• Cast Iron Scaffolding Clamp british German Forged Type System 1
  • Cast Iron Scaffolding Clamp british German Forged Type System 2
  • Cast Iron Scaffolding Clamp british German Forged Type System 3
Cast Iron Scaffolding Clamp british German Forged Type

Cast Iron Scaffolding Clamp british German Forged Type

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Loading Port:
Tianjin
Payment Terms:
TT OR LC
Min Order Qty:
1000 kg
Supply Capability:
100000 kg/month

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Cast Iron Scaffolding Clamp british German Forged Type


Description


1.The scaffolding coupler is always used to connect the steel pipe as scaffolding system.

2.The often used coupler is swivel coupler and righ angle coupler .

3.We can provide types of scaffolding coupler according to your requirement.

4.Couoler can fix the 48.3mm scaffolding steel pipe tightly and make the whole scaffolding system more steadily.


Feature


(1)Excellent Anti-Breaking—Cold Pressed Steel

(2)Outstanding Resistance Deformation

(3)Strong Anti-Dropping Ability



Photo

Cast Iron Scaffolding Clamp british German Forged Type

Parameter


MaterialQ235,345steel
Size48.3mm*48.3mm
Surface finishGalvanized
Weight1.1kg around
StandardBS1139,EN74
Package25pcs/bag,steel pallet
Manufacture
As per customer requirement
MarketAfrica, South America, the Middle East and Asia

FAQ

Q: Are you a factory or trading company?    

We are a state-owned corporation in China,dealing with various kinds of building materials.We have our holding subsidiaries.

Q: Where is your factory located? How can I visit there?    

Our factory is located all around China.

Q: Can I get some samples?    

Sample is free, customer only pay freight for the first time. 

Q: Delivery?

10-30days. (5-15 containers)



Any question,feel free to contact us.


