DE102012017180A1 - Method of dimension of linear dimensions. - Google Patents

Method of dimension of linear dimensions. Download PDF

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Publication number
DE102012017180A1
DE102012017180A1 DE201210017180 DE102012017180A DE102012017180A1 DE 102012017180 A1 DE102012017180 A1 DE 102012017180A1 DE 201210017180 DE201210017180 DE 201210017180 DE 102012017180 A DE102012017180 A DE 102012017180A DE 102012017180 A1 DE102012017180 A1 DE 102012017180A1
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roles
group
external
self
elastic
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DE201210017180
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German (de)
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Anmelder Gleich
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Priority to DE201210017180 priority Critical patent/DE102012017180A1/en
Priority to DE201220008845 priority patent/DE202012008845U1/en
Priority to RU2013142203/28A priority patent/RU2013142203A/en
Publication of DE102012017180A1 publication Critical patent/DE102012017180A1/en
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01BMEASURING LENGTH, THICKNESS OR SIMILAR LINEAR DIMENSIONS; MEASURING ANGLES; MEASURING AREAS; MEASURING IRREGULARITIES OF SURFACES OR CONTOURS
    • G01B3/00Measuring instruments characterised by the use of mechanical techniques
    • G01B3/22Feeler-pin gauges, e.g. dial gauges

Abstract

Das Verfahren der Dimension der linearen Abmessungen, in dem das elastische System für die Rückkehr der Messspitze in die Ausgangsstellung verwenden wird, als elastisches System das selbstzentrierte System verwendet. Das selbstzentrierte System unterhält zwei Gruppen der Rollen, die untereinander vom flexiblen Seil verbunden sind, dem Riemen oder der Kette. Jede Gruppe der Rollen unterhält nicht weniger als drei Rollen. Jede Gruppe der Rollen ist auf der Unterplatte aufgestellt und hat die Achsen der Rotation gefestigt auf dieser Unterplatte. Die Gruppen der Rollen werden auf medial und äußerlich unterteilt. Wenn ist die mediale Gruppe der Rollen im Umfang V aufgestellt, so Gehörig- sich die Rollen in der äußerlichen Gruppe außerhalb dieses Umfanges befinden. Die Lage der medialen Gruppe der Rollen bezüglich der äußerlichen Gruppe der Rollen ist beim Fehlen der äußerlichen Kräfte immer eindeutig bestimmt hängt von den elastischen Eigenschaften der Details des selbstzentrierten Systems nicht ab.The method of dimension of linear dimensions, in which the elastic system is used for the return of the measuring tip to the starting position, uses the self-centered system as the elastic system. The self-centered system maintains two groups of pulleys connected to each other by a flexible rope, a belt or a chain. Each group of roles maintains no less than three roles. Each group of rollers is set up on the lower plate and has the axes of rotation fixed on this lower plate. The groups of roles are divided into medial and external. If the internal group of roles is placed in the size V, then the roles in the external group are outside this size. The position of the medial group of roles in relation to the external group of roles is always clearly determined in the absence of external forces, does not depend on the elastic properties of the details of the self-centered system.

Description

Es sind die Messer der linearen Abmessungen bekannt, in die die elastischen Systeme für die Rückkehr der Messsonde in die Gründungslage beim Fehlen der Wirkung der Kräfte auf die Messsonde verwendet werden. (Der Messer der linearen Verschiebungen der Firma Mitutoyo).Known are the knives of linear dimensions into which the elastic systems for the return of the probe to the foundation position are used in the absence of the effect of the forces on the probe. (The knife of linear displacements Mitutoyo).

Der Mangel solcher elastischen Systeme ist das Deformationsrest der elastischen Elemente.The lack of such elastic systems is the deformation residue of the elastic elements.

Ein Ziel der angebotenen Erfindung ist die Beseitigung der Deformationsreste.An object of the proposed invention is the elimination of the deformation residues.

