Stereolithograp hy technology is adopted to fabricate t he integral st ruct ure of emit ters<br />and outer pipes
and t he experiment s of emit ter hydraulic performance are carried out wit h or2<br />t hogonal design met hod
where t he key parameter s of t riangle channel are distinguished. The re2<br />sult s obtained f rom range analysis and variance analysis show t hat t he channel t urning angle is t he<br />most important factor affecting the flow index
and t he flow rate is seriously influenced by t he<br />number of channel unit s
which facilitates set tling the problem of increscent flow rate due to t he<br />st ructural optimi-ation. A model is established between st ruct ural parameters and hydrodynamic<br />behavior s according to t he linear multivariable regression met hod
which is verified being able to<br />forecast the relationship between t he flow rate and pressure lo ss for t he emit ter s with t riangle<br />labyrint h channels.
Zhou J G, Herscovici D , Chen C C. Paramet ricprocess optimization to improve the accuracy of rapidprototyped stereolithography part s [ J ] . Int J of Ma2
chine Tools Manufacture ,2000 ,40 (3) :363O379.
Wei Z Y, Tang Y P , Zhao W H ,et al. Rapid develop2 ment technique for drip irrigation emit ters [J ] . Rapid Prototyping Journal ,2003 ,9 (2) :104O110.
GB/ T 17187O1997. 滴头技术规范和实验方法[ S] .[6 ] SL/ T 6711O1994. 微灌灌水器[ S] .