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Principles of Forming Modular Structures of Specialized Technological Equipment

Authors

Denysenko Andrii

Rubric:Technical sciences in general
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Inventive activity in modern conditions is inherently linked to the unification and partial standardization of components within technical solutions. While this trend may increase the apparent obviousness of certain design elements, it simultaneously enables the practical application of standardized components in innovative technological compositions characterized by new, non-obvious technical properties. In the context of globalized markets, where successful implementation of an invention depends on stable demand shaped by diverse technological cultures, inventors increasingly require collaboration with experts in innovation commercialization. Recent practice shows that the most commercially successful technical solutions are those aimed not at satisfying existing and predictable market demand, but at generating entirely new, unconventional, and previously unrecognized demand.

As such integrative and comprehensive engineering solutions continually increase in technological sophistication, and as technical requirements and specifications are constantly evolving and improving, adherence to the laws, postulates, and principles of TRIZ and ARIZ necessitates ongoing comparison of existing frameworks with newly emerging conditions.

Keywords

specialized technological equipment
flexible automated production modules
modularity of specialized technological equipment
modular structures of specialized automated technological equipment
structure and analytical interpretation of specialized technological tools
various technological cultures
unification processes
practical applicability of standardized component-based solutions

Authors

Denysenko Andrii

References:

  1. United States Patent Application US 2017/0184055 A9.
     Device for Producing a Gaseous Fuel Composite and System of Production Thereof.
     June 29, 2017.
  2. United States Patent Application US 2016/0207013 A1.
     Device for Mixing Fluids.
     July 21, 2016.
  3. United States Patent Application US 2010/0243953 A1.
     Method of Dynamic Mixing of Fluids.
     September 30, 2010.
  4. United States Patent Application US 2010/0281766 A1.
     Dynamic Mixing of Fluids.
     November 11, 2010.
  5. United States Patent Application US 2011/0048353 A1.
     Engine with Integrated Mixing Technology.
     March 3, 2011.

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