Das gesetzte Ziel wird davon erreicht, dass als elastisches System das selbstzentrierte System verwendet wird. Das selbstzentrierte System unterhält zwei Gruppen der Rollen, die untereinander vom flexiblen Seil verbunden sind, dem Riemen oder der Kette. Jede Gruppe der Rollen unterhält nicht weniger als drei Rollen. Jede Gruppe der Rollen ist auf der Unterplatte aufgestellt und hat die Achsen der Rotation gefestigt auf dieser Unterplatte. Die Gruppen der Rollen werden auf medial und äußerlich unterteilt. Wenn ist die mediale Gruppe der Rollen im Umfang V aufgestellt, so Gehörig- sich die Rollen in der äußerlichen Gruppe außerhalb dieses Umfanges befinden. Die Lage der medialen Gruppe der Rollen bezüglich der äußerlichen Gruppe der Rollen ist beim Fehlen der äußerlichen Kräfte immer eindeutig bestimmt hängt von den elastischen Eigenschaften der Details des selbstzentrierten Systems nicht ab.The set goal is achieved by using the self-centering system as the elastic system. The self-centering system maintains two groups of rollers connected to each other by a flexible rope, a belt or a chain. Each group of roles has no less than three roles. Each group of rollers is placed on the lower plate and has fixed the axes of rotation on this lower plate. The groups of roles are divided into medial and external. If the medial group of rollers in the volume V is established, then the roles in external group are outside this size. Position of an internal group of roles concerning an external group of roles always is clearly defined in the absence of external forces does not depend on elastic properties of details of the self-centered system.

Im Beispiel der Realisation des Verfahrens ist der mechanische Umwandler der Vorwärtsbewegung der Messspitze 4 in die Torsionsbewegung des Zeigers die 9 Indikatoren der Uhrart verwendet. Die Messanlage unterhält das Korps 5, in dem die Achsen 2a der äußerlichen Rollen 1a gefestigt sind. Die Achsen 2b der medialen Rollen 1b sind auf der Messachse 4 gefestigt. Die Rollen sind untereinander vom elastischen Riemen 3 verbunden. Für die Spannung des Riemens kann die Feder F verwendet sein, die in den Abrieß des Riemens anschalten. Die Vorwärtsbewegung der gezahnten Stange 6 wird in die Torsionsbewegung des Zahnrades 7 und die Achse 8 umgewandelt werden, auf der der Zeiger 9 gefestigt ist. Als Umwandler der Vorwärtsbewegung kann der Umwandler einer beliebigen Art mit der nachfolgenden Ziffernindikation der Ergebnisse der Dimensionen verwendet sein.In the example of the realization of the method, the mechanical converter is the forward movement of the measuring tip 4 in the torsion of the pointer the 9 Indicators of the clock used. The measuring system maintains the corps 5 in which the axes 2a the external roles 1a are solidified. The axes 2 B the medial roles 1b are on the measuring axis 4 strengthened. The rollers are mutually elastic belt 3 connected. For the tension of the belt, the spring F can be used, which turn on in the Abrieß of the belt. The forward movement of the toothed rod 6 gets into the torsional movement of the gear 7 and the axis 8th be transformed, on which the pointer 9 is solidified. As the forward motion converter, the converter of any kind may be used with the subsequent digit indication of the results of the dimensions.

Auf der 1 ist der Schnitt der Anlage für die Realisation des Verfahrens, die Frontansicht vorgestellt.On the 1 The section of the plant for the realization of the procedure, the front view is presented.

Auf der 2 ist der Schnitt der Anlage für die Realisation des Verfahrens, die Hinteransicht vorgestellt.On the 2 is the section of the plant for the realization of the procedure, the rear view presented.

Auf der 3 ist der Schnitt der Anlage in anderer Ebene, die Frontansicht vorgestellt.On the 3 is the section of the plant in another plane, the front view presented.

Auf der 1 ist der allgemeine Blick der Anlage vorgestellt.On the 1 the general view of the facility is presented.

Claims (1)

Verfahren der Dimension der linearen Abmessungen, in dem das elastische System für die Rückkehr der Messspitze in die Ausgangsstellung verwenden, dadurch gekennzeichnet, daß als elastisches System das selbstzentrierte System verwenden, das aus der äußerlichen und medialen Gruppe der Rollen der Rotation besteht, hat jede Gruppe der Rollen die Unterplatte, die Rollen sind untereinander vom elastischen Riemen, dem Seil oder der Kette verbunden, und in jeder der Gruppen nicht weniger als drei Rollen, und befinden sich die Rollen der äußerlichen Gruppe außerhalb des Umfanges V, in dem sich die Rollen der medialen Gruppe befinden.Method of dimension of linear dimension, in which use the elastic system for the return of the measuring tip to the starting position, characterized in that use as an elastic system, the self-centering system, which consists of the external and medial group of roles of rotation, each group Rollers a bottom plate, rollers are connected to each other by an elastic belt, a rope or a chain, and in each of groups not less than three rolls, and rollers of an external group are outside the size V, in which there are rollers medial group.
DE201210017180 2012-08-27 2012-08-27 Method of dimension of linear dimensions. Withdrawn DE102012017180A1 (en)

