Abstract:2D servo valve combines the pilotstage and powerstage together based on the spiral servo principle. The throttles of the pilotstage have a decisive influence on the characteristics of the 2D servo valve. The dynamic characteristics of bow and rectangular pilotstage 2D servo valves were analyzed, especially under the influence of structural parameters. Firstly, the structure and working principle of the 2D servo valve were introduced, and then the mathematical models of the bow pilotstage 2D servo valve and the rectangular pilotstage 2D servo valve were established respectively. Secondly, the step characteristics of the bow and rectangular pilotstage 2D servo valves under different structural parameters (inclined groove β, pilot stage zero opening h0, system pressure ps) were simulated by numerical method. Finally, a test rig was set up to verify the step characteristics of the bow and rectangular pilotstage 2D servo valves. As a result, the experimental curves of step characteristics of the bow and rectangular pilotstage 2D servo valves were obtained. Under the same structural parameters (inclined groove β was 82°, pilot zero opening h0 was 002mm) and system pressure ps (20MPa), the step response time of the 2D servo valve was shortened from 34ms (bow pilotstage 2D servo valve) to 14ms by adopting the rectangular pilotstage structure. Moreover, the rectangular pilotstage structure was applied to a 2D electrohydraulic servo valve which a torque motor was employed as electro〖JP3〗mechanical converter to drive the rotary motion of the spool. When the displacement of the spool was 03mm,〖JP〗 the step response time of whole system was 10ms, which showed that rectangular pilotstage electricalhydraulic 2D servo valves driven by the torque motor can demonstrate a high speed of response.