China OEM Carbon Steel Alloy Casting Worm Wheel Gear gear patrol

Product Description

 Carbon Steel Alloy Casting Worm Wheel Gear

 

What We Do?

Glad to tell you we can manufacture all kind of casting parts by drawing and samples.

If you have any inquiry, please feel free to contact us.

Your inquiry of iron casting, will be highly appreciated.

Product Description

Material  Gray iron or ductile iron,stainless steel,brass,aluminum etc
standard DIN, ASTM, BS, JIS etc.
process sand casting,resin bonded casting, investment casting(lost wax casting), die casting etc
Weight range 0.5-500kg
Surface treatment painting, polishing, heat treatment, plaining or galvanization etc.
 
Machining complete machining such as Machining center, CNC, Lathe, Milling machine,drilling etc.
 
Size and design As per the customer’s drawings and requirements
As per the customer’s samples
Packing Seger normal export packaging
As per customers’ requirements
Inspection Foundry in-house
Third Party inspection available CHINAMFG customers requirements

 

Detailed Photos

 

 

 

 

 

 

QC Control

 

We can supply products with the following test reports:

1) Chemical composition report

2) Tensile strength report

3) Brinell hardness report

4) Metallographic structure report

5) Key dimension checking report

6) Full dimension report

7) Third part test report

We will design each speical checking tooling control key dimension during production to ensure each key dimension under control.

Packaging & Shipping

 

A>Seger packing: Carton box+wooden case/pallet/iron cage
B>As pre client’s special requirement

Our Service

 

*A “bespoke” service to make castings and forgings to customers specific requirements with drawings, samples

*Market-oriented, different grades of products geared to the needs of different customers

*Advance equipment, professional technology and serious inspection procedure to ensure good quality

*In-time delivery will always satisfy customers” needs

*Best after-sale service all the time for a long trade cooperation term

FAQ

 

Q1: What’s the lead time?
A1: In general, the lead time is about 30~40 days for opening new moulds and mass production.
Q2: What file formats does CHINAMFG accept for drawings:
A2: The company ca accept a range of formats for drawings, but the main ones are detailed below: 2-D PDF AND TIFF 3-D STL, IGES, STEP, Solidworks, etc
Q3: Is it possible to visit CHINAMFG to view it’s manufacturing process?
A3: We are extremely proud of our facility and existing customers to visit our company. We think you will be impressed by us, as well as the warm welcome from our friendly, experienced team.

For more details,pls feel free to contact lisa.

24 hours service for you.

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Type: Clay Dry Sand
Casting Method: Directional Crystallization
Sand Core Type: Resin Sand Core
Samples:
US$ 2/Piece
1 Piece(Min.Order)

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Order Sample

Customization:
Available

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Customized Request

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Shipping Cost:

Estimated freight per unit.







about shipping cost and estimated delivery time.
Payment Method:







 

Initial Payment



Full Payment
Currency: US$
Return&refunds: You can apply for a refund up to 30 days after receipt of the products.

gear pump

Can gear pumps be used in hydraulic systems?

Yes, gear pumps can be used in hydraulic systems. Here’s a detailed explanation:

1. Positive Displacement Operation:

Gear pumps operate on the principle of positive displacement, which makes them suitable for hydraulic applications. In hydraulic systems, a pump is required to deliver a consistent flow of fluid to actuate various components such as cylinders or motors. Gear pumps provide a steady and predictable flow rate, ensuring reliable operation of hydraulic systems.

2. Compact and Lightweight:

Gear pumps are often compact and lightweight compared to other types of hydraulic pumps. This makes them suitable for applications where space is limited or weight needs to be minimized. Gear pumps can be easily incorporated into hydraulic systems without adding excessive bulk or weight.

3. Cost-Effective:

Gear pumps are generally more cost-effective compared to other types of hydraulic pumps. They have a simple design with fewer components, which makes them easier to manufacture and maintain. This cost-effectiveness makes gear pumps a popular choice for a wide range of hydraulic applications.

4. Reliability:

Gear pumps are known for their reliability and durability. They have a robust construction with fewer moving parts, which reduces the chances of mechanical failure. Gear pumps can withstand high pressures and provide consistent performance over a long service life, making them well-suited for demanding hydraulic systems.

5. Viscosity Range:

Hydraulic systems may involve fluids with varying viscosities. Gear pumps are capable of handling a wide range of fluid viscosities, from low-viscosity hydraulic oils to more viscous fluids. The positive displacement action of gear pumps ensures a consistent flow rate regardless of the fluid viscosity, allowing them to adapt to different hydraulic fluid requirements.

6. Limitations:

While gear pumps offer several advantages, they also have some limitations in hydraulic systems. Gear pumps are generally not suitable for high-pressure applications where more precise flow control is required. They may produce higher levels of noise and have lower overall efficiency compared to some other types of hydraulic pumps.

In summary, gear pumps can be effectively used in hydraulic systems due to their positive displacement operation, compactness, cost-effectiveness, reliability, and ability to handle a range of fluid viscosities. However, for specific high-pressure or precision flow control requirements, alternative hydraulic pump technologies may be more suitable.

gear pump

Can gear pumps handle abrasive and corrosive fluids effectively?

