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An insulating device made of glass called a glass insulator is used to support and shield wires. Glass electrical insulators are more insulating and more resistant to aging than traditional ceramic insulators. The premium glass used in our company's glass insulators is given exceptional strength and impact resistance through a special manufacturing process. Harsh environmental factors like humidity, pollution, and extreme temperatures can't harm this kind of insulator. Types of Glass Electrical Insulator Standard glass insulator, Anti-Fog/Anti-Pollution glass insulator, Aerodynamic glass insulator all could be supplied in our company, if you have any demand for the Anti-fog/Anti-Pollution toughened glass insulator, please contact us freely.
Insulators for Sale Discover different types of insulators at YONGGUANG, one of the leading insulators manufacturers, featuring porcelain electrical insulators, composite insulators, glass electrical insulators, disk-type insulators, composite pin insulators, shackle-type insulators, and stay-type insulators. Our diverse power line insulators cater to varied applications, ensuring optimal performance and reliability in power transmission systems. Electrical Safety Transmission line insulators prevent the flow of electricity, reducing the risk of electrical shocks and ensuring the safe operation of electrical devices and systems. By blocking the path of electrical current, electrical insulators including disk insulator contribute significantly to protecting both people and equipment. Types of Insulators in Substation Porcelain Insulators Suspension Insulators: The porcelain insulator is used to support overhead conductors in the air. These power line insulators consist of a series of porcelain discs connected in series by a metal link. Suspension insulators for sale are commonly used in high-voltage transmission lines. Post Insulators: Designed to support bus bars or other equipment on a structure, post substation insulators have a single insulating unit and are mounted vertically on supporting structures.
Electrical cable fittings are special metal components used to connect, fix or support power equipment in power transmission and distribution systems, such as wires, cables, transformers, switches, etc. These fittings are usually made of high-strength aluminum alloy or steel to ensure their durability and load-bearing capacity. Power fittings play an important role in the power industry, ensuring the safety and reliability of the power system. There are 5 steps: Preparation and Inspection: Begin by inspecting all cable accessories, such as terminations and joints, for any damage or defects. Cable Stripping and Preparation: Strip the cable insulation carefully, following manufacturer guidelines and specifications. Accessory Installation: Install the power cable accessories according to the manufacturer's instructions and guidelines. Use the recommended tools and equipment to secure terminations and joints, ensuring proper alignment and connection. Sealing and Insulation: Apply appropriate sealing materials to protect cable joints and terminations from environmental factors, such as moisture and contaminants. Testing and Documentation: Conduct thorough testing of the installed cable accessories to ensure proper functionality and adherence to performance standards.Document the installation process, including specifications, testing results, and any adjustments made during the installation. In the realm of structural components, the choice between stainless steel and aluminum cable fittings involves a nuanced evaluation of various factors, each material boasting distinct advantages. Stainless steel, heralded for its corrosion-resistant properties, stands as a stalwart against environmental challenges. Its durability and sleek aesthetic make it particularly appealing in harsh conditions characterized by high humidity or salt exposure. Beyond its resistance to corrosion, stainless steel exhibits superior strength, ensuring the structural integrity of cable fittings over an extended lifespan and making stainless steel suitable for applications in both hot and cold climates. Conversely, aluminum cable fittings present a compelling alternative, especially in scenarios where weight considerations and budget constraints take precedence. The lightweight nature of aluminum contributes to ease of handling during installation and reduces the overall load on supporting structures. This characteristic makes aluminum cable fittings an attractive choice in situations where minimizing weight is critical, such as in aerial or elevated installations. Additionally, aluminum tends to be more cost-effective compared to stainless steel, making it an economical solution for projects with budgetary limitations.
