Cast Iron Sturdy Mooring Ballard

Product Details
Customization: Available
Processing Object: Metal
Molding Style: Casting
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  • Cast Iron Sturdy Mooring Ballard
  • Cast Iron Sturdy Mooring Ballard
  • Cast Iron Sturdy Mooring Ballard
  • Cast Iron Sturdy Mooring Ballard
  • Cast Iron Sturdy Mooring Ballard
  • Cast Iron Sturdy Mooring Ballard
Find Similar Products
  • Overview
  • Company Profile
  • ADVANTAGE
  • Product Description
  • Detailed Photos
  • Packaging & Shipping
  • FAQ
  • A GUIDE TO FORGING PARTS
  • APPLICATION
Overview

Basic Info.

Model NO.
C006
Molding Technics
Gravity Casting
Application
Machinery Parts
Material
Steel
Heat Treatment
Tempering
Surface Treatment
Polishing
Forging Tolerance
+/-0.5mm
Standard
BS
Drawing Format
Pdf, CAD, STP, Dwg...
Logo
Available
MOQ
1 PCS
Delivery Time
30 Days
Size
Customized
Drawing
We Can Design
Shipping Way
Express, Sea, Air
Transport Package
Wooden Box
Specification
customized as drawing, specification
Trademark
DXCMC
Origin
China
HS Code
7308900000
Production Capacity
5000000 Tons Per Year

Packaging & Delivery

Package Size
50.00cm * 50.00cm * 50.00cm
Package Gross Weight
10.000kg

Product Description

Company Profile

 


Botou Casting Machinery Processing Co., Ltd, the illustrious successor of "Cangzhou Metallic Crafts Co., Ltd." Founded in 2008, Botou Casting Machinery Processing Co., Ltd proudly stands as a beacon of innovation and excellence in the realms of Casting, Forging, and Stamping, offering solutions to a myriad of industries worldwide. Celebrated for its unwavering dedication to timely deliveries and competitive pricing, our esteemed company specializes in the artful crafting of forging parts with unparalleled precision, employing the cutting-edge closed die method. We meticulously inspect every component, subjecting it to rigorous testing to ensure it meets and exceeds the highest quality standards. Positioned as a leading manufacturer and exporter, we are virtuosos in the intricate art of Hot Forging, proficient in both the open die and closed die techniques, as well as Cold Forging. Our extensive and diverse expertise spans a broad spectrum of forging components, serving as essential elements in industries such as mining, construction, automotive, and oil & gas, among many others.

ADVANTAGE

 

Cast Iron Sturdy Mooring Ballard
To solidify our esteemed position as a trailblazer in the casting industry and to further refine our technological prowess, Botou Casting Machinery Processing Co., Ltd is audaciously embracing the most cutting-edge automated forging technology available today. With this forward-thinking adoption of automation, our facility is transforming various phases of the forging procedure, significantly reducing reliance on manual efforts. This visionary strategy guarantees flawless documentation, thorough analysis, and expedited handling of production data. The result? A groundbreaking production line that delivers remarkable efficiency, unparalleled flexibility, and pioneering advancements in the realm of manufacturing.
 
Product Description

Cast Iron Sturdy Mooring Ballard

At Botou Casting Machinery Processing Co., Ltd, we pride ourselves on being masters in the artful creation of a vast array of metal materials that include iron, aluminum, steel, and brass. Our expansive and highly adaptable manufacturing capabilities empower us to deliver supreme components, precisely engineered and tailored to align with your exclusive specifications and demands. Experience the excellence of our top-tier production that guarantees the highest standards of quality and performance.
Prepare to be impressed by our unwavering commitment to quality and precision at Botou Casting Machinery Processing Co., Ltd, where we expertly manufacture a wide variety of metal materials, including iron, aluminum, steel, and brass. Our unparalleled expertise ensures that you receive only the finest grade products, meticulously customized for your unique applications and specific needs. Trust us to deliver excellence with precision every time.
Cast Iron Sturdy Mooring Ballard

