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Cnc Grind Jobs in Raleigh, NC (NOW HIRING)

Controls Engineer

Durham, NC

$80K - $104K/yr

Apply internal standards across grinding, wire saw, EDM, tumbling, coating, magnetization, and in ... Configure and maintain communications between PLCs, robots, CNC-class machine controls, and the ...

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Cnc Grind information

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How much do cnc grind jobs pay per hour?

As of Sep 8, 2026, the average hourly pay for cnc grind in Raleigh, NC is $22.39, according to ZipRecruiter salary data. Most workers in this role earn between $18.70 and $25.24 per hour, depending on experience, location, and employer.

What is a CNC grind?

CNC Grinders are specialized machines that use computer numerical control (CNC) technology to automate the grinding process of materials, usually metal or hard plastics. These machines are operated by CNC Grinding Technicians or Operators, who program and monitor the equipment to ensure precision and efficiency in creating parts or tools. CNC grinding is commonly used in manufacturing industries to produce high-quality components with tight tolerances. The role typically involves interpreting blueprints, setting up machines, and performing maintenance checks. CNC Grinders help improve productivity and consistency in manufacturing by reducing manual labor and human error.

What are the key skills and qualifications needed to thrive as a CNC grind, and why are they important?

To thrive as a CNC Grinder, you typically need a strong understanding of machining principles, blueprint reading, and mechanical aptitude, often supported by a high school diploma or technical training in CNC operations. Experience with CNC grinding machines, familiarity with CAD/CAM software, and knowledge of measurement tools like micrometers and gauges are essential. Attention to detail, problem-solving skills, and the ability to work independently are vital soft skills in this role. These competencies are crucial for producing high-precision components efficiently and maintaining quality standards in a manufacturing environment.

What are some common challenges CNC grind operators face during their shifts, and how can they overcome them?

CNC Grind operators often encounter challenges such as maintaining tight tolerances, troubleshooting machine errors, and minimizing downtime due to tool wear. To overcome these, operators need to closely monitor machine performance, perform regular maintenance, and proactively replace grinding tools. Additionally, effective communication with quality control and maintenance teams helps quickly resolve issues and maintain production flow. Staying updated with the latest CNC grinding technologies and best practices can further enhance problem-solving skills in this role.

What is the difference between Cnc Grind vs Cnc Machinist?

AspectCnc GrindCnc Machinist
CertificationsTypically requires precision grinding certificationsRequires CNC programming and operation certifications
Work EnvironmentPrecision grinding shops, manufacturing facilitiesMachine shops, manufacturing plants
Job FocusSurface and cylindrical grinding of partsProgramming, setting up, and operating CNC machines
SkillsGrinding techniques, measurement toolsCNC programming, machine operation

While both roles involve working with CNC machines, Cnc Grind focuses on precision grinding processes, whereas Cnc Machinist encompasses a broader range of CNC machine operations and programming. Understanding these differences helps job seekers find the right role based on their skills and certifications.

What job categories do people searching Cnc Grind jobs in Raleigh, NC look for?

The top searched job categories for Cnc Grind jobs in Raleigh, NC are:

What cities near Raleigh, NC are hiring for Cnc Grind jobs?

Cities near Raleigh, NC with the most Cnc Grind job openings:

Controls Engineer

Vulcan Elements

Durham, NC

$80K - $104K/yr

Full-time

Posted 13 days ago


Key responsibilities

  • Lead hands-on programming, debugging, and commissioning of industrial control hardware and control systems.

  • Own the integration and commissioning of robot cells, including layout review, end-of-arm tooling, PLC-to-robot communication, and safety functions.

  • Review vendor electrical schematics, controls architectures, and robot programs; lead Factory Acceptance Tests (FATs) and Site Acceptance Tests (SATs) to ensure compliance.


Job description

Vulcan Elements is manufacturing American rare-earth permanent magnets for a secure, resilient future. With a focus on national security and economic resiliency, we serve critical industries such as defense, aerospace, and automotive powering a high-technology future. Vulcan Elements is building a team of ambitious professionals committed to Mission Focus, Technical Excellence, and Transparency. 

As the Controls Engineer you will own controls execution for the finishing equipment portfolio  within a massive 1 million square foot manufacturing facility expansion. You will own your equipment packages cradle-to-grave: design review, FAT witness, site commissioning, and sustaining support. This is a high-impact, high-ownership role requiring technical expertise in industrial automation and industrial robotics. The role includes hands-on implementation and travel to OEM factory acceptance tests, domestic and international, up to ~50% during test campaigns, and transitions from Durham, NC to the Benson, NC facility as commissioning begins. 