Our Stay Insulators include 54-1, 54-2, 54-3, 54-4 and so on. Standard: IEC, ANSI, BS, AS, DIN, GB and etc. Color: brown, gray, sky blue and etc. Features of Stay Insulator Our porcelain stay insulator, available in models such as 54-1, 54-2, 54-3, 54-4, and more, boast a range of features to ensure optimal performance and versatility: Diverse Models: Our product line encompasses various models, including 54-1, 54-2, 54-3, 54-4, providing options to meet specific requirements and applications. International Standards: Compliant with industry standards such as IEC, ANSI, BS, AS, DIN, GB, and more, ensuring that our stay wire insulator, stay arm insulator, stay type insulators adhere to recognized global specifications for quality and performance. Color Options: Available in a selection of colors, including brown, gray, sky blue, and more. This not only allows for aesthetic considerations but also facilitates easy identification and coordination with different environments. Versatility: Designed to accommodate diverse applications, our Stay Insulators offer versatility in their use across various power distribution and transmission scenarios. Robust Construction: Engineered for durability and resilience, our insulators are constructed to withstand mechanical stresses, environmental conditions, and the rigors of long-term use in diverse settings. Comprehensive Range: Our product line includes a comprehensive range of Stay Insulators, accommodating various voltage levels and system configurations, providing solutions for different electrical network needs. Now the stay insulator price is reasonable, anything you need, please contact us. If you want to know more about stay insulator specifications, please visit our website.
There are numerous types of shaken insulators, including ED-2B, ED-2C, and others. We are an expert manufacturer and supplier of porcelain shackle insulators. For our customers, we create custom colors. Our products are resistant to aging and temperature. What is the Purpose of a Shackle Insulator? A shackle insulator serves a dual role as a critical component in overhead power distribution lines, offering both electrical insulation and mechanical support. With a U-shaped or horseshoe design, these insulators facilitate flexible and straightforward installation, allowing attachment to supporting structures using pins or bolts. Their primary purpose is to prevent unintended electrical current flow between conductors and supporting structures, ensuring a stable connection while withstanding mechanical stresses. Commonly used in low to medium voltage distribution lines, Shackle Insulators provide reliability, versatility, and ease of maintenance, contributing to the efficient and safe transmission of electricity in diverse environmental conditions. Now the shackle type insulator price is reasonable, if you have needs to to buy shackle type insulator, please contact us.
Ceramic insulator is a very important electrical product, mainly used as insulation and support in power systems. The material of ceramic insulators is made of high-quality ceramic materials, so it has good insulation properties and mechanical strength. Ceramic insulators usually appear as a disc or cylinder with a metal core in the center for connecting power lines. The main feature of ceramic insulators is its insulating properties, which effectively prevent current from passing from one conductor to another. In addition, ceramic insulators also have good high temperature resistance and mechanical strength, and can work normally in high temperature and high pressure environments. How Does a Porcelain Insulator China Work? A porcelain insulator operates by leveraging the high-resistance properties of porcelain to prevent the undesired flow of electrical current between conductors and supporting structures. This ceramic insulator, available in various designs, offers both electrical insulation and mechanical support. Its high dielectric strength, resistance to environmental factors, and ability to withstand high voltages collectively contribute to its crucial role in maintaining the integrity and reliability of power transmission systems. By providing a secure and insulated connection, porcelain electrical insulators effectively minimize the risk of flashovers and ensure the efficient and safe flow of electricity in overhead power transmission lines.
China overhead line fittings, crafted from iron or aluminum, secure and support conductors in power lines. Various hardware types include clamps for wire installation, hanging rings for insulator strings, crimping and repair tubes for wire connections, and spacer bars for split wires. In addition, cable fittings for pole towers are utilized. These components not only fix and support wires but also assemble suspension insulators into strings, connecting and hanging them on tower cross arms. Design and manufacturing considerations prioritize strength, stiffness, and wear resistance for long-term use. Selection and configuration of hardware must align with specific line conditions to ensure the safe and stable operation of overhead lines. Installation Guide for Overhead Power Line Accessories There are 5 steps for the installation of electrical overhead line fittings: Preparation and Planning: Conduct a comprehensive site assessment considering terrain, weather, and load requirements. Assembly and Inspection: Assemble fittings according to manufacturer guidelines, ensuring all bolts and connections are securely tightened. Lifting and Attachment: Lift and position assembled fittings onto poles or towers, using appropriate lifting equipment. Alignment and Tensioning: Verify alignment and adjust if necessary. Final Checks and Documentation: Conduct thorough quality checks, addressing any issues identified during the inspection. The components of an overhead line, a crucial element in power transmission and distribution, consist of a well-coordinated system of essential elements designed to efficiently transport electrical energy from generation sources to end-users. At its core, an overhead line typically comprises conductors, supporting structures, insulators, and associated hardware. Conductors form the backbone of the overhead line, serving as the pathway for electricity to flow. These conductors are often made of aluminum or copper, chosen for their excellent conductivity and durability. Supporting structures, such as poles or towers, play a critical role in elevating the conductors above the ground and maintaining the required clearance. The design and placement of these structures are essential to ensure the stability and reliability of the overhead line. Insulators, often made of ceramic or composite materials, are strategically placed to electrically isolate the conductors from the supporting structures, preventing unintended paths for current flow. This is crucial for maintaining the integrity and safety of the system. Additionally, associated hardware such as clamps, connectors, and fittings are employed to secure and connect various components of the overhead line, ensuring a robust and reliable transmission network.
