WO2007026090A1 - Device for assembling machine components using adiabatic energy change - Google Patents

Device for assembling machine components using adiabatic energy change Download PDF

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Publication number
WO2007026090A1
WO2007026090A1 PCT/FR2006/050788 FR2006050788W WO2007026090A1 WO 2007026090 A1 WO2007026090 A1 WO 2007026090A1 FR 2006050788 W FR2006050788 W FR 2006050788W WO 2007026090 A1 WO2007026090 A1 WO 2007026090A1
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WO
WIPO (PCT)
Prior art keywords
module
modules
established
holes
insert
Prior art date
Application number
PCT/FR2006/050788
Other languages
French (fr)
Inventor
Raymond Michon
Alain Chapuis
Original Assignee
Adiapress
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 Adiapress filed Critical Adiapress
Priority to DE200660003571 priority Critical patent/DE602006003571D1/en
Priority to EP06794529A priority patent/EP1924371B1/en
Priority to JP2008528557A priority patent/JP2009505840A/en
Priority to US12/064,994 priority patent/US20080216630A1/en
Publication of WO2007026090A1 publication Critical patent/WO2007026090A1/en

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D37/00Tools as parts of machines covered by this subclass
    • B21D37/04Movable or exchangeable mountings for tools
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D28/00Shaping by press-cutting; Perforating
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D28/00Shaping by press-cutting; Perforating
    • B21D28/02Punching blanks or articles with or without obtaining scrap; Notching
    • B21D28/16Shoulder or burr prevention, e.g. fine-blanking
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T83/00Cutting
    • Y10T83/929Tool or tool with support
    • Y10T83/9457Joint or connection
    • Y10T83/9473For rectilinearly reciprocating tool
    • Y10T83/9476Tool is single element with continuous cutting edge [e.g., punch, etc.]

Definitions

  • the invention relates to the technical sector of machines, machines for transforming adiabatic energy. These machines can use punches whose active parts are of varying hardness as needed, and also adiabatic cutting and / or forming tools.
  • the device for assembling components undergoing strong acceleration or deceleration for machines using the adiabatic energy transformation is remarkable in that the component assemblies include means in the form of elastic pins providing the function of absorption of mechanical vibrations during striking effects.
  • the component assembly device finds an application in the mounting of punches and in that each punch is arranged to receive one or more modules constituting a metal insert, the said module or modules being replaceable as needed, and in that each module is removable with respect to the punch body, and in that, depending on the mass of the one or more inserts, one or more receiving holes of means are arranged between leather and flesh between the module or modules and the punch body module door being regularly distributed, and in that the means are established in the form of resilient pins arranged along the length of the holes ensuring a connecting function.
  • the component assembly device finds another application, in particular by the use of guide bushes combined with a guide column with respect to a support, said means established in the form of elastic pins providing a function keeping in position.
  • FIG. 1 is in a first application of the device of the invention a plan view of the support pin of the module receiving the elastic pins.
  • Figure 2 is a side view in section along the broken line JJ. of Figure 1.
  • FIG. 3 is a sectional view along the line H.H. of Figure 1.
  • - Figure 4 is a view of another application of the invention for guide bushes and guide columns.
  • the device according to the invention applies to the assembly of components undergoing strong accelerations and decelerations for machines using the adiabatic energy transformation.
  • the device comprises means (3) in the form of elastic pins which provide the function of absorption of mechanical vibrations during the striking efforts.
  • the device of the invention finds a first application for punches.
  • the punch body is referenced as a whole by (1) and is suitable for use on machines using the adiabatic energy transformation and operating at a very high speed.
  • the punch body is arranged to receive on the side of its striking area with a housing (la) for receiving one or more modules (2) constituting a metal insert whose degree of hardness may vary as required.
  • This or these inserts have a base (2a) centered in the receiver housing (la) and a head (2b) striker overflowing relative to said housing.
  • the punch and the module are arranged in a similar and complementary manner.
  • the means providing a binding function (3) are for example in substantially offset planes, with sets of holes in pairs and in particular pairs of holes (Ic) (2c) passing through between leather and flesh, according to an entourage, in a grid configuration.
  • These connecting means are in practice sets of elastic pins (3a) arranged on the receiving length of the holes. The section of the pins can vary according to the needs and the stresses inherent to the striking operation. Depending on the position of the elastic pins, they may have a different section.
  • the number of pins is usually even and maybe, depending on the needs of 2, 4, 6 or more pins if needed.
  • the insert module is perfectly held in this position with a distribution of the connection and fixing areas.
  • the insert change requires the removal of the resilient pins which is done in the most common way with flanging pins and the like.
  • An advantage of the invention lies in the choice of elastic pins which are deformable by nature and which allow to absorb certain forces due to the stresses.
  • the elastic pins are perfectly capable of absorbing mechanical vibrations during striking efforts in the particular case of a machine using adiabatic energy.
  • the insert which may for example be cylindrical
  • the surrounds may have different configurations depending on the number of sets of pins arranged between the die and the punch.
  • the invention is also applicable in cutting tools and / or adiabatic forming.
  • the device is applicable in some cases of components that can not or we do not want to re-machine for the passage of pins (3).
  • the pins (3) are mounted as a barrier, giving a holding force in position of the insert component in its support.
  • the reference (4) shows the support, by (5) a guide column and (6) a guide sleeve. This is centered in the bottom of a shoulder (4a) forming a housing established on the support (4), and the elastic pins (3) are held in a perpendicular plane by any suitable means.
  • the pins are mounted with a negative clearance to tighten the guide sleeve in its housing.
  • the device provides in this application another function which is that of maintaining the socket with the absorption of vibrational stresses due to the transformation of adiabatic energy.

