Operability, maintanability, manufacturability

Use Case: Enhancing Operability, Maintainability, and Manufacturability with VR Solutions from TechViz

Context and Business Need

In the design of complex products or facilities, ensuring that they can be operated, maintained, and manufactured efficiently is essential. Traditional methods involve creating physical prototypes to test accessibility, assembly, and maintenance processes, which can be both time-consuming and costly. With TechViz’s VR technology, development teams can assess and refine these critical aspects in a virtual environment, allowing for a more efficient and flexible design process that reduces costs, mitigates risks, and enhances overall operational reliability.

Objective

Use Case Description

TechViz provides VR solutions that allow design teams to conduct operability, maintainability, and manufacturability assessments at the early stages of development. By visualizing digital 3D models in VR, engineers can simulate and test reachability, accessibility, and assembly scenarios in confined environments. These virtual simulations enable design adjustments to be made in real-time, which greatly reduces the need for physical mock-ups and accelerates time-to-market.

Key Features of TechViz VR for Operability, Maintainability, and Manufacturability

Real-Time Accessibility and Reachability Analysis

By visualizing 3D models of a product or facility, engineers can assess how easily operators can reach and interact with essential components. This feature is essential in the design of tight spaces, such as submarine compartments or aircraft engines, where ease of access is critical.

Simulation of Maintenance Scenarios

VR allows for the simulation of maintenance tasks, helping teams evaluate whether technicians can replace, repair, or maintain components without obstruction. This feature reduces potential downtime and prepares operators to address adverse events by testing their response in various scenarios.

Remote Assistance in VR

TechViz enables remote collaboration within VR, allowing support engineers and on-site technicians to work together on maintenance tasks in a safe, virtual environment. This is particularly beneficial for complex, hazardous environments, as it reduces risks and enhances preparedness.

Quick Iterative Process with Immediate Updates

With TechViz, changes made to the 3D model in design software (e.g., PTC Creo) are immediately displayed in VR, enabling teams to test and validate configurations in real-time. This rapid iteration cycle eliminates delays that are typically associated with physical mock-ups or model conversions.

Main Use Cases

Operability in Confined Environments

Objective

Assess the accessibility and operability of components in complex installations, such as submarines or engine compartments.

Process

Using VR, the design team can load a 3D model of the installation, allowing engineers to evaluate reachability and the ease with which operators can access critical components. If an issue is detected, modifications can be made in the CAD software and visualized instantly in VR.

Value Added

Improved Operational Reliability : Early detection of accessibility issues allows for design adjustments that enhance operational reliability.

Enhanced Safety : Potentially hazardous accessibility challenges are addressed before construction, ensuring a safer final product.

Maintenance Scenario Evaluation

Objective

Validate the feasibility of maintenance tasks in confined or challenging environments.

Process

Maintenance scenarios are simulated in VR, where a virtual technician can be used to test ergonomic postures, accessibility, and task execution. Teams can assess and adjust designs based on real-time VR feedback, optimizing the layout for easier maintenance.

Value Added

Cost Savings and Reduced Downtime : Avoiding physical mock-ups and reducing the need for maintenance-related modifications post-production cuts costs and prevents operational delays.

Enhanced Preparedness:Simulated adverse events allow teams to prepare for unexpected incidents, reducing direct maintenance costs and improving response readiness.

Manufacturability and Assembly Simulation

Objective

Streamline the assembly process by identifying and addressing manufacturing challenges early.

Process

TechViz’s VR allows designers to simulate the assembly sequence and test different configurations for optimal manufacturability. Teams can ensure that all parts are reachable and easily assembled within the designated space, minimizing errors during actual production.

Value Added

Accelerated Time-to-Market: Virtual assessments reduce the need for physical prototypes and allow faster modifications, supporting a quicker transition from design to production.

Efficient Resource Allocation: Identifying and resolving manufacturability issues virtually saves materials and labor costs.

Remote VR Assistance for Maintenance

Objective

Enable remote assistance for maintenance tasks, particularly useful in isolated or hazardous facilities.

Process

Through VR collaboration tools, off-site engineers and on-site technicians can meet in the virtual model of an installation. The engineering team can guide the technician through the necessary steps, reducing risks and minimizing downtime.

Value Added

Enhanced Safety: Remote guidance lowers the risks associated with complex maintenance tasks in hazardous environments.

Reduced Operational Downtime: Real-time troubleshooting and support ensure quicker resolutions to maintenance issues.

Advantages of TechViz VR for Operability, Maintainability, and Manufacturability

TechViz’s VR solution delivers substantial benefits for operability, maintainability, and manufacturability assessments. By enabling real-time testing and scenario simulation, TechViz helps organizations address accessibility, assembly, and maintenance challenges at an early stage, resulting in a more efficient and cost-effective development process. This VR approach allows for a robust, safe, and optimized design that meets both operational and maintenance needs, ultimately reducing time-to-market and enhancing product reliability.

Improved Design Validation in Real-Time

TechViz enables immediate feedback on design modifications, ensuring all operability, maintainability, and manufacturability requirements are met early on.

Cost Savings and Risk Mitigation

VR assessments reduce reliance on physical prototypes and prevent costly modifications during production, while also minimizing risks associated with maintenance in confined or hazardous environments.

Enhanced Collaboration and Training

VR tools facilitate collaboration between engineers and technicians, whether on-site or remote, and provide a valuable platform for training and preparedness.

Compatibility with Industry-Standard Software

The solution’s compatibility with major CAD tools ensures that design teams can work seamlessly without additional software integration costs.
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