BR102012012328A2 - Máquina de corte automática - Google Patents

Máquina de corte automática Download PDF

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Publication number
BR102012012328A2
BR102012012328A2 BRBR102012012328-2A BR102012012328A BR102012012328A2 BR 102012012328 A2 BR102012012328 A2 BR 102012012328A2 BR 102012012328 A BR102012012328 A BR 102012012328A BR 102012012328 A2 BR102012012328 A2 BR 102012012328A2
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BR
Brazil
Prior art keywords
cutting machine
portal
drive
automatic cutting
cutting
Prior art date
Application number
BRBR102012012328-2A
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English (en)
Other versions
BR102012012328A8 (pt
Inventor
Roberto Zanesi
Franco Luigi Maiandi
Gianmario Deleidi
Original Assignee
Orox S R L
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 Orox S R L filed Critical Orox S R L
Publication of BR102012012328A2 publication Critical patent/BR102012012328A2/pt
Publication of BR102012012328A8 publication Critical patent/BR102012012328A8/pt

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B26HAND CUTTING TOOLS; CUTTING; SEVERING
    • B26DCUTTING; DETAILS COMMON TO MACHINES FOR PERFORATING, PUNCHING, CUTTING-OUT, STAMPING-OUT OR SEVERING
    • B26D7/00Details of apparatus for cutting, cutting-out, stamping-out, punching, perforating, or severing by means other than cutting
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23QDETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
    • B23Q1/00Members which are comprised in the general build-up of a form of machine, particularly relatively large fixed members
    • B23Q1/01Frames, beds, pillars or like members; Arrangement of ways
    • B23Q1/012Portals
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23QDETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
    • B23Q1/00Members which are comprised in the general build-up of a form of machine, particularly relatively large fixed members
    • B23Q1/25Movable or adjustable work or tool supports
    • B23Q1/26Movable or adjustable work or tool supports characterised by constructional features relating to the co-operation of relatively movable members; Means for preventing relative movement of such members
    • B23Q1/267Movable or adjustable work or tool supports characterised by constructional features relating to the co-operation of relatively movable members; Means for preventing relative movement of such members with means to prevent skewness between the relatively slidable members
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B26HAND CUTTING TOOLS; CUTTING; SEVERING
    • B26DCUTTING; DETAILS COMMON TO MACHINES FOR PERFORATING, PUNCHING, CUTTING-OUT, STAMPING-OUT OR SEVERING
    • B26D7/00Details of apparatus for cutting, cutting-out, stamping-out, punching, perforating, or severing by means other than cutting
    • B26D7/01Means for holding or positioning work
    • B26D7/018Holding the work by suction
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B26HAND CUTTING TOOLS; CUTTING; SEVERING
    • B26FPERFORATING; PUNCHING; CUTTING-OUT; STAMPING-OUT; SEVERING BY MEANS OTHER THAN CUTTING
    • B26F1/00Perforating; Punching; Cutting-out; Stamping-out; Apparatus therefor
    • B26F1/38Cutting-out; Stamping-out
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06HMARKING, INSPECTING, SEAMING OR SEVERING TEXTILE MATERIALS
    • D06H7/00Apparatus or processes for cutting, or otherwise severing, specially adapted for the cutting, or otherwise severing, of textile materials

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Forests & Forestry (AREA)
  • Textile Engineering (AREA)
  • Control Of Cutting Processes (AREA)
  • Treatment Of Fiber Materials (AREA)
  • Nonmetal Cutting Devices (AREA)

Abstract

Máquina de corte automática. Trata-se de uma máquina de corte automática (1) para material laminar, a qual é particularmente versátil e eficiente e compreende: um quadro fixo (10) que tem um plano de corte (11); pelo menos um portal (2) dispostomontado no plano de corte (11) e longitudinalmente móvel ao longo do mesmo, sendo que o dito portal (2) compreende duas colunas laterais (20) conectadas no topo por um membro transversal (21) e uma cabeça de corte (3) móvel ao longo do dito membro transversal (21) para que seja capaz de operar no plano de corte (11) abaixo; sendo que o meio de motor disposto para transladar longitudinalmente o dito portal (2) em relação ao dito quadro fixo (10) que compreende dois motores de acionamento (4) do portal (2), dispostos embutidos no portal (2), sendo que cada um desses motores de acionamento (4) são dispostos em uma coluna lateral respectiva (20).