Priority Applications (3)

Application Number Priority Date Filing Date Title
DE201210017180 DE102012017180A1 (en) 2012-08-27 2012-08-27 Method of dimension of linear dimensions.
DE201220008845 DE202012008845U1 (en) 2012-08-27 2012-09-10 The knife of linear dimensions.
RU2013142203/28A RU2013142203A (en) 2012-08-27 2013-09-16 METHOD FOR MEASURING LINEAR DIMENSIONS

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DE201210017180 DE102012017180A1 (en) 2012-08-27 2012-08-27 Method of dimension of linear dimensions.

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DE201220008845 Expired - Lifetime DE202012008845U1 (en) 2012-08-27 2012-09-10 The knife of linear dimensions.

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Cited By (24)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE202016005435U1 (en) 2016-05-30 2016-10-04 Alexander Degtjarew The overhaul clutch with the universal self-centering system
DE202016005512U1 (en) 2016-05-20 2016-10-04 Alexander Degtjarew The transmission with the constantly changing transmission ratio since zero and the remote external foundation of the universal self-centering system
DE202016005428U1 (en) 2016-05-25 2016-10-04 Alexander Degtjarew The coupling with the universal self-centering system
DE202016005431U1 (en) 2016-05-25 2016-10-04 Alexander Degtjarew The transmission with the universal self-centering system and the smoothly changing transmission ratio, which depends on the load
DE202016005510U1 (en) 2016-05-30 2016-10-04 Alexander Degtjarew The gearbox with the universal self-centering system with the changed geometry
DE202016005438U1 (en) 2016-05-25 2016-10-04 Alexander Degtjarew The muff with the universal self-centering system.
DE202016005432U1 (en) 2016-05-20 2016-10-04 Alexander Degtjarew The brake coupling with the universal self-centering system
DE202016005513U1 (en) 2016-07-14 2016-10-05 Alexander Degtjarew The dynamoelectric brakes with the universal self-centering system
DE202016005426U1 (en) 2016-08-22 2016-10-31 Alexander Degtjarew The mechanical analog of the transistor
DE102016006376A1 (en) 2016-02-23 2017-08-24 Alexander Degtjarew The method of creating the mechanical transmission with the fluidly changing transmission ratio with the smallest value equal to zero.
DE102016006443A1 (en) 2016-03-14 2017-09-14 Alexander Degtjarew The method of brake operation with the universal self-centering system
DE102016006442A1 (en) 2016-03-14 2017-09-14 Alexander Degtjarew Method of realization of coupling
DE102016006445A1 (en) 2016-03-13 2017-09-14 Alexander Degtjarew The brake coupling with the universal self-centering system
DE102016006444A1 (en) 2016-03-08 2017-09-14 Alexander Degtjarew The transmission with constantly changing transmission ratio since zero and the remote external establishment of the universal self-centering system
DE102016006513A1 (en) 2016-03-19 2017-09-21 Alexander Degtjarew The transmission with the universal self-centering system and the smoothly changing transmission ratio, which depends on the load.
DE102016006511A1 (en) 2016-03-16 2017-09-21 Alexander Degtjarew The coupling with the universal self-centering system.
DE102016006512A1 (en) 2016-03-17 2017-09-21 Alexander Degtjarew The muff with the universal self-centering system.
DE102016006860A1 (en) 2016-03-22 2017-09-28 Alexander Degtjarew The method of setting the axes of the universal self-centering system.
DE102016006861A1 (en) 2016-03-24 2017-09-28 Alexander Degtjarew The method of settling the axes of the foundations of the universal self-centering system with the angular disposition of the foundations.
DE102016006857A1 (en) 2016-04-10 2017-10-12 Alexander Degtjarew The gearbox with the universal self-centering system with the changed geometry.
DE102016006858A1 (en) 2016-04-10 2017-10-12 Alexander Degtjarew The overhaul clutch with the universal self-centering system.
DE102016008802A1 (en) 2016-07-10 2018-01-11 Alexander Degtjarew The dynamoelectric brakes with the universal self-centering system.
DE102016010513A1 (en) 2016-08-17 2018-02-22 Alexander Degtjarew The method of braking using the universal self-centering system
DE102016010514A1 (en) 2016-08-18 2018-02-22 Alexander Degtjarew The mechanical analog of the transistor

