Showing posts with label Application. Show all posts
Showing posts with label Application. Show all posts

Monday, February 8, 2010

Baldor Digital Servomotors and Drives in Plasma Cutter Application


Baldor high performance digital servomotors and drives used on all four axes

Fort Smith, AR, January 11, 2010 - Techserv Cutting Systems Ltd, the specialist manufacturer of CNC profile cutting systems, has delivered four HS 4000 hi-definition precision plasma cutters to the UK's Aircraft Carrier Alliance (ACA). Each cutter employs an advanced fully-synchronized four axis motion control system - based entirely on Baldor Electric Company digital servomotors and drives - to provide the precision of movement needed for tight tolerance, large-scale profile cutting. The plasma cutters are being used to help fabricate the steel plate bow sections of two new Queen Elizabeth Class aircraft carriers, the first of which is due to enter service with the Royal Navy by 2016, with the second to follow by 2018.

The plasma cutters are installed at the Appledore (Devon) shipyard of Babcock Marine Division, one of the principal members of the ACA. The Appledore shipyard is involved in building the steel bow sections of the warships, which are then transferred to Babcock's Rosyth (Fife) shipyard for integration and final ship assembly. The first of some 20 consignments from Appledore, comprising 11 fabricated units weighting between 20 and 36 tonnes each, were shipped by barge to Rosyth in August.

Techserv's HS 4000 plasma cutters are very high performance machines, capable of producing high quality cut parts from steel plate sheets up to 5 metres wide and up to 35mm thick. They employ precision extruded aluminium for the chassis and main beam to ensure rigidity and low mass, and use a machined track - with racks to both rails - which can be mounted on mid-level pedestals or on a customer-supplied beam. Depending on the thickness of steel plate being processed and the type of plasma unit that is fitted, HS 4000 machines offer cutting speeds of 50 to 16,000 mm per minute.

HS 4000 plasma cutters are four axis systems, with rack and pinion drives to both the transverse axes and the synchronized longitudinal axis. The fourth axis controls the height of the cutting torch above the steel plate. Each of the four axes is powered by a Baldor BSM series AC brushless servomotor, driven by a Baldor MicroFlex 500 watt digital servo drive. The servo drives are controlled by a 4-axis version of Baldor's NextMove ESB-2 machine controller. According to Techserv's Technical Director, Mike Cowley, "We elected to use exclusively Baldor motion control products for the HS 4000 primarily because the combination works so well at providing the extremely high level of positioning accuracy that we require. In this particular case, the servomotors are fitted with BiSS encoders, which provide completely unambiguous absolute position data whenever they are polled by the controller".

Mike Cowley also points out that Baldor's multitasking Mint programming language is very easy to use, "This helped speed the development of our motion control programs, and the fact that the language uses the same API (Application Programming Interface) naming conventions as ActiveX commands further simplified integration with the front-end control PC. We found the HTA (hold to analogue) command to be especially useful, because it allows us to handle the plasma height sense function entirely within the NextMove controller, in real-time."

Overall control of each plasma cutter is handled by an on-board industrial-grade PC. Designed specifically for shape-cutting machines, this PC features a 15-inch touch-sensitive full color HMI, and employs graphical shape representation to ensure ease of use. The software runs under Windows XP and provides real-time control of all the cutting machine's advanced motion functions, including contouring, as well as its Kaliburn Proline 2200 plasma unit. The software also controls the torch height system on the HS 4000, monitoring the arc voltage and automatically adjusting the torch-to-work distance to provide optimum cutting performance and to ensure machine safety.

Baldor TCP/IP-Compatible Drives Simplify Development of Advanced Crane Simulator

PC-controlled 3-axis motion platform adds further realism to training experience

Fort Smith, AR, February 1, 2010 - A three-axis motion platform based on Baldor Electric Company's Ethernet-compatible drives is helping to further increase the realism of crane training experience by physically moving a simulator system's replica operator cabin in synchronism with computer-generated images. The specialist machine manufacturer Electropneumatics & Hydraulics developed the motion platform for the leading training solutions and services supplier Applied Research International (ARI).

Based in New Delhi, India, ARI produces a comprehensive range of simulators for marine and allied applications. Its products include a wide variety of offshore, quay-side and gantry crane simulators to provide safe, cost-effective operational training for container movement and bulk handling operations. ARI's simulators emulate the visual, behavioral and operational characteristics of their real-world counterparts to create a fully immersive environment in which the trainee can gain true hands-on experience. A typical crane simulator comprises a modular PC-based control system, a replica operator cabin and seat, a high fidelity audio-visual system, and an instructor station equipped with CCTV for monitoring the actions of the trainee.

When ARI decided to add an optional motion platform to its line of crane simulators, it approached Electropneumatics & Hydraulics for assistance. This company - whose headquarters and manufacturing facility at Chakan, near Pune - was founded in 1972, and has acquired an enviable reputation for its electromechanical machine design and manufacturing capabilities. Electropneumatics & Hydraulics specializes in the production of metalforming equipment, such as hydraulic presses and tube bending machines, and also designs and builds special-purpose machinery including different levels of automation with total indigenous content and capability.

Electropneumatics & Hydraulics chose to base the motion platform for the crane simulator on Baldor's Powerlink- and Ethernet-compatible drives and servomotors. According to the company's Technical Director, Ashley Rasquinha, "Baldor's MicroFlex e100 AC servo drives are very cost-effective for this type of application, because they can be controlled via TCP/IP direct from the simulator's host PC, without the need for additional hardware."

The three-axis motion platform provides X, Y and Z movement of the replica operator cabin, synchronized to the computer-generated images being presented to the trainee. Since it is designed to emulate the movement of a real-life gantry crane very accurately, the platform's drive axes are only required to handle relatively simple motion control tasks such as point-to-point moves and homing sequences, and do not require interpolation. As a consequence, the MicroFlex e100 servo drives can be used in their basic Ethernet mode, without any additional complexity of real-time control.

Each axis is driven by a Baldor BSM 3-phase servomotor equipped with an incremental encoder for position and velocity feedback, controlled by a dedicated MicroFlex e100 servo drive. All three drives are housed in a separate floor-standing control cabinet, and are connected via a D-Link 10/100 Mbps Ethernet switch to the simulator's host PC.