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Battery pack

The advantages of selecting a new energy battery pack: Lightweight, high-strength, cost-effective, easy to process, and refined in appearance. Compared to steel casings, aluminum alloy shells offer a lower density, significantly reducing weight. As battery capacity increases, the weight of the casing directly affects the overall mass and volume of the battery system. Using aluminum alloy shells can effectively minimize the system's weight, thereby enhancing battery efficiency. Additionally, aluminum alloys boast high mechanical strength, providing robust protection for batteries. Their excellent impact resistance significantly reduces the risk of battery damage or breakage. In contrast to other metal casings, aluminum alloys are more cost-efficient, effectively lowering battery production costs. Moreover, aluminum alloys are highly recyclable, reducing environmental burdens through multiple reuse cycles.

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Safe motor casing

We specialize in customizing professional safety and explosion-proof motor housings for clients, supporting mass production and precision processing. Our professional technical R&D team is dedicated to providing tailored solutions to meet the diverse needs of various clients.

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Motor casing

We specialize in customizing professional safety and explosion-proof motor housings for clients, supporting mass production and precision processing. Our professional technical R&D team is dedicated to providing tailored solutions to meet the diverse needs of various clients.

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Aluminum alloy motor box

We specialize in customizing professional safety and explosion-proof motor housings for clients, supporting mass production and precision processing. Our professional technical R&D team is dedicated to providing tailored solutions to meet the diverse needs of various clients.

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Explosion-proof motor casing

We specialize in customizing professional safety and explosion-proof motor housings for clients, supporting mass production and precision processing. Our professional technical R&D team is dedicated to providing tailored solutions to meet the diverse needs of various clients.

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Lightweight urban bridges

We boast an in-house bridge design team capable of customizing urban overpasses, pedestrian bridges, and lightweight bridges tailored to client specifications. Aluminum alloy bridges feature distinct advantages: lightweight construction, prefabricated components, rapid installation, long-term durability, deformation resistance, corrosion immunity, and recyclable materials. Notably, a majority of cities have initiated investments in deploying aluminum alloy bridge applications.

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Lightweight Kua Road Bridge

We have an in-house bridge design team specializing in customizing urban overpasses, pedestrian bridges, and lightweight structures to meet specific client needs. Aluminum alloy bridges offer distinct advantages: lightweight composition, prefabricated modules, rapid installation, long-lasting durability, deformation resistance, corrosion immunity, and recyclable materials. Significantly, most cities have now embarked on integrating aluminum alloy bridges into their infrastructure projects.

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Lightweight urban bridges

We have an in-house bridge design team specializing in customizing urban overpasses, pedestrian bridges, and lightweight structures to meet specific client needs. Aluminum alloy bridges offer distinct advantages: lightweight composition, prefabricated modules, rapid installation, long-lasting durability, deformation resistance, corrosion immunity, and recyclable materials. Significantly, most cities have now embarked on integrating aluminum alloy bridges into their infrastructure projects.

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Aluminum alloy elevated bridge

We have an in-house bridge design team specializing in customizing urban overpasses, pedestrian bridges, and lightweight structures to meet specific client needs. Aluminum alloy bridges offer distinct advantages: lightweight composition, prefabricated modules, rapid installation, long-lasting durability, deformation resistance, corrosion immunity, and recyclable materials. Significantly, most cities have now embarked on integrating aluminum alloy bridges into their infrastructure projects.

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Aluminum alloy Footbridge

We have an in-house bridge design team specializing in customizing urban overpasses, pedestrian bridges, and lightweight structures to meet specific client needs. Aluminum alloy bridges offer distinct advantages: lightweight composition, prefabricated modules, rapid installation, long-lasting durability, deformation resistance, corrosion immunity, and recyclable materials. Significantly, most cities have now embarked on integrating aluminum alloy bridges into their infrastructure projects.

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news

How to choose the suitable power supply method for electric rail?

As an enterprise deeply engaged in the field of electric rail, we have summarized the core logic of choosing power supply mode in 23 electric rail projects: we need to closely follow the scene characteristics, technical suitability and economic comprehensive judgment. The electric rail in the core area of the city mostly adopts contact network power supply to meet the needs of high-speed and high-density operation; the electric rail in closed scenes (such as industrial parks) prefers the third rail power supply to reduce the cost and risk of collision; the electric rail in the ecologically sensitive area applies energy storage power supply to realize “wireless operation” and landscape protection. At the same time, it is necessary to combine the running speed and load characteristics of electric rail to select technical solutions, and optimize the economy through the whole life cycle cost calculation. In the future, the hybrid power supply mode will further expand the application scenarios of electric rail and help it realize “safe, efficient and green” operation.

