CNC Components Manufacturer & Supplier in Europe

CNC Components Manufacturer - Piping Projects Europe

CNC Components Manufacturer in Europe

What are CNC Components?

CNC components refer to computer numerical control, wherein pre-programmed software and codes govern the movement of production material. These components are responsible for controlling intricate machinery, such as grinders, lathes, and turning mills, and are utilized to cut and shape various parts. The machined components are characterized by their high level of automation and safety, rendering them effortless to handle and operate.

The constituents of Precision Machining Parts play a crucial role in the production of essential products utilized in various industries. The prevalent machining techniques include drilling, milling, and turning. The Precision CNC Machining Parts are engineered with two axes, namely x and z, and exhibit exceptional precision, enabling them to effectively cut through metal using advanced machinery. Conversely, VMC Components, which are designed with three axes, namely x, y, and z, are even more precise but come at a higher cost.

What Makes Us the Premier Manufacturer and Supplier of CNC Components in the Europe?

We engage in the production of CNC Components, adhering to rigorous quality control procedures and standards that ensure optimal surface and near dimensional tolerances. Our company holds ASME Quality and ISO 9001:2015 Certifications, positioning us as a prominent provider of carbon steel, alloy steel, and stainless steel CNC Components solutions worldwide. In addition to manufacturing top-tier stainless steel CNC Components, we are authorized dealers of ISMT and Jindal, enabling us to supply carbon steel and alloy steel CNC Components of exceptional quality.

CNC Components Manufatcurer, Supplier and Dealer in Europe

CNC Components

CNC Components Manufacturer in Europe
CNC Components Supplier in Europe
CNC Components Dealer in Europe

CNC Components - Specifications

  • Product : CNC Components
  • Size : 10mm to 70 mm
  • Materials : Titanium, Monel, Nickel, Inconel, Hastelloy, Aluminium tantalum, Zinc, Lead, Copper, Brass, Bronze, Bismuth, etc.
  • Tolerance : 0.001mm- 0.005mm
  • Thread : UNC / NPT/ BSP / BSPT
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What is CNC Machining?

CNC machining is a subtractive manufacturing process that involves the utilization of cutting tools to eliminate material as required to produce the desired part. This methodology stands in contrast to additive manufacturing technology, also known as 3D printing, which entails the addition of material layer-by-layer to construct a part to its final form, rather than removing material from a blank to generate it.

Prior to the advent of automated machining control, the creation of a custom machined part was executed manually on a lathe or milling machine by a skilled machinist. This task necessitated operators with a high level of expertise who could interpret blueprints, take precise measurements using instruments such as calipers and micrometers, and repeatedly remove material from the workpiece until a finished part with the correct dimensions was achieved. The more intricate the design and the higher the tolerances required, the more laborious the machining process became, which restricted throughput and impacted costs. Consequently, the implementation of automation in the process became increasingly crucial for projects involving the production of highly precise components.

Why Piping Material for CNC Tools?

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Chemical Composition of Stainless Steel 304/304L/304H CNC Components

Chemical Composition of Stainless Steel 304/304L/304H CNC Component
Grade C Mn Si P S Cr Mo Ni
SS 304 0.08 max 2 max 0.75 max 0.045 max 0.030 max 18 – 20 8 – 11
SS 304L 0.035 max 2.0 max 1.0 max 0.045 max 0.03 max 18 – 20 8 – 13
SS 304H 0.10 max 2 max 0.75 max 0.045 max 0.03 max 18 – 20 8 – 10.5

Mechanical Properties of Stainless Steel 304/304L/304H CNC Components

Mechanical Properties of Stainless Steel 304/304L/304H CNC Components
Grade C Mn Si P S Cr Mo Ni
SS 304 0.08 max 2 max 0.75 max 0.045 max 0.030 max 18 – 20 8 – 11
SS 304L 0.035 max 2.0 max 1.0 max 0.045 max 0.03 max 18 – 20 8 – 13
SS 304H 0.10 max 2 max 0.75 max 0.045 max 0.03 max 18 – 20 8 – 10.5

Difference Between 3D – 2D and 4-Axis Machined Parts

CNC milling toolpaths are categorized into three types, namely 2D, 3D, and 4-axis, based on the number of axes involved in their movement.

  • 2D machined parts are limited to the XY plane, with the Z axis being utilized to position the tool at the required depth. These precision CNC machined components are referred to as Prismatic, as they consist of 2-1, 2D parts.
  • 3D toolpaths, on the other hand, are non-prismatic and involve complex organic shapes. This grade requires more intricate machine movement, with the revolved surface requiring XZ tool motion and the fillet requiring XYZ tool motion.
  • The 4-axis toolpath requires an auxiliary rotary installed on the CNC machine, which is parallel to the x or y-axis. The toolpaths of this grade fall into two categories, namely 4th axis substitution and simultaneous 4th axis.

