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The conveyor roller is a common material-handling device characterized by its simple structure, high reliability, and ease of use and maintenance. A conveyor roller mainly consists of components such as the drive roller, frame, support brackets, and drive unit. From the perspective of drive mechanism, conveyor rollers can be categorized into powered rollers, non-powered rollers, and electric rollers. According to their layout configuration, they can be classified into horizontal conveyors, inclined conveyors, and curved conveyors.
Rollers are crucial components of belt conveyors, serving to support the conveyor belt and the materials being transported. They help reduce the running resistance of the conveyor belt and ensure that the belt’s sag does not exceed specified limits, thereby guaranteeing smooth operation. The roller structure consists of a roller body, bearings, seals, and other parts. According to their application, rollers can be categorized into types such as trough-shaped, parallel, and self-aligning. They are widely used in industries including mining, ports, and power plants.
This is a versatile belt conveyor that is mobile, extendable, and height-adjustable, specifically designed for loading, unloading, and transferring bulk or packaged materials. It’s an “efficiency-boosting tool” ideal for scenarios such as grain storage facilities, logistics centers, and feed/fertilizer plants.
Compared with other types of conveyor belts, nylon conveyor belts feature high strength, excellent impact resistance, superior abrasion resistance, minimal deformation, good flexibility, and robust splices. Nylon conveyor belts can be made using rubber compounds such as SBR, NBR, and EPDM, and they offer high tensile strength as well as multi-layer fabric conveyors with outstanding resistance to abrasion, oil, heat, and wear. These belts can be manufactured either as flat nylon belts or as patterned nylon belts. They are available in a variety of specialized formulations, including fire-resistant, cold-resistant, wear-resistant, heat-resistant, acid- and alkali-resistant, oil-resistant, and anti-static types.
The fine sand recovery machine is a piece of equipment developed specifically for dewatering, media removal, and mud removal from slurry materials. It is also known as a tailings recovery machine, fine sand extractor, fine sand collector, silt-sand separator, slurry separator, or sand-water mixture treatment system, among other names.
The spiral sand washer utilizes the principle that particles of different sizes and densities exhibit varying settling velocities in a fluid: particles with fine size and low density settle slowly, while particles with large size and high density settle rapidly. This allows the machine to separate dust and impurities from the sand. Under the uniform agitation of the spiral blades, the machine achieves the purposes of filtering out water and impurities as well as lifting and conveying the sand.
The tailings integrated machine is a highly efficient equipment for fine sand recovery and dewatering. Its dewatering screen height is adjustable, making it more practical; the tank features automatic backwater and water replenishment functions, enhancing its automation level. This machine can recover 80% to 90% of fine particulate matter from the total discharged material. It boasts features such as full automation, low energy consumption, large processing capacity, water conservation, and zero pollution. It has a wide range of applications.
It is primarily used for continuous and uniform feeding ahead of coarse crushers, while also capable of screening fine materials, thereby enhancing the crusher's capacity. As such, this machine has become an indispensable piece of equipment in combined crushing and screening systems across industries including metallurgy, coal mining, ore dressing, building materials, chemical engineering, and bulk materials handling.
A vibrating screen is a multi-layer, high-efficiency vibrating screen that employs a cylindrical eccentric shaft vibrator and adjustable eccentric weights to regulate the amplitude. It features long screening paths and a wide range of screening specifications, making it suitable for industries such as mining, coal preparation, mineral processing, building materials, and thermal power generation. This type of screen boasts reliable performance, strong vibration force, high screening efficiency, easy maintenance, and safe operation.
The hammer-type crusher can crush stone materials into finished products in a single step, eliminating the need for secondary crushing and shaping processes. This approach can reduce costs by approximately 40%, requires low energy consumption, and involves relatively modest investment. It is widely used in numerous industries, including mining, metallurgy, building materials, highways, railways, water conservancy, and the chemical industry. It is particularly well-suited for crushing limestone and other stone materials with medium hardness and compressive strengths below 200 MPa.
Our company’s impact crushers integrate cutting-edge domestic and international technologies for impact crushers. They feature finely engineered rotor and crushing chamber designs tailored to various applications, and extensively utilize new, highly wear-resistant materials, significantly enhancing equipment performance and throughput. These crushers are ideally suited for industries such as quarrying and gravel processing involving medium-hardness, low-abrasivity materials, as well as for the recycling of cement, concrete, asphalt, and slag.
This series of crushers is suitable for crushing various ores and rocks with medium to high hardness. It features a reliable structure, high production efficiency, convenient adjustment, and economical operation. Its spring-loaded safety system serves as an overload protection device, allowing foreign objects such as iron blocks to pass through the crushing chamber without damaging the machine. The crusher employs either dry oil or water sealing systems, effectively isolating stone dust from the lubrication and ensuring reliable operation.
A roller mill is a crushing equipment used for coarse and fine crushing. This roller crusher is widely employed in industrial sectors such as metallurgy, building materials, and refractory materials for the crushing of medium- and high-hardness materials. It features low noise levels, minimal dust generation, reliable performance, and convenient maintenance.