Abstract

The invention concerns a device for assembling components subjected to strong accelerations or decelerations for machines using adiabatic energy change, characterized in that the assemblies of components include means in the form of spiral dowels (3) providing absorption of mechanical vibrations due to pounding effects. The device is applicable for mounting punches, for using dowel bushes combined with a guide post.

Description

DISPOSITIF D'ASSEMBLAGE DE COMPOSANTS POUR MACHINE UTILISANT LA TRANSFORMATION DE L'ENERGIE COMPONENT ASSEMBLY DEVICE FOR MACHINE USING ENERGY TRANSFORMATION
ADIABATIQUEADIABATIC
L'invention se rattache au secteur technique des machines, machines de transformation de l'énergie adiabatique. Ces machines peuvent utiliser des poinçons dont les parties actives sont de dureté variable selon les besoins, et aussi des outillages de découpage et/ou formage adiabatiques.The invention relates to the technical sector of machines, machines for transforming adiabatic energy. These machines can use punches whose active parts are of varying hardness as needed, and also adiabatic cutting and / or forming tools.
Selon l'art antérieur, dans l'application des poinçons, le montage- démontage desdits poinçons, qui sont soumis à des conditions d'utilisation très délicates, en égard des sollicitations dans l'application considérée, reste peu pratique, les poinçons devant être monoblocs pour résister aux sollicitations de fonctionnement.According to the prior art, in the application of the punches, the assembly-disassembly of said punches, which are subjected to very delicate conditions of use, with regard to the stresses in the application considered, remains impractical, the punches to be monoblocs to withstand the stress of operation.
La démarche du demandeur a été de simplifier cet ensemble tout en considérant que les efforts de frappe engendrés par transformation de l'énergie adiabatique engendraient des sollicitations mécaniques très fortes. Dans ces conditions, la solution proposée devrait prendre en considération ces contraintes afin que le montage des poinçons reste très fiable et offre toute garantie de sécurité.The applicant's approach was to simplify this set while considering that the striking efforts generated by the transformation of the adiabatic energy generated very strong mechanical stresses. Under these conditions, the proposed solution should take into account these constraints so that the mounting of the punches remains very reliable and offers any guarantee of safety.
Le demandeur a souhaité répondre à ces différentes contraintes.The applicant wished to respond to these different constraints.
La solution apportée par le demandeur est simple, rapide à mettre en œuvre. Cependant, cette solution s'avère être applicable de manière inattendue à d'autres assemblages de composants subissant de fortes accélérations et décélérations en utilisant la transformation de l'énergie adiabatique.The solution provided by the applicant is simple, quick to implement. However, this solution turns out to be unexpectedly applicable to other component assemblies undergoing strong accelerations and decelerations using the transformation of adiabatic energy.
Selon l'invention, le dispositif d'assemblage de composants subissant de fortes accélérations ou décélérations pour machines utilisant la transformation de l'énergie adiabatique, est remarquable en ce que les assemblages des composants incluent des moyens sous forme de goupilles élastiques assurant la fonction d'absorption des vibrations mécaniques lors des effets de frappe.According to the invention, the device for assembling components undergoing strong acceleration or deceleration for machines using the adiabatic energy transformation, is remarkable in that the component assemblies include means in the form of elastic pins providing the function of absorption of mechanical vibrations during striking effects.
Selon l'invention, le dispositif d'assemblage de composants trouve une application dans le montage de poinçons et en ce que chaque poinçon est agencé pour recevoir un ou plusieurs modules constituant un insert métallique, le ou lesdits modules étant remplaçables selon les besoins, et en ce que chaque module est démontable par rapport au corps de poinçon, et en ce que, selon la masse du ou des inserts, un ou plusieurs trous récepteurs de moyens sont disposés entre cuir et chair entre le ou les modules et le corps de poinçon porte module en étant régulièrement répartis, et en ce que les moyens sont établis sous forme de goupilles élastiques disposées sur la longueur des trous en assurant une fonction de liaison.According to the invention, the component assembly device finds an application in the mounting of punches and in that each punch is arranged to receive one or more modules constituting a metal insert, the said module or modules being replaceable as needed, and in that each module is removable with respect to the punch body, and in that, depending on the mass of the one or more inserts, one or more receiving holes of means are arranged between leather and flesh between the module or modules and the punch body module door being regularly distributed, and in that the means are established in the form of resilient pins arranged along the length of the holes ensuring a connecting function.
