Full-Time

Industrial Electrician

Can Art Aluminum Extrusion

Can Art Aluminum Extrusion

51-200 employees

Fabricates standard and custom aluminum profiles

Compensation Overview

CA$38.82 - CA$43.21/hr

+ Overtime + RRSP matching

Windsor, ON, Canada

In Person

Category
Electrical Engineering (1)

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Requirements
  • Proficiency in programmable logic controller capabilities.
  • Ability to read and interpret drawings, blueprints, and electrical code specifications.
  • Ability to install, maintain, test, troubleshoot, and repair electrical equipment in a manufacturing or industrial environment.
  • Strong skills in routine maintenance operations.
  • Ability to work a 12-hour continental shift schedule covering day and night shifts.
  • Authorization to work in Canada without sponsorship is required.
Responsibilities
  • Read and interpret drawings, blueprints, schematics, and specifications to provide troubleshooting and repair services.
  • Install, test, troubleshoot, and repair electrical wiring, fixtures, control devices, and equipment.
  • Diagnose malfunctioning systems and components, locate their causes, and repair them using test equipment.
  • Perform preventive maintenance through inspection of electrical systems, equipment, and components.
  • Maintain accurate and up-to-date maintenance records.
  • Test electrical systems and continuity of circuits in electrical wiring, equipment, and fixtures.
  • Direct and train workers and apprentices to install, maintain, or repair electrical wiring, equipment, and fixtures.
  • Assist other maintenance technicians.
  • Ensure all work adheres to relevant organizational, provincial, and federal safety regulations, codes, and specifications.
  • Perform other electrical projects and assigned duties.
Desired Qualifications
  • Strong experience with metal processing, heavy stamping or die casting.
  • Experience with electrical work in an industrial manufacturing setting.
  • Fully certified in 442A is preferred.
  • Experience with 309A and strong industrial manufacturing exposure is acceptable.
Can Art Aluminum Extrusion

Can Art Aluminum Extrusion

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Can Art Aluminum Extrusion makes standard and customized aluminum extrusion profiles used in construction, automotive, and consumer goods. Their products are created by metal presses that form aluminum into precise shapes, which are then used as components in assemblies. The company operates multiple plants in North America to serve diverse customers and emphasizes quality, service, and technical proficiency. It differentiates itself through its broad manufacturing footprint, strong customer focus, and ongoing investment under private equity ownership that supports growth, including a dedicated push into the electric vehicle market with Can Art 2.0 to supply EV programs in North America. The goal is to expand capacity and market share, especially in EV components, by delivering reliable extrusion solutions to North American customers.

Company Size

51-200

Company Stage

Acquired

Total Funding

$300M

Headquarters

Brampton, Canada

Founded

1988

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Simplify Jobs

Simplify's Take

What believers are saying

  • Can Art opened Lakeshore's 395 Patillo Rd facility on June 5, 2026.
  • The company added a 45,000-square-foot Mississauga anodizing facility, widening value-added capacity.
  • U.S. tariffs on Chinese extrusions strengthen domestic, CUSMA-aligned suppliers like Can Art.

What critics are saying

  • The Bank of Canada said U.S. aluminum tariffs hit Canadian producers with 50% duties.
  • Can Art's Windsor site was fined $55,000 after a 2022 worker injury.
  • Prolonged North American EV slowdown undercuts Can Art's core growth engine.

What makes Can Art Aluminum Extrusion unique

  • Can Art serves ~50% of major North American EV launches, per June 2026 site.
  • It operates Brampton, Windsor, and Mississauga, compressing extrusion, anodizing, and logistics.
  • TorQuest recapitalized Can Art in 2022, giving it patient capital for expansion.

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Benefits

Health Insurance

Vision Insurance

Dental Insurance

Life Insurance

Flexible Work Hours

Training Programs

Company News

CanArt
Nov 14th, 2025
Design & Engineering Best Practices: 5 Key Principles of Design for Manufacturability for Aluminum Extrusions

