Categorie: Catalogo prodotti

China manufacturer Farm Equipment Transmission System Replacement Front Spline Propeller Shaft Yoke

Descrizione del prodotto

1
Libri 
Name: Farm equipment  transmission system  replacement front spline propeller shaft yoke 
Material: 40Cr 
Weight: From .2kg-5kg
Packing: wooden case
Min order: 1000pcs
Customized production is available as your drawings or sample. 
 

Processo Die Forging
Materiale Stainless Steel, Carbon Steel, Alloy Steel
Weight 0.1Kg~20Kg
Trattamento termico Quenching, Annealing,Tempering,Normalizing, Quenching and Tempering
Testing instrument composition testing Spectrometer, Metallographic microscope
Performance testing Hardness tester, Tensile testing machine
Size Measuring CMM,Micrometer, Vernier Caliper, Depth Caliper, feeler gauge
Thread Gauge , Height Gauge
Roughness Ra1.6~Ra6.3
Machining Equipment CNC Center , CNC Machines, Turning, Drilling, Milling, boring machine,Grinding Machines,
Wire EDM,Laser Cutting&Welding, Plasma Cutting &Welding, EDM etc.
Quality control Sampling inspection of raw materials and semi-finished products, 100% Inspection of finished products
Trattamento superficiale Shot Blast ,  Powder Coating, Polishing, Galvanized , Chrome Plated
Production Capacity 60000T / Years
Lead Time Normally 30 – 45 Days.
Payment Terms T/T , L/C
Material Standard ASTM , AISI , DIN , BS, JIS, GB,
Certificazione ISO9001:2008, IATF16949:2016

2
  Products Quality Control
Quality control involve the inspection and control of incoming materials, production processes, and finished products.
The quality control process includes,
1 First of all, the incoming raw materials with random sampling are analyzed by metallographic microscope to ensure that the chemical composition meets the production requirements
2 Then In the production process, there are QC staffs timely sampling ensure that the products are free of defects in the manufacturing process, and to coordinate and handle any abnormal quality issues may be occurred.
3 The final step of production process is magnetic particle flaw detector of the metal parts to detect it’s hidden crack or other defects.
4 All the finished metal parts is sampled in proportion and sent to the laboratory for various mechanical performance tests and size measurement, and the surface quality is manually 100%  inspected.
The relevant testing equipment pictures are as following:

3
Quality Management System Control:
We strictly carry out system management accordance with iso9001 and ts16949 quality standards. And 5S lean production management is implemented on the production site.
The production management site as following:

4
Our Advantages:
 Brand
Our parent company, HiHangZhou Group, is a world-renowned high-end machinery manufacturing enterprise with 40 domestic subsidiaries and branches and 8 foreign manufacturing plants. Has long-term experience and good reputation in cooperation with world-renowned enterprises.
Technology
We have a complete production process and equipment research and development capabilities for ferrous metals forming. More than 25 years of production experience in forging equipment and casting equipment manufacturers, make us more thoroughly get  all the performance of each equipment. One-third of our company’s employees are technician and R&D personnel, ensuring that high-quality products are produced with high efficiency.
Service
We can provide custom and standard manufacturing services with multiple manufacturing process integrations. The quality and delivery of products can be fully guaranteed, and the ability to communicate quickly and effectively.
Culture
The unique corporate culture can give full play to the potential of individuals and  provide a strong vitality for the sustainable development of the company.
Social responsibility
Our company strictly implements low-carbon environmental protection, energy-saving and emission-reduction production, and is a benchmark enterprise in local region.

5
Company Culture 

Our Vision
To become 1 of the leading companies

Our Mission
To become a platform for employees to realize their dream
To become 1 of the transforming and upgrading pacemaker of Chinese enterprises
To set the national brands with pride

Our Belief
Strive to build the company into an ideal platform for entrepreneurs to realize their self-worth and contribute to the society

Values
Improvement is innovation, everyone can innovate
innovation inspired and failures tolerated

6
FAQ
1.
Q:  Are you a trading company or a manufacturer?
A:  Obviously we are a manufacturer of forging products, casting products and also have a high level of machining capabilities.

2.
Q:  What series products do your have?
A:  We are mainly engaged in forming processing of ferrous metals, including processing by casting , forging and machining. As you know, such machinery parts can be observed in various industries of equipment manufacturing.

3
Q:  Do you provide samples? is it free?
A:  Yes, we commonly provide samples according to the traditional practice, but we also need customers to provide a freight pay-by-account number to show mutual CHINAMFG of cooperation.

4
Q:  Is OEM available?
A:  Yes, OEM is available.

5
Q:  What’s your quality guarantee?
A: We insist that the survival of the company should depend on the products quality continuous improvement, without which we cannot survive for long. We carry out strictly product quality control for every process from incoming materials, production process to finished products via advanced detection instrument and equipment. We also invite independent third parties to certify our quality and management systems. Till now we have passed ISO/TS16949 and SGS certification .