Selon l'invention, le dispositif d'assemblage de composants trouve une autre application, en particulier par l'utilisation de douilles de guidage combinée avec une colonne de guidage par rapport à un support, lesdits moyens établis sous forme de goupilles élastiques assurant une fonction de maintien en position.According to the invention, the component assembly device finds another application, in particular by the use of guide bushes combined with a guide column with respect to a support, said means established in the form of elastic pins providing a function keeping in position.
Ces caractéristiques et d'autres encore ressortiront bien de la suite de la description. Pour fixer l'objet de l'invention illustré d'une manière non limitative aux figures des dessins où :These and other characteristics will be apparent from the rest of the description. For fixing the object of the invention illustrated in a nonlimiting manner to the figures of the drawings where:
- la figure 1 est dans une première application du dispositif de l'invention une vue en plan du poinçon support du module recevant les goupilles élastiques.- Figure 1 is in a first application of the device of the invention a plan view of the support pin of the module receiving the elastic pins.
- la figure 2 est une vue de côté en coupe selon la ligne brisée JJ. de la figure 1.- Figure 2 is a side view in section along the broken line JJ. of Figure 1.
- la figure 3 est une vue en coupe selon la ligne H.H. de la figure 1. - la figure 4 est une vue d'une autre application de l'invention pour des douilles de guidage et colonnes de guidage.- Figure 3 is a sectional view along the line H.H. of Figure 1. - Figure 4 is a view of another application of the invention for guide bushes and guide columns.
Afin de rendre plus concret l'objet de l'invention, on le décrit maintenant d'une manière non limitative illustrée aux figures des dessins. Le dispositif selon l'invention s'applique à l'assemblage de composants subissant de fortes accélérations et décélérations pour des machines utilisant la transformation de l'énergie adiabatique. Le dispositif comprend des moyens (3) sous forme de goupilles élastiques qui assurent la fonction d'absorption des vibrations mécaniques lors des efforts de frappe. Le dispositif de l'invention trouve une première application pour des poinçons. A cet effet, le corps de poinçon est référencé dans son ensemble par (1) et il est adapté pour être utilisé sur des machines utilisant la transformation de l'énergie adiabatique et fonctionnant à très grande vitesse.In order to make the object of the invention more concrete, it is now described in a nonlimiting manner illustrated in the figures of the drawings. The device according to the invention applies to the assembly of components undergoing strong accelerations and decelerations for machines using the adiabatic energy transformation. The device comprises means (3) in the form of elastic pins which provide the function of absorption of mechanical vibrations during the striking efforts. The device of the invention finds a first application for punches. For this purpose, the punch body is referenced as a whole by (1) and is suitable for use on machines using the adiabatic energy transformation and operating at a very high speed.
Le corps de poinçon est agencé pour recevoir du côté de son aire de frappe avec un logement (la) pour la réception d'un ou de plusieurs modules (2) constituant un insert métallique dont le degré de dureté peut varier selon les besoins. Ce ou ces inserts présentent une base (2a) centrée dans le logement récepteur (la) et une tête (2b) de frappe débordante par rapport audit logement.The punch body is arranged to receive on the side of its striking area with a housing (la) for receiving one or more modules (2) constituting a metal insert whose degree of hardness may vary as required. This or these inserts have a base (2a) centered in the receiver housing (la) and a head (2b) striker overflowing relative to said housing.
Selon l'invention, le poinçon et le module sont agencés de manière similaire et complémentaire De façon à obtenir la meilleure résistance de l'ensemble, les moyens assurant une fonction de liaison (3) sont par exemple dans des plans décalés sensiblement, avec des ensembles de trous par paires et notamment des couples de trous (Ic) (2c) les traversant entre cuir et chair, selon un entourage, dans une configuration en quadrillage. Ces moyens de liaison sont en pratique des ensembles de goupilles élastiques (3a) disposés sur la longueur réceptrice des trous. La section des goupilles peut varier selon les besoins et les sollicitations inhérentes à l'opération de frappe. Selon la position des goupilles élastiques, celles-ci peuvent avoir une section différente.According to the invention, the punch and the module are arranged in a similar and complementary manner. In order to obtain the best resistance of the assembly, the means providing a binding function (3) are for example in substantially offset planes, with sets of holes in pairs and in particular pairs of holes (Ic) (2c) passing through between leather and flesh, according to an entourage, in a grid configuration. These connecting means are in practice sets of elastic pins (3a) arranged on the receiving length of the holes. The section of the pins can vary according to the needs and the stresses inherent to the striking operation. Depending on the position of the elastic pins, they may have a different section.