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What factors need to be considered in the design of lightweight road crossing bridges?

Lightweight road crossing bridges have become a key choice in transportation infrastructure construction due to their advantages of light weight, convenient construction, and controllable costs. However, their design must balance safety, durability, and economy. This article analyzes five core dimensions: First, clarify load requirements. Based on functional uses such as pedestrians, non-motorized vehicles, or small vehicles, combined with additional forces like self-weight, wind load, and temperature changes, to ensure the structural bearing capacity bottom line. Second, optimize material selection. Innovate materials such as high-strength steel, fiber-reinforced polymers (FRP), and lightweight concrete to balance "lightness" and "strength," while adapting to environmental characteristics of coastal areas, mountainous regions, etc. Third, focus on structural design. Select forms like prefabricated hollow plate girders or steel trusses according to span needs, strengthen stiffness calculation and node optimization, and balance stability and economy. Fourth, emphasize construction feasibility and environmental compatibility. Adopt modular prefabrication and on-site assembly to reduce traffic impact, and use eco-friendly foundations and seismic designs to adapt to site conditions. Fifth, ensure durability and maintainability. Extend the bridge’s lifecycle through anti-aging materials, easy-to-inspect nodes, improved drainage, and monitoring systems. The design of lightweight bridges requires systematic control of all links to achieve synergy between safety, lightness, economy, and durability.

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How to Choose a Safe Motor Enclosure for a Specific Environment

As a company specializing in the development and production of safe motor housings, this article describes how to select safe motor housings for specific environments based on practical experience. For different scenarios such as dusty, humid, flammable and explosive, high temperature, etc., from the protection level, material properties, structural design and other dimensions, analyze the core requirements of safe motor enclosure in terms of dust-proof, water-proof, explosion-proof, heat dissipation and operational safety, etc., and emphasize the key role of safe motor enclosure on the stable operation of the equipment and avoidance of potential safety hazards.

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How to improve the welding quality and productivity of aluminum welding locomotives?

In the manufacturing industry, the welding quality and production efficiency of aluminum welding locomotives are directly related to product quality and corporate benefits. In this paper, from the technology upgrading, process optimization, material selection, equipment maintenance and personnel training in five dimensions, to explore the key measures to improve the performance of aluminum welding locomotives, including the introduction of laser welding, digital double-wire welding and other advanced technologies, precise adjustment of welding parameters, the use of high-quality welding materials, regular maintenance equipment, and strengthen the skills of the operators, through a comprehensive approach to achieve the quality of aluminum welding locomotives welded with the efficiency of the double enhancement. Double enhancement of aluminum welding locomotive welding quality and production efficiency is achieved through comprehensive measures.

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Lightweight Aluminum Trucks Customize How Highly Recyclable They Are

As a company focusing on the customization of lightweight aluminum trucks, our company always takes the high recycling rate as its core competitiveness. In terms of design, aluminum alloy accounts for more than 85% of the core components of lightweight aluminum trucks, and the high proportion of single material design reduces the difficulty of recycling and dismantling; through the construction of a “closed-loop processing system” with top enterprises, intelligent dismantling has made the recycling rate of aluminum alloy components of lightweight aluminum trucks reach 92%, and the performance loss of recycled aluminum materials is only 3-5%, which can be directly used for re-production. It can be directly used for re-production. Our customized services further optimize the details of recycling, such as modular design, “trade-in” services, etc., so that the recycling rate of the whole life cycle of lightweight aluminum trucks is stable at over 95%. This not only fulfills our environmental responsibility, but also brings real economic value - the recycling revenue from retired lightweight aluminum trucks can cover 15%-20% of the initial purchase cost. In the future, we will continue to promote material innovation, so that lightweight aluminum trucks will continue to have value in the cycle.

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How to choose the right Notebook housing for you?

