Drawing-Based Manufacturing | Bespoke Component Solutions

Custom Engineered Components Manufacturer in India

OM Engineering Works specializes in custom engineered component manufacturing based on customer drawings and specifications. With over 50 years of precision CNC machining experience in Mumbai, we manufacture bespoke bushings, shafts, connectors, and specialized mechanical components for OEM customers worldwide.

Our drawing-based manufacturing approach supports custom component development in stainless steel, brass, aluminum, and alloy steel. We serve industrial equipment manufacturers, automation companies, and engineering firms requiring precision machined components that cannot be sourced from standard catalogs. All parts are manufactured with controlled tolerances and documented quality processes suitable for demanding applications.

100% Drawing-Based
CNC Precision Machining
Multi-Material Capability
Export Quality Standards

Custom Engineered Component Examples

Representative examples of custom engineered components we manufacture. Each component is produced strictly as per customer-supplied technical drawings with no design modifications unless approved.

Custom Pneumatic Component for Industrial Automation
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Custom Pneumatic Components

High-precision custom pneumatic parts with a 2 mm through-hole designed for reliable air flow control, leak-proof performance, and durability in industrial automation systems.

Precision NOGO Adapter for Hydraulic Systems
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Precision NOGO Adapter

Precision NOGO Adapter with custom specifications for hydraulic, pneumatic, and fluid transfer systems. Engineered for high-pressure durability and exact fitment.

Custom Machined Shafts
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Custom Machined Shafts

Multi-diameter turned shafts, stepped shafts, and precision rods for mechanical drives, actuators, and rotating assemblies.

Stainless Steel Disc Filter Inner Ring with 1.5mm Drills
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Disc Filter Inner Ring

Precision-engineered inner ring for disc filters featuring exact 1.5mm drilled holes. Designed for consistent flow and high-efficiency filtration in industrial systems.

Our Drawing-Based Manufacturing Approach

Every custom engineered component begins with your technical specification and ends with dimensional verification.

01
Drawing Review

Technical feasibility assessment and material recommendation based on application requirements

02
Quotation

Detailed cost estimation considering material, machining operations, and batch quantity

03
CNC Manufacturing

Precision machining with in-process quality checks and dimensional control protocols

04
Quality Verification

Final inspection and documentation before shipment with measurement reports

Custom Component Manufacturing Capabilities

Our CNC machining facility is equipped to handle custom engineered components with varied geometries, materials, and tolerance requirements.

CNC Machining Operations for Custom Components

  • CNC Turning: Precision turning for cylindrical components, bushings, and shafts
  • Multi-Axis Operations: Complex geometries with multiple diameters and features
  • Threading: Internal and external threading to drawing specifications
  • Grooving & Parting: Precision grooves, undercuts, and parting operations
  • Drilling & Boring: Through holes, blind holes, and precision bore machining
  • Secondary Operations: Tapping, knurling, chamfering, and deburring

Supported Materials for Custom Components

  • Stainless Steel: SS 304, SS 316, SS 410, SS 430 for corrosion resistance
  • Carbon & Alloy Steel: EN1A, EN8, EN19, EN24 for structural strength
  • Brass & Copper: Free-cutting brass, naval brass, copper alloys
  • Aluminum: 6061, 6082, 7075 for lightweight applications

Material selection guidance provided based on application loads, environment, and functional requirements specified in drawings.

Dimensional Accuracy & Quality Control

  • Standard Machining Tolerances: ±0.05 mm to ±0.10 mm
  • Precision Tolerances: ±0.02 mm to ±0.03 mm for critical dimensions
  • Surface Finish: Ra 0.8 – Ra 3.2 achievable range
  • Geometric Tolerancing: Concentricity, perpendicularity, runout control
  • In-Process Inspection: Dimensional verification during manufacturing
  • Final Inspection: Measurement reports for critical dimensions

Typical Applications for Custom Engineered Components

  • Industrial Automation: Custom actuator components, guide bushings, mounting adapters
  • Hydraulic & Pneumatic: Specialized connectors, custom valve components, manifold parts
  • Mechanical Assemblies: Linear bearing housings, shaft collars, precision spacers
  • Equipment Manufacturing: Proprietary machine components, replacement parts, upgraded fittings
  • Prototype Development: One-off components for testing and validation

Custom Engineered Components – Technical Summary

Manufacturing Approach 100% drawing-based manufacturing (no catalog parts, no design modifications without approval)
Primary Capabilities CNC Turning, Precision Machining, Threading, Secondary Operations
Component Types Bushings, Shafts, Connectors, Adapters, Sleeves, Spacers, Custom Fittings
Material Options SS 304/316, Carbon Steel, Alloy Steel, Brass, Aluminum
Dimensional Tolerances Standard: ±0.05 mm | Precision: ±0.02 mm to ±0.03 mm (geometry-dependent)
Surface Finish Ra 0.8 – Ra 3.2 (material and process dependent)
Production Volumes Prototype (1–10 pcs), Small-batch (10–100 pcs), Production (100–1,000 pcs)
Quality Documentation Dimensional inspection reports, material certificates (on request)
Lead Time (Typical) Prototype: 5–10 days | Small-batch: 10–20 days (material availability dependent)

Why Choose Drawing-Based Custom Manufacturing?

No Catalog Limitations

Standard catalog components often don't match exact requirements. Custom manufacturing eliminates compromise on dimensions, materials, or thread specifications.

Proprietary Design Protection

Your component drawings remain confidential. We manufacture exactly what you specify without reverse-engineering or suggesting modifications.

Perfect Fit for Existing Assemblies

Replacement parts or upgraded components manufactured to match legacy equipment dimensions without requiring system redesign.

Prototype to Production Continuity

Same manufacturing process from initial prototypes through production batches ensures dimensional consistency across order quantities.

Custom Engineered Components – Frequently Asked Questions

We are a manufacturing-only facility and do not provide component design services. All production requires customer-supplied technical drawings, 3D CAD files, or dimensioned samples. This approach protects your proprietary designs and ensures we manufacture exactly what you specify.

We accept PDF technical drawings with complete dimensions and tolerances. CAD files (.STEP, .IGES, .DWG) are helpful for complex geometries but dimensioned PDF drawings are required for quotation and manufacturing setup.

Our facility specializes in CNC turning operations. We do not operate VMC (Vertical Machining Centers). Components requiring extensive flat face milling, complex contours, or multi-axis milling operations are outside our manufacturing capability.

Yes. We manufacture custom engineered components for OEM applications where standard catalog parts are not suitable. All components are produced strictly as per approved drawings with controlled tolerances and repeatability suitable for OEM supply chains.

Yes. We supply custom CNC machined components for export to customers in the USA, Europe, UK, Australia, and the Middle East. Export documentation, packaging, and inspection reports are provided as required by the customer.

We support low-volume and repeat production. Typical quantities range from 1–10 pieces for prototypes to 1,000 pieces per batch. Larger quantities can be discussed based on component design and repeatability requirements.

Dimensional accuracy is ensured through in-process inspection, calibrated measuring instruments, and final inspection against customer drawings. Measurement reports are provided for critical dimensions when specified.

Lead time depends on part complexity and material availability. Typical timelines are 5–10 days for prototypes and 10–20 days for small-batch production. Repeat orders are generally faster once the process is established.
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