国际学生入学条件
High School Graduation Diploma or equivalent, including Academic Grade 11 Math.
IELTS: minimum score of 6.0 on each test (Listening, Reading, Writing, Speaking).
Test of English as a Foreign Language (TOEFL) – minimum test scores of 80 on the Internet-Based Test (TOEFL® iBT), 60 on the Paper-Delivered Test, or 550 on the Paper-Based Test.
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雅思考试总分
6.5
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雅思考试指南
- 雅思总分:6.5
- 托福网考总分:80
- 托福笔试总分:550
- 其他语言考试:Pearson Test of English Academic (PTE) - minimum test score of 55.
CRICOS代码:
申请截止日期: 请与IDP顾问联系以获取详细信息。
课程简介
该程序提供了动手指导,并与飞机维修工程师(机械)程序结合使用,使用实际飞机来开发维修和保养机翼及固定翼和旋翼飞机相关系统的技能。您将获得飞机金属以及复合材料组装和维修领域的技能。这些技能对于飞机结构系统的维护,修理,大修,检查和测试至关重要。您将接受有关手动工具以及复杂而专业的工具和设备的使用和维护方面的培训。毕业后,您将能够评估飞机结构的损坏和腐蚀以及修理,更换和修改钣金,织物表面以及复合材料和木质结构。
If youre interested in airplanes and how aircraft are designed and built, enjoy taking components apart and putting them back together to make them better, are detail oriented, love a challenge and want to participate in a dynamic and fast-moving field, this program may be for you. The Aircraft Maintenance Technician - Structures program is designed to meet the growing demand for skilled aircraft maintenance structures engineers and technicians in Nova Scotia's aerospace industry, specifically in the field of aircraft structures. With the increasing use of composite materials in aircraft construction, there is high demand for individuals who have the knowledge and skills associated with these materials. The Aircraft Maintenance Technician - Structures program provides you with the opportunity to gain skills in aircraft metal and composite assembly and repair which are essential in the maintenance, repair, overhaul, inspection and testing of aircraft structural components and systems. You learn to:<br>Complete inspection, maintenance, assembly, structural repair work and documentation on airplanes and helicopters in accordance with health and safety regulations, manufacturers' specifications and Canadian Aviation Regulations. <br>Apply approved inspection, fabrication and repair techniques to composite and metallic structures while using appropriate industry documents and specialized tools safely and to Canadian Aviation Regulation standards.<br>Evaluate the structural integrity of airframes prior to, during and following disassembly to prevent further damage.<br>Use written instructions, schematics, manufacturers' specifications, technical drawings, manuals and computer-based information while performing routine and unscheduled tasks.<br>Generate damage reports, shop sketches and rectification statements in logbooks and work orders, and use design criteria to generate damage repair schemes.
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