FULLY AUTOMATIC BENDING SYSTEM

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BENDING FULLY AUTOMATIC BENDING SYSTEM

FULLY AUTOMATIC BENDING SYSTEM ACCURATE, HIGH SPEED AND SAFE BENDING OF SMALL AND COMPLEXE PARTS The EG-6013AR uses a high speed, high accuracy servo press brake with the world's first dual servo press (DSP) drive mechanism. The press brake is combined with a robot optimised for bending small parts with the same speed as human operators. Small parts that involve hazardous operations when handled manually can now be bent safely and efficiently. 02

TYPICAL PROCESSING SAMPLES Material: SECC 1.0 mm Dimensions: 104 x 36 x 44 mm Total number of bends: 5 Material: SECC 1.0 mm Dimensions: 74 x 60 x 23 mm Total number of bends: 7 Material: SECC 1.0 mm Dimensions: 275 x 63 x 19 mm Total number of bends: 5 Material: SECC 1.0 mm Dimensions: 144 x 41 x 15 mm Total number of bends: 5 PRODUCTIVITY COMPARISON for 120 pieces each With the EG AR press brake, the operator only has to set up the parts before processing and perform an inspection after processing. The robot will process the parts alone. 93% REDUCTION IN OPERATOR WORKING TIME Conventional press brake 0 2 4 6 8 (h) TOTAL PRODUCTION TIME Conventional press brake 0 2 4 6 8 (h) 03

PROCESSING INTELLIGENCE 1 2 Program load Tool layout AMNC 3i The AMNC 3i control is optimised for ease of use. - The multi-touch LCD panel, with its user-friendly design, provides intuitive and smart operation. - The 18.5 inch vertical display is the unique control panel where operator can manage the entire process. 3 Condition check 4 Start DEDICATED CAM The 3D views of a part to be bent are selected from a database and used to determine processing conditions for the part (robot grip positions, tools and bend sequence). The automatic generation of robot motions eliminates the need for teaching the robot manually. Programs can be created offline in the office and quickly transferred to the machine via the network. Tool layout Bend sequence Loading (gripper selection) Bending simulation Thickness detector Unloading 04

OPTIMISING SMALL-PART BENDING Conventional manual bending DEDICATED ROBOT Bending by robot inside pressbrake Storing punch and die Removing punch and die HIGH SPEED AND SPACE SAVING BENDING The dedicated robot has been specifically developed and optimised for the bending process. The arm of the robot is capable of going inside the press brake to bend small parts which would previously have been impossible to bend automatically. Both tool changing and workpiece handling are performed by a single robot achieving high speed bending with a compact footprint. NEW GRIPPER A new gripper with both clamp and vacuum functions reduces the number of required robots from two to one. This achieves both a simplified system and a smaller footprint. Gripper change Vaccum function Clamp function IMPROVED PRODUCTIVITY AND ENVIRONMENTAL IMPACT Ball screw Nut NEW DUAL SERVO PRESS (DSP) DRIVE SYSTEM Two motors are used in AMADA's patented DSP drive system to achieve a maximum tonnage of 600kN and a 10% power reduction when compared with a conventional high-end press brake. One motor drives a ball screw during high speed opening and closing, whilst the other drives a nut system during the highly accurate bending process. Low-speed motor High-speed motor COMPARISONS WITH CONVENTIONAL PRESS BRAKE Approach speed: 220 mm/s Bending speed: 25 mm/s* Return speed: 250 mm/s * Maximum value according to bending condition 120% faster than a conventional press brake 150% faster than a conventional press brake 150% faster than a conventional press brake Ram drive 05

FUNCTIONS AND OPTIONAL EQUIPMENT Press brake EG-6013 R The open height is increased to 150 mm as compared with conventional press brakes. The DSP drive mechanism is utilised to provide higher speed and accuracy. Robot EG-ROBOT With a payload of 10kg (including the gripper), 6 articulated axes and 1 travel axis, the EG robot acts like a human operator. Double sheet detector and repositioner The workpiece thickness detector and repositioner expand the processing range. Angle sensor Bi-S This angle measuring system takes into account springback and material variations to ensure reliable, accurate bending results. Unloading conveyor The conveyor is designed to prevent scratching when parts are placed onto it. The parts can then be taken out of the bending cell without stopping production. Unloading container box Large-capacity box suitable for mass production of small parts. Robot controller AMADA's graphical, hand box controller for simple cell operation. Dedicated enclosure Dedicated enclosure designed for safety and visibility. 06

