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3D Yazıcılar Katmanlı Üretim Sonrası Kullanılan Sulu Kumlama Makinası

ST1 Manual Compact Wet Blasting Machine for 3D Parts

Our patented machines are made from 100% stainless steel !

 

Outer Sizes : 900 mm x 1300 mm x 1800 mm (h)

Cabinet Interior Sizes: 800 mm x 800 x 800 mm (h)

PLC Touchscreen Monitor: Standard

Blasting System : Manual

Process Capacity : 3-4 m2/hour

# Rotary Tables: Optional

Rotary Table Carriage System : Optional

Loading / Unloading Door : Manual

# Nozzles : 1

Rinse Tank / Pool / Bench : Optional

Slurry Media Discharge : Automated

A dust-free and healthy blasting experience is offered by the wet blasting technique in conjunction with the sophisticated filtration system. The basic operating principle can be described as processing parts that can be held and rotated with one hand using a wet blasting nozzle held in the other hand inside the cabin.   The environmentally friendly wet blasting equipment guarantees quick processing of components that fit within the cabin and can be easily turned around. In addition to safely deburring items, this equipment can be used to clean and prepare surfaces for coating. Because of its small size, our entry-level model, the ST1 Wet Blasting Machine, is favored in industries including rubber, medical, automotive, and additive manufacturing (3D). In the automobile industry, it is particularly dependable for the revision and cleaning of aluminum engine parts, enabling their safe reuse.

st25 sulu kumlama makinesi

ST25 Satellite-Type 4-Axis 3D Printer Products Wet Blasting Machine"

Our patented machines are made from 100% stainless steel !

 

Outer Sizes : 1700 x 2100 x 2900 (mm)

PLC Touchscreen Monitor: Standard

Blasting System : Fully Automated

Process Capacity: 10-12 m2/hour

# Rotary Table: 4-Section Automated Rotary Table Mechanism

Rotary Table Weight Capacity: 5 KG (customizable)

Loading Door : Automated

# Nozzles: 3 

Slurry Media Discharge System: Automated

Rinsing System: Optional

The automated rotary table movement enables the loaded component to undergo wet blasting of its external and internal diameters by rotating on its axis and transitioning between various workstations. The parts are loaded into the system one by one under the supervision of an operator and are then retrieved from the loading area once the entire process is completed. In order to automate these systems and reduce the reliance on operator support, it is possible to integrate a robotic arm loading system. The dimensions of the cabinet are determined based on the vertical measurement of the component. This specific model is highly favored for the process of propelling projectiles into barrels within the defense and arms sector. In order to attain the desired RA value, it is possible to utilize glass beads and aluminum oxide, fused aluminium as consumable materials.

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