Strategies of build composition automatic changeable the laser modules in implementation of technologies laser processing CNC

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The article is devoted to the development of plug-in modules for automatically implementing the laser processing technology on CNC machines. At the heart of solutions used element base fiber lasers. Proposed technical solution of the device in which the optical system, the collimator and the laser emitter in the form of a single unit, composed of a single block, the parameters of each of which is determined by the requirements of the customer. When this module is replaceable and is working CNC machining cycles can be set in the tool magazine of the machine. The module is mounted in the spindle of the machine tool automatically stores the command NC system, and the radiation source is passed directly outside the working area of the machine. Communication with the module is provided by fiber optic cable. The proposed technical solution will be in demand in the market of industrial services, due to fold reduction in capital intensity, as there is no need to purchase a separate position of the laser center provides high performance and precision machining, no additional transportation and reinstallation of parts, reduced loss of time to process all the details. With reference to this article the methodology proposed are devices for laser treatment and are given based on the principle of modular build composition. The principle of modular build composition lies kinematic analysis devices, which allows, based on customer requirements, define a set of blocks for build composition device in the final state of delivery to the customer. The development of this device is the ability to study design at the stage of analysis and modernization of existing designs, and at the stage of preparation of the offer to the customer.

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Energy-efficient technologies, fiber optic laser, automatic plug-in module, kinematic linkage, block-modular strategy

Короткий адрес: https://sciup.org/147151735

IDR: 147151735   |   DOI: 10.14529/engin160406

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