Punch stockers Bending and tool changing grippers Grippers designed to make the most of the work envelope of the robot. Die stockers Tool stockers Flexible tool storage allows for a wide range of bending applications. Loader Can be operated in up to four schedules. Normal gripper Micro gripper 45 mm pitch area 8 tools can be stored 70 mm pitch area 2 tools can be stored Material thickness Minimum part size 0.5 mm - 2.5 mm 40 mm x 80 mm Maximum part size 300 mm x 300 mm Application Minimum worpiece size Maximum worpiece size Application Maximum tool mass Total length Bending (combination type) 40 mm x 80 mm 300 mm x 300 mm Tool gripper Tool changing 4.5 kg (100 mm gooseneck punch) 15 mm ~100 mm Front Total number of stockers Number of stockers by tool type Effective tool height Tool registration 10 Rear 2 each for 15, 20, 25, 30 and 50 mm tools 4 for 100 mm tools 1 each for 5 and 10 mm lancing tools 150 mm for both punches and dies One tool type per stocker or per half stocker Part stacking height Number of part loading tables Vaccum Clamp repositioner 300 mm 4 Repositioning part from vaccum to clamp after loading Repositioning during bending cycle SYSTEM CONFIGURATION Press brake EG-6013 R Robot hand box Robot EG-ROBOT Tool stockers Gripper station Unloading conveyor Unloading container box Loader Double sheet detector and repositioner 07

DIMENSIONS Unit: mm EG-6013 AR (L) 5045 x (W) 3610 x (H) 3028 H W L MACHINE SPECIFICATIONS PRESS BRAKE EG-6013AR Capacity kn 600 Open height mm 635 Stroke length mm 150 Approach speed mm/s 220 Bending speed mm/s 25 (without robot follow-up) ROBOT Axis composition Robot: 6 axes, Travel axis: 1 axis Payload kg 10 (with gripper) Travel axis Stroke length m 3.2 Grippers Number of grippers for bending 2 (combination type) Number of grippers for tools 1 Tool stockers Number of tool stockers 10 (stocker type LS) Number of loading positions 4 Loader Workpiece size mm 300 300 Workpiece stack height mm 300 Number of containers 2 Unloader (option) Conveyor size mm 550 2000 Conveyor capacity kg 60 Maximum workpiece size mm 300 300 2.5 Minimum workpiece size mm 40 80 0.6 Specifications, appearance, and equipment are subject to change without notice by reason of improvement. For Your Safe Use Be sure to read the operator s manual carefully before use. Use of this product requires hazard prevention measures to suit your work. - Hazard prevention measures are removed in the photos used in this catalogue. - Safety devices recommended by Amada are available as options for your use in taking appropriate safeguard measures to suit the parts you produce. The official model name of machine described in this catalogue is EG6013AR. Use the registered model name when you contact the authorities for applying for installation, exporting, or financing. The hyphened spelling EG-6013AR is used in some portions of this catalogue for ease of readability. AMADA UK LTD. Spennells Valley Road, Kidderminster, Worcestershire DY10 1XS United Kingdom Tel: +44 (0)1562 749500 Fax: +44 (0)1562 749510 www.amada.co.uk AMADA SA Paris Nord II 96, avenue de la Pyramide 93290 Tremblay en France France Tél : +33 (0)1 49 90 30 00 Fax : +33 (0)1 49 90 31 99 www.amada.fr AMADA GmbH Amada Allee 1 42781 Haan Germany Tel: +49 (0)2104 2126-0 Fax: +49 (0)2104 2126-999 www.amada.de AMADA ITALIA S.r.l. Via Amada I., 1/3 29010 Pontenure (Piacenza) Italia Tel: +39 (0)523 872111 Fax: +39 (0)523 872101 www.amada.it E049-EU02en February 2017 AMADA EUROPE. All rights reserved.