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I will share detailed drawings of small brass and copper parts used inside MCB / RCB assemblies, together with the exact material grade and the tolerances each feature must hold. Your assignment is to turn that data into a full progressive-die design that delivers three things at once: minimal scrap, reliable bends and forms, and a price-conscious build. The strip layout must be creative—far beyond the basic local market approach—so every station adds measurable value while keeping unusable web to an absolute minimum. I am especially interested in new ways to shorten changeover time and to validate the design before steel is cut. The solution has to incorporate: • Quick-change tooling features for rapid die set-ups • Advanced simulation for design validation (spring-back, load balance, wear prediction) Deliverables I expect: • 3D CAD model of the complete die set with clear station breakdown • Flattened strip layout showing material utilisation percentage • Simulation report confirming formability, stresses and expected part accuracy • Manufacturing drawings and a concise BOM ready for tool-room use If you are adept at blending modern die technology with lean material usage, I’m ready to review your concept and move quickly to production files.
Project ID: 40442895
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Active 5 days ago
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4 freelancers are bidding on average ₹6,875 INR for this job

Hello Sir, I'm over 8 years of experienced. I'm very interested in working on your project. I understand that quality of design matters most to you and so, strive to deliver to your expectation. I take instruction seriously to deliver content that is in line with what you are looking for. More to this, I ensure you get the work as early as possible within the set timelines. Kind regards.
₹3,000 INR in 3 days
2.1
2.1

Hello, As a seasoned Mechanical Engineer, proficient in SolidWorks and AutoCAD, I bring extensive experience in 3D modelling and product design to the table. My detailed-oriented and quality-focused approach ensures that the designs I create not only meet international standards but are also highly manufacturable and innovative. I understand that your project demands both resources and cost-efficiency, and I'm fully equipped to provide just that. Regarding your desire for advanced simulations in design validation before the steel is cut, my proficiency in motion simulation using SolidWorks will serve us well. This allows me to test not just formability, stresses, and expected part accuracy but also to simulate issues like spring-back, load balance, wear prediction – thus minimizing any rework downstream or during pilot production. My capability to deliver a 3D CAD model with clear station breakdowns alongside flattened strip layout showing material utilization percentage has been highly valued by past clients, and I am confident it will impress you as well. Let me turn your design data into an efficient progressive-die design while minimizing waste and optimizing cost.
₹2,000 INR in 3 days
1.5
1.5

I am a Experienced Mechanical Engineer with strong expertise in SolidWorks design, product development, and New Product Development (NPD). With my background as a Design & NPD Head, I bring both technical depth and strategic thinking to every project. I have hands-on experience in: # 3D modeling and detailed engineering drawings using SolidWorks # Product design and development from concept to production # Design for Manufacturing (DFM) and cost optimization # Assembly design, tolerance stack-up, and GD&T # Reverse engineering and design improvements I am confident that I can deliver high-quality, practical, and production-ready designs tailored to your requirements with Timely delivery,Clear communication,High accuracy and attention to detail. I would be happy to discuss your project in detail and provide the best solution.
₹10,000 INR in 7 days
0.0
0.0

This is the kind of tooling project where the strip strategy determines almost everything, material utilization, forming reliability, tool life, and production cost. I can help develop a progressive-die solution focused on lean strip utilization, stable forming behavior, and practical manufacturability instead of a conventional high-scrap layout. Here is how I would approach it: • Analyze the brass/copper part geometry, tolerances, and forming sequence carefully • Develop an optimized strip layout with minimum unusable web material • Balance piercing, bending, and forming loads across stations • Integrate quick-change tooling concepts to reduce setup and maintenance time • Validate the design through forming and spring-back simulation before tooling release You will get: • Full 3D CAD model of the progressive die set • Detailed strip layout with utilization calculations • Simulation results covering formability, stress behavior, and spring-back • Manufacturing drawings and BOM ready for tool-room fabrication My focus will be on creating a die design that is production-oriented, maintainable, and material-efficient rather than only theoretically compact. Once you share the part drawings, material grades, and production targets, I can begin developing the strip strategy immediately.
₹12,500 INR in 7 days
0.0
0.0

Faridabad, India
Member since May 7, 2026
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