Description

“MÁQUINA DE CORTE AUTOMÁTICA PARA MATERIAL LAMINAR” Descrição Campo de Aplicação A presente invenção refere-se a uma máquina de corte automática para material laminar do tipo que compreende um portal móvel acima de um plano de corte.
Tais máquinas têm aplicação útil, em particular, na indústria de fabricação têxtil. Técnica Anterior Na indústria mencionada acima, as máquinas de corte com um portal são usadas para realizar operações de corte em tecidos ou couros, em geral, empilhados para formar montes denominados “camadas” no jargão da indústria. A máquina compreende um quadro que define um plano de corte no topo, estático ou deslizante de acordo com os modelos, acima do qual a camada a ser cortada é estendida envolvida entre duas lâminas de confinamento (em geral, produzidas a partir de carteno).
Sob os meios de sucção de plano de corte são dispostos de modo que, já que a lâmina de confinamento inferior é perfurada, mantenha a camada em posição durante as operações de corte.
Tais operações de corte são realizadas por meio de uma cabeça de corte associada ao membro transversal do portal, o qual é capaz de reproduzir mesmo geometrias de corte altamente articuladas transmitidas para a máquina por meio de um processador de interface. A cabeça de corte é equipada com dois graus de liberdade em relação ao plano de corte: o primeiro devido à possibilidade de movimento da cabeça em relação an mpmhrn tra nawai-Qa I rir» nnrtal n Ríaniinrln linado à nossibilidade de longitudinal translation of the portal itself above the cutting plane.
The movement of the portal along the frame of the machine is generally permitted by a chain or belt transmission actuated by motor means arranged on the frame itself.
The machines of the type described combine high flexibility with high operating speed.
Nevertheless, whilst they substantially meet the requirements of the field, such machines have a series of drawbacks that are yet to be solved.
In particular, one drawback concerns the driving forward of the portal by means of the chain or belt transmission. Indeed, such a chain or belt must necessarily act upon one of the uprights of the cutting portal, with consequent problems due to the asymmetry of the point of application of the traction force. In order to avoid such problems it is thus necessary to make use of sophisticated transmission systems to distribute the force onto both of the uprights, at the expense of the cost-effectiveness and simplicity of construction of the machine.
Moreover, cutting machines according to the prior art are difficult to reconflgure, given the intimate functional connection of the portal with the rest of the structure.
Another drawback is the wiring that connects the portal with the electronic control devices of the machine. Indeed, the portal comprises a large number of electrical actuations or devices of another kind, responsible for the movement of the head and of the cutting tool associated with it. Each of such actuation systems must be connected to a respective driver arranged on-board the machine: consequently there are a large number of connections with consequent problems linked to the hindrance and to the difflculty in reconfiguring the device.
Summary of the invention The technical problem forming the basis of the present invention is, therefore, to devise a versatile and efficient cutting machine that allows the technical drawbacks of the prior art to be overcome.
The aforementioned technical problem is solved by a cutting machine in accordance with independent claim 1 of the present application. A man skilled in the art will immediately realise how the proposed machine solves the problem of asymmetry of the traction force applied thanks to the use of two driving motors arranged in a mirroring fashion: since such motors are also directly arranged on the portal it is not necessary to implement elaborate motion transmission systems.
The structure that is devised is advantageously simple and efficient. It also allows all of the actuations of the machine to be combined, thus making it functionally autonomous. Such autonomy allows rapid conflguration of the cutting machine, through replacement of the bed that defines the cutting plane or through addition of many portais on the same bed.
The dependent claims outlined preferred and particularly advantageous embodiments of the product and of the method according to the invention, respectively.
Further characteristics and advantages will become clearer from the detailed description made hereafter of some preferred but not exclusive embodiments of the present finding, with reference to the attached figures, given as examples but not for limiting purposes.
