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WO2008102400A2 - Construction modulaire pour produire un mouvement linéaire dans des mécanismes de grande taille et dans des micro-mécanismes - Google Patents

Construction modulaire pour produire un mouvement linéaire dans des mécanismes de grande taille et dans des micro-mécanismes Download PDF

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Publication number
WO2008102400A2
WO2008102400A2 PCT/IT2008/000103 IT2008000103W WO2008102400A2 WO 2008102400 A2 WO2008102400 A2 WO 2008102400A2 IT 2008000103 W IT2008000103 W IT 2008000103W WO 2008102400 A2 WO2008102400 A2 WO 2008102400A2
Authority
WO
WIPO (PCT)
Prior art keywords
module
linear
accordance
movement
pin
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.)
Ceased
Application number
PCT/IT2008/000103
Other languages
English (en)
Other versions
WO2008102400A3 (fr
Inventor
Davide Regoli
Anna Meschino
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.)
Individual
Original Assignee
Individual
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 Individual filed Critical Individual
Publication of WO2008102400A2 publication Critical patent/WO2008102400A2/fr
Publication of WO2008102400A3 publication Critical patent/WO2008102400A3/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • GPHYSICS
    • G04HOROLOGY
    • G04BMECHANICALLY-DRIVEN CLOCKS OR WATCHES; MECHANICAL PARTS OF CLOCKS OR WATCHES IN GENERAL; TIME PIECES USING THE POSITION OF THE SUN, MOON OR STARS
    • G04B19/00Indicating the time by visual means
    • G04B19/02Back-gearing arrangements between gear train and hands

