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Custom Precision Investment Casting Aluminum Alloy Service Forging Parts

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Welcome to the world of Machinery Hardware Casting Parts, where innovation drives progress. These components are at the forefront of technological advancements, incorporating the latest research and development to enhance performance and efficiency.
  • CB040

  • Zeren

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Product Description


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Welcome to the world of Machinery Hardware Casting Parts, where innovation drives progress. These components are at the forefront of technological advancements, incorporating the latest research and development to enhance performance and efficiency.

Product Name Machinery Hardware Casting Part 
Brand name Zeren
Model CB040
Material Stainless Steel
Classification Machinery Hardware Casting Part
Process Investment Casting + CNC Machining
Certification ISO9001:2015
Customized support OEM


Technical Parameters

Product General Specs
MaterialAustenitic stainless steel: 201, 303, 304, 316, 316L, 1.4581, scs14, scs16
Hardened stainless steel:17-4PH, 410, 420, 440C
Alloy cast steel: 4140, 4150, 4340, 8620, GS-25CrMo4
Casting alloy tool steel: CS-2, CS-7, CrWMn
Carbon steel: 1020, 1025(WCB), 1030, 1040, 1045, 1050
Weight1g-30kg
Casting toleranceCT4-CT7/GBT6414-1999; VDG Merkblad P690
Surface RoughnessRa1.6-Ra6.3
ThicknessMin 2mm (1mm in Micro-region)
Casting RadiusRound radius ≥0.3mm, Internal fillet radius≥0.5mm
Blind Hole DepthMax 30mm (Diamter 10mm)
MachiningTurning,Milling,Drilling,Boring,Threading, Grinding,CNC Machining & test equipment
Heat TreatmentAnnealing,Hardening, Normalizing,Carburizing, Aging
Surface FinishingBlack Oxide,Black Coating,Anti-Pollution Flashover Coating,Mirror Polish
Industry StandardsASTM, ICI, BS, DIN, JIS, ISO
Design SoftwarePro-E, UG,Solidworks, AutoCAD
File FormatIGS, STP, XT, PDF, JPEG, JPG


Product Uses & Advantage

Uses:


1. Automotive Engine Components: Casting parts play a crucial role in automotive engine components such as cylinder blocks, cylinder heads, and crankshafts, providing the structural integrity, thermal stability, and precision machining surfaces required for efficient combustion, power generation, and durability in internal combustion engines.


2. Renewable Energy Smart Grid Technologies: Casting parts find applications in renewable energy smart grid technologies such as smart meters, grid sensors, and grid-connected inverters, enabling real-time monitoring, control, and optimization of electricity generation, transmission, distribution, and consumption in the electrical grid to improve efficiency, reliability, and resilience while integrating renewable energy sources and enabling demand-side management and energy conservation measures.



Advantages:

1. Enhanced production flexibility: Casting facilities are equipped to accommodate a wide range of production volumes, from small batch orders to large-scale manufacturing, to meet varying customer demands.


2. Improved supplier partnerships: Casting manufacturers cultivate strong partnerships with suppliers to ensure reliable access to quality materials, components, and services for uninterrupted production.


3. Enhanced product differentiation: Continuous innovation in casting processes and materials allows manufacturers to differentiate their products in the market, offering unique features and performance advantages.

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Product Application

Here are some specific application scenarios of Machinery Hardware Casting Part:


  1. Material Characterization: Machinery hardware casting parts undergo material characterization processes, where the composition, microstructure, mechanical properties, and performance of the material used in the parts are analyzed and evaluated through techniques such as spectroscopy, microscopy, mechanical testing, and thermal analysis.


  2. Failure Analysis: Machinery hardware casting parts undergo failure analysis processes, where the root causes of failures, defects, or malfunctions are investigated and determined through methods such as visual inspection, metallurgical analysis, non-destructive testing, and simulation, aiding in identifying and addressing design flaws, material issues, or manufacturing errors.


  3. Design Optimization: Machinery hardware casting parts undergo design optimization processes, where their geometry, material selection, manufacturing processes, and performance characteristics are optimized to achieve desired objectives such as improved strength, reduced weight, enhanced functionality, or cost efficiency, using computer-aided design (CAD), simulation, and iterative testing.


  4. Supply Chain Management: Machinery hardware casting parts undergo supply chain management processes, where their production, procurement, inventory management, and logistics are coordinated and optimized to ensure timely delivery, cost-effectiveness, and quality control throughout the supply chain, involving suppliers, manufacturers, distributors, and customers.


  5. Continuous Improvement: Machinery hardware casting parts undergo continuous improvement processes, where ongoing efforts are made to identify, analyze, and implement improvements in design, manufacturing, quality control, and operational processes to enhance efficiency, effectiveness, and competitiveness, fostering a culture of innovation and excellence.


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