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Need some drawings of engineering.

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Anonymous

16y ago
Updated: 8/17/2019

Go to an engineering web site such as arcitechture or mechanical engineering

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Wiki User

16y ago

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Document control for engineering drawings is comprised of both document attributes and a defined control process.Engineering drawings, including technical documents such as specifications, procedures, will usually have these attributes:Owning organization, which is ultimately responsible for the document content.Document identification through the use of a document numbering systemTitle or descriptionDocument revision or other indication of a specific design iterationAuthor(s), reviewer(s) and/or others who created the informationAnd, of course, the appropriate technical information necessary to fulfill their purposeA document control process consists of a set of procedures for creating and maintaining the attributes of engineering drawings. Engineering drawing management processes include business rules that define:Which engineering drawing types are supported, and the contents and format of each typeHow engineering drawings are identified (e.g., owner, number, revision, title)Who is responsible for creating, reviewing and approving engineering drawingsWhen engineering drawings may be released to interested partiesThe conditions under which existing engineering drawings are revised, replaced or canceledHow obsolete engineering drawings are controlled, recalled or destroyedEngineering drawings that reflect a consistent set of attributes, and are controlled using a documented set of procedures, significantly reduce product costs by simplifying design, sourcing, production, customer adoption and field service. PDXpert PLM software offers these precise advantages.


What care and control procedures need to be in place for drawings and specifications?

Document control for engineering drawings is comprised of both document attributes and a defined control process.Engineering drawings, including technical documents such as specifications, procedures, will usually have these attributes:Owning organization, which is ultimately responsible for the document content.Document identification through the use of a document numbering systemTitle or descriptionDocument revision or other indication of a specific design iterationAuthor(s), reviewer(s) and/or others who created the informationAnd, of course, the appropriate technical information necessary to fulfill their purposeA document control process consists of a set of procedures for creating and maintaining the attributes of engineering drawings. Engineering drawing management processes include business rules that define:Which engineering drawing types are supported, and the contents and format of each typeHow engineering drawings are identified (e.g., owner, number, revision, title)Who is responsible for creating, reviewing and approving engineering drawingsWhen engineering drawings may be released to interested partiesThe conditions under which existing engineering drawings are revised, replaced or canceledHow obsolete engineering drawings are controlled, recalled or destroyedEngineering drawings that reflect a consistent set of attributes, and are controlled using a documented set of procedures, significantly reduce product costs by simplifying design, sourcing, production, customer adoption and field service. PDXpert PLM software offers these precise advantages.


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Learning engineering drawings is crucial for a variety of reasons, especially for those involved in fields related to engineering, manufacturing, construction, and design. Here are some key reasons why learning engineering drawings is important: Communication and Visualization: Engineering drawings serve as a universal language for communicating complex ideas, designs, and specifications among engineers, designers, manufacturers, and other stakeholders. They provide a visual representation of how a product or structure should be built, enabling effective communication across different teams and disciplines. Design and Conceptualization: Engineers and designers use drawings to translate conceptual ideas into tangible designs. Drawings allow them to outline dimensions, shapes, features, and functionalities of products or structures, helping to refine and develop ideas before production begins. Precision and Accuracy: Engineering drawings provide precise and accurate information about dimensions, tolerances, and other critical specifications. This ensures that the final product or structure will meet the intended requirements and function as expected. Manufacturing and Construction: Drawings are essential for manufacturing processes and construction projects. They guide machinists, fabricators, and construction workers in accurately producing components, assembling parts, and erecting structures according to specifications. Quality Control and Inspection: Detailed drawings are essential for quality control and inspection processes. They serve as a reference for checking whether the manufactured product matches the design and meets the required standards. Legal and Documentation Purposes: Engineering drawings are often legally binding documents that outline the responsibilities and expectations of different parties involved in a project. They can also be used to secure patents, copyrights, and other intellectual property rights. Troubleshooting and Maintenance: Well-documented engineering drawings are valuable resources for troubleshooting and maintenance activities. They provide a clear reference for identifying components, connections, and potential issues within a system. Standardization and Consistency: Engineering drawings follow established standards and conventions, ensuring consistency in communication and design practices. This standardization helps prevent misunderstandings and errors. Collaboration and Teamwork: In complex engineering projects, multiple teams with different areas of expertise need to collaborate. Accurate engineering drawings facilitate effective collaboration by providing a shared understanding of the project's requirements. Cost Efficiency: Clear and accurate engineering drawings can help reduce errors and rework, which can be costly and time-consuming. By providing a detailed plan, drawings contribute to smoother project execution and cost savings. Overall, learning engineering drawings is fundamental for professionals in various technical fields to effectively communicate ideas, design complex systems, ensure precision in manufacturing, and successfully execute projects. Whether you're an engineer, architect, manufacturer, or involved in any other technical profession, the ability to read, interpret, and create engineering drawings is a critical skill.


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