The YTQZ-B1-600 is a 600mm ceramic mosaic tile cutter designed for batch production of ceramic mosaic pieces. Its single-spindle multi-blade structure supports continuous conveyor feeding, while adjustable blade spacing allows different mosaic cutting specifications to be configured for production requirements.
The spindle can be configured with 7–8 cutting blades according to the required cutting arrangement. Multiple parallel cuts can therefore be completed during one feeding cycle. Blade spacing is set with spacers and gaskets, allowing the cutting layout to be adjusted according to the required finished dimensions.
For ceramic mosaic production, prepared tiles can be positioned with a dedicated cutting mold and processed in two cutting directions to form smaller mosaic pieces. For strip production, 600×600 mm ceramic tiles can be divided into multiple parallel strips for subsequent processing or ceramic tile skirting applications.
The YTQZ-B1-600 is a single spindle tile cutter for mosaic tiles with a 620 mm conveyor belt and a cutting width range of 20–600 mm. It supports 7–8 blades on the spindle, a conveyor speed of 0.8–4.0 m/min and ceramic tiles up to 20 mm thick. Blade spacing can be changed with spacers and gaskets to match different cutting specifications.
The machine is particularly suitable when production requires ceramic mosaic cutting, repeated parallel cutting, or preparation of ceramic tile strips from material up to 600 mm wide.

The YTQZ-B1-600 combines a single cutting spindle, multiple diamond blades and continuous conveyor feeding. Ceramic tiles enter the cutting area on the conveyor while the blades perform several parallel cuts across the material.
Instead of making each parallel cut separately, the single spindle multi-blade tile cutter divides the material into several sections during the same feeding cycle. This structure is suitable when a factory repeatedly produces the same strip width or prepares material for subsequent mosaic processing.
The final cutting arrangement depends on the original tile dimensions, number of blades, blade thickness, spacer configuration and required finished size.
The single spindle multi-blade ceramic tile cutter can carry 7–8 blades when the required processing configuration permits. The exact number and position of the blades should be selected according to the original ceramic tile size and required finished dimensions.
Multiple blades divide the ceramic tile simultaneously, reducing the number of separate feeding cycles required for repetitive parallel cutting. This makes the system suitable for ceramic mosaic preparation and ceramic tile strip production.
The YTQZ-B1-600 is an adjustable blade spacing ceramic tile cutter. Spacers and gaskets are installed between the cutting blades to establish the required distance between adjacent cuts.
When changing production specifications, the operator should calculate blade positions according to the original tile width, desired finished width and actual blade kerf. The blade arrangement should then be checked before continuous batch processing begins.
This allows different strip and mosaic cutting specifications to be produced without fixing the spindle to only one cutting layout.
The YTQZ-B1-600 can be used as a ceramic mosaic tile cutter for preparing small ceramic mosaic pieces from larger tiles.
For 300×300 ceramic mosaic cutting, the tile is positioned using a suitable cutting mold and processed in one direction. The material is then repositioned for cross-cutting so that the intersecting cuts form the required small pieces.
The final mosaic dimensions depend on the blade spacing and cutting arrangement. Before batch production, the finished pieces should be checked to verify dimensions and cutting condition.

Step 1: Confirm the original tile dimensions and thickness.
Step 2: Determine the required finished mosaic dimensions.
Step 3: Calculate the blade positions and install the required spacers and gaskets.
Step 4: Position the ceramic tile and complete the first cutting direction.
Step 5: Reposition the prepared material with the appropriate cutting mold.

