Innovation-driven, green empowerment: Dijie Hardware Molds leads the new wave of solar frame profile mold technology
Against the backdrop of global energy transition and the "dual carbon" goals, the solar photovoltaic industry has ushered in unprecedented development opportunities. As an indispensable key component of photovoltaic modules, solar frames play a crucial role in protecting the glass edges, strengthening the overall structure, and ensuring the long-term durability of the modules. The core of manufacturing these high-precision, high-strength and corrosion-resistant aluminum alloy frames lies precisely in the aluminum profile extrusion dies behind them. Recently, Foshan Dijie Hardware Mold Co., LTD., which focuses on this field, has been continuously injecting strong impetus into the photovoltaic industry with its profound technological accumulation and innovative strength.
Deeply cultivate the industry and accumulate strength for a breakthrough
Since its establishment in 2008, Dijie Hardware Mould has been dedicated to the research and development as well as manufacturing of aluminum extrusion dies. After more than ten years of technological accumulation and development, the company has grown into a professional enterprise integrating R&D, design, production, sales and service. The modern production base, covering an area of 2,000 square meters, has an annual production capacity of over 30,000 sets of molds, providing a solid guarantee for meeting the booming solar energy market demand both at home and abroad.
Technology first, precision wins
Solar frame profiles impose extreme requirements on the precision, stability and service life of molds. Dijie Mould is well aware that quality is the lifeline of an enterprise. For this reason, the company has comprehensively introduced advanced automated production equipment, including CNC machining centers, CNC electrical discharge machines, CNC wire cutting machines, and high-precision slow wire cutting equipment from Switzerland and Taiwan. These "high-precision and advanced" devices ensure that each set of molds has extremely high dimensional consistency and surface finish, thereby extruding solar frame profiles that meet strict standards, effectively guaranteeing the outdoor service life of photovoltaic modules for 25 years or even longer.
Management safeguards, quality commitment
The company not only focuses on hardware investment but also pursues excellence in soft power. Dijie Mould has passed the ISO9001:2008 international quality management system certification and fully implemented the "5S" on-site management model. It implements refined and standardized management in every link of the production process - from employee operation, equipment maintenance to raw material control and production technology. This meticulous attention to detail ensures the safety, efficiency of the production process and the stability and reliability of product quality, earning the long-term trust and cooperation of many well-known photovoltaic enterprises at home and abroad.
Innovation leads the way, creating a green future together
"Honesty is our foundation and quality is our life." " This is not merely a slogan; it is also the action guide for Dijie Mould. Facing the iteration of photovoltaic technology and changes in market demand, the company's R&D team has been continuously conducting technological breakthroughs and innovations, constantly optimizing mold designs (such as runner design, welding chamber structure, etc.), dedicated to enhancing extrusion efficiency, reducing energy consumption and increasing the yield of profile products, in order to create greater value for customers.
With the continuous explosion of global green energy demand, the market demand for solar frames will continue to grow. Foshan Dijie Hardware Mould Co., Ltd. will continue to uphold the spirit of innovation, providing more precise, stable and efficient high-quality mould products to help the photovoltaic industry reduce costs and increase efficiency, and contribute its own strength to building a clean and low-carbon energy future.