Le nombre de goupilles est généralement pair et peut-être, selon les besoins de 2, 4, 6 goupilles ou plus si nécessaire.The number of pins is usually even and maybe, depending on the needs of 2, 4, 6 or more pins if needed.
Le module formant insert est parfaitement tenu dans cette position avec une répartition des zones de liaison et de fixation. Le changement d'insert requiert l'enlèvement des goupilles élastiques qui s'effectue de la manière la plus courante avec chasse goupilles et similaires.The insert module is perfectly held in this position with a distribution of the connection and fixing areas. The insert change requires the removal of the resilient pins which is done in the most common way with flanging pins and the like.
Un avantage de l'invention réside dans le choix des goupilles élastiques qui sont par nature déformables et qui permettent d'absorber certains efforts dus aux sollicitations. Ainsi, les goupilles élastiques sont parfaitement aptes à absorber les vibrations mécaniques lors des efforts de frappe dans le cas particulier de machine utilisant l'énergie adiabatique. II n'y a pas non plus de risques de détériorations des moyens de liaison sur le module insert, ce qui garantit une continuité de performances.An advantage of the invention lies in the choice of elastic pins which are deformable by nature and which allow to absorb certain forces due to the stresses. Thus, the elastic pins are perfectly capable of absorbing mechanical vibrations during striking efforts in the particular case of a machine using adiabatic energy. There is also no risk of damage to the connection means on the insert module, which guarantees a continuity of performance.
On a représenté à la figure 1 un entourage en forme de quadrillage.There is shown in Figure 1 a grid-shaped entourage.
Selon la configuration de l'insert qui peut être par exemple cylindrique, on utilisera un entourage défini par deux ensembles de goupilles disposés parallèles et dans le même plan. En pratique, et selon les applications concernées, les entourages pourront avoir des configurations différentes selon le nombre d'ensembles de goupilles disposées entre la matrice et le poinçon.Depending on the configuration of the insert which may for example be cylindrical, use an entourage defined by two sets of pins arranged parallel and in the same plane. In practice, and depending on the applications concerned, the surrounds may have different configurations depending on the number of sets of pins arranged between the die and the punch.
La solution est simple, pratique à mettre en œuvre.The solution is simple, practical to implement.
L'invention s'applique aussi dans les outillages de découpage et/ou formage adiabatique. En se référant à la figure 4, le dispositif s'applique dans certains cas de composants que l'on ne peut ou que l'on ne souhaite pas réusiner pour le passage de goupilles (3).The invention is also applicable in cutting tools and / or adiabatic forming. Referring to Figure 4, the device is applicable in some cases of components that can not or we do not want to re-machine for the passage of pins (3).
Dans ce cas, les goupilles (3) sont montées en barrière en donnant une force de maintien en position du composant insert dans son support. On a ainsi représenté par la référence (4) le support, par (5) une colonne de guidage et par (6) une douille de guidage. Celle-ci est centrée dans le fond d'un épaulement (4a) formant logement établi sur le support (4), et les goupilles élastiques (3) sont maintenues dans un plan perpendiculaire par tout moyen approprié. Les goupilles sont montées avec un jeu négatif pour serrer la douille de guidage dans son logement.In this case, the pins (3) are mounted as a barrier, giving a holding force in position of the insert component in its support. The reference (4) shows the support, by (5) a guide column and (6) a guide sleeve. This is centered in the bottom of a shoulder (4a) forming a housing established on the support (4), and the elastic pins (3) are held in a perpendicular plane by any suitable means. The pins are mounted with a negative clearance to tighten the guide sleeve in its housing.
Le dispositif assure dans cette application une autre fonction qui est celle du maintien de la douille avec l'absorption des contraintes vibratoires dus à la transformation de l'énergie adiabatique. The device provides in this application another function which is that of maintaining the socket with the absorption of vibrational stresses due to the transformation of adiabatic energy.