Responsibilities 

  • Lead hands-on programming, debugging, and commissioning of Allen-Bradley/Rockwell, Siemens, and other industrial control hardware. Apply internal standards across grinding, wire saw, EDM, tumbling, coating, magnetization, and in-line inspection equipment. 
  • Own the integration and commissioning of robot cells(Fanuc, ABB, Kuka) - cell layout review, end-of-arm tooling, PLC-to-robot handshaking, machine vision, and coordinated motion with indexing conveyors, rotary tables, and servo feed systems. 
  • Execute task-based risk assessments to ISO 10218-1/-2, ISO/TS 15066, and ANSI/RIA R15.06; specify and validate safety functions — safe soft limits and zone monitoring, enabling devices, guard interlocks, and safety-rated stops — and demonstrate each one at Factory Acceptance Test rather than discovering it on site. 
  • Configure and maintain communications between PLCs, robots, CNC-class machine controls, and the site SCADA/MES layer, including tag mapping, alarming, and data acquisition. 
  • Review vendor electrical schematics, controls architectures, robot programs, and PLC/HMI logic. Lead controls Factory Acceptance Tests (FATs) and Site Acceptance Tests (SATs) to ensure full compliance with functional and safety requirements. 
  • Integrate dimensional and defect inspection, profilometry, and analytical test instrumentation into cell control and the plant data layer - measurement-to-reject interlocks, SPC data flow, and the disposition logic. 
  • Serve as the first-line, hands-on responder for diagnosing complex automation issues involving robots, networks, motion systems, instrumentation, and industrial communication protocols - on both the new facility and the running pilot. 

Deliverables You Will Develop, Review, or Support 

  • PLC code architecture, robot programs and safety zone configurations, HMI screens, vision inspection programs, tag databases, network lists, and system backups. 
  • Robot cell and machine risk assessments, safety function specifications with required performance levels, interlock and guarding logic, and safety-rated PFMEA inputs. 
  • Cell layouts, controls and network topology layouts, station cycle times, sequence diagrams, and automation simulations. 
  • Electrical schematics, pneumatic drawings, controls panel layouts, end-of-arm tooling interface drawings, and industrial network architecture. 
  • Calibration procedures, I/O lists, instrumentation documentation, robot mastering and maintenance procedures, and controls hardware maintenance manuals. 

Responsibilities and tasks outlined are not exhaustive and may change as determined by the needs of the business  

Qualifications 

  • Bachelor's or Master's degree in Electrical Engineering, Automation Engineering, Mechatronics, or a related field with 4+ years of direct industrial automation and controls engineering experience. 
  • Strong hands-on experience programming and commissioning Allen-Bradley/Rockwell, SIemens PLCs and HMIs, including safety PLCs such as GuardLogix. 
  • Hands-on experience integrating multi-axis robots – FANUC, ABB, and/or KUKA - including teaching, program review, PLC handshaking, and safety zone configuration. 
  • Grinding, wire saw, EDM, or lapping equipment; mass finishing and deburring lines; conveyorized coating and cure ovens. 
  • Servos, VFDs, indexing conveyors, rotary tables, and automated feed systems; proficiency with Ethernet/IP, OPC UA, and similar industrial communication standards. 
  • Demonstrated FAT and SAT participation — you have tested machines at vendor shops and commissioned them in the field — with structured troubleshooting, disciplined change control, and honest escalation. 

Must be a U.S. Person due to required access to U.S. export-controlled information or facilities  

Preferred Skills

  • Working knowledge of ISO 10218 / ANSI-RIA R15.06, the collaborative operation modes and their common misuse, and ISO 13849 performance levels, with the judgment to require that a safety function be demonstrated rather than asserted. 
  • Cognex or Keyence class vision platforms, in-line dimensional gauging, or profilometry and SPC-driven inspection systems. 
  • Standalone CNC machines (FANUC FOCAS, MTConnect, etc..) and/or OEM data retrofits on equipment shipped without normal factory integration in mind. 
  • Plant-level conveyor control and AMR/AGV fleet integration (ANSI/RIA R15.08) — a likely growth area for this role as that scope is defined. 
  • Combustible dust (NFPA 484 — NdFeB grinding swarf is pyrophoric), reactive metals, or strong-field environments where standard inductive, reed, Hall-effect, and magnetic-encoder sensing cannot be used. 
  • Experience developing SCADA applications in Ignition, FactoryTalk, Wonderware, or similar platforms. 
  • Familiarity with Python, SQL, or other high-level languages for automation or data analytics. 
  • Experience in heavy industrial, greenfield, or metallurgical manufacturing environments, or in regulated industries such as Defense, Aerospace, or Automotive. 

Physical and Environmental Requirements

The position requires regular presence on the production floor and the ability to navigate all areas of the facility. Candidates must be able to climb stairs, stand and walk for extended periods, and work in environments that may be hot, humid, or noisy. The role also requires the use of personal protective equipment, including respirators, and adherence to all applicable safety policies, procedures, and regulatory requirements. Employees must be able to complete required fit testing, wear appropriate PPE for the duration of assigned tasks, and respond safely to changing conditions within the production environment.