Definitions

  • the above invention is a modular construction to produce linear movement in large and micron mechanisms, for the measurement of weight, distance, speed, time, liquid and gaseous fluids, and for the horizontal, vertical and diagonal transport and lifting of loads, objects, structures, weights, people and animals for operational purposes and, as a commercial product, for use in industrial, artisan and commercial sectors. Also, due to its intrinsic characteristics, the module allows technical and aesthetic innovation in the field of design and fashion.
  • the module consists primarily of crowns, rack and pinions, and special wheels.
  • the object of the present discovery is the invention of a linear system for heavy and micron mechanisms for the horizontal, vertical or diagonal transport and lifting of loads, objects, structures, weights, people and animals.
  • a linear system for heavy and micron mechanisms for the horizontal, vertical or diagonal transport and lifting of loads, objects, structures, weights, people and animals For operational purposes as machine and as a tool or use in industrial, artisan and commercial sectors and as a commercial product.
  • the module consists primarily of crowns, rack and special wheels. Although the ambit of the invention is wider, it is partcularly suitable or the watch, goldsmith, jewelry and costume jewelry industries, giving them the opportunity to create precious dynamics and jewelry, which are structurally characterised by displacements of stones, parts in precious metal or high quality artefacts of artistic or artisan quality, for watches with linear measurement, in traditional form cases or innovative cases with asymmetric or sinusoidal forms.
  • the linear mechanism can in turn be powered by energy from familiar wind-up coaxial timepiece units : manual oi; automatic, from a quartz battery or run by electrial , solar or other innovative forms of energy ⁇ .
  • FIG. 1 represents a view of the plate which contains the mechanisms of the linear module .
  • the plate is composed of: a plate “A”, a rim “A5" to contain the entire mechanism of the linear module, a plate “A4" with 4 threaded holes “X” for flat bottomed screws to hold down the closing bridge plate (cover) "N" of the linear module (the two faces of which can be seen in figures 9 and 11), plate “A3” which contains the second plate “H” (seen in figure 4), two areas “A2” on which to place plate “E” (as seen in figure 5), 2 pivots "C” centrally positioned in plate “A” for 2 wheels “Cl and "C2", crown.
  • Figure 2 represents a section of wheel "B", and hole “S” through which escapement "K” integral with the coaxial mechanism underneath penetrates into plate “A” and is integral with wheel “B” via tooth "Bl”.
  • Figure 3 represents a view of wheel "B” integral with escapement “K” via tooth “Bl” positioned on the internal circumference "B2"
  • FIG 4 represents a view of all the internal mechanism : bridge plate “E” (seen in figure 5) which supports plate “F” as it moves with its rack “Fl” , together with wheel “G” which is inserted in pivot “Gl” which is part of “F” (see Figure 7 and 8 ).
  • Crown “H” through its internal teeth “Hl” engages with wheel “I” (figure 6) .
  • Wheel “G” engages with teeth “H2” on the internal circumference of “H” .
  • Arms “H3” on the internal circumference of “H” act to place teeth “H4" towards the centre of "H", which teeth engage with their respective wheels “M” ( Figure 10) .
  • Wheels “M” are mounted on the pins designated “N4". Wheels “L” and “L2” are mounted on two internally threaded pins “E4" (figure 5) for the two screws “L3” and “Ll” used to hold the said wheels. Wheels “L” and “L2” engage with their respective racks "Fl”.
  • FIG. 5 represents a view of bridge plate "E” which supports plate “F” as it moves with its rack
  • Figure 6 represents a sectional view of wheel I mounted on pin Al of plate A kept in place by bridge plate M (see also figure 1 and 4)
  • Figure 7 represents a view of pivot Gl including its conical section, cavity G2 on the circumference of the pivot, wheel G integral with the pivot, plate F with which wheel G moves , bridge plate E, rim El, area A2, side A4 of plate A, bridge plate N, slot Nl, hole N2 (see also figure
  • Figure 8 represents a sectional view of pivot Gl including its conical section, cavity G2 on the circumference of the pivot, wheel G integral with the pivot, plate F with which wheel G moves , bridge plate E, rim El, area A2, side A4 of plate A, bridge plate N, slot Nl, hole N2 (see also figure
  • Figure 9 represents a view underside of bridge plate N which is composed of : two half circular pins N5 which press on bridge plate E (figure 5) when plate N is placed on top of the same plate E
  • Figure 10 represents: in view A a view of one of the two wheels M which mounts on one of the two pin N3 of bridge plate N. Each wheel has a hole M2 on the circumference of which a semicircular protrusion Ml integral with M is located ; in view B, a view of a pin N3 on which a wheel M is mounted, Ml entering into a hole F2 in plate F (when wheel M enters into a hole F2 it moves along its respective slot F3 to reach a hole F4); in view C , a sectional view of pin N3.
  • Figure 11 a view of the upper face of bridge plate N : four flat bottomed screws W, border A5 of plate A, slot Nl , hole N2, indicator Z (see also figure 7, 8)
  • Figure 12 view of a portion of slot Nl showing the passage of pin G2 along Nl and pin G2 in hole N2 (see also figure 4, 7, 8)
  • the linear module acts to move the indicator indicating the hour, minutes or seconds from left to right and then from right to left as needed in a straight line and at the end of each linear movement to rotate the indicator 180 degrees.
  • Wheel B of plate A is integral with escapment K which can be of any common coaxial mechanism placed under plate A and which passes through hole S (which can be seen in figure 2).
  • Crown C3 fits into the space bordered by A3. Crown C engages wheel B via the teeth on its external circumference.
  • Escapment K turns wheel B clockwise and wheel B tursn crown C.
  • the two pins C integral with plate A mount the two wheels Cl and C2..
  • the two wheels Cl and C2 engage with the partial teeth (C4) on the internal circumference of crown C3.
  • wheels L and L2 The upper part of wheels L and L2 simultaneaously engage with rack Fl of plate F .
  • Wheels L and L2 (when pushed by wheels Cl or C2) will cause rack Fl to move, alternatively left or right, according to the rotation of such wheels as turned by wheels Cl or C2.
  • These wheels are mounted on pins E4 (see figure 5) which are integral with the areas E2 which extend beyond the sides of plate E, are lower than plate E and rest on plate A.Plate E rest on the two pins C (as seen in figure 1) .
  • Wheels L and L2 (seen in figure 4) each engage respectively with wheel Cl and C2 (seen in figure 1) each through a semicircular opening E3 (seen in figure 5).
  • Partial teeth Fl on the internal circumference of special crown H engage with wheel G, which is mounted on pin F5, twice, as wheel G is transported up and down by plane F and special crown H rotates into position
  • wheel G engages with partial teeth Fl wheel G completes a 180 degree rotation.
  • plane F ceases to move as L and L2 stop moving and the two wheels M simultaneously each stop moving hence blocking plate F all for the period of time necesssary to allow wheel G to accomplish a 180 degree rotation (see also figure 10).
  • Each wheel M has a semicircular structure Ml underneath. Views B and C are respectively a side view and a cross section of view A of a wheel M.
  • Each wheel M mounted on part N4 of pin N3 which is integral with plane N moves along slot F3 starting either in holes F2 or F4 and ending up in respective hole F4 or F2 (see also figure 4).
  • Semicircular pins N5 are integral with plane N and press on bridge plate E (figure 5) .
  • Bridge cover plane N is fixed to plane A by four flat bottomed screws W which screw into four threaded holes X located in plane A (see figure 1 ) and also kept in place by rim A5 which is integral with plane A.
  • rim A5 which is integral with plane A.