The drop out fuse switch is an overcurrent protector, which is mainly composed of melt, fuse tube, and external fillers. When used, the drop out type fuse needs to be connected in series in the circuit to be protected. When the current of the protected circuit exceeds the specified value and after a certain period of time, the heat generated by the melt itself fuses the melt and disconnects the circuit, thus playing a protective role. Drop out fuses are widely used in high and low voltage power distribution systems and control systems as well as electrical equipment. As short circuit and overcurrent protectors, they are one of the most commonly used protection devices. The drop out fuse element has inverse delay characteristics, that is, when the overload current is small, the fusing time is long; when the overload current is large, the fusing time is short. Maintenance of Power Quality By swiftly disconnecting faulty circuits, drop out fuse cutouts contribute to maintaining power quality in the distribution system. This is important for ensuring a stable and reliable power supply to consumers. Easy Replacement Overcurrent Protection Drop out Fuse Application Distribution Transformers Drop-out fuses are commonly installed on the primary side of distribution transformers. These drop out type fuses provide overcurrent protection to the transformer against faults such as short circuits and overloads. In the event of a fault, the drop out fuse in transformer opens, isolating the transformer from the faulted section of the circuit.
A ceramic composite insulator with excellent heat resistance and high mechanical strength is called a disc insulator, disk insulator. It works well as a fixed conductor and insulating support for transmission lines carrying high voltage and high current. This type of disc insulator can function steadily in challenging conditions like high temperatures, high pressure, and high humidity. It is typically composed of ceramic materials and has exceptional insulating qualities as well as high temperature resistance. The disc insulator comes in round or rectangular shapes, and to keep pollution from impairing insulation performance, the surface is covered with anti-pollution flashover coating. Another name for disc insulators is suspension insulators. They fall into a variety of distinct categories, such as ANSI 52-3, 52-4, and so forth. Features of Disc Insulator Disc Insulators are critical components in electrical systems, providing essential electrical insulation and mechanical support in overhead power lines. Here are key features associated with Disc Insulators: Material Composition Disc Insulators are typically crafted from materials like porcelain or composite materials. Porcelain offers high dielectric strength, while composite materials provide advantages such as lightweight design and resistance to vandalism. Sheds for Pollution Resistance The sheds or grooves on the surface of the disc insulator help prevent the accumulation of pollutants, such as dust or moisture, reducing the risk of electrical arcing or leakage. Ease of Installation Designed for straightforward installation on supporting structures, facilitating efficient deployment in overhead power line systems. Compliance with Standards Manufactured in compliance with international and regional standards, ensuring that disc insulators meet safety and performance requirements. Disc Insulators, with their combination of electrical insulation and mechanical support features, play a crucial role in maintaining the reliability, safety, and efficiency of overhead power transmission systems. More disc insulator types, please visit our website.
Composite Insulator for Sale Composite insulator is a special type of insulator composed of high-strength fiberglass rods and polyester resin impregnated materials. The advantage of this kind of insulator is that it has excellent high temperature resistance, corrosion resistance and anti-aging properties, which can effectively improve the safety and reliability of transmission lines. At the same time, composite insulators are light in weight, small in size, easy to install and maintain, and can effectively reduce the operating costs of transmission lines. In addition, the mechanical and electrical properties of composite insulators are superior to traditional porcelain insulators, which can effectively improve the safety and reliability of transmission lines. Features of Composite Insulator A composite insulator, also called a dielectric or nonconductor, is a material that resists the flow of electric current. This type of silicone rubber material is used in parts of electrical equipment intended to support or separate electrical conductors without passing current through itself. The term is also used more specifically to refer to insulating supports that attach electric power transmission wires to utility poles or pylons. Composite insulators are less costly, lighter in weight, and have excellent hydrophobic capability. This combination makes them ideal for service in polluted areas. However, these materials do not yet have the long-term proven service life of glass and porcelain.