Brief description of the drawings Figure 1 represents a schematic side view of an automatic cutting machine according to the present invention, sectioned along a longitudinal plane; figure 2 represents a schematic side view of an automatic cutting machine according to an alternative embodiment of the present invention, sectioned along a longitudinal plane; figure 3 schematically represents a detail of the automatic cutting machine of figure 1; figure 4 schematically represents a detail of an automatic cutting machine according to an alternative embodiment of the present invention; figure 5 schematically represents a detail of an automatic cutting machine according to an alternative embodiment of the present invention; figure 6 represents a view from above of the portal of the automatic cutting machine of figure 1; figure 7 represents a front view of the portal of the automatic cutting machine of figure 1; figure 8 represents a schematic view from above of the automatic cutting machine of figure 1; figure 9 represents a schematic view from above of an automatic cutting machine according to an alternative embodiment of the present invention; figure 10 represents a schematic view from above of an automatic cutting machine according to yet another alternative embodiment of the present invention; figure 11 shows a detailed view of the detail schematically represented in figure 4; figure 12 shows a section view of the detail of figure 11 taken according to the plane D-D defined there; figure 13 shows a section view of the detail of figure 11 taken according to the plane B-B defined there; figure 14 shows a section view of the detail of figure 11 taken according to the plane A-A defined there; figure 15 shows a section view of the detail of figure 11 taken according to the plane E-E defined there; figure 16 shows a section view of the detail of figure 11 taken according to the plane C-C defined there; figure 17 shows a detailed section view of the detail of figure 5 taken according to the plane F-F defined there; figure 18 shows a detailed view of the detail schematically represented in figure 3 in a first operative configuration; figure 19 shows a section view of the detail of figure 18 taken according to the plane G-G defined there; figure 20 shows the detail of figure 18 in a second operative conflguration.
Detailed description With reference to the attached figures, with 1 we will generically indicate an automatic cutting machine for sheet material, henceforth identified as cutting machine.
The cutting machine is intended in particular for cutting leathers and fabrics, both in single sheets and stacked to form lays.
It should be noted that in the attached figures different embodiments of the cutting machine 1 according to the invention are represented. Such embodiments differ from one another just for a few constructive details, whereas the other elements that make up the machine remain unchanged. The following description refers to a main embodiment of the machine, with the possible modifications that make the alternative embodiments being identified as and when necessary. It should be noted that in the figures the same reference numerais have been used to identify analogous constituent elements in the different embodiments.
The cutting machine 1 comprises a fixed frame 10 that defines the bearing structure of the entire de vice.
The fixed frame 10 comprises a main support table 10a with rectangular plan, which supports the actual cutting machine 1.
The main support table 10a has a cutting plane 11 on top, which extends longitudinally from a feeding end 12 of the material to be cut to a discharge end 13 of said material.
The fixed frame 10 also comprises an auxiliary support table 10b, arranged downstream of the discharge end 13 of the cutting plane, which supports an auxiliaiy conveyor belt 14b intended to pick up the material processed by the cutting machine 1.
In the preferred embodiments described here, such a cutting plane 11 is defined by the upper surface of a main conveyor belt 14a intended to carry the material to be cut from the feeding end 12 to the discharge end 13, according to a direction of forward motion A.
Alternatively, the cutting plane 11 can be of the static type or defined by an upper horizontal surface of the fixed frame intended for the material to run on top of it.
Under the cutting plane 11 there is a suction device 15, housed in the fixed frame 10, intended to carry out a suction action through the upper surface, which is permeable to air, of the main conveyor belt 14a (or through the cutting plane 11). As specified in the description of the prior art, the suction action is used to ensure adherence and immobility of the material to be cut during the course of the cutting operations.
The suction device 15 comprises a compressor 16, of the known type, which sucks in the air above the cutting plane 11 expelling it towards the outside atmosphere through an expulsion channel 17. In the represented embodiments the compressor 16 is housed in the auxiliary table 10b of the fixed frame 10, whereas the expulsion channel 17 runs longitudinally through the entire extension of the main table 10a.
Advantageously, at the outlet of the expulsion chamber 17 there are known refrigerator means 18 intended to lower the temperature of the air coming out from the suction device.
In the main embodiment illustrated in figure 1, such refrigerator means 18 are integrated in the expulsion chamber 17, i.e. contained inside the main table 10a of the fixed frame 10; the alternative embodiment illustrated in figure 2, on the other hand, provides an externai refrigerating module 19 associated with the fixed frame 10 at the outlet of the expulsion chamber 17.