Claims

R E V E N D I C A T I O N S R E V E N D I C A T IO N S
-1- Dispositif d'assemblage de composants subissant de fortes accélérations ou décélérations pour machines utilisant la transformation de l'énergie adiabatique, caractérisé en ce que les assemblages des composants incluent des moyens sous forme de goupilles élastiques (3) assurant la fonction d'absorption des vibrations mécaniques lors des effets de frappe.-1- Device for assembling components undergoing strong accelerations or decelerations for machines using the adiabatic energy transformation, characterized in that the assemblies of the components include means in the form of elastic pins (3) providing the function of absorption of mechanical vibrations during striking effects.
-2- Dispositif d'assemblage de composants selon la revendication 1, caractérisé par son application dans le montage de poinçons et en ce que chaque poinçon est agencé pour recevoir un ou plusieurs modules constituant un insert métallique, le ou lesdits modules étant remplaçables selon les besoins, et en ce que chaque module est démontable par rapport au corps de poinçon, et en ce que, selon la masse du ou des inserts, un ou plusieurs trous récepteurs de moyens sont disposés entre cuir et chair entre le ou les modules et le corps de poinçon porte module en étant régulièrement répartis, et en ce que les moyens sont établis sous forme de goupilles élastiques disposées sur la longueur des trous en assurant une fonction de liaison.-2- component assembly device according to claim 1, characterized by its application in the punch mounting and in that each punch is arranged to receive one or more modules constituting a metal insert, the said module or modules being replaceable according to the needs, and in that each module is removable with respect to the punch body, and in that, according to the mass of one or more inserts, one or more receiving holes of means are arranged between leather and flesh between the module or modules and the module door punch body being regularly distributed, and in that the means are established in the form of elastic pins arranged along the length of the holes ensuring a connecting function.
-3- Dispositif d'assemblage de composants selon la revendication 1, caractérisé par son application avec l'utilisation de douilles de guidage combinée avec colonne de guidage par rapport à un support, lesdits moyens établis sous forme de goupilles élastiques assurant une fonction de maintien en position. -4- Dispositif selon la revendication 2 pour le montage de poinçons caractérisé en ce qu'il est agencé pour recevoir un ou plusieurs modules (2) constituant un insert métallique, le ou lesdits modules étant remplaçables selon les besoins, et en ce que chaque module est démontable par rapport au corps de poinçon, et en ce que, selon la masse du ou des inserts, un ou plusieurs trous (Ic - 2c) récepteurs de moyens de liaison sous forme de goupilles élastiques (3) sont disposés entre cuir et chair entre le ou les modules (2) et le corps de poinçon (1) porte module en étant régulièrement répartis.-3- component assembly device according to claim 1, characterized by its application with the use of guide sleeves combined with a guide column relative to a support, said means established in the form of resilient pins providing a holding function in position. -4- Device according to claim 2 for mounting punches, characterized in that it is arranged to receive one or more modules (2) constituting a metal insert, the said module or modules being replaceable as required, and in that each module is removable with respect to the punch body, and in that, depending on the mass of the insert or inserts, one or more holes (Ic - 2c) receiving means of connection in the form of elastic pins (3) are arranged between leather and flesh between the module or modules (2) and the punch body (1) module door being regularly distributed.
-5- Dispositif selon la revendication 4, caractérisé en ce que les couples de trous établis entre la matrice et l'insert entre cuir et chair sont disposés selon une configuration en quadrillage.-5- Device according to claim 4, characterized in that the pairs of holes established between the matrix and the insert between leather and flesh are arranged in a grid configuration.
-6- Dispositif selon la revendication 4, caractérisé en ce que deux couples de trous établis entre la matrice et l'insert entre cuir et chair sont disposés parallèles et dans le même plan.-6- Device according to claim 4, characterized in that two pairs of holes established between the matrix and the insert between leather and flesh are arranged parallel and in the same plane.
-7- Dispositif selon la revendication 4, caractérisé en ce que les ensembles de trous établis entre la matrice et l'insert entre cuir et chair sont disposés par paires.-7- Device according to claim 4, characterized in that the sets of holes established between the matrix and the insert between leather and flesh are arranged in pairs.
-8- Dispositif selon la revendication 3 caractérisé en ce qu'il comprend un assemblage incluant une douille de guidage (6) centrée dans un logement établi sur un support (4) et autorisant le passage et le guidage d'une colonne de guidage (5) et en ce que les goupilles élastiques (3) sont montées en barrière à rencontre de la douille de guidage en assurant une force de maintien. -8- Device according to claim 3 characterized in that it comprises an assembly including a guide sleeve (6) centered in a housing established on a support (4) and allowing the passage and guiding of a guide column ( 5) and that the elastic pins (3) are mounted as a barrier against the guide bushing by providing a holding force.
PCT/FR2006/050788 2005-08-31 2006-08-04 Device for assembling machine components using adiabatic energy change WO2007026090A1 (en)