Ceramic mosaic cutting mold used to position prepared material for cross-cutting.
Step 6: Complete the cross-cutting direction to form the small mosaic pieces.
Step 7: Check the finished dimensions and cutting condition before continuous production.
For factories asking how to cut ceramic tiles into mosaic pieces, important factors include blade spacing, blade condition, cutting mold positioning, conveyor speed and the characteristics of the ceramic tile being processed.
The YTQZ-B1-600 can also be used as a ceramic tile strip cutting machine.
A typical application is processing 600×600 mm ceramic tiles. For example, five blades can be arranged to divide the material into six parallel strips according to the required cutting layout.
The exact finished strip width should be calculated from blade positions, blade kerf and cutting allowance rather than only from the nominal tile dimensions.
This application is suitable for factories that need a tile cutter for 600x600 ceramic tiles and regularly produce multiple strips from one tile.
In addition to ceramic mosaic production, the YTQZ-B1-600 can prepare ceramic tile strips for skirting applications.
The ceramic tile skirting cutting machine configuration uses multiple blades to divide larger ceramic tiles into narrower strips during one feeding cycle. After cutting, the strips can proceed to any separate downstream finishing process required by the finished product.
For ceramic skirting production, the required strip width should be confirmed before arranging the blades. Batch production should begin only after the first processed pieces have been checked against the required dimensions.
One cutting head is used with a multi-blade spindle configuration, providing a straightforward cutting arrangement for ceramic mosaic and strip applications.
The ceramic tile cutter with 7-8 blades can perform multiple parallel cuts during one feeding cycle. The actual blade quantity depends on the required cutting specification.
The 620 mm conveyor belt supports continuous feeding for the 600 mm machine configuration and provides a stable material path through the cutting area.
The conveyor operates from 0.8–4.0 m/min. The appropriate operating speed should be selected according to the tile, blade arrangement and required cutting result.
Spacers and gaskets establish the distance between cutting blades, allowing different strip and mosaic cutting dimensions to be configured.
Water is supplied to the cutting area during operation to cool the diamond blades and remove cutting debris. Stable water supply is therefore required during continuous cutting.
Before configuring the YTQZ-B1-600 for a new production requirement, confirm the original tile length, width and thickness, required finished dimensions, blade specification and cutting arrangement.
For mosaic work, the required small-piece dimensions and cutting mold should also be confirmed. For strip or skirting work, the required strip width and number of strips per tile should be calculated before installing the blades.
A trial cut is recommended whenever the material specification or finished dimensions change. The first processed pieces can then be checked before continuous production.
The YTQZ-B1-600 is suitable when production requires:
• Ceramic tiles up to 600 mm processing width
• Ceramic mosaic preparation
• Multiple parallel cuts during one feeding cycle
• 300×300 ceramic mosaic cutting
• 600×600 ceramic tile strip cutting
• Ceramic tile skirting preparation
• Adjustable blade spacing for different finished dimensions
• Continuous conveyor-fed production
The final blade configuration should be selected according to the actual ceramic tile dimensions, thickness, required finished size and production requirements.
| No. | Name | YTQZ-B1-600 |
|---|---|---|
| 1 | Nos. of cutting heads | 1 pc |
| 2 | Width of conveyor belt | 620 mm |
| 3 | Dia. of blade | Φ150–300 mm × 60 mm |
| 4 | Main motor power | 18.5 / 22 kW |
| 5 | Conveyor motor | 0.75 kW |
| 6 | Speed of conveyor | 0.8–4.0 m/min |
| 7 | Lifter motor | 0.75 kW |
| 8 | Cutting width | 20–600 mm |
| 9 | Max. cutting thickness | 20 mm |
| 10 | Size of machine | 2.11 × 1.58 × 1.63 m |
| 11 | Weight | About 1,200 kg |
| 12 | Water consumption | 300 L/min |
| 13 | Application | Ceramic mosaics, tile strips |
| 14 | Materials | Ceramic tiles |
Yes. The YTQZ-B1-600 has a cutting width range up to 600 mm and is suitable as a tile cutter for 600x600 ceramic tiles. Multiple blades can divide a 600×600 mm tile into several parallel strips during one feeding cycle. Final strip width depends on blade positions, blade kerf and spacer arrangement.
First determine the required finished strip width and calculate the blade positions. Install the required blades, spacers and gaskets, confirm the cutting layout and perform a trial cut. After checking the first processed strips, the same configuration can be used for continuous production.
Yes. The YTQZ-B1-600 can cut prepared ceramic tiles into small mosaic pieces. The material is first cut in one direction, then repositioned in a suitable cutting mold for cross-cutting. The final mosaic size is determined by the blade spacing and cutting arrangement.
The cutting layout is adjusted by changing the spacing between the blades with spacers and gaskets. Blade positions should be calculated according to the original tile dimensions, required finished size and blade kerf. A trial cut should be checked before batch production.
The YTQZ-B1-600 single spindle tile cutter can typically install 7–8 cutting blades according to the required configuration. Multiple blades allow several parallel cuts during one feeding cycle. The actual blade quantity and spacing should match the original tile size and required finished dimensions.
Yes. The machine can be configured as a ceramic tile skirting cutting machine for preparing multiple strips from larger ceramic tiles. A 600×600 mm ceramic tile can be divided into several parallel strips according to the selected blade arrangement. Any additional edge finishing required for the final skirting product is completed in the appropriate downstream process.
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