Gear pumps are generally not the most suitable choice for handling abrasive and corrosive fluids effectively. Here’s a detailed explanation:

1. Abrasive Fluids:

Abrasive fluids contain solid particles that can cause wear and damage to pump components. Gear pumps have tight clearances between the gear teeth and the pump housing, and the presence of abrasive particles can lead to accelerated wear and reduced pump efficiency. The abrasive particles can cause erosion of the gears, housing, and other internal surfaces, leading to increased clearances and decreased pump performance over time. While gear pumps may be able to handle some mildly abrasive fluids, they are not designed for heavy-duty abrasive applications.

2. Corrosive Fluids:

Corrosive fluids can chemically attack and degrade the materials used in gear pumps. Many gear pumps are constructed using materials such as cast iron, stainless steel, or bronze, which offer good resistance to corrosion in a wide range of fluids. However, highly corrosive fluids, such as strong acids or alkalis, can still cause damage to these materials over time, leading to leaks, reduced performance, or even pump failure. In corrosive fluid applications, it is often necessary to use specialized materials or corrosion-resistant coatings to protect the pump components.

3. Alternative Options:

For handling abrasive and corrosive fluids effectively, alternative pump technologies are often preferred. Some options include:

  • Diaphragm Pumps: Diaphragm pumps use a flexible diaphragm to handle abrasive and corrosive fluids. The diaphragm separates the fluid from the pump components, protecting them from direct contact with the fluid.
  • Peristaltic Pumps: Peristaltic pumps use a flexible tube or hose to transport fluids. The fluid only comes into contact with the tube, which can be made from materials resistant to abrasion and corrosion.
  • Centrifugal Pumps: Centrifugal pumps are often used for abrasive and corrosive fluids. They rely on the centrifugal force generated by a rotating impeller to move the fluid, and they can be constructed with materials that withstand the corrosive effects of the fluid.
  • Progressive Cavity Pumps: Progressive cavity pumps use a rotating screw-like rotor inside a rubber stator to transfer fluids. The design allows for gentle handling of abrasive and corrosive fluids without significant wear or damage.

In summary, while gear pumps can handle some mildly abrasive fluids and certain corrosive fluids, they are not typically the most effective choice for handling highly abrasive or corrosive fluids. For such applications, alternative pump technologies that are specifically designed to handle abrasive or corrosive fluids should be considered to ensure optimal performance, longevity, and reliability.

gear pump

What are the advantages of using gear pumps for fluid transfer?

Gear pumps offer several advantages for fluid transfer applications. Here’s a detailed explanation of the advantages:

1. Positive Displacement:

One of the key advantages of gear pumps is their positive displacement nature. They deliver a fixed volume of fluid for each revolution of the gears, ensuring accurate and consistent flow rates. This feature is particularly beneficial in applications that require precise flow control and metering.

2. Wide Viscosity Range:

Gear pumps can handle a wide range of fluid viscosities, making them versatile for various applications. They can efficiently transfer both low-viscosity fluids, such as water and light oils, as well as higher-viscosity fluids, including heavy oils and lubricants. This flexibility makes gear pumps suitable for industries with diverse fluid handling needs.

3. Self-Priming Capability:

Many gear pumps are self-priming, meaning they can create a vacuum and draw fluid into the pump without the need for external priming. This feature simplifies the setup and operation of the pump, particularly in situations where the pump may be located above the fluid source.

4. Compact and Space-Efficient:

Gear pumps have a relatively compact design and occupy less space compared to other pump types. They consist of fewer components, making them suitable for applications with space constraints or where portability is important. The compact size also facilitates easy installation and integration into existing systems.

5. High Efficiency:

Gear pumps are known for their high efficiency, especially at lower flow rates and higher pressures. They can achieve high volumetric efficiency due to the positive engagement of the gears, resulting in minimal internal slippage and leakage. This efficiency translates to reduced energy consumption and operating costs.

6. Reliable Operation:

Gear pumps are reliable and have a long service life when properly maintained. They have a simple and robust design, with fewer moving parts compared to other pump types. This design minimizes the risk of mechanical failure and reduces the need for frequent repairs or replacements.

7. Cost-Effective:

Due to their simple design, ease of manufacturing, and widespread availability, gear pumps are often cost-effective compared to other pump technologies. They offer a favorable balance between performance, reliability, and affordability, making them a popular choice in many industries.

8. Versatility:

Gear pumps are versatile and find applications in a wide range of industries and fluid transfer processes. They can handle various liquids, including corrosive and abrasive fluids, chemicals, fuels, lubricants, and more. The ability to accommodate different fluids and viscosities makes gear pumps adaptable to diverse industrial requirements.

In summary, gear pumps offer advantages such as positive displacement, wide viscosity range, self-priming capability, compact size, high efficiency, reliability, cost-effectiveness, and versatility. These advantages make gear pumps a preferred choice for fluid transfer applications across numerous industries.

China OEM Carbon Steel Alloy Casting Worm Wheel Gear gear patrolChina OEM Carbon Steel Alloy Casting Worm Wheel Gear gear patrol
editor by Dream 2024-05-16

gear pump

As one of leading gear pump manufacturers, suppliers and exporters of products, We offer gear pump and many other products.

Please contact us for details.

Mail:gear-pump.top

Manufacturer supplier exporter of gear pump

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