Mooring Bollard: The Essential Equipment for Safe Docking
Mooring bollards are an essential piece of equipment for any vessel that needs to dock safely. These bollards are used to secure a vessel to the dock, preventing it from drifting away due to wind or current. They are typically made of steel or cast iron and are designed to withstand the forces exerted by a vessel. In this article, we will explore the different types of mooring bollards, their uses, and the factors to consider when choosing the right bollard for your vessel.
Types of Mooring Bollards
There are several types of mooring bollards available, each with its own unique features and benefits. The most common types of mooring bollards include:
1. Single Bollard: This is the most basic type of mooring bollard, consisting of a single post that is fixed to the dock. It is suitable for smaller vessels and is easy to install.
2. Double Bollard: This type of bollard consists of two posts that are fixed to the dock. It is suitable for larger vessels and provides better stability than a single bollard.
3. T-Head Bollard: This type of bollard is shaped like a T and is used for vessels that need to dock perpendicular to the dock. It provides better stability than a single bollard and is suitable for larger vessels.
4. Cleat Bollard: This type of bollard has a cleat attached to it, which is used to tie off the vessel's lines. It is suitable for smaller vessels and is easy to use.
Uses of Mooring Bollards
Mooring bollards are used to secure a vessel to the dock, preventing it from drifting away due to wind or current. They are also used to control the movement of the vessel while it is docked. Mooring bollards are essential for safe docking and are used in a variety of industries, including:
1. Shipping: Mooring bollards are used to secure cargo ships to the dock while they are being loaded or unloaded.
2. Fishing: Mooring bollards are used to secure fishing boats to the dock while they are being loaded or unloaded.
3. Recreation: Mooring bollards are used to secure recreational boats to the dock while they are not in use.
Factors to Consider When Choosing a Mooring Bollard
When choosing a mooring bollard, there are several factors to consider, including:
1. Size: The size of the bollard should be appropriate for the size of the vessel. A larger vessel will require a larger bollard to provide adequate stability.
2. Material: The material of the bollard should be appropriate for the environment in which it will be used. Steel bollards are suitable for most environments, while cast iron bollards are more suitable for harsh environments.
3. Installation: The bollard should be easy to install and should be compatible with the dock's design.
4. Load Capacity: The bollard should be able to withstand the forces exerted by the vessel. The load capacity of the bollard should be appropriate for the size and weight of the vessel.
5. Maintenance: The bollard should be easy to maintain and should be resistant to corrosion and wear.
Conclusion
Mooring bollards are an essential piece of equipment for any vessel that needs to dock safely. They are available in several types, each with its own unique features and benefits. When choosing a mooring bollard, it is important to consider factors such as size, material, installation, load capacity, and maintenance. By choosing the right mooring bollard, you can ensure the safety of your vessel while it is docked.

Now what we have done are according requested,like tensile 150tons or others.

Detailed Photos



Cast Iron Sturdy Mooring BallardCast Iron Sturdy Mooring BallardCast Iron Sturdy Mooring BallardCast Iron Sturdy Mooring BallardCast Iron Sturdy Mooring BallardCast Iron Sturdy Mooring BallardCast Iron Sturdy Mooring Ballard

 

Packaging & Shipping

 

At Botou Casting Machinery Processing Co., Ltd, our commitment to exceptional service is embodied in our packaging solutions. We diligently envelop each precious product in robust, tailor-made wooden cases, ensuring that your order graces your hands in pristine condition. Our approach is one of adaptability and personalization, as we wholeheartedly embrace and fulfill any unique packaging requests you may have, crafting each package to perfectly align with your specific needs. We approach these requests with enthusiasm, providing unparalleled attention to detail. Our unwavering dedication to supreme quality surpasses the realm of packaging, encompassing every facet of our comprehensive service. From the onset of your initial consultation to the seamless execution of shipping, we manage the entire process with meticulous precision. Our streamlined operations guarantee the swift dispatch of your order within an impressive timeframe of merely 30 days. We meticulously orchestrate every logistical element, ensuring a seamless and punctual delivery directly to your designated port, no matter where you are in the world.
Cast Iron Sturdy Mooring Ballard

 

FAQ

 

1: What information does the quotation need?

Pls. offer your drawings and/or samples, quantity and packing's requirements.
2: What's lead time for samples and products?

Lead time for samples: 30-70days depend on the structure of the part and other requirements on heat treatment, machining, surface
treatment and so on.
Mass production lead time: 35-70days depend on products' characteristics and quantity.
3: What is the requirement on payment?

Tooling Cost:100% T/T advanced
Payment for the Order:30% deposit,70% to be paid before shipment.
4: What are surface treatments available?