YONGGUANG line equipment: Powerline Hardware, Insulators, Surge Arrester, Drop Out Fuse Cutout Switch, Fastener. Get reliable and durable equipment for your power lines. Choose YONGGUANG for high-quality products. Types of Electrical Distribution & Transmission Line Hardware Fittings Yongguang, being a top line equipment supplier and solution provider in China, guarantees to deliver its superior products in accordance with customer requirements, be it power distribution hardware assembly, insulators, surge arresters, drop-out fuse cutout switches, or fastener sales. You can use the product categories below to quickly find the items you need. Features of YONGGUANG Electrical Transmission Line Hardware Fittings 1. Durability: Transmission line hardware like lightning protection arrester is often designed to withstand the rigors of continuous use in industrial or commercial settings. This includes resistance to environmental factors such as moisture, heat, and vibration. 2.Integration with Technology: Line construction hardware may incorporate technology such as sensors, IoT (Internet of Things) connectivity, and data analytics to monitor and optimize performance. This integration can lead to predictive maintenance, improved efficiency, and better overall management. Common Functions of Electrical Distribution & Transmission Line Hardware Fittings Assembly Distribution line hardware including powerline hardware is frequently used in assembly lines where products are manufactured by assembling individual components. Each station along the line may have specific equipment for adding parts or completing tasks. Testing and Calibration Some lines are equipped with testing stations to verify the functionality or performance of hardware fittings for transmission lines. This is common in electronics and automotive manufacturing. Protection Like power transmission line hardware, line equipment including line insulator can protect power equipment from mechanical and electrical damage.
OPC clinker is main product in manufacturing of the CEM I & CEM II cements product with different strength category starting from 22.4 Mpas up to 52.5. with early strength starting from 10 mega pascal for normal type or more than 20 mega pascals for rapid type. the main parameters of the clinker are C3S, Cao. the C3S varied between 56 to 60 % and CaO is more than 60% . we can deliver the clinker from Turkey, Egypt, KSA .
It is an aliphatic polyurethane resin based, high UV resistant, two component, solvent based, semi-gloss top coat floor paint. It is a water impermeable, chemical resistant, impact and friction resistant, easy to clean, hygienic, two-component paint used indoors and outdoors.
PU stone is a kind of artificial stone using polyurethane (polyurethane) as the main material. Polyurethanes are macromolecular compounds with repetitive carbamate groups on the backbone, formed by the addition of organic diisocyanates or polyisocyanates with dihydroxyl or polyhydroxyl compounds.
Different colours: Marbles styles White sparkle Black sparkle Size 6002400
UV, which stands for Stone Plastic (or Polymer) Composite.features a core that is typically comprised of around 60% calciumcarbonate, polyvinyl chloride and plasticizers.Because the core layer of SPC is composed of limestone, it is denser compared to WPC, though thinner overall Its high densityprovides better resistance to scratches or dents caused by heavyobjects or furniture placed on it, and makes it less likely to expandunder extreme temperat ure changes At the same time, it is extruded by T-shaped mold, which also avoidsthe intemal layer coating and gluing, so its functions are moreabundant, and it is non-toxic,formaldehyde free and zero pollution,with a series of characteristics such as renewable materials.so it canbe well used in interior decoration.
Comes in many different colours and sizes. 150*2900*10mm 160*2900*24mm 195*2900*15mm 160*2900*15mm 18*2900*20mm 50*2900*20mm 146*2900*18mm 150*2900*7.5mm
Name: Carbon Crystal Panel Width: 600mm/1220mm Length:2440mm/2600mm/2800mm/Custom length Thickness:8mm Environmental protection grade: E0 Fire rating: B1 -Performance: waterproof
Sound Proof Wall Claddings Highest Quality More the 10 Colours Composite Wood and PVC