• Adjustable Galvanized Steel Prop scaffolding System 1
Adjustable Galvanized Steel Prop scaffolding

Adjustable Galvanized Steel Prop scaffolding

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Loading Port:
Tianjin
Payment Terms:
TT OR LC
Min Order Qty:
10000 PCS
Supply Capability:
10000 PCS/month

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Quick Details

Model Number:

SP47.5-59.5 Steel Prop,SP47.5-59.5 Prop





Material:

Q235

Color:

dark red, green, blue or as you required

Surface treatment:

painted, powder coated, galvanized

Certification:

BV & SGS

Length:

1.8-3.2m; 2.0-3.5m; 2.2-3.9m

Thickness:

1.8/2.0/2.2/2.5/3.0mm

Diameter:

47.5 - 59.5mm





Packaging & Delivery

Packaging Detail:1. Steel Prop is packed in bundle and wrapped with iron bar. 2. Usually, one 20 GP container can load around 1500-2100pieces of props.
Delivery Detail:10-20 days after deposit

Specifications

1.Steel prop 
2.High quality & high quality 
3.Heavy duty 
4.Painted or pre-galvanized 
5.It used widely

Abstract

 

Application: support equipment in construction, mining, tunnel, bridge.

 

Description

 

1.An adjustable steel prop consists of internal tube, external tube, prop nut, base

plate and top plate.

 

2. Adjustable steel prop can be adjusted to any length within its range which is

convenient for using.

 

3.With its simple structure, adjustable steel prop is easy to assemble and dismantle

which can help to save your time, energy,and cost.

 

4.We have several kinds of adjustable steel prop which are Middle East type adjustable

steel prop, Spanish adjustable steel prop and Italian type adjustable steel prop.