6
Q.  How  about  the  Packing?
A: We usually use the iron box, or wooden case, also it can be customized according to customer’s demands.

7
Q:  What is your minimum order quantity?
A:  Yes, we require all international orders to have an minimum order quantity. The quantity is up to the exact products feature or property such as the material, weight, construction etc.

8
Q:  What is the lead time?
A:  Generally our forging products and casting products need to make new dies or molds, the time of making new dies or molds and samples within 30-45 days, and the large batch production time within 30-45 days. it’s also according to the parts structural complexity and quantity.

9
Q: What kinds of payment methods do you accept?
A: You can make the payment by T/T or L/C. 30% deposit in advance, 70% balance against the copy of B/L.

Certificazione

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Oggetto di elaborazione: Metallo
Stile della modanatura: Forgiatura
Tecniche di stampaggio: Fusione a pressione
Applicazione: Ricambi per macchine agricole
Materiale: Steel
Trattamento termico: Tempering
Esempi:
US$ 20/Piece
1 pezzo (ordine minimo)

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How do spline shafts handle variations in torque and rotational force?

Spline shafts are designed to handle variations in torque and rotational force in mechanical systems. Here’s a detailed explanation:

1. Interlocking Splines:

Spline shafts have a series of interlocking splines along their length. These splines engage with corresponding splines on the mating component, such as gears or couplings. The interlocking design ensures a secure and robust connection, capable of transmitting torque and rotational force.

2. Distribuzione del carico:

When torque is applied to a spline shaft, the load is distributed across the entire engagement surface of the splines. This helps to minimize stress concentrations and prevents localized wear or failure. The load distribution capability of spline shafts allows them to handle variations in torque and rotational force effectively.

3. Material Selection:

Spline shafts are typically made from materials with high strength and durability, such as alloy steels. The material selection is crucial in handling variations in torque and rotational force. It ensures that the spline shaft can withstand the applied loads without deformation or failure.

4. Spline Profile:

The design of the spline profile also contributes to the handling of torque variations. The spline profile determines the contact area and the distribution of forces along the splines. By optimizing the spline profile, manufacturers can enhance the load-carrying capacity and improve the ability of the spline shaft to handle variations in torque.

5. Surface Finish and Lubrication:

Proper surface finish and lubrication play a crucial role in the performance of spline shafts. A smooth surface finish reduces friction and wear, while suitable lubrication minimizes heat generation and ensures smooth operation. These factors help in handling variations in torque and rotational force by reducing the impact of friction and wear on the spline engagement.

6. Considerazioni di progettazione:

Engineers take several design considerations into account to ensure spline shafts can handle variations in torque and rotational force. These considerations include appropriate spline dimensions, tooth profile geometry, spline fit tolerance, and the selection of mating components. By carefully designing the spline shaft and its mating components, engineers can optimize the system’s performance and reliability.

7. Overload Protection:

In some applications, spline shafts may be equipped with overload protection mechanisms. These mechanisms, such as shear pins or torque limiters, are designed to disconnect the drive temporarily or slip when the torque exceeds a certain threshold. This protects the spline shaft and other components from damage due to excessive torque.

Overall, spline shafts handle variations in torque and rotational force through their interlocking splines, load distribution capability, appropriate material selection, optimized spline profiles, surface finish, lubrication, design considerations, and, in some cases, overload protection mechanisms. These features ensure efficient torque transmission and enable spline shafts to withstand the demands of various mechanical systems.

What materials are commonly used in the construction of spline shafts?

Various materials are commonly used in the construction of spline shafts, depending on the specific application requirements. Here’s a list of commonly used materials:

1. Steel:

Steel is one of the most widely used materials for spline shafts. Different grades of steel, such as carbon steel, alloy steel, or stainless steel, can be employed based on factors like strength, hardness, and corrosion resistance. Steel offers excellent mechanical properties, including high strength, durability, and wear resistance, making it suitable for a broad range of applications.

2. Alloy Steel:

Alloy steel is a type of steel that contains additional alloying elements, such as chromium, molybdenum, or nickel. These alloying elements enhance the mechanical properties of the steel, providing improved strength, toughness, and wear resistance. Alloy steel spline shafts are commonly used in applications that require high torque capacity, durability, and resistance to fatigue.

3. Stainless Steel:

Stainless steel is known for its corrosion resistance properties, making it suitable for applications where the spline shaft is exposed to moisture or corrosive environments. Stainless steel spline shafts are commonly used in industries such as food processing, chemical processing, marine, and medical equipment.

