Plasma cutting machine operator jobs in Finland
Plasma cutting machine operators set up and operate plasma cutting machines designed to cut and shape excess material from a metal workpiece using a plasma torch at a temperature hot enough to melt and cut the metal by burning it and works at a speed that blows away the molten metal from the clear cut.
Plasma cutting machine operator – how much is the pay in Finland?
What the trade paid in 2024
| Median | 18.51 €/h |
|---|---|
| Bottom tenth | 14.37 €/h |
| Top tenth | 24.18 €/h |
| Employees | 13,244 |
Pay by sex, 2024
| Sex | Median | Employees |
|---|---|---|
| Women | 16.45 €/h | 827 |
| Men | 18.66 €/h | 12,417 |
Plasma cutting machine operator - Which skills are essential?
Monitor and operate a plasma cutting machine according to regulations.
Evaluate which deficient processed workpieces do not meet the set-up standard and should be removed and sort the waste according to regulations.
Identify operating problems, decide what to do about it and report accordingly.
Remove individual workpieces after processing, from the manufacturing machine or the machine tool. In case of a conveyor belt this involves quick, continuous movement.
The characteristics of various kinds of plasma torches, their qualities and applications.
Measure the size of a processed part when checking and marking it to check if it is up to standard by use of two and three dimensional precision measuring equipment such as a caliper, a micrometer, and a measuring gauge.
Perform tests putting a system, machine, tool or other equipment through a series of actions under actual operating conditions in order to assess its reliability and suitability to realise its tasks, and adjust settings accordingly.
Dispose of possibly hazardous waste material created in the cutting process, such as swarf, scrap and slugs, sort according to regulations, and clean up workplace.
Wear relevant and necessary protective gear, such as protective goggles or other eye protection, hard hats, safety gloves.
Ensure that the necessary equipment is provided, ready and available for use before start of procedures.
Employ cross-reference tools and programmes, listing file names and line numbers, to identify part numbers, descriptions, and the vendor as source of origin.
Continuously check up on the automated machine's set-up and execution or make regular control rounds. If necessary, record and interpret data on the operating conditions of installations and equipment in order to identify abnormalities.
Qualities, specifications, applications and reactions to different fabricating processes of various types of metal, such as steel, aluminium, brass, copper and others.
The national and international requirements, specifications and guidelines to ensure that products, services and processes are of good quality and fit for purpose.
Ensure the machine is fed the necessary and adequate materials and control the placement or automatic feed and retrieval of work pieces in the machines or machine tools on the production line.
Read and interpret such technical resources such as digital or paper drawings and adjustment data in order to properly set up a machine or working tool, or to assemble mechanical equipment.
Set up and give commands to a machine by dispatching the appropriate data and input into the (computer) controller corresponding with the desired processed product.
Plasma cutting machine operator - Which skills are useful but not essential?
Method of quality control that uses statistics to monitor processes.
Use various techniques to ensure the product quality is respecting the quality standards and specifications. Oversee defects, packaging and sendbacks of products to different production departments.
Keep records of the machine's faults, interventions and irregularities for quality control.
The variety of cutting technologies, such as software or mechanics, guiding cutting processes through lasering, sawing, milling etc.
The manufacture of different cutlery items, such as forks, spoons, knives, razors or scissors.
Test processed workpieces or products for basic faults.
The most optimal rotation or cycle time and over-all quality of a tool or a machine's processes.
Understand electrical engineering, a field of engineering that deals with the study and application of electricity, electronics, and electromagnetism.
Evaluate how much stock is used and determine what should be ordered.
Various processing methods on iron and iron-containing alloys such as steel, stainless steel and pig iron.
Read and comprehend standard blueprints, machine, and process drawings.
The manufacture of reservoirs, tanks and similar containers of metal, of types normally installed as fixtures for storage or manufacturing use. The manufacture of metal containers for compressed or liquefied gas.
Use computer-aided manufacturing (CAM) programmes to control machinery and machine tools in the creation, modification, analysis, or optimisation as part of the manufacturing processes of workpieces.
Offer help and advice to service technicians in case of machine malfunctions and other repair tasks.
Inspect and mark parts of the workpiece to indicate how they will fit into the finished product.
Observe and listen to machinery operation to detect malfunction. Service, repair, adjust, and test machines, parts, and equipment that operate primarily on the basis of mechanical principles. Maintain and repair vehicles meant for cargo, passengers, farming and landscaping.
The manufacture of electrical ovens and water heaters by metalworking processes.
Set up the desired product design in the CNC controller of the CNC machine for product manufacturing.
Metal processes linked to the different types of metal, such as casting processes, heat treatment processes, repair processes and other metal manufacturing processes.
The manufacture of metal items that can be attached to a door in order to support its function and appearance. The manufacture of padlocks, locks, keys, hinges and the like, and hardware for buildings, furniture, vehicles etc.
Evaluate when to invest in replacing machines or machine tools and take the necessary actions.
Maintain records of the progress of the work including time, defects, malfunctions, etc.
The manufacture of metal doors, windows and their frames, shutters and gates, and the metal room partitions for floor attachment.
Understand and assess the models and symbolic language of the GD&T system indicating engineering tolerances.
The manufacture of heavy weapons (artillery, mobile guns, rocket launchers, torpedo tubes, heavy machine guns), small arms (revolvers, shotguns, light machine guns), air or gas guns and pistols, and war ammunition. Also the manufacture of hunting, sporting or protective firearms and ammunition and of explosive devices such as bombs, mines and torpedoes.
Apply statistical methods from Design of Experiments (DOE) and Statistical Process Control (SPC) in order to control manufacturing processes.
The manufacture of steam or other vapour generators, the manufacture of auxiliary plant for use with steam generators: condensers, economisers, superheaters, steam collectors and accumulators. The manufacture of nuclear reactors, parts for marine or power boilers. Also the production of pipe system construction comprising further processing of tubes generally to make pressure pipes or pipe systems together with the associated design and construction work.