Plastic Rebirth Granulating Machine (SJY-100)

Model NO.: SJY-100 SJY-110 SJY-120
Certification: CE, ISO9001:2008
Condition: New
Model: Sjy-100
Diameter of Screw Steam: 97
Major Diameter Ration of Screw Steam: Main Set 18:1 Sub Set 12:1
Rational Speed of Screw Stem: 10-110rpm
Main Motor Power: 11kw
Sub Motor Power: 15kw
Max. Motor Power: 110kg/H
Machine Weight: 2.8t
Overall Diameter(L*W*H): 6000*1250*1800
Trademark: RUIHAO
Transport Package: Simple Packaging
Specification: CE
Origin: Wenzhou, Zhejiang
HS Code: 84773000
Plastic Rebirth Granulating Machine (SJY-100)

Model

SJY-100

SJY-110

SJY-120

Diameter of Screw Stem

97

107

117

Major Diameter Ratio of  Screw  Stem

Main Set 18:1
Sub Set 12:1

Main Set 18:1
Sub Set 12:1

Main Set 18:1
Sub Set 12:1

Rational Speed of Screw Stem

10-110rpm

10-110rpm

10-110rpm

Main Motor Power

11kw

30kw

37kw

Sub Motor Power

15kw

22.5kw

18.5kw

Max.Output

=110kg/h

=140kg/h

=180kg/h

Machine Weight

2.8t

3.2t

3.5t

Overall Diameter
(L*W*H)

6000*1250*1800

6600*1280*1820

6800*1300*1850
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Plastic Rebirth Granulating Machine (SJY-100)
 

Blended Powder

A blended powder of tungsten carbide and Metal Alloy Powder can be used for laser cladding, a process used to deposit a layer of material onto a substrate using a laser beam. This blended powder is typically used as a feedstock material for laser cladding applications where high wear resistance and hardness are required.

Tungsten carbide is a hard and wear-resistant material that is commonly used in cutting tools, mining equipment, and other high-wear applications. It has excellent thermal conductivity and high melting point, making it suitable for laser cladding processes.

Metal alloy powders, on the other hand, are often added to the Tungsten Carbide Powder to enhance certain properties or tailor the characteristics of the final cladding layer. These metal alloys can include nickel, cobalt, chromium, or other elements, depending on the specific requirements of the application.

The blended powder is typically prepared by mixing the tungsten carbide and metal alloy powders in the desired ratio. This mixture is then fed into a laser cladding system, where it is melted using a high-power laser beam. The molten powder is rapidly solidified onto the substrate, forming a dense and wear-resistant cladding layer.

The resulting cladding layer can have excellent hardness, wear resistance, and thermal conductivity, making it suitable for various applications such as tooling, wear parts, and surface protection. The specific properties of the cladding layer can be adjusted by varying the composition and ratio of the tungsten carbide and metal alloy powders in the blend.

Overall, the blended powder of tungsten carbide and metal alloy powder offers a versatile and customizable solution for laser cladding applications, providing enhanced wear resistance, hardness, and other desired properties to the final cladding layer.

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