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A K1325 CNC router has all the components needed to automate the carving of materials like wood, plastic, glass, leather, etc. Numerous models exist whose primary parts can be configured differently to suit different needs and budgets. The following list summarizes the most popular types:
ATC CNC Router
An ATC (automatic tool change) CNC router K1325 is highly automated. When carving a workpiece, it may need to change tools several times. This CNC router can quickly change to different cutting bits without manual assistance. It saves time and increases efficiency, especially in complex projects. ATC routers usually come with a tool magazine that can hold dozens of bits.
TC CNC Router
A CNC Router K1325 with a manual tool change is less automated than those with ATC. The carver must turn off the machine to change to a different bit manually. This process is slower and less efficient than using an automatic tool changer. However, TC routers are usually cheaper, making them a popular alternative to more expensive models.
A Single Head K1325 CNC Router
When budget constraints require it, some people choose to install a single-head carving unit. The machine will be able to carve and cut with only one tool.
Multi-head K1325 CNC Routers
The multi-head configuration can increase productivity by carving with multiple tools at once. Each of the ones used is usually made to serve a particular purpose, such as boring, gem engraving, etc.
Plasma Cutter
Usually designed for cutting thicknesses greater than 25 mm, CNC Routers K1325 with plasma cutters can quickly cut metal. This capability is not found in most routers. Plasma cutter heads can easily be added to or removed from multi-head routers.
Laser Head
Like plasma cutters, laser heads allow for more precise cutting and engraving than the typical K1325 bit can manage. They can be integrated with multi-head and ATC configurations.
Specifications for K1325 CNC routers vary depending on the manufacturer and whether the machine has been customized. Generally, the specifications can be grouped into categories.
Router specifications
The working area for the K1325 is usually 1300mm x 2500mm x 200mm. However, it can be customized up to 2000mm x 3000mm x 200mm. The spindle power is usually 3KW to 12KW, while the router’s speed is 24000 to 60000 RPM. K1325 routers have a dust collector or a device to hold workpieces tightly and a tool changer that can automatically change the tools.
Machine parameters
The parameters for the K1325 router typically include its X, Y, and Z Axes. Its maximum movement speed and working speed usually depend on the stepper or servo motors driving the axes. For most uncustomized K1325 CNC routers, the axis length is KX: 1300mm, KY: 2500mm, and KZ: 200mm. Their maximum movement and working speeds are 30m/min and 15m/min, respectively, and they are usually driven by a 450 motor and a gear rack.
Supported file formats
A K1325 CNC router will typically accept an Ai, CAD, or Ucancam file. The file will have to be converted into a G-code before it can be used with the router.
To help users get the most out of their K1325 CNC router, manufacturers will generally provide some routine maintenance tips. More importantly, they will advise against performing unauthorized maintenance or tampering with any parts of the router.
Some of the maintenance tasks that are usually suggested include the following:
The versatility of the K1325 CNC router machine makes it useful in many industries. Below are some application scenarios for this machine.
For retailers or wholesale buyers looking to purchase a K1325 CNC router for sale, there are several crucial factors to consider. First and foremost, they should focus on the machine's working area to ensure that it meets the intended project requirements. Additionally, it's essential to look for a CNC router with robust software compatibility. This ensures that the router can work seamlessly with design software.
When purchasing a K1325 CNC router, it's crucial to prioritise the machine's build quality and durability. Opting for routers with high-quality materials like cast iron and anodised aluminum helps ensure longevity and reliability. Moreover, if purchasing a more complex or larger router, consider the machine's assembly requirements and the router's provided technical support and instruction.
Investing in a powerful yet energy-efficient spindle is crucial for achieving optimal performance. It's important to select a random-access memory (RAM) and central processing unit (CPU) with sufficient processing power to handle complex designs. Alarm systems and automatic tool changers significantly streamline the routing process by minimising downtime and maximising productivity.
For those uncertain about their choice, consider beginning with a minimal investment in a small K1325 desktop router. This allows for initial exploration of the CNC routing world before committing to larger, more expensive machines. In the end, purchasing a CNC machine requires a thorough understanding of all aspects of the machine.
Q1: What software do CNC routers use?
A1: The router can use different software types for design and control. For design, users can use software like AutoCAD, CorelDRAW, or ArtCAM to make the design they want. Then, for converting the design into a command the router can understand, the user can use CAD/CAM software like KOMPAS, Flasco, or SAI.
Q2: How thick of wood can a CNC router go through?
A2: The K1325 CNC router machine can cut wood of almost any thickness. The only limitation is the height of the Z-axis or the router's vertical movement. Normally, when cutting wood for sign making or furniture, 2 to 3 inches of thickness is usually an overlap of the existing Z-axis travel.
Q3: Can a CNC router cut brick?
A3: A CNC router like the K1325 is not made to cut brick. It is meant for materials like wood, plastic, aluminum, and acrylic. To cut harder materials like stone and brick, a machine with a laser or water jet is better suitable.
Q4: How long does it take a CNC router to cut something?
A4: The time the router takes to cut a material depends on different factors. This includes the material type and thickness, the cutting strategy, the router's speed setting, and the complexity of the design. Once the parameters are set, the CNC machine is able to carry out the cutting task within a matter of minutes, seconds, or even hours.