Landscapes

  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Toys (AREA)
  • Filling Or Discharging Of Gas Storage Vessels (AREA)
  • Adornments (AREA)

Abstract

L'invention concerne une installation permettant de produire un mouvement parabolique pour des mécanismes lourds et des micro-mécanismes; de mesurer une taille, un poids, une distance, une vitesse, une hauteur, une profondeur, une durée, un liquide et des fluides gazeux; de déplacer et soulever des poids, des objets, des charges, des structures, des personnes et des animaux, tels qu'une machine, un instrument et un produit industriel, commercial et artisanal. L'invention concerne également un module comprenant des roues, des couronnes et des broches spéciales. L'invention concerne en outre un mécanisme agissant pour produire un mouvement parabolique et une demi rotation à la fin du mouvement, ou un mécanisme pour produire deux rotations de 180 ° toutes les heures, le mouvement parabolique s'effectuant entre chaque rotation. Le module produisant le mouvement précité est alimenté par connexion à un vilebrequin qui est un échappement mécanique ou électronique d'un mécanisme coaxial quelconque qui entre dans un trou positionné sous la base dudit module. Le module est lui-même équipé d'une broche spéciale faisant saillie à partir d'une plaque de fermeture de plan en pont afin de produire un décalage parabolique. Les caractéristiques formant l'objet de l'invention permettent de l'utiliser ou d'utiliser le module dans l'industrie, le commerce et l'artisanat. Le module peut être utilisé à la fois comme machine et comme outil pour produire un déplacement sur un plan vertical, horizontal ou diagonal en fonction des besoins et en relation avec une taille appropriée pour déplacer et soulever des charges, des poids, des objets, des structures, des personnes et des animaux, et pour mesurer une vitesse, une charge, un liquide, des fluides gazeux, une distance, une hauteur, une profondeur, une durée et une taille. Le module parabolique peut également s'utiliser en bijouterie, en orfèvrerie et en bijouterie pour vêtement afin de créer un bijou dynamique original, ou avec des pierres et des ornements présentant un mouvement parabolique. En horlogerie, il constitue un produit approprié pour des ajouts paraboliques, créant en fait des formes sinusoïdales et irrégulières différentes des formes régulières de récipients classiques, de cadrans et d'indicateur présentant un mouvement parabolique. Les caractéristiques de l'invention sont telles qu'elles permettent des applications de formes et d'utilisations nombreuses dépassant celles décrites qui ne sont pas exhaustives.
PCT/IT2008/000103 2007-02-20 2008-02-19 Construction modulaire pour produire un mouvement linéaire dans des mécanismes de grande taille et dans des micro-mécanismes Ceased WO2008102400A2 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
ITRM20070097 ITRM20070097A1 (it) 2007-02-20 2007-02-20 Impianto modulare di tipo lineare per meccaniche pesanti emicron atto per le misurazioni di pesi distanze velocita' tempo liquidi fluidi gassosi e per il trasporto e sollevamento orizzontale verticale e diagonale di carichi oggetti strutture persone
ITRM2007A000097 2007-02-20

Publications (2)

Publication Number Publication Date
WO2008102400A2 true WO2008102400A2 (fr) 2008-08-28
WO2008102400A3 WO2008102400A3 (fr) 2009-05-14

Family

ID=39710612

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/IT2008/000103 Ceased WO2008102400A2 (fr) 2007-02-20 2008-02-19 Construction modulaire pour produire un mouvement linéaire dans des mécanismes de grande taille et dans des micro-mécanismes

Country Status (2)

Country Link
IT (1) ITRM20070097A1 (fr)
WO (1) WO2008102400A2 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2009112111A1 (fr) * 2008-03-12 2009-09-17 Timex Group B.V. Ensemble indicateur pour un dispositif électronique portatif

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114995443B (zh) * 2022-06-16 2024-07-02 江苏电子信息职业学院 一种基于互联网的登机梯靠机行驶速度管控系统

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
IT1244953B (it) * 1991-03-27 1994-09-13 Carlo Ferrara Sistema per il movimento di lancette di orologio.

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2009112111A1 (fr) * 2008-03-12 2009-09-17 Timex Group B.V. Ensemble indicateur pour un dispositif électronique portatif
JP2011513756A (ja) * 2008-03-12 2011-04-28 タイメックス グループ ビー.ヴィー. 着用可能な電子装置の表示装置

Also Published As

Publication number Publication date
WO2008102400A3 (fr) 2009-05-14
ITRM20070097A1 (it) 2008-08-21

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