The cutting machine 1, in order to carry out the cutting operations on the material laid out on the cutting plane 11, comprises at least one cutting head 3 mounted on a portal 2 transversal to the main table 10a.
The portal 2, able to slide longitudinally above the cutting plane 11, comprises two side uprights 20 that move along the side edges of the main table 10a and a cross-member 21 that connects the side uprights 20 at the top and supports the cutting head 3.
The cutting head 3, of the known type, is mobile to slide along the cross-member 21. Such a movement is preferably promoted by an electric motor housed inside the cutting head 3 itself or on one of the two side uprights 20.
The cutting head 2 has a projecting portion from which a cutting tool 31 descends vertically. It should be noted that the projecting portion and the cutting tool 31 advantageously face forwards with respect to the cross-member 21 with reference to the direction of forward motion A defined earlier.
Actuator means preferably of the pneumatic type allow the cutting tool 31 to be raised or lowered above the cutting plane 11. Moreover, there are control motors, preferably electric, to rotate the cutting tool 31 along its vertical axis and to actuate it with alternate motion with respect to such an axis.
The side uprights 20 of the portal 2 are identical to one another in a mirroring fashion; the following description thus refers to a single side upright 20, with it being understood that the opposite upright has the same characteristics.
The side upright 20 consists of a vertical wall, preferably metallic, fixedly associated with the cross-member 2. We will say inner side of the side upright 20 to define the one facing towards the cross-member 2 or towards the other side upright 20, and we will call the opposite one the ou ter side.
Near to its lower end, at the inner side of the side upright 20 two roller wheels 22 are associated, resting on a rail 23 that runs along the side edge of the main table 10a.
The side upright has a driving motor 4, preferably of the electrical type, associated with it. The two driving motors 4 associated with the opposite side uprights 20 of the portal 2 allow, through transmissíon members arranged between motor and frame, the driving forwards of the portal 2 itself along the cutting plane 11, according to different ways according to the different embodiments described hereafter.
As can be seen from such embodiments, the groups made up of the driving motor 4 and of the relative transmissíon members preferably mirror one another with respect to the middle plane of the cutting machine 1.
In a main embodiment, schematically illustrated in figure 4 and in greater detail in figures 11-16, the driving forward of the portal 2 is carried out by means of a system of pulleys cooperating with a driving belt 40 extending alongside the cutting plane 11 and fixedly connected to the fixed frame 10.
The system of pulleys comprises two transmission pulleys 41 and two deviation pulleys 42, all arranged on the inner side of the side upright 20. The deviation pulleys 42, arranged at the same height, are mounted idle near to the two side edges of the inner side. The transmission pulleys 41 are mounted on two shafts 44, arranged at the same height, which cross the side upright 20. The transmission pulleys 41 are slightly upwardly offset with respect to the deviation pulleys 42, and further inside with respect to them.
Given the configuration of the system of pulleys described above, proceeding in the direction of forward motion A first of all comes a deviation pulley 42, then the two transmission pulleys 41 and finally the second deviation pulley 42. The driving belt 40 winds around such pulleys passing under the first deviation pulley 42, then over the two transmission pulleys 41 and finally under the second deviation pulley 42.
The whole system of pulleys is enclosed inside a protective case 43 fixedly connected to the side upright 20.
The driving motor 4, associated with an axial speed reducer gearbox 45, is associated with the inner side of the side upright 20 and actuates the two transmission pulleys 41 by means of a belt transmission 46 side upright 20 and actuates an outer transmission belt 49 that sets a drive axle in rotation to which one of the roller wheels 22 is fixedly connected.
In the preferred embodiments described here, the main conveyor belt 14a does not have its own motorisation. Advantageously, the cutting machine 1 comprises engagement means, schematically illustrated in figure 3 and in greater detail in figures 18-20, which allow the portal 2 to be made temporarily fixedly connected to the main conveyor belt 14a, so that the driving of the belt can be obtained by carrying the portal 2 forwards.
Such engagement means comprise two side chains 50 and two holding clamps 5 intended to grip onto them.
The side chains 5 are fixedly connected to the main conveyor belt 14a and arranged at the side edges of the main table 10a. The main conveyor belt 14a indeed extends between two driving rollers 52 mounted on rotary axes, whereas the two side chains 50 extend between gear wheels 51 fitted to the opposite ends of such axes.
