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HOLLOW WIDE-CHORD BLADE OF THE FAN AND METHOD OF ITS MANUFACTURE

机译:风扇的中宽阔叶片及其制造方法

摘要

FIELD: machine engineering.;SUBSTANCE: proposed hollow wide-chord fan blade, consisting of a shell made of a sheet of a titanium alloy, and rigidly connected with it the power carrier elements: one made of a titanium alloy, and others, made of unidirectional fiber metal matrix material of high composite modulus. Wherein n+1 force bearing elements are made in the form of "swallowtail" locks and are placed between the other n power of bearing elements and the edges of the blade lock, n-1 power of carrier elements, made of composite material, have a locking portion formed as a "swallowtail", and disposed within the shell portion in the form of a rod with a constant or gradually narrows towards the end of the blade quadrangular cross-section, with the sides, in contact with, repeating its shape shell. All the bearing elements are fixed to each other by the lock parts by means of diffusion welding at the temperature and pressure, and parts located inside the shell - are connected with the shell. Power bearing element of a titanium alloy has a U-shape in a side view of a blade formed by the crossbar and the uprights, with a locking part formed in the shape and size of "swallowtail" of blade lock. The damper is fixed in its cavity between racks. Between the end of the damper bar and the actuator, there is a configured gap selected at the maximum operating temperature. Between the bearing surfaces and damper struts with interference red-hot steel, polished smooth tapes are installed. The damper is designed as a multilayer multispan girder collected from m≥10 polished red-hot steel belts, assembled in layout m=m1+2m2+2m3+2: in the center of the package is installed m1=1, 2, and smoother tapes, they both sides "to the top of the corrugation peak of the corrugation" package has two raised "corrugations in corrugated" of m2=1, 2 or more corrugated strips, on which are mounted packages from m3=1, 2, and smoother tapes, mounted outside the package are smooth belts, one on each side of the package, with a thicknesshn=(k/2)⋅h, where k=2÷10 and h - the thickness of the inner damper tapes measured in mm. These tapes with a pitch equal to two steps flutes, which are symmetrical to the longitudinal axis of the belt are made rectangular protrusions, wherein the protrusions of one ribbon are shifted to step corrugations relative protrusions of another outer band and the middle of the projections are arranged in sections where the vertices of the corrugations are located, resting on the smooth belts packets packages installed outside the corrugated strips. In the assembled damper corrugations fully extended elastically by bending protrusions on the smooth exterior tape portion and lugs bent to the outer tape support surfaces and they are dampers themselves. The locking parts of power racks and the carrier element in the package is a hole into which the pin is press-fitted. Friction surfaces of the packet and smooth steel belts, on which it relies, are covered with wear-resistant coating. The very wide-hollow blade is manufactured according to the below-offered method. A method of manufacturing a hollow of wide fan blade, consisting in the fact that a sheet of titanium alloy made shell hollow of wide blades the desired shape of the fan and sizes, obtained power carrier elements: n+1 power carrier element constructed as a castle "swallowtail" blade and n-1 power carrying member having a locking part formed as a "swallowtail" blade, and a portion in the form of a rod with a constant or gradually narrowing the end rectangular transverse blade nym section preformed monolayers of metal matrix material of high composite modulus - boron fibers in an aluminium matrix, or boron fibers coated with silicon carbide in an aluminium matrix, carbon fibers in an aluminium matrix, or fibers of silicon carbide in a titanium matrix. They are exposed to stage thermal-processing, with a gradual increase in its exposure to the material. Moreover, preferably in