1780273U (en) 1958-12-31

Family

ID=32858393

Family Applications (1)

Application Number Title Priority Date Filing Date
DE1958E0011804 Expired DE1780273U (en) 1958-11-05 1958-11-05 SPRING FOR SOLENOID ANCHOR.

Country Status (1)

Country Link
DE (1) DE1780273U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE1131790B (en) * 1960-02-26 1962-06-20 Siemens Ag Electromagnetically controlled braking device for electric motors, especially for washing machine and spin-dryer motors

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE1131790B (en) * 1960-02-26 1962-06-20 Siemens Ag Electromagnetically controlled braking device for electric motors, especially for washing machine and spin-dryer motors

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