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102013019593B4 (en) 2013-11-15 2020-01-09 Alexander Degtjarew Procedure for tensioning a belt, chain or rope in a universal self-centering system
RU2603298C2 (en) * 2015-02-12 2016-11-27 Александр Васильевич Дегтярев Helirotor
RU2584321C1 (en) * 2015-02-16 2016-05-20 Александр Васильевич Дегтярев Air screw with two universal self-centering systems

Cited By (24)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102016006376A1 (en) 2016-02-23 2017-08-24 Alexander Degtjarew The method of creating the mechanical transmission with the fluidly changing transmission ratio with the smallest value equal to zero.
DE102016006444A1 (en) 2016-03-08 2017-09-14 Alexander Degtjarew The transmission with constantly changing transmission ratio since zero and the remote external establishment of the universal self-centering system
DE102016006445A1 (en) 2016-03-13 2017-09-14 Alexander Degtjarew The brake coupling with the universal self-centering system
DE102016006442A1 (en) 2016-03-14 2017-09-14 Alexander Degtjarew Method of realization of coupling
DE102016006443A1 (en) 2016-03-14 2017-09-14 Alexander Degtjarew The method of brake operation with the universal self-centering system
DE102016006511A1 (en) 2016-03-16 2017-09-21 Alexander Degtjarew The coupling with the universal self-centering system.
DE102016006512A1 (en) 2016-03-17 2017-09-21 Alexander Degtjarew The muff with the universal self-centering system.
DE102016006513A1 (en) 2016-03-19 2017-09-21 Alexander Degtjarew The transmission with the universal self-centering system and the smoothly changing transmission ratio, which depends on the load.
DE102016006860A1 (en) 2016-03-22 2017-09-28 Alexander Degtjarew The method of setting the axes of the universal self-centering system.
DE102016006861A1 (en) 2016-03-24 2017-09-28 Alexander Degtjarew The method of settling the axes of the foundations of the universal self-centering system with the angular disposition of the foundations.
DE102016006858A1 (en) 2016-04-10 2017-10-12 Alexander Degtjarew The overhaul clutch with the universal self-centering system.
DE102016006857A1 (en) 2016-04-10 2017-10-12 Alexander Degtjarew The gearbox with the universal self-centering system with the changed geometry.
DE202016005512U1 (en) 2016-05-20 2016-10-04 Alexander Degtjarew The transmission with the constantly changing transmission ratio since zero and the remote external foundation of the universal self-centering system
DE202016005432U1 (en) 2016-05-20 2016-10-04 Alexander Degtjarew The brake coupling with the universal self-centering system
DE202016005438U1 (en) 2016-05-25 2016-10-04 Alexander Degtjarew The muff with the universal self-centering system.
DE202016005431U1 (en) 2016-05-25 2016-10-04 Alexander Degtjarew The transmission with the universal self-centering system and the smoothly changing transmission ratio, which depends on the load
DE202016005428U1 (en) 2016-05-25 2016-10-04 Alexander Degtjarew The coupling with the universal self-centering system
DE202016005510U1 (en) 2016-05-30 2016-10-04 Alexander Degtjarew The gearbox with the universal self-centering system with the changed geometry
DE202016005435U1 (en) 2016-05-30 2016-10-04 Alexander Degtjarew The overhaul clutch with the universal self-centering system
DE102016008802A1 (en) 2016-07-10 2018-01-11 Alexander Degtjarew The dynamoelectric brakes with the universal self-centering system.
DE202016005513U1 (en) 2016-07-14 2016-10-05 Alexander Degtjarew The dynamoelectric brakes with the universal self-centering system
DE102016010513A1 (en) 2016-08-17 2018-02-22 Alexander Degtjarew The method of braking using the universal self-centering system
DE102016010514A1 (en) 2016-08-18 2018-02-22 Alexander Degtjarew The mechanical analog of the transistor
DE202016005426U1 (en) 2016-08-22 2016-10-31 Alexander Degtjarew The mechanical analog of the transistor

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Publication number Publication date
RU2013142203A (en) 2014-05-10
DE202012008845U1 (en) 2012-10-25

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