Powder coating, Shoot Blasting, Painting, Polishing, Acid Pickling, Anodizing, Zinc Plating, Hot-dip Galvanizing, Electrophoresis,
Chrome Plating
5: What is the packing?

Normal buck packing suitable for shipment by sea and by air.
We also organize packing according to customers' requirements.

A GUIDE TO FORGING PARTS

 

For centuries, the timeless art of forging has reigned supreme in the world of metalworking, celebrated for its unparalleled efficiency and effectiveness. This age-old technique masterfully transforms raw metal without the need to melt it. Instead, the metal remains solid as skilled artisans expertly employ sophisticated techniques like hammering, rolling, or pressing, each delivering precise and stunning shaping. Though each method boasts its unique advantages, they all share the foundational principle of heating metal to soaring temperatures, enabling effortless and accurate crafting.

In the realm of metalworking, forging takes center stage, surpassing techniques like casting by crafting components with extraordinary physical properties, such as remarkable tensile strength and cost-effectiveness. These advantages are born from the refinement of the metal's intricately structured grain. Unlike casting, forging avoids melting the material, instead harnessing percussive or compressive forces to direct the grain, following the natural flow of the final component. Consequently, this process yields parts that are significantly stronger than those created through machining or casting.

CMC Forge is proud to offer these remarkable advantages to clients across diverse industries, providing a comprehensive suite of expert forging services. Each service is meticulously tailored to meet a wide array of application needs, ensuring that every client receives the highest standard of quality and precision.

THE COMPLEX AND INTRICATE FORGING PROCESS

The forging process is a tapestry of numerous subtypes, resulting in subtle variations in the product shaping steps. However, most forging processes adhere to a cohesive and overarching framework.

  • At the heart of forging lies the artful use of dies to compress and shape metal with precision. The selection of tools is pivotal to achieving the desired form, and often, custom die designs are meticulously crafted to ensure the final product meets exacting specifications. For extensive production runs, this may involve crafting and deploying multiple dies for specialized tasks such as flattening, forming, or cutting.
  • Once the meticulous planning and toolmaking phases are complete, the true artistry of metalworking begins. Initially, the workpiece, or billet, is carefully cut to size and then delicately heated to the optimal temperature, priming it for the skillful dance of forming.
  • At this juncture, the forging methods diverge into their distinct paths. Depending on the chosen technique, the billet may be heated and pressed between masterfully crafted die sets or placed within a molded cavity for precision compression. Alternatively, in cold forging, the artisan deftly manipulates the billet at ambient temperature using hammers, showcasing a striking display of craftsmanship.
  • Ultimately, certain finishing touches may be necessary to achieve perfection. For instance, some dies might produce excess material, known as flashing, which must be meticulously trimmed to ensure a refined and pristine finish, leaving behind a masterpiece of metalwork.
APPLICATION

 

Material Characteristics Application
Stainless Steel Corrosion-resistant
  • Used in steam turbines, pressure vessels, and other applications in petrochemical, medical, food processing industries.
  • Used at temperatures up to 1800 F under low stress and to 1250 F under high-stress.
Low Carbon and Low Alloy Steel Easily processed
Good mechanical properties
Low material cost
  • Widely used at temperature lower than 900 F.
HSLA/Microalloy Steel Good mechanical properties
Low material cost
Simple thermomechanical treatment
  • Mainly used at temperature lower than 400 F for structural and engine applications in the aircraft and transportation industries. 
Aluminum Good strength-to-weight ratio
Readily forged
  • Mainly used at temperature lower than 400 F for structural and engine applications in the aircraft and transportation industries. 
Aluminum A356.0 Good strength-to-weight ratio
Readily forged
  • Mainly used at temperature lower than 400 F for structural and engine applications in the aircraft and transportation industries. 
Nickel-Base Superalloy Oxidation resistance
Creep-rupture strength
  • Used at temperature between 1200 and 1800 F.
  • Used for structural shapes, turbine components, fittings, and valves. 
Titanium High strength
Low density
Excellent corrosion resistance
  • About 40% lighter in weight compared to steel parts.
  • Used primarily in the temperature services to 1000 F. 
  • Used for aircraft engine components and structures, ship components, and valves and fitting in transportation and chemical industries.

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