Priority Applications (4)

Application Number Priority Date Filing Date Title
DE200660003571 DE602006003571D1 (en) 2005-08-31 2006-08-04 DEVICE FOR MOUNTING MACHINE COMPONENTS USING THE CHANGE OF ADIABATIC ENERGY
EP06794529A EP1924371B1 (en) 2005-08-31 2006-08-04 Device for assembling machine components using adiabatic energy change
JP2008528557A JP2009505840A (en) 2005-08-31 2006-08-04 Device for assembling components of a device that utilizes changes in adiabatic energy
US12/064,994 US20080216630A1 (en) 2005-08-31 2006-08-04 Device for Assembling Machine Components Using Adiabatic Energy Change

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
FR0552632 2005-08-31
FR0552632A FR2889978B1 (en) 2005-08-31 2005-08-31 DEVICE FOR MOUNTING PUNCHES WITH INSERT, IN PARTICULAR FOR A MACHINE USING THE TRANSFORMATION OF ADIABETIC ENERGY

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Publication Number Publication Date
WO2007026090A1 true WO2007026090A1 (en) 2007-03-08

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US (1) US20080216630A1 (en)
EP (1) EP1924371B1 (en)
JP (1) JP2009505840A (en)
CN (1) CN101282797A (en)
AT (1) ATE413242T1 (en)
DE (1) DE602006003571D1 (en)
FR (1) FR2889978B1 (en)
WO (1) WO2007026090A1 (en)

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US20080216630A1 (en) 2008-09-11
FR2889978A1 (en) 2007-03-02
FR2889978B1 (en) 2008-10-17
ATE413242T1 (en) 2008-11-15
DE602006003571D1 (en) 2008-12-18
EP1924371B1 (en) 2008-11-05
EP1924371A1 (en) 2008-05-28
JP2009505840A (en) 2009-02-12

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