One of such rotary axes advantageously has measuring means associated with it, which allow the position of the material transported on the main conveyor belt 14a to be precisely calculated. In this case, such measuring means are in the form of an encoder 57 connected through a belt to one of the rotary axes.
The holding clamps 5 are arranged on-board the portal 2, and more specifically they are associated with the lower ends of the two side uprights 20. The holding clamps 5 are identical to one another in a mirroring fashion and they are arranged symmetrically with respect to the middle plane of the cutting machine 1.
Every holding clamp 5 comprises a fixed portion 53 that has a fixed lower abutment 53a above which one of the side chains 50 runs. The clamp also comprises a mobile portion 54 vertically mobile between a free position, visible in figure 18, and a locked position, visible in figure 20. The position of the mobile portion 54 is controlled by a linear actuator 55, preferably of the pneumatic type.
The mobile portion 54 of the holding clamp 5 comprises a mobile jaw 56, provided at the bottom with a toothing, intended to engage with the lateral chain 50 in the locked position. In the locked position, the lateral chain 50 is thus pressed between the fixed abutment 53a and the mobile jaw 56: the fixed connection between portal 2 and main conveyor belt 14a that allows the latter to be driven is thus made.
The mobile jaw 56 is arranged inside a lower impression of the main body of the mobile portion 54, which prevents its transversal movements but not the vertical or longitudinal ones (i.e. in the direction of extension of the lateral chain below). Two pins 54a fixedly connected to the main body of the mobile portion 54 extend between the opposite walls of the lower impression, Crossing two transversal through holes 56a of the mobile jaw 56. The through holes 56a have a square section of substantially greater dimensions than that of the pins 54a, so that the pins 54a are housed with clearance inside the holes. The coupling between main body of the mobile portion 54 and mobile jaw 56 that allows longitudinal adjustments thereof in the position of the mobile jaw 56 when it is pressed against the lateral chain 50; such adjustments ensure a perfect engagement of the lower toothing of the mobile jaw 56 on the chain.
Mounted on-board the portal 2 there are advantageously all of the members necessary to control the portal 2 itself and the cutting head 3. As stated earlier, the driving motors 4 are associated with the side uprights 20. Moreover, the cross-member 21 is mounted with the CNC unit 24, as well as the drivers 25 intended to control the different electric motors that actuate the system: as well as the two driving motors 4, this concerns the motors responsible for moving the cutting head 3 transversally and for controlling the cutting tool 31 (rotation and alternate motion). The power supply 26 and signal 27 cables, the latter coming from an electronic interface processor preferably arranged near to the cutting machine, reach the portal.
The cutting machine 1 according to the present invention comprises means for unwinding the air-impermeable films above the cutting plane 11.
Indeed, in order to allow greater efficiency of the suction device 15, the sheets of material arranged on the cutting plane 11 are covered with a main impermeable film 6, which extends from a feeding reel 60 arranged at the feeding end 12 of the cutting plane 11.
During the cutting operation, the main impermeable film 6 is however inevitably lacerated, for which reason it is necessary to reposition it during the driving of the portal 2 with an auxiliary impermeable film 7.
The auxiliary impermeable film 7 extends for a longer section 7a from a first winder 70 arranged on-board the portal 2 up to a deviation roller 71 arranged at the feeding end 12 of the cutting plane 11, and for a shorter section 7b from the deviation roller up to a second winder 72, again on-board the portal 2.
The first winder 70 is fixed on the rear part of the cross-member 21, at a greater height with respect to the second winder 72.
The second winder 72 is arranged under the cross-member 21. It is associated with a linear actuator, not visible in the attached figures, which allows the second winder 72 to be lifted vertically. Such vertical lifting allows the auxiliary impermeable film to be disassociated from the cutting plane 11 to allow the entry of the material to be cut.
Alternative embodiments of the cutting machine according to the present invention, represented in the attached figures 9 and 10, comprise two or three portais, with the cutting heads 3 variously oriented, arranged above the same cutting plane 11. Such embodiments of the machine, which gain an advantage from the autonomous structure of the portal 2 described above, allow a substantial reduction of the cutting times.
Of course, a man skilled in the art can bring numerous modifications or variants to the finding described above, in order to satisfy contingent and specific requirements, all of which are in any case covered by the scope of protection of the invention as defined by the following claims.