Which is Better? 5-Axis, 3-Axis, and 4-Axis CNC Machining Parts

The design of CNC machining parts involves varying degrees of complexity in the movement between the workpiece and cutting tool.

  • A 3-Axis machining tool is the most basic type of workpiece, which remains fixed in a single position. The spindle can move in the x, y, and z linear directions, and is typically used for machining 2D and 2.5D geometry.
  • A 4-Axis machining tool, on the other hand, has 3 linear movements in the x, y, and z directions, as well as an additional A axis due to the rotation of the workpiece. This allows for machining on 4 sides using a single fixture setup.
  • A 5-Axis machining tool utilizes 2 or 3 rotational axes, depending on the machine. The machine may rotate the B and C axis while using either the A or C axis. There are two types of 5-axis CNC machines: 3+2 or fully continuous 5-axis machines.

Equivalent Grades of Stainless Stell 04/304L/304H CNC Components

Equivalent Grades of Stainless Steel 304/304L/304H CNC Component
SS 304 S30400 1.4301 Z7CN18‐09 X5CrNi18-10 SUS 304 304S31 08Х18Н10
SS 304L S30403 1.4306/1.4307 Z3CN18‐10 X2CrNi18-9 / X2CrNi19-11 SUS 304L 304S11 03Х18Н11
SS 304H S30409 1.4301 - - - - -

How to Maintain CNC Components?

Given the existence of diverse CNC machines, it is imperative to consistently comply with the maintenance guidelines that are particular to your machine. Additional factors, such as the machine's average run time and the materials utilized, may influence the frequency of servicing required. As a general rule, CNC machine inspections should be conducted at a minimum of once per month.

  • Daily Maintenance: Please ensure to verify the lubrication levels and replenish them if necessary. Apply grease to any parts that appear to be dry. Verify the concentration and fill levels of the coolant. Empty the chip hopper. Verify the levels of the hydraulic system. Clean all surfaces thoroughly to prevent the accumulation of small metal shavings.
  • Monthly Maintenance: Clean or replace air filters, inspect and clean coolant filters, cleanse radiators and cooling fans, scrutinize oil fill checklists for any abnormal oil consumption, eliminate and sanitize chuck and jaws, and lubricate and regulate chains or conveyors.
  • Yearly Maintenance: Please completely remove the coolant tank and extract any metal chips that may not have been caught by the conveyor. Proceed to examine the system for any bacterial growth and perform a thorough cleaning. Test the hydraulic oil for any contaminants and replace the filters as necessary. Drain and cleanse the lubrication unit, followed by an oil change. Verify the headstock for any tapering and check the drawbar tension. Inspect the chuck cylinder and execute the backlash program. If required, replace the X and Y axis gibs.

The Advantages of Routine Maintenance for CNC Machine Tools

  • Minimize Machine Downtime - Essential machine repairs can consume precious machine time. Scheduling routine maintenance procedures at a convenient time can prevent unexpected downtime in the future.
  • Enhance Tool Longevity - By conducting thorough inspections and timely replacement of parts, the lifespan of the machine can be significantly extended.
  • Preserve Your Investment - Your CNC machine tool represents a substantial financial investment, and proper maintenance is crucial to ensure its optimal performance.
  • Elevate Product Quality - Consistent machine maintenance can reduce scrap rates and enhance the overall quality of the end product.

Here are Some Important Things to Think About Before Purchasing a CNC Components

Grade: Stainless steel has different grades based on its chemical makeup and characteristics. Pick the appropriate grade for your use.

Finish: The way the valve looks and how easy it is to clean depends on its finish. Pick a finish that suits your needs.

Thickness: Valve thickness affects its strength and weight. Pick a thickness that suits your needs.

Temper: Valve temper means how strong and flexible it is. Pick the right temper for what you need it for.

Size: Valve size depends on what you need.

Price:Valve prices change based on the quality, thickness, finish, strength, size, and seller. Check prices from various sellers before buying.

CNC Components Used in Industries

  • CNC Components Used in Tractor
  • CNC Components Used in Automotive Trim
  • CNC Components Used in Stamped Machined Products
  • CNC Components Used in Cookware
  • CNC Components Used in Appliances
  • CNC Components Used in Kitchen
  • CNC Components Used in Sinks
  • CNC Components Used in Railway Cars
  • CNC Components Used in Foodservice Equipment
  • CNC Components Used in Trailers
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