In 2013, SBW Group embarked on the Phase II of technology introduction in collaboration with the renowned US GE company. This initiative encompassed the introduction of petrochemical pump technology. SBW Group has successfully acquired comprehensive expertise in design, manufacturing, quality control, testing, and complete product solutions for all types of pumps used in the upstream, midstream, and downstream sectors of the oil and gas industry. This proficiency has been attained through collaboration with GE, enabling us to leverage advanced research and development capabilities in this field.
SBW Group remains steadfast in its commitment to fostering innovation across various domains, including technological advancements, management strategies, talent systems, and cultural development. Through this unwavering dedication, we consistently strive to achieve novel breakthroughs in localizing major equipment technologies.
In the year 2000, SBW Group took a significant step forward by establishing a national enterprise technology center. Subsequently, we set up four national technology sub-centers in renowned academic institutions such as Dalian University of Technology, Xi'an Jiaotong University, Northeastern University, and Zhejiang University. These sub-centers are dedicated to advancing SBW Group's research and development initiatives. To further enhance our research capabilities, we also established the first postdoctoral research workstation in Liaoning Province. Moreover, we have released key scientific research topics and pursued cutting-edge frontier technologies, fostering a culture of innovation within the organization.
SBW Petrochemical Pump Company boasts an extensive portfolio of thousands of top-notch hydraulic models. In our relentless pursuit of innovation, we leverage advanced research and development methods to drive our product R&D efforts. Two key entities, namely SBW Research Institute and SBW & DUT Research Institute, play instrumental roles in this process. These research institutes specialize in conducting comprehensive flow field analysis and optimizing hydraulic components. They also undertake critical tasks such as strength and fatigue analysis of pump parts, rotor dynamics analysis, torsional vibration analysis, and seismic analysis (specifically for nuclear power applications).
The design software utilizes agile engineering design software from Concepts/NREC, finite element analysis software called ANSYS COSMOS CAL47, and flow field analysis software called NUMECA, among others.