Film Cooling Effectiveness Measurement of Fan-Shaped Holes Manufactured Using EDM Technique

S. Rouina, H. Abdeh, G. Barigozzi, V. Odemondo, L. Abba, M. Iannone
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Abstract

In this study, the influence of geometric factors such as hole diameter (D), length-to-diameter ratio (L/D), injection angle (α), and lateral expansion angle (β) on film cooling effectiveness of holes made using EDM is experimentally investigated. Nine different cooling configurations were tested on a flat plate wind tunnel at various coolant Reynolds number (Rec) and coolant to mainstream blowing ratio (M). The considered flat plate model incorporates engine sized V-shaped holes. EDM reliability is assessed through a hole qualification process, while effectiveness was measured by the Pressure Sensitive Paint (PSP) technique. Results confirm the suitability of EDM for V-shaped hole manufacturing as long as a correct tolerance on β is prescribed. An accurate qualification of hole morphology is also recommended.
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电火花加工扇形孔的气膜冷却效果测量
实验研究了孔径(D)、长径比(L/D)、注入角(α)和横向膨胀角(β)等几何因素对电火花加工孔膜冷却效果的影响。在不同的冷却剂雷诺数(Rec)和冷却剂与主流吹风比(M)下,在平板风洞上测试了9种不同的冷却配置。电火花加工的可靠性通过井眼鉴定过程进行评估,而有效性则通过压敏涂料(PSP)技术进行测量。结果证实,只要规定了正确的β公差,电火花加工是适合v形孔加工的。还推荐了一种准确的孔形态鉴定方法。
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