Claims (15)

1. MÁQUINA DE CORTE AUTOMÁTICA (1) PARA MATERIAL LAMINAR, que compreende: um quadro fixo (10) que tem um plano de corte (11); pelo menos um portal (2) disposto montado no plano de corte (11) e longitudinalmente móvel ao longo do mesmo, sendo que o dito portal (2) compreende duas colunas laterais (20) conectadas no topo por um membro transversal (21) e uma cabeça de corte (3) móvel ao longo do dito membro transversal (21) para que seja capaz de operar no plano de corte (11) abaixo; sendo que o meio de motor disposto para transladar longitudinalmente o dito portal (2) em relação ao dito quadro fixo (10) é caracterizado pelo fato de que o dito meio de motor compreende dois motores de acionamento (4) do portal (2), dispostos embutidos no portal (2), sendo que cada um desses motores de acionamento (4) são dispostos em uma coluna lateral respectiva (20).
2. MÁQUINA DE CORTE AUTOMÁTICA (1), de acordo com a reivindicação 1, que compreende adicionalmente um membro de transmissão disposto entre a motor de acionamento (4) e o quadro fixo (10).
3. MÁQUINA DE CORTE AUTOMÁTICA (1), de acordo com a reivindicação 2, em que os motores de acionamento (4) e os membros de transmissão respectivos são dispostos de uma maneira espelhada em relação a um plano intermediário da máquina de corte (1).
4. MÁQUINA DE CORTE AUTOMÁTICA (1), de acordo com um das reivindicações 2 ou 3, em que cada membro de transmissão compreende pelo menos uma polia de transmissão (41) disposta em uma coluna lateral respectiva (20), ajustada em rotação pelo motor de acionamento (4) e que ativa uma correia de acionamento (40) fixada junto ao quadro fixo (10).
5. MÁQUINA DE CORTE AUTOMÁTICA (1), de acordo com a reivindicação 4, em que cada um dos ditos membros de motor compreende duas polias de transmissão (41) próximas entre si e ajustadas em rotação pelo motor de acionamento (4).
6. MÁQUINA DE CORTE AUTOMÁTICA (1), de acordo com um das reivindicações 4 ou 5, que compreende polias de desvio (42) dispostas nos lados da dita pelo menos uma polia de transmissão (41) para guiar a correia de acionamento ao redor da dita polia de transmissão (41).
7. MÁQUINA DE CORTE AUTOMÁTICA (1), de acordo com um das reivindicações 2 ou 3, em que cada um dos ditos membros de transmissão compreende pelo menos um pinhão de acionamento (48) engatado em uma cremalheira plana respectiva (47) fixada junto ao quadro fixo (10).
8. MÁQUINA DE CORTE AUTOMÁTICA (1), de acordo com um das reivindicações 2 ou 3, que compreende adicionalmente rodas de cilindro (22) associadas a cada uma das ditas colunas laterais (20) e que repousam sobre trilhos (23) na lateral do plano de corte (11).
9. MÁQUINA DE CORTE AUTOMÁTICA (1), de acordo com a reivindicação 8, em que cada um dos ditos membros de transmissão compreendem uma correia de transmissão (49) que conecta cineticamente o motor de acionamento (4) a uma das ditas rodas de cilindro (22).