Q:How do steel tube couplers work in scaffolding?
The construction of scaffolding systems heavily relies on steel tube couplers, as they offer a dependable and secure link between steel tubes. These couplers are specifically designed to connect two tubes, enabling them to be aligned and fixed in place, thus creating a stable and robust scaffold structure. The functioning of steel tube couplers is relatively straightforward. They consist of two primary components: a bolt and a nut. The nut possesses two flat ends and is threaded, while the bolt is also threaded and has a tapered end. During the assembly of the scaffolding, two tubes are positioned next to each other, with their ends overlapping. Subsequently, the coupler is placed over the two tubes, and the bolt is inserted through the holes present in both tubes. Finally, the nut is screwed onto the bolt. As the nut is tightened onto the bolt, it effectively pulls the two tubes together, resulting in a secure and tight connection. The tapered end of the bolt aids in this process by gripping the inner walls of the tubes, thereby preventing any potential movement or slippage. Furthermore, the threaded design of the nut and bolt ensures that the connection remains firm and stable, even under substantial loads or vibrations. Additionally, steel tube couplers are designed to be versatile, accommodating various configurations and angles in scaffolding construction. They are available in different types, including swivel couplers, sleeve couplers, and putlog couplers, each serving a specific purpose in joining tubes together at different angles and orientations. To summarize, steel tube couplers play an essential role in scaffolding by establishing a secure and reliable connection between steel tubes. Their uncomplicated yet efficient design guarantees a strong and stable scaffold structure, enabling workers to safely access and work at elevated heights.
Q:How do right-angle couplers work in scaffolding?
Right-angle couplers play a vital role in scaffolding systems by connecting two perpendicular tubes at a 90-degree angle. They ensure stability and strength in the scaffolding structure. The working principle of right-angle couplers is simple. They consist of a body and a bolt. The body has two open ends that fit perfectly around the tubes, and the bolt secures the tubes together when tightened. To use a right-angle coupler, insert the tubes into the open ends of the body. Then, insert the bolt through the body and tighten it with a spanner or wrench. This action creates a firm connection between the tubes. One important aspect of right-angle couplers is their ability to grip the tubes securely. Teeth or serrations on the inside surface of the body bite into the tubes when the bolt is tightened, preventing slippage or movement. Right-angle couplers are designed to resist shear forces, which occur when perpendicular tubes try to slide against each other. They maintain the stability of the scaffolding structure. In addition to connecting tubes at right angles, right-angle couplers allow for flexibility in scaffolding design. They enable the construction of various configurations, enhancing the versatility and adaptability of the system. Overall, right-angle couplers are essential components in scaffolding systems. They provide a secure and stable connection between perpendicular tubes, ensuring the safety and strength of the structure in the construction industry.
Q:How do steel tube couplers ensure the proper alignment of scaffolding tubes?
Steel tube couplers ensure the proper alignment of scaffolding tubes by securely connecting them together, providing a strong and stable structure. These couplers are designed to fit tightly around the tubes, ensuring a snug fit and preventing any movement or misalignment. This ensures the overall stability and safety of the scaffolding system.
Q:Are there any special considerations when using steel tube couplers in extreme weather conditions?
Special considerations must be taken into account when using steel tube couplers in extreme weather conditions. Firstly, the temperature range that the couplers will be exposed to needs to be considered. Steel has a higher coefficient of thermal expansion compared to other materials, meaning it may expand or contract significantly in extreme temperatures. This can cause misalignment or stress on the couplers, potentially compromising their structural integrity. Therefore, it is crucial to select couplers specifically designed to withstand extreme temperature variations. Secondly, extreme weather conditions, such as heavy rain, snow, or high winds, can impose additional stress and loads on the couplers. This can result in increased corrosion, fatigue, or failure of the couplers. To minimize these risks, it is essential to choose couplers made from corrosion-resistant materials, such as stainless steel or galvanized steel, which exhibit better resistance to harsh weather conditions. Additionally, extreme weather conditions can impact the installation process of the steel tube couplers. Freezing temperatures, for instance, can present challenges in properly aligning and securing the couplers, potentially leading to improper connections. In such cases, it is advisable to adhere to the manufacturer's guidelines and consider utilizing specialized tools or techniques to ensure a proper and secure installation. Lastly, regular inspection and maintenance of the steel tube couplers are vital in extreme weather conditions. Exposure to harsh elements can accelerate wear and tear on the couplers, increasing the risk of failure over time. Regular inspections enable the identification of any signs of deformation, corrosion, or damage, facilitating timely repairs or replacements. To conclude, using steel tube couplers in extreme weather conditions necessitates careful consideration of factors such as temperature variations, corrosion resistance, proper installation techniques, and regular maintenance. By taking these special considerations into account, the structural integrity and longevity of the couplers can be ensured, even in challenging weather conditions.
Q:Can steel tube couplers be used in scaffolding projects with uneven loads?
To ensure the stability and safety of scaffolding projects with uneven loads, it is crucial to properly design and rate the steel tube couplers used. Careful calculation and distribution of the loads, along with the use of appropriate bracing and support systems, are necessary to maintain stability. Regular inspections and maintenance are important for detecting any signs of strain or failure. Consulting with experts in scaffolding design and construction is advisable, particularly for projects with uneven loads. Ultimately, proper planning, design, and maintenance are vital for the safety and stability of the scaffolding structure.
Q:Can steel tube couplers be used for scaffolding structures that require frequent adjustments or modifications?
Indeed, steel tube couplers possess the capability of being employed in scaffolding structures necessitating regular adjustments or modifications. Specifically devised to link and firmly fasten steel tubes, these couplers guarantee a robust and dependable connection. Furthermore, they facilitate effortless disassembly and reassembly, rendering them exceptionally suitable for scaffolding structures frequently in need of alterations or adaptations. The couplers can be effortlessly detached and repositioned to accommodate modifications in the height, width, or layout of the scaffolding structure. This adaptability and flexibility have established steel tube couplers as a widely favored option for scaffolding projects entailing frequent modifications.
Q:How do you ensure the stability and resistance to lateral forces of scaffolding structures using steel tube couplers?
Steel tube couplers play a vital role in ensuring the stability and resistance to lateral forces of scaffolding structures. They connect various components of the system, such as tubes, ledgers, and transoms. Steel tube couplers provide several benefits that enhance stability and resistance: 1. Strength and Sturdiness: Made from high-quality steel, these couplers provide exceptional strength and rigidity to the entire scaffolding structure. This guarantees that the structure can withstand lateral forces, like wind or accidental impacts, without deforming or failing. 2. Secure Fastening: Steel tube couplers establish a secure connection between different components of the scaffolding system. They are designed to tightly grip the tubes, preventing any movement or slippage. This ensures that the structure remains stable, even when subjected to lateral forces. 3. Multiple Connections: Steel tube couplers are used at various points throughout the scaffolding structure. By using multiple couplers at each joint, the overall stability and resistance to lateral forces significantly increase. This creates a robust and secure scaffolding system. 4. Precise Alignment: Steel tube couplers enable precise alignment of the tubes and other components in the scaffolding system. This ensures that all elements are correctly connected and aligned, reducing the risk of weak points that could compromise stability or resistance to lateral forces. 5. Compliance with Safety Standards: Steel tube couplers are manufactured in accordance with industry safety standards and regulations. These standards ensure that the couplers are tested and approved to withstand specific loads and forces. By using approved couplers, the stability and resistance to lateral forces of the scaffolding structure are enhanced. 6. Regular Inspection and Maintenance: Regular inspection and maintenance of steel tube couplers are crucial to ensure their proper functioning and effectiveness. This includes checking for signs of wear, corrosion, or damage and promptly replacing any faulty couplers. Regular maintenance ensures that the couplers continue to provide the necessary stability and resistance to lateral forces. Overall, steel tube couplers are indispensable components in scaffolding structures for ensuring stability and resistance to lateral forces. Their strength, secure connection, precise alignment, compliance with safety standards, and regular maintenance contribute to the creation of a strong and reliable scaffolding system.
Q:What are the common installation methods for steel tube couplers in scaffolding?
The common installation methods for steel tube couplers in scaffolding include the wedge method, the bolted method, and the gravity method. In the wedge method, the coupler is slid onto the tube and secured by hammering a wedge into the groove. The bolted method involves using bolts and nuts to tighten the coupler onto the tube. Lastly, the gravity method relies on the weight of the scaffolding components and the friction between the coupler and tube to hold them together without additional securing measures.
Q:Are steel tube couplers adjustable or fixed in position once installed?
Once steel tube couplers are installed, they are typically fixed in place. These couplers are specifically engineered to establish a secure and enduring linkage between two steel tubes or pipes. Their predominant application lies in construction, infrastructure, and manufacturing projects that necessitate a robust and lasting connection. Once the coupler is affixed, it is not designed to be modifiable or effortlessly detachable. The connection formed by the coupler is intended to be indissoluble and impervious to any movement or displacement. Consequently, it is crucial to meticulously strategize and situate the couplers prior to installation to guarantee the desired alignment and configuration of the steel tubes.
Q:What does the scaffold symbolize in The Scarlet Letter?
It simply symbolizes the theme of public humiliation in The Scarlet Letter. In case you didn't know, they put people on the scaffold, had them bend over with their head in a lock, and had things thrown at them. This was the way they punished evil-doers.

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