Although a laptop case may seem like just a "shell", it directly affects the feel, durability and even the overall texture of the device. Choosing a suitable case can not only protect the internal components of the computer, but also make the use process more in line with personal habits. When choosing, the first thing to pay attention to is the material. Plastic cases are lighter in weight and lower in cost, which are suitable for users with limited budgets or who pursue portability; aluminum alloy and magnesium alloy cases have stronger pressure resistance and heat dissipation, and better texture, which are suitable for users with higher requirements for the durability and appearance of the device. Moreover, the material will also affect the weight of the case, which is particularly important for people who need to carry the computer frequently. In addition, the design details of the case should not be ignored, such as whether the edge curvature fits the palm, whether the port sealing has dustproof and waterproof functions, whether the surface coating is scratch-resistant, etc. The mold precision of cases from different brands is different. High-precision cases can reduce the shaking of the body and make the connection of keyboard, screen and other components more stable. In short, only by combining your own usage scenarios and needs can you find the most suitable laptop case for yourself, making the computer both practical and satisfying.

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What are the market prospects for aluminum ship engineering manufacturers?

Driven by the development of the global marine economy and green transformation demands, aluminum ship engineering manufacturers have become key growth points in the shipbuilding industry in fields such as port construction and new energy development, leveraging the lightweight and corrosion-resistant characteristics of aluminum alloy materials. Environmental policies, including China's promotion of green ship upgrades and the International Maritime Organization (IMO)'s strict carbon emission limits, are forcing enterprises to accelerate technological innovation. Combining aluminum alloy materials with new energy technologies (e.g., pure electric propulsion systems) meets environmental standards while reducing energy consumption to create customer value—for example, all-aluminum ships reduce fuel consumption by 30% and carbon emissions by 25%, positioning them as a key part of the shipping industry's green transformation. Technologically, the iteration of high-strength aluminum alloy materials reduces ship deadweight while ensuring structural strength, significantly improving sailing speed and loading efficiency. The in-depth integration of modular production and intelligent manufacturing has shortened the shipbuilding cycle by nearly half compared to traditional processes. In market application, enterprises adopt differentiated product strategies in niche fields like port pilotage and offshore wind power operation and maintenance. Industry institutions predict the global aluminum ship market size will grow from $5.66 billion in 2023 to $8.2 billion by 2032, with China as the primary growth engine. In the current competitive landscape, patent-holding enterprises build barriers, while SMEs explore niche markets, expanding market space through R&D and industrial chain collaboration.

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What are the characteristics of lightweight crossing bridges?

As transportation infrastructure practitioners, we have developed lightweight crossing bridges that are transforming urban crossing projects through their "lightness, speed, and agility." Made with lightweight alloys and composites, these bridges are over 40% lighter than traditional concrete structures while meeting main road load requirements. Their key advantage lies in construction efficiency: modular prefabrication shortens the construction cycle to within 20 days (e.g., a 28-meter bridge in Chengnan New District was completed in 15 days without traffic disruption). Structurally, they blend flexibility and toughness, adapting to complex geology and extreme weather via finite element-optimized design. Green benefits like lower transportation costs and reduced waste have led to their application in three provincial capital transportation hubs, positioning them as a "low-intervention, high-adaptability" solution for urban three-dimensional transport.

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What factors need to be considered when building a lightweight urban bridge?

Against the backdrop of urban space compaction, lightweight bridges achieve "weight reduction and efficiency enhancement" through material and structural optimization, requiring a balance between technical and environmental factors to ensure safety and urban adaptability. Lightweight high-strength materials like aluminum alloys and FRPs form the core, while prefabricated modular construction shortens the construction period and reduces urban space occupation. Their slim structures suit creative landscape design, and the high recycling rate of aluminum alloys together with lightweight foundation engineering minimize environmental disturbance. Construction must integrate material mechanics, construction technology, and urban ecology, serving as an integrated benchmark for transportation functionality and urban aesthetics.

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CONTACT US

China Office:

Conglin Aluminum- Tech(Dalian)Co., Ltd.

Add:Building 6 Hongnan east street, Hongqi Town,Ganjingzi District, Dalian, China

Tel:+8641184212100

Mobile phone:+8615942629815

Email:Eric@aluminum-pm.com

WhatsApp:+8615942629815

WeChat number:15942629815 

Germany Office:

Conglin Aluminum- Tech(Dalian)Co., Ltd.

Add:Oelde NRW

Mobile phone:18624262212

Email:sales-1@aluminum-pm.com


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