Advanced Systems Engineering

Complex multidisciplinary engineering integrating mechanical systems, power transmission technologies, industrial plants and large-scale structural developments.

Hydraulic Torque Converter

Development of a complete hydro-mechanical power transmission system integrating hydraulic torque conversion, mechanical transmission and auxiliary hydraulic circuits. The project encompassed functional architecture, hydraulic system development, parametric 3D CAD modeling, complete manufacturing documentation, prototype construction, assembly and functional validation.

SAMSUNG DIGIMAX A503

Engineering Evolution
The hydraulic converter established the technical foundation for subsequent studies and the development of new mechanical power transmission architectures.

Mechanical Torque Converter

Development of a fully mechanical power transmission architecture derived from the original converter concept, replacing hydraulic torque conversion with mechanically coupled rotating assemblies. The project focused on internal kinematics, synchronized motion and controlled torque multiplication.

Compact Mechanical Torque Converter

A compact evolution of the mechanical architecture, engineered to validate torque multiplication within a significantly reduced package. Development focused on geometric optimization, component reduction and functional integration of the mechanical transmission.

Multichine 28 Sailboat

Complete naval engineering development of the Multichine 28 sailboat, encompassing naval architecture, parametric 3D CAD modeling, structural design and detailing, mechanical systems, manufacturing documentation, construction, assembly and launch. The project integrated digital development with the physical execution of the vessel, from the initial structural definition through completion and delivery for navigation.

Construction encompassed structural fabrication, assembly of the primary hull systems, development of interior components and technical supervision throughout the construction and finishing stages. Manufacturing followed the engineering definition established in the 3D model and technical documentation, ensuring dimensional accuracy, structural integrity and consistency between the digital design and the completed vessel.

From the three-dimensional structural model to physical hull construction, maintaining consistency between design and execution.

Development and execution of the interiors, integrated with the vessel’s structure and functional layout.

Structural & Construction Integration
Consolidation of the structural architecture, interior spaces and primary construction elements, establishing the vessel’s physical configuration for the subsequent stages of systems integration.

Manufacturing and assembly of the rudder system, from internal structure and lamination through final finishing, ensuring structural integrity and geometric accuracy.

Development and manufacturing of the engine structural support, including modeling, machining, lamination and installation of the propulsion assembly in the vessel.

Final Systems Integration
Complete integration of the vessel’s structural, mechanical and auxiliary systems, consolidating the engineering development into a fully constructed and operational configuration.

Industrial Plants & Layout Engineering

Development of industrial engineering projects integrating three-dimensional plant layouts, facility planning, material flow analysis and multidisciplinary coordination of mechanical systems. The projects encompass parametric 3D modeling, industrial arrangement definition and technical documentation supporting fabrication, installation and future plant expansion.

Serra Escura Project — Tanhaçu, Bahia, Brazil

Development and sizing of the industrial layout and process flow for the quartz processing plant, designed for a production capacity of approximately 480,000 tonnes per year. The study encompassed crushing, screening and belt conveying systems, including equipment sizing, material flow definition, operational access and the three-dimensional plant arrangement.

Development of the ore conveying and transfer systems, integrating belt conveyors, process equipment, supporting structures and operational interfaces into the overall plant arrangement.

Sizing and integration of the feeding and crushing systems, including definition of equipment, supporting structures, conveyors and their respective interfaces within the plant processing flow.

ZF Steering Systems — Industrial Plant Layout

Development of the industrial layout for the ZF Steering Systems facility, encompassing on-site surveys, production areas, machining cells, assembly lines, workstations, equipment and internal material flows. The study integrated production sequence, logistics, accessibility and safety into the definition and optimization of the overall plant arrangement.

Integration of the industrial exhaust systems into the plant layout, considering their distribution across production areas, interfaces with equipment and operational requirements of the facility.

Elevator Systems — Building Integration

Development of elevator systems integrated into building architecture, encompassing shaft and travel definition, equipment positioning, structural interfaces, 3D modeling and detailed engineering for manufacturing and installation.

Development and detailing of a dual elevator system for a four-story building, encompassing shaft configuration, equipment positioning, structural interfaces and detailed documentation for manufacturing and installation.

Development of elevator systems for different building configurations, including 3D modeling, shaft and travel definition, building interfaces and detailed engineering for manufacturing and installation.

Ana Luiza Building — Architectural Reconfiguration

Architectural development and 3D modeling for the reconfiguration of the Ana Luiza residential building, encompassing the survey of the existing structure, internal space reorganization, volumetric definition and construction detailing. The project integrated 3D models and technical documentation to coordinate architecture, circulation, structural interfaces and execution of the proposed solution.

Integration of architectural modeling and technical documentation, defining internal organization, spatial configuration and construction interfaces throughout the building reconfiguration.

Correlation between three-dimensional development, detailed architectural documentation and the completed building, demonstrating continuity from design definition through physical execution.

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