10. MÁQUINA DE CORTE AUTOMÁTICA (1), de acordo com uma das reivindicações precedentes, em que, montado de modo embutido no dito portal (2), há uma unidade de controle de CNC (24) e os acionadores (25) necessários para controlar todos os sistemas de atuação elétricos presentes no portal (2).
11. MÁQUINA DE CORTE AUTOMÁTICA (1), de acordo com uma das reivindicações precedentes, que compreende adicionalmente uma correia transportadora principal (14a), cuja superfície superior define o plano de corte (11) e o meio de engate para tornar o portal (2) conectado de modo temporariamente fixo à correia transportadora principal (14a).
12. MÁQUINA DE CORTE AUTOMÁTICA (1), de acordo com a reivindicação 11, em que o dito meio de engate compreende pelo menos uma corrente lateral (50) que gira como uma unidade com a correia transportadora principal (14a) e pelo menos um grampo de retenção (5) conectado de modo fixo ao portal (2) destinado a prender a dita pelo menos uma corrente lateral (50).
13. MÁQUINA DE CORTE AUTOMÁTICA (1), de acordo com a reivindicação 12, em que o dito grampo de retenção (5) compreende um apoio inferior fixo (53a) acima no qual a dita corrente lateral (50) se estende e uma porção móvel (54) verticalmente móvel entre uma posição livre e uma posição travada.
14. MÁQUINA DE CORTE AUTOMÁTICA (1), de acordo com a reivindicação 13, em que a dita porção móvel (54) compreende uma garra móvel (56), fornecida no fundo com uma endentação, destinada a se engatar à corrente lateral (50) na posição travada.
15. MÁQUINA DE CORTE AUTOMÁTICA (1), de acordo com a reivindicação 14, em que a dita garra móvel (56) é montada com folga transversal em relação ao resto da porção móvel (54), a fim de facilitar o engate da endentação na corrente lateral (50).
BR102012012328A 2011-05-24 2012-05-23 máquina de corte automática BR102012012328A8 (pt)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP20110425137 EP2527104B1 (en) 2011-05-24 2011-05-24 Automatic cutting machine for sheet material

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BR102012012328A2 true BR102012012328A2 (pt) 2015-08-11
BR102012012328A8 BR102012012328A8 (pt) 2015-09-08

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BR (1) BR102012012328A8 (pt)
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CN105883465B (zh) * 2014-05-09 2018-02-06 拓卡奔马机电科技有限公司 裁床的自动过窗方法
CN106985209A (zh) * 2017-06-02 2017-07-28 江苏坤泰机械有限公司 一种多用裁断机
CN107639662B (zh) * 2017-10-23 2023-08-18 浙江申明制鞋机械有限公司 全自动裁切设备
CN110170837B (zh) * 2019-05-06 2024-04-26 苏州金童机械制造股份有限公司 一种彩钢复合板升降切割装置
CN112589862A (zh) * 2020-11-26 2021-04-02 中国十七冶集团有限公司 一种建筑保温板施工用裁切装置
CN114654538B (zh) * 2022-03-09 2022-12-20 安徽宏安木业有限公司 窗套原料切割用自动定位装置
CN115431417B (zh) * 2022-09-29 2023-09-22 南通星球石墨股份有限公司 一种连续性石墨下料不停机作业锯床

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