The jaw crusher is one of the earliest types of crushing equipment. Due to its simple structure, robustness, reliable operation, ease of maintenance and repair, and relatively low production and construction costs, it remains widely used today in various industrial sectors including metallurgy, chemical engineering, building materials, power generation, and transportation. Jaw crushers are primarily used for medium-sized crushing of a variety of ores and large-sized materials, and are extensively employed in industries such as mining, smelting, building materials, highways, railways, water conservancy, and chemical engineering.
Single-cylinder hydraulic cone crusher
The single-cylinder hydraulic cone crusher is a high-performance, single-cylinder hydraulic cone crusher with an optimized design, integrating mechanical, hydraulic, electrical, and intelligent control technologies. By simply replacing the liners, the same machine can achieve multiple cavity configurations. The medium-crushing model features a stable and relatively large feed opening, enabling it to efficiently crush materials—from fine crushing to coarse crushing. It is widely used in fields such as metallurgy, construction, cement production, water conservancy, highways, railways, and mineral processing.
The vertical impact crusher is an efficient and energy-saving equipment for producing crushed stone and sand, designed to enhance energy utilization, reduce wear rates, extend maintenance intervals, shorten maintenance time, improve crushing efficiency, and elevate control precision. It features energy savings, high output, high energy utilization efficiency, excellent product particle shape, convenient maintenance and inspection, and wide applicability, thus meeting the demands of modern sand and gravel production. It is widely used in hydraulic and hydroelectric projects, refractory materials, construction, as well as for shaping stone used in high-grade highways and railways.
The conveyor support is an important component of the conveyor system, primarily serving to support and bear the weight of components such as the conveyor belt and idlers, thereby ensuring the stable operation of the conveyor.
Compared with other types of conveyor belts, nylon conveyor belts feature high strength, excellent impact resistance, superior abrasion resistance, minimal deformation, good flexibility, and robust splices. Nylon conveyor belts can be made using rubber compounds such as SBR, NBR, and EPDM, and they offer high tensile strength as well as multi-layer fabric conveyors with outstanding resistance to abrasion, oil, heat, and wear. These belts can be manufactured either as flat nylon belts or as patterned nylon belts. They are available in a variety of specialized formulations, including fire-resistant, cold-resistant, wear-resistant, heat-resistant, acid- and alkali-resistant, oil-resistant, and anti-static types.
The conveyor roller is a common material-handling device characterized by its simple structure, high reliability, and ease of use and maintenance. A conveyor roller mainly consists of components such as the drive roller, frame, support brackets, and drive unit. From the perspective of drive mechanism, conveyor rollers can be categorized into powered rollers, non-powered rollers, and electric rollers. According to their layout configuration, they can be classified into horizontal conveyors, inclined conveyors, and curved conveyors.
Rollers are crucial components of belt conveyors, serving to support the conveyor belt and the materials being transported. They help reduce the running resistance of the conveyor belt and ensure that the belt’s sag does not exceed specified limits, thereby guaranteeing smooth operation. The roller structure consists of a roller body, bearings, seals, and other parts. According to their application, rollers can be categorized into types such as trough-shaped, parallel, and self-aligning. They are widely used in industries including mining, ports, and power plants.
Rollers are crucial components of belt conveyors, serving to support the conveyor belt and the materials being transported. They help reduce the running resistance of the conveyor belt and ensure that the belt’s sag does not exceed specified limits, thereby guaranteeing smooth operation. The roller structure consists of a roller body, bearings, seals, and other parts. According to their application, rollers can be categorized into types such as trough-shaped, parallel, and self-aligning. They are widely used in industries including mining, ports, and power plants.
This is a versatile belt conveyor that is mobile, extendable, and height-adjustable, specifically designed for loading, unloading, and transferring bulk or packaged materials. It’s an “efficiency-boosting tool” ideal for scenarios such as grain storage facilities, logistics centers, and feed/fertilizer plants.
Compared with other types of conveyor belts, nylon conveyor belts feature high strength, excellent impact resistance, superior abrasion resistance, minimal deformation, good flexibility, and robust splices. Nylon conveyor belts can be made using rubber compounds such as SBR, NBR, and EPDM, and they offer high tensile strength as well as multi-layer fabric conveyors with outstanding resistance to abrasion, oil, heat, and wear. These belts can be manufactured either as flat nylon belts or as patterned nylon belts. They are available in a variety of specialized formulations, including fire-resistant, cold-resistant, wear-resistant, heat-resistant, acid- and alkali-resistant, oil-resistant, and anti-static types.
Rollers are crucial components of belt conveyors, serving to support the conveyor belt and the materials being transported. They help reduce the running resistance of the conveyor belt and ensure that the belt’s sag does not exceed specified limits, thereby guaranteeing smooth operation. The roller structure consists of a roller body, bearings, seals, and other parts. According to their application, rollers can be categorized into types such as trough-shaped, parallel, and self-aligning. They are widely used in industries including mining, ports, and power plants.