Q:The transformation of the old house can support it with channel beam below
Load on the surface of the plate and the manufacturing process of angle steel; load distribution on angle steel
Q:How do you determine the required number of steel props for a project?
In order to calculate the necessary quantity of steel props for a project, there are several factors that need to be taken into consideration. First and foremost, it is crucial to evaluate the load that the props will be supporting. This involves assessing the weight of the structure or formwork that the props will be utilized to support. The total weight that each prop will bear must be calculated to ensure they have sufficient capacity to safely handle the load. Subsequently, the spacing between the props should be considered. The distance between the props depends on the size and weight of the structure or formwork, as well as the type of props being employed. Generally, for heavier loads or larger structures, the spacing between props should be smaller. The height of the structure or formwork is another essential factor to take into account. The taller the structure, the greater the number of props required to ensure stability and prevent any sagging or deflection. The height-to-base ratio is often used as a means of determining the number of props needed, with higher ratios necessitating more props. Moreover, the type and quality of the props should be factored in. Different props possess varying load capacities, therefore it is vital to review the manufacturer's specifications to ensure that props capable of safely supporting the expected load are being utilized. Finally, it is important to consult any applicable codes or regulations governing the use of props in your region. These regulations may provide specific guidelines or requirements for determining the number of props needed for a particular project. By carefully considering the load, spacing, height, prop type, and relevant regulations, the required number of steel props for a project can be accurately determined. It is always advisable to seek the guidance of a structural engineer or a professional experienced in formwork and scaffolding to guarantee the safety and efficiency of the prop installation.
Q:How to calculate the weight per meter of steel support
16 thick 1 m 0.427 m 0.592 m 0.6674 m 1.1586 m 1.5 m 1.672
Q:Subway construction steel support axial force design value of KN/m, the construction to be converted into MPa, how to calculate?
If:The design of prestress value is 300KNJack cross-sectional area of 0.017671 square metersApply prestress = Design prestress value / Jack cross-sectional area =300/0.017671/1000=1.70MPa
Q:What is steel and wood support
When it comes to brace generally refers to Rachel steel purlin, is thick bar, but also to enhance the stability of the purlin purlin, not easy to lose in the external force under certain failure. Section purlin are generally H steel, C shape, Z shape, is reducing cabin panel span and fixed roof panel. Steel support is a kind of steel structure, which is used as a supporting component, which is used to support the structure of large load
Q:How do you ensure proper communication between different work teams using steel props?
To ensure proper communication between different work teams using steel props, it is essential to establish clear channels of communication and regularly communicate with all team members involved. This can be achieved through various means, such as daily team meetings, email updates, project management software, or even in-person discussions. It is crucial to encourage an open and inclusive environment where team members feel comfortable sharing information and asking questions. Additionally, providing detailed instructions, guidelines, and documentation regarding the use of steel props can help ensure proper and consistent communication among teams.
Q:Can steel props be used in underwater construction projects?
Underwater construction projects can utilize steel props effectively. These props are commonly employed in construction to provide temporary support to structures or excavations. Their robust design allows them to endure heavy loads and grant stability to the construction site. The application of steel props in underwater construction projects encompasses various purposes. They can lend support to temporary structures like cofferdams or caissons, which establish a dry working environment underwater. Moreover, steel props prove useful in reinforcing underwater pipelines, platforms, and other structural elements. Nevertheless, several factors must be taken into account when employing steel props in underwater construction projects. It is crucial to ensure that these props are adequately coated or shielded against corrosion since water exposure can expedite the corrosion process. Furthermore, the material and design of the props should be appropriate for the underwater setting, considering factors such as water pressure, currents, and the presence of marine life. In addition, specialized equipment and expertise are necessary for the installation and maintenance of steel props in underwater construction projects. The involvement of divers or remotely operated underwater vehicles (ROVs) may be required for underwater installation, adjustment, or removal of the props. In conclusion, while steel props can be utilized in underwater construction projects, careful attention should be given to their design, corrosion protection, and the expertise and equipment needed for their installation and maintenance.
Q:What are the different types of steel prop connectors available?
Various construction and support applications offer a range of steel prop connectors to choose from. Some commonly utilized types comprise: 1. Swivel Coupler: Featuring a swiveling mechanism, this connector enables flexibility and rotation between two steel props. It is commonly employed to construct angled or sloping structures. 2. Fixed Coupler: This connector, as the name implies, restricts movement and rotation between two steel props. It creates a rigid connection, typically used in straight structures or situations where flexibility is unnecessary. 3. Sleeve Coupler: Used to join two steel props end to end, this connector ensures a continuous and secure connection. It is often utilized to extend the length of props or create longer support structures. 4. Beam Clamp: Designed to attach steel props to beams or other structural members, this connector provides a secure connection point. It is frequently employed in formwork systems or scaffolding applications. 5. Girder Coupler: Specifically engineered for connecting steel props to girders or horizontal beams, this connector facilitates the transfer of heavy loads. It offers a robust and stable connection. 6. Prop to Prop Connector Plate: This connector establishes a stable connection between two steel props. Usually consisting of a steel plate with holes for securing the props using bolts or pins. 7. Prop to Wall Connector Plate: Similar to the prop to prop connector plate, this type of connector secures a steel prop to a wall or vertical surface. It provides stability and support in various construction applications. These examples represent only a fraction of the steel prop connectors available in the market. The selection of a connector depends on the specific requirements of the construction project, considering factors such as load-bearing capacities, structural design, and overall safety.
Q:How do you determine the required thickness of a steel prop?
Several factors need to be taken into account when determining the necessary thickness of a steel prop. These factors include the load the prop will bear, the dimensions of the prop, the properties of the steel, and any safety considerations. To begin with, it is crucial to assess the load that the prop will support. This can be accomplished by calculating the weight of the structure or object being supported. Engineering calculations or consulting relevant building codes and standards can be utilized to determine the load. The dimensions of the prop, specifically its length and height, also play a significant role in determining the required thickness. Longer and taller props will experience higher bending moments and deflections, which must be accounted for during the design process. The maximum bending stress and deflection can be calculated using appropriate structural analysis equations and formulas. Furthermore, the properties of the steel being used must be considered. Different grades of steel possess varying levels of strength and stiffness. It is important to select a grade that can withstand the calculated load and deflection without experiencing failure. In addition, safety factors must be taken into consideration. These factors, which are typically outlined in building codes or industry standards, provide an extra level of safety. They ensure that the prop can withstand unexpected loads or changes in operating conditions. Once all of these factors have been evaluated, the thickness of the steel prop can be determined through structural analysis and calculations. This may involve utilizing suitable formulas, equations, or computer-aided design (CAD) software to ensure that the prop possesses adequate strength and stiffness to safely support the intended load. In conclusion, determining the necessary thickness of a steel prop involves considering the load, dimensions, material properties, and safety factors. By conducting structural analysis and calculations, the appropriate thickness can be determined to ensure the prop is safe and reliable for its intended use.
Q:I would like to ask the steel support line load is 420kn/m (design value), 20 meters deep foundation pit, steel support diameter of 609, wall thickness of 16mm
So, what you said is the foundation pit excavation, pipe ends supporting, then why have load and steel 420kN/m?Do you want to build a house above the shop?

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