Design & engineering best practices: 5 key principles of Design for Manufacturability for aluminum extrusions. Aluminum extrusion design allows for sleek profiles, light strong sections, and an almost endless array of custom shapes. But to fully exploit the advantages of aluminum extrusion, more than creativity is required: one needs Design for Manufacturability (DfM). DfM is simultaneously the art and science of designing products so that they can be efficiently manufactured without sacrificing functionality, performance, or aesthetics. In the design of aluminum extrusions, this involves knowledge in how design geometry, material behavior, and process limitations interact within the extrusion process. At Can Art Aluminum Extrusion, Canart work with designers and engineers to close the gap between imagination and manufacturability, helping you optimize every design for performance, precision, and cost efficiency. Following are five key DfM principles that every engineer and product designer should follow when working with aluminum extrusions. Simplify Profile Geometry: The Power of Design Simplicity While complex shapes may look impressive in CAD, simplicity is strength where extrusion is concerned. Each bend, tongue, hollow, and undercut adds another layer of complication to the die that can compromise the quality of the extrusion, raise the cost, and restrict the tolerances. Key Aluminum Extrusion design tips: * Geometry should be uniform and balanced. Symmetrical profiles extrude more evenly. * Avoid any deep hollows and voids that are not functionally necessary. * Control tongue ratio: the lower this ratio, less than 3:1, the better the die stability and hence less possibility of breakage. * Avoid sharp corners; instead, use at least 0.5 - 1 mm radii for smoother metal flow. * Where possible, combining several parts into one extrusion will make later assembly much easier. Pro Tip: If you have multiple cavities or interlocking shapes, it's often best to start working with your extruder upfront. A collaborative DfM review can identify cost-saving alternatives before the die is built. 2. Maintain uniform wall thickness for better metal flow. One of the golden rules when it comes to designing aluminum extrusions is to have uniform wall thickness. Variable wall thickness results in variable metal flow during extrusion, which can result in warping, surface defects, or dimensional inaccuracies. Best practices for wall thickness: * Keep the wall thickness of the profile consistent for uniform cooling, which ensures dimensional stability. * Where variable thickness cannot be avoided, the transition should be gradual without any abruptness. * Minimum wall thickness of aluminum extrusions usually ranges from 0 to 1.5 mm, depending upon the alloy, design, and application. * Thicker walls will lead to weight increases and thus cost, so balance strength with material economy. Question Answered: What is the minimum wall thickness for aluminum extrusion? Most structural or architectural profiles can have a section thickness in the range of 1.0 - 1.5 mm, though high-strength applications may require thicker sections. 3. Design for cost efficiency and post-extrusion processes. Every design decision affects manufacturing cost, not just in extrusion, but in machining, finishing, and assembly. DfM encourages you to consider the total lifecycle cost right from the start. Cost reduction strategies: * Minimize machining by incorporating design features in the profile, including grooves or channels. * Avoid excessive hollows requiring complicated multi-part dies. * Use standard extrusion dies wherever possible, or modify existing ones where feasible. * Design for post-extrusion finishing: surfaces should enable easy anodizing, powder coating, or polishing. * For assembly integration, add screw bosses, snap fits, and interlocking joints to reduce the need for hardware or welding. Pro Tip: Consider more than just the extrusion. A profile that is easier to assemble or finish can yield bigger cost savings than just reducing wall thickness alone. Every extrusion process has natural limitations to dimensional precision. Understanding these tolerances helps ensure your design performs as expected while remaining manufacturable. Tolerancing guidelines: * Base tolerances according to AA (Aluminum Association) or EN 755-9 * Tight tolerances increase production costs, use them only in functional areas. * Allow for thermal expansion and contraction, especially for long profiles. * Machining or secondary operations on critical assembly parts should be performed after extrusion to achieve tight fits. Common extrusion design considerations: * Profile complexity: More complex shapes have wider tolerances. * Die wear and temperature: Affect long-term dimensional consistency. * Extrusion direction: Align key dimensions with the flow direction for better accuracy. How do you design for aluminum extrusion? With uniform walls, simple geometry, real-world tolerances, and early collaboration with your extruder, every design feature can be produced and finished consistently. A well-designed extrusion doesn't just look good, it fits, functions, and lasts. DfM extends into assembly and structural performance, where design choices impact product integrity and usability. Assembly and structural design principles: * Include fastening features like screw bosses or snap fits for easier joining. * Choose materials wisely: 6000 series alloys such as 6061 and 6063 provide excellent strength, machinability, and surface finish. * Validate structural integrity and load paths using finite element analysis (FEA). * Design profiles that avoid stress concentrations by rounding internal corners. * Consider the dimensional accuracy of mating parts to ensure proper fitting during assembly. What are the key principles of DfM? Simplify design, maintain consistent walls, design for cost and tolerances, and account for strength and assembly from the start. Great design starts with great collaboration, and that's what Canart believe at Can Art Aluminum Extrusion. Canart combine engineering insight, material science, and real-world extrusion experience to ensure every profile performs beautifully from concept to production. * Material and alloy selection * CAD design reviews and simulation * Die design and prototyping * Post-extrusion finishing and assembly optimisation Whether it's a complex architectural framework, a precision machine component, or an EV structure, its engineering team ensures that every aluminum profile meets the highest standards of quality, accuracy, and efficiency. DfM is about making designs smarter, not just easier. Design for Manufacturability (DfM) is more than making products easier to produce, it's about making them better, smarter, and more economical. By following these five fundamentals, you'll create lightweight, durable, and cost-efficient aluminum extrusions ready for scalable production. At Can Art Aluminum Extrusion, Canart turn smart design into flawless execution, so you can make the most of every millimeter of aluminum.