Problem statement. The predominance of effective innovation industries, where scientific developments are the main driving force of the economy is a distinguisher of the manufacturing process in a postindustrial society. Estimate for management efficiency of a high-tech enterprise in the conditions of active innovation activity becomes relevant.The purpose. The article consider military-industrial complex enterprises of the Russian Federation, which work in constantly changing conditions of resource, legislative or other restrictions. The manufacturing of small-scale products with a given quality and reliability with limited financial resources is one of the features of such enterprises. The article examine the methodology for analyzing the enterprise performance indicators that produces special-purpose products and works in accordance with the requirements [1] of manufacturing and usage of serial products.Results. The article considered the estimate options for complex performance indicator of the product quality and reliability management system, evaluating the effectiveness of the input control, [serial products] usage and manufacturing processes.Practical relevance. The proposed method allows identifying the maximum number of product defects, with a glance of the practical development of the technology for their creation and the manufacturing process organizational and technical features.
The issue of optimization of the process of determining the cost of scientific and technical projects is considered. The field of research and development (R&D) requires large financial and material costs. The most important indicator in the decision to Finance R&D is its cost. The structure of the price for the work performed, the calculation of their cost, is the basis and an integral part of any contract for their implementation. In order to prevent unreasonable costs of the contractor when performing R&D, it is necessary to control their economic feasibility, as they determine the price of the work performed. The directions of adequate improvement of the methodology for assessing the complexity and cost of R&D in the conditions of atypical and low‑volume relevant scientific, technical and production procedures are formulated. Based on the results of the analysis of the approaches used in the methods, an algorithm and procedure for assessing the complexity of R&D were developed, recommendations for estimating the cost of R&D were formed, and an algorithm and procedure for estimating the cost of R&D of any orientation were created.
The article deals with the task of simplifying the reverse design process by implementing three-point 3D scanning, which allows you to speed up the technological stages of reverse design to the moment of product manufacture, as well as simplify the procedure for defecating finished products and create favorable conditions for the implementation of the principles of unification. The model of the control system in this article refers to the structuring of elements of the technological organization of the process of creating 3D prototyping of existing copies created by the use of reverse engineering. For this purpose, the problems of traditional technologies that do not allow timely coping with changes in the technical system under the influence of in accordance with the requirements of regulatory documents and environmental requirements were considered. We also analyzed not only the principles of operation of traditional technologies, but also the zone of reverse engineering, which allows you to achieve an increased level of production capacity by identifying a group of key defects based on the process of flaw detection and statistical analysis.
The article discusses the possibility applying the principles of the concept of industry 4.0 in the electronics manufacture with the introduction of Design for Manufacturing concept in an environment of computer mathematics MatLab with the efficiency increasing aim of the production process. Technological processes can be described in the form of mathematical models built with the use of Markov chains. On the basis of the developed model, the results effectiveness confirming with the use of graphs in the management technological operations are obtained. According to the launch results of each industrial batch, in deviation case from the specified limits, the non-conformity assessment will be carried out and corrective measures will be taken for the non-compliance. The method proposed in the article will make it possible to effectively use the resources available to the enterprise, excluding both the loss of continuity and control production process stability of electronics manufacturing, and the quality characteristics abnormal loss of the manufactured product.
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