4. Aluminum:

Aluminum is a lightweight material with good strength-to-weight ratio. It is often used in applications where weight reduction is a priority, such as automotive and aerospace industries. Aluminum spline shafts can provide advantages such as decreased rotating mass and improved fuel efficiency.

5. Titanium:

Titanium is a strong and lightweight material with excellent corrosion resistance. It is commonly used in high-performance applications where weight reduction, strength, and corrosion resistance are critical factors. Titanium spline shafts find applications in aerospace, motorsports, and high-end industrial equipment.

6. Brass:

Brass is an alloy of copper and zinc, offering good machinability and corrosion resistance. It is often used in applications that require electrical conductivity or a non-magnetic property. Brass spline shafts can be found in industries such as electronics, telecommunications, and instrumentation.

7. Plastics and Composite Materials:

In certain applications where weight reduction, corrosion resistance, or noise reduction is important, plastics or composite materials can be used for spline shafts. Materials such as nylon, acetal, or fiber-reinforced composites can provide specific advantages in terms of weight, low friction, and resistance to chemicals.

It’s important to note that material selection for spline shafts depends on factors such as load requirements, environmental conditions, operating temperatures, and cost considerations. Engineers and designers evaluate these factors to determine the most suitable material for a given application.

Che cos'è un albero scanalato e qual è la sua funzione principale?

Un albero scanalato è un componente meccanico costituito da una serie di creste o denti (chiamati scanalature) ricavati per lavorazione meccanica sulla superficie dell'albero. La sua funzione principale è quella di trasmettere la coppia, consentendo al contempo il movimento relativo o lo scorrimento dei componenti accoppiati. Ecco una spiegazione dettagliata:

1. Struttura e progettazione:

Un albero scanalato ha tipicamente una forma cilindrica con scanalature esterne o interne. L'albero scanalato esterno presenta scanalature sulla superficie esterna, mentre l'albero scanalato interno le ha sul foro interno. Il numero, le dimensioni e la forma delle scanalature possono variare a seconda dell'applicazione specifica e dei requisiti di progettazione.

2. Trasmissione della coppia:

La funzione principale di un albero scanalato è quella di trasmettere la coppia tra due componenti accoppiati, come ingranaggi, giunti o altri elementi rotanti. Le scanalature sull'albero si innestano con le corrispondenti scanalature sul componente accoppiato, creando un incastro meccanico. Quando viene applicata una coppia all'albero scanalato, l'innesto tra le scanalature assicura che la forza di rotazione venga trasferita dall'albero al componente accoppiato, consentendo al sistema di trasmettere potenza.

3. Movimento relativo:

A differenza di altri tipi di alberi, un albero scanalato consente un movimento relativo o uno scorrimento tra l'albero e il componente di accoppiamento. Questo movimento di scorrimento può essere assiale (lungo l'asse dell'albero) o radiale (perpendicolare all'asse dell'albero). Le scanalature forniscono un'interfaccia precisa e controllata che consente questo movimento mantenendo la trasmissione della coppia. Questa caratteristica è particolarmente utile in applicazioni in cui è necessario compensare spostamenti o disallineamenti assiali o radiali.

4. Distribuzione del carico:

Un'altra importante funzione di un albero scanalato è quella di distribuire uniformemente il carico applicato lungo la sua lunghezza. Le scanalature creano molteplici punti di contatto tra l'albero e il componente di accoppiamento, il che contribuisce a distribuire la coppia e le forze assiali o radiali su una superficie più ampia. Questa distribuzione del carico minimizza le concentrazioni di stress e riduce il rischio di usura prematura o rottura.

5. Versatilità e applicazioni:

Gli alberi scanalati trovano applicazione in diversi settori e sistemi, tra cui quello automobilistico, aerospaziale, meccanico e della trasmissione di potenza. Sono comunemente utilizzati in riduttori, sistemi di trasmissione, prese di forza, sistemi di sterzo e molti altri meccanismi rotanti in cui la trasmissione della coppia, il movimento relativo e la distribuzione del carico sono essenziali.

6. Considerazioni di progettazione:

Nella progettazione di un albero scanalato, è necessario considerare fattori quali i requisiti di coppia, la velocità, i carichi applicati e le condizioni ambientali. La geometria della scanalatura, la scelta del materiale e la finitura superficiale sono fondamentali per garantire un corretto innesto, la capacità di carico e la durata dell'albero scanalato.

In sintesi, un albero scanalato è un componente meccanico dotato di scanalature che consente la trasmissione della coppia, compensando al contempo il movimento relativo o lo scorrimento tra i componenti accoppiati. La sua funzione principale è quella di trasmettere la forza di rotazione, distribuire i carichi e consentire lo spostamento assiale o radiale in diverse applicazioni che richiedono un trasferimento di coppia preciso e flessibilità.


editor by CX 2024-01-29

ep

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