Powdered Sugar Grinder Split Type
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Powdered Sugar Grinder Split Type
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Powdered Sugar Grinder Split Type

Grinder type: sugar powder grinder
Machine structure: split type with cyclone, dust collector, blower
Machine model: SLU-300, SLU-400, SLU-500, SLU-600, SLU-700, etc
Function: grind sugar into powder
Capacity: about 300-2,000kg/h
Unit price: start from about USD7,000 for the smallest model

Product Detail

In this product page, you can see the introduction of the split type design SLU series powder sugar grinder. Such grinder adopts a split-body design integrated with cyclone dust collection. It highlights the core advantages of this modular design, specifically regarding airflow performance, dust removal efficiency, and discharge speed. So this type is ideally suited for medium-to-high-capacity sugar production environments.


split type slu series grinder


 

 

I. Product Overview

 

The SLU series grinder(split design) is based on the standard SLU standalone grinder unit,the output size is also 20-150mesh for sugar powder. But it is configured with an independent cyclone separator and dust removal system and blower. These components form a split-structure configuration comprising a "pulverizing host + cyclone + dust collector." Unlike joint design, the split-type design arranges the four functional units independently, connecting them via pipes. The core advantages offered by this design are: greater wind force, higher airflow volume, and increased powder production capacity.

 

 

II. Core Advantages of the Split-System

 

To help you better understand the advantages of this design, we have provided a detailed explanation below.

 

2.1 Advantage 1: Greater Airflow and Higher Production Capacity

 

In a split-system design, the pulverizing host, cyclone separator, and dust collector and blower operate as independent units. This allows for the installation of higher-power fans and enables a more optimized air duct layout, resulting in a significant overall increase in airflow force and volume.

 

Parameter

Joint (Compact) System

Split System

Blower configuration

Limited integration space; power is restricted

Accommodate higher-power blower

Air duct resistance

Compact airflow path; relatively high resistance

Optimized air ducts; lower resistance

Effective air volume

Standard

Significantly enhanced

Capacity ceiling

Lower

Higher; suitable for medium-to-high production capacities

 

Key Conclusion: The split-system design typically generates greater airflow, effectively meeting the material discharge and dust removal requirements associated with high-capacity sugar powder production.


split and joint design


2.2 Advantage 2: Higher Dust Removal Efficiency and Environmental Compliance

 

In a split system, the cyclone separator performs an initial gas-solid separation; a substantial portion of the finished product is collected at this stage. Consequently, the volume of dust entering the final dust collector is drastically reduced, lightening the load on the collector and resulting in superior filtration performance.

 

Parameter

Joint (Compact) System

Split System

Finished product collection point

Bottom of the cyclone separator

Bottom of the cyclone separator

Dust collector load

Standard

Lighter (Cyclone has already pre-separated most of the material)

 

2.3 Advantage 3: Faster Discharge Speed

 

The combination of greater air volume and an optimized airflow path enables the pulverized sugar powder to be transported more rapidly to the cyclone separator for collection, resulting in a faster discharge rate and higher production efficiency.

 

Parameter

Joint (Compact) System

Split System

Airflow velocity

Standard

Higher

Material conveying efficiency

Standard

Higher

Discharge speed

Standard

Faster

 

 


III. Applicable Scenarios

 

So, what application scenarios is this crusher suitable for? So, what specific applications is this crusher suitable for? Please refer to the detailed introduction below.

 

3.1 Medium-to-High Capacity Powdered Sugar Production

 

Due to its characteristics of high airflow and rapid discharge, the split-system design is particularly well-suited for powdered sugar production scenarios requiring medium to high output capacities:

 

Capacity Scale

Recommended Configuration

Rationale

10-70kg/h

Standalone Unit (with Bag Collector)

Low capacity; cyclone dust separation is not that important

70-300kg/h

Joint type

Low capacity; cyclone dust separation is not required.

300-20,000kg/h

Split System (Large Model + High-Volume Blower)

A high-volume split-system setup is mandatory.

 

3.2 Scenarios with Ample Workshop Space

 

In the split-system design, the various functional units are arranged independently, resulting in a larger overall footprint compared to the integrated design. If a client's workshop offers ample floor space, even smaller-capacity models can be configured using the split-system design to achieve superior dust collection and discharge performance.

 

Spatial Conditions

Recommended Choice

Rationale

Limited space

Joint Unit (Compact Model)

Small footprint; meet basic operational requirements.

Ample space

Split System

Higher airflow; superior performance; flexible layout options.

 

 

 

IV. Technical Parameter

 

Model

Grind Motor

Blower Motor

Discharge Motor

Output size

Capacity

SLU-300

5.5kw/7.5kw

4kw

0.55kw

20-150mesh

About 300-500kg/h

SLU-400

11kw

5.5kw

0.75kw

20-150mesh

About 400-600kg/h

SLU-500

15kw

7.5kw

1.1kw

20-150mesh

About 500-800kg/h

SLU-600

22kw

11kw

1.5kw

20-150mesh

About 800-1,200kg/h

SLU-700

30kw

11kw

2.2kw

20-150mesh

About 1,000-1,500kg/h

SLU-800

37kw

15kw

2.2kw

20-150mesh

About 1,500-2,000kg/h

 

 


V. Summary

 

The split-type powered sugar grinder features a modular design comprising a main pulverizing unit, a cyclone separator, a dust collector, and a blower. This configuration is particularly well-suited for medium-to-high-capacity sugar powder production. Thanks to this design, the system benefits from a more powerful blower and the ability to scale up other components accordingly. Consequently, both production efficiency and dust removal efficiency are optimally aligned with the specific requirements of medium-to-high-volume powder processing lines.

 

For further details or to receive recommendations on model selection, please feel free to contact Salinovate team.

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