| Liner Material (Wear/Corrosion Grade) | Nickel-based Alloy |
| Material (Base Alloy) | 38CrMoAlA / 45 Steel / Stainless Steel 304 / Customized Alloy |
| Cooling System Type | Spiral Self-through Cooling Channel / Straight Cooling Channel / Customized Design |
| Wear Resistance | High Wear Resistance Alloy |
| Service Life Expectation | Long Life Design / Enhanced Heavy-Duty |
| Application Materials | Engineering Plastics / Masterbatch / Biomaterials / Lithium Slurry / Chemical Compounds |
| Packaging Details | Wooden Case |
| Delivery Time | 10-60 Days |
| Payment Terms | T/T |
| Supply Ability | 500 Sets / Month |
| Nitriding Depth (Applicable for 38CrMoAlA) | 0.4–0.7 Mm |
| Hardness | HRC 58–64 |
| Brand Name | Zhitian |
| Model Number | 50-95 |
| Certification | Iso:9001 |
| Place of Origin | China |
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Product Specification
| Liner Material (Wear/Corrosion Grade) | Nickel-based Alloy | Material (Base Alloy) | 38CrMoAlA / 45 Steel / Stainless Steel 304 / Customized Alloy |
| Cooling System Type | Spiral Self-through Cooling Channel / Straight Cooling Channel / Customized Design | Wear Resistance | High Wear Resistance Alloy |
| Service Life Expectation | Long Life Design / Enhanced Heavy-Duty | Application Materials | Engineering Plastics / Masterbatch / Biomaterials / Lithium Slurry / Chemical Compounds |
| Packaging Details | Wooden Case | Delivery Time | 10-60 Days |
| Payment Terms | T/T | Supply Ability | 500 Sets / Month |
| Nitriding Depth (Applicable for 38CrMoAlA) | 0.4–0.7 Mm | Hardness | HRC 58–64 |
| Brand Name | Zhitian | Model Number | 50-95 |
| Certification | Iso:9001 | Place of Origin | China |
| High Light | Nickel-based Alloy Twin Screw Extruder Parts ,High Wear Resistance Alloy Twin Screw Extruder Parts ,HRC 58–64 Hardness Twin Screw Extruder Parts | ||
This nickel-based alloy lined twin screw barrel is designed for extrusion processes where the barrel bore is exposed to demanding media that can cause corrosion, abrasion or a combination of both.
In these applications, selecting the barrel only by hardness may not provide the expected service life. A material with strong wear resistance can still suffer from chemical attack, while a corrosion-resistant material may wear rapidly when abrasive fillers are also present.
A nickel-based alloy liner provides an alternative working surface for applications where corrosion resistance and mechanical durability must be considered together.
Typical problems include:
| Item | Available Configuration |
|---|---|
| Product type | Nickel-based alloy lined twin screw barrel |
| Main application | Demanding and chemically aggressive extrusion processes |
| Main feature | Nickel-based alloy working bore |
| Protection focus | Corrosion, abrasion or combined damage |
| Barrel types | Closed, feeding, venting, side-feeding and customized sections |
| Manufacturing basis | Drawing, sample or measured dimensions |
| Temperature control | Customized heating holes and cooling channels |
| Process interfaces | Feeding, venting, side-feeding and customized ports |
| Critical inspection | Bore, center distance, interfaces and liner condition |
| Main purpose | Maintain bore protection under demanding process media |
A nickel-based liner is not necessary for every twin screw extrusion process.
For standard polymers with moderate wear and limited chemical attack, conventional barrel materials may already provide an economical solution.
Nickel-based alloy systems become more relevant when the process includes:
The selection should start with the actual failure mechanism of the existing barrel.
If the bore shows pitting, chemical erosion or a combination of surface attack and mechanical wear, simply increasing material hardness may not solve the problem.
Many demanding compounds do not create only one type of damage.
For example, a formulation may contain mineral powder or reinforcement that causes abrasion while also containing additives that chemically attack the barrel surface.
In this situation, barrel damage can develop through both mechanisms at the same time.
Possible results include:
The liner material should therefore be selected according to the balance between corrosion resistance, wear resistance, toughness and operating temperature.
The highest hardness is not automatically the best material.
The purpose of an alloy liner is not only to create a more resistant surface.
It also helps preserve the geometry of the barrel bore.
As corrosion or wear removes material from the working surface, the clearance between the screw elements and barrel increases.
Excessive clearance may contribute to:
For replacement projects, the condition of the screw elements should therefore be inspected together with the barrel.
A new barrel cannot fully restore the original working clearance if the screw elements are already severely worn.
In a segmented twin screw extruder, not every barrel section operates under the same conditions.
More demanding zones may include:
For this reason, the complete barrel set does not always need the same liner material.
Nickel-based alloy protection can be concentrated in the sections where corrosion or combined wear is most severe, while less demanding zones can use more economical materials.
This helps balance material performance and replacement cost.
Nickel-based alloy lined barrels can be manufactured according to:
Customizable features include:
When a worn barrel is used as the manufacturing reference, dimensions affected by corrosion or wear should first be identified.
The replacement should restore the required geometry rather than reproduce damage from the old component.
Critical inspection can include:
Confirmed dimensional data can be retained for future repeat replacement orders.
Please provide:
No. The correct material depends on the process. Conventional nitrided materials may be sufficient for moderate conditions, while nickel-based alloys are more useful when corrosion or combined damage becomes important.
No. Corrosion resistance, wear resistance, toughness, temperature and actual process media should all be considered.
Yes. In segmented extrusion systems, higher-performance liner materials can often be concentrated in the most severely affected sections.
Yes. Screw and barrel wear together determine the actual working clearance.
Send us your barrel drawing, processed material and current corrosion or wear condition.
We can help evaluate the dominant failure mechanism, whether a nickel-based alloy liner is appropriate, which barrel sections require upgraded protection and which dimensions should be confirmed before replacement.
Send Your Barrel Drawing and Process Media for Material Evaluation
Company Details
Business Type:
Manufacturer,Exporter
Year Established:
2006
Total Annual:
10000000-12000000
Employee Number:
100~150
Ecer Certification:
Verified Supplier
Specializing in the production of twin-screw extruder parts Zhitian, a high-tech enterprise and Jiangsu Province-certified Specialized, Refined, Distinctive, and Innovative (SRDI) company, has specialized in twin-screw extruder parts for over two decades. With two production bases in Nanjing... Specializing in the production of twin-screw extruder parts Zhitian, a high-tech enterprise and Jiangsu Province-certified Specialized, Refined, Distinctive, and Innovative (SRDI) company, has specialized in twin-screw extruder parts for over two decades. With two production bases in Nanjing...
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