the first stage, the impact of thermal-processing is 40-70%, in the second step the degree of thermal deformation effects processing with simultaneous shaping to the desired bearing elements geometric shape is 60-90% and the final processing of thermal deformation of these elements carrying up to 100% in the composition is carried fully assembled workpiece while pressing and diffusion welding of the blade. Another force supporting element is produced from the titanium alloy, and it has a U-shape in the side of the blade formed by the crossbar and the uprights, with a locking part formed in the shape and size of "swallowtail" blade lock. The red-hot steel damper is collected from polished coated tapes of wear-resistant coating, in the arrangement of m=m1+2m2+2m3+2, it is compressed to the full package resilient straightening of the corrugations, while bending back the outer band of each protrusions packet to the other outer band package. The package is ground over the projections. The bearing elements are placed in a shell in a manner and at a distance from each other in accordance with reinforcement diagram is inserted into the cavity of the force bearing element made of titanium alloy without a gap technological insert of refractory material and set the strength element with an insert into the shell at its place in the blade. The so formed workpiece is stack into the die, which repeats the profile of the blade size. As part of the assembled block, the final stage of thermal-processing carrier elements is operated, while pressing and diffusion bonding of the blade at a predetermined temperature and pressure. After removing the die blade from the carrier and insert from the actuator, and while the blade is not cooled, roasted ground smooth belts are inserted to the cavity and damper force bearing element. Moreover, the desired amount of interference on the bearing surfaces of the damper provides the selection of the thickness of the smooth belts.;EFFECT: high strength and static stiffness of huge light hollow of wide blades GTD fan conserved or accruing in the course of a work cycle, with a highly damping device capable not only to reduce the dynamic stress in the blade during impact and vibrations to a safe level, but also to improve the resource and reliability of GTD fan.;2 cl, 6 dwg
机译:领域:机械工程;;研究对象:拟议的中空宽弦风扇叶片,由钛合金薄板制成的壳体组成,并与之牢固连接,从而使动力传输元件:一个由钛合金制成,而其他则由其制成复合模量高的单向纤维金属基体材料的研究。其中n + 1个受力元件以“燕尾”锁的形式制成,并放置在其他n个承载元件与刀片锁的边缘之间,n-1个由复合材料制成的承载元件具有锁定部分形成为“燕尾状”,并以杆的形式设置在壳体部分内,杆的形状朝叶片四边形截面的端部恒定或逐渐变窄,其侧面接触并重复其形状贝壳。所有的轴承元件在温度和压力下通过扩散焊接通过锁定部件彼此固定,位于壳体内部的部件与壳体连接。钛合金的动力支承元件在由横杆和立柱形成的叶片的侧视图中呈U形,并且具有形成为叶片锁定的“燕尾形”形状和尺寸的锁定部。阻尼器固定在机架之间的空腔中。在阻尼杆的末端和执行器之间,有一个在最大工作温度下选择的配置间隙。在轴承表面和带干扰炽热钢的减震支柱之间,安装了抛光的光滑胶带。减振器设计为多层多跨大梁,从m≥10条抛光的红热钢带中收集,并按照m = m 1 + 2m 2 + 2m 的布局进行组装3 +2:在包装的中心安装了m 1 = 1、2和较平滑的胶带,它们的两侧都是“到瓦楞纸的瓦楞峰顶部”有两个凸起的m 2 = 1、2个或更多波纹条的“瓦楞纸板中的波纹”,上面装有m 3 = 1、2的包装和较光滑的胶带光滑的皮带安装在包装的外部,在包装的每一侧各有一条,厚度为h n =(k / 2)⋅h,其中k = 2÷10,h-厚度内阻尼带,以毫米为单位。这些具有等于两级凹槽的节距的带子,这些带子与带的纵轴对称,被制成矩形突起,其中一条带的突起移至台阶波纹,而另一条外带的突起移向台阶波纹,并且突起的中间为排列在波纹顶点所在的部分中,放置在安装在波纹带外侧的光滑皮带包装袋上。在组装的阻尼器波纹中,通过弯曲光滑的外部带部分上的突起和弯曲到外部带支撑表面的凸耳而完全弹性地延伸,它们本身就是阻尼器。电源机架和包装中的承载元件的锁定部分是一个孔,销钉被压入其中。包装袋和光滑的钢带的摩擦表面都覆盖有耐磨涂层。根据下面提供的方法制造非常宽的空心叶片。一种制造宽风扇叶片空心的方法,其特征在于,用一块钛合金制成的宽叶片壳空心具有所需的风扇形状和尺寸,从而获得功率承载元件:n + 1个功率承载元件构造为城堡“燕尾”叶片和n-1动力传输部件,具有形成为“燕尾”叶片的锁定部分,以及呈棒状的,具有恒定或逐渐变窄的端部矩形横向叶片nym截面的棒状部分,由金属制成高复合模量的基体材料-铝基体中的硼纤维,或铝基体中涂有碳化硅的硼纤维,铝基体中的碳纤维,或钛基体中的碳化硅纤维。它们会经受阶段热处理,并且逐渐暴露于材料中。而且,优选地,在第一阶段中,热处理的影响为40-70%,在第二步骤中,同时成形为期望的轴承元件几何形状的热变形效应处理的程度为60-90%,并且最终处理这些成分的热变形在组合物中的占比高达100%,是在压制和扩散焊接叶片时携带完全组装好的工件。另一个受力元件由钛合金制成,并且在由横杆和立柱形成的刀片侧面呈U形,其锁定部分的形状和尺寸形成为“燕尾”刀片锁定。炽热钢制减震器是从m = m 1 + 2m 2 + 2m 3 < / Sub> +2,将其压缩至完整包装,使波纹弹性拉直,同时将每个突起包的外带折回另一个外带包装。封装在突起上被磨碎。将支承元件按照一定的方式放置在壳体中,并按照一定的距离将它们插入到钛合金制的受力元件的腔体中,而无需在间隙中插入耐火材料并设置强度元件并在刀片中插入外壳的位置。将如此形成的工件堆叠到模具中,从而重复刀片尺寸的轮廓。作为组装块的一部分,在预定温度和压力下对叶片进行压接和扩散粘结的同时,操作热处理承载元件的最后阶段。在将刀片从载体上取下并从执行器中插入后,并且在刀片未冷却的情况下,将烘烤过的磨平皮带插入到型腔和阻尼力支承元件中。此外,在减震器的轴承表面上的所需干涉量提供了平滑皮带厚度的选择。效果:宽叶片GTD风扇的巨大轻型空心的高强度和静态刚度在使用过程中得以保留或累积工作周期,配备高阻尼装置,不仅可以将叶片在冲击和振动过程中的动态应力降低到安全水平,还可以改善GTD风扇的资源和可靠性。; 2 cl,6 dwg

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