毕业设计毕业论文双螺杆压缩机的设计外文翻译.doc
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1、Screw compressor rotor machining tool wear the geometric calculation method Abstract: screw compressor rotor milling and processing a grinding two methods, usually conducted in two phases processing; first stage is rough, when the workpiece to be processed about its size to the second stage of Finis
2、hed, when the rotor be processed into its final size when completed. Materials or cutting cushion in the finishing was removed, it is by milling, grinding and cutting tools determined by the design. Taking into account the screw compressor rotor is a spiral shape, in the process of cutting, cutting
3、tool on every point of contact with the rotor of the horizontal length is not the same, therefore, finished at the rate of wear and tear tool of its type along the line is Inconsistent. Envelop the meshing theory be used here in terms of the process of cutting tool on every point and the relative mo
4、tion between the rotor. To a certain scale, in this relative movement of assumptions, calculated on every point of the tool wear rate. By calculating the results and experimental tool that the rate of wear and tear, we can see that both the conclusions are the same. On this basis, can know how to cr
5、eate a rough time so that semi-processed materials while the thinning tool and thereby facilitate the finishing tool at the same rate of wear and tear. A similar technology is being applied to many of the machines during processing, and forming a variety of knives were also used for these technical.
6、 Keyword: screw compressors; spiral rotor; manufacturing tool1. Description: Screw compressor is a displacement of the rotary volume machines, it mainly by the meshing of a spiral rotor component, in the case, do rotor rotary movement, with its volume of the rotor spinning change. Todays main rotor
7、was a screw-type, used for milling or grinding. In either form of processing by the rotor, rotor can be used to define the coordinates of their geometric characteristics, as shown in Figure 1. To run a good screw compressor rotor must mesh properly, and in the contact line in the rotor to retain a c
8、ertain seal. This requires suitable for processing such knives, and must be a reasonable process of engagement worked out. Gear envelope of processing methods, if in a particular relative movement of a surface on another envelope, on this surface is meshing the two. Equation (1) the definition of a
9、given surface, the second surface by equation (2) and the equation (3) is given. Rotor in x, y coordinates the work surface for the change function x (t) and y (t). Through the x (t) and y (t) can be defined the type of rotor, Figure 2 is a typical example. Equation (4) is a familiar mating surface.
10、 Rotor coordinate their knives and coordinates the derivation can be equation (5). Equation (5) in C on behalf of the rotor shaft centerline the distance between the rotor and tool is the angle between the shaft. h t mean, respectively, and the rotor and tool the surface. These surface of the envelo
11、pe equation by equation (6) in the rotation angle to function in the form of that out.Because the surface is generated by the t to define the parameters, the envelope can be used to calculate the other parameters, it is the back corner of the rotor, is generated mesh surface as a factor. Envelope eq
12、uation in the cross-section of the generation that is part of the plane, but two general points on the relative speed rotary tool is the point of view. Rotor of the lead by each rotor rotary angle to determine;r (t, )=xcos-ysin,xsin+ycos,p(1)NamingC Rotor Tool center distance Rotor rotary angleP Rot
13、or each arc-lead Rotor-point line tan=R Tool-line coordinate Pressure angletan=r Vector coordinates Rot Shaft angles Measuring Tool Wea Tool perspectivet Rotor parameters x x Coordinate h Rotor spiralt y Coordinate hn Surface preparation of the rotorz z Coordinate n Rotor cross-section preparation M
14、s Liu area t Tool Figure 1 Rotor Tool and the coordinates (3)P(t, ,)= =(4) (5) (6) (7)Equation (7) in the equation (6) on the basis of the conditions of engagement, into the specific data can be obtained results. To set a parameter t, cross-section of the rotor coordinate x (t) and y (t) and their d
15、erivative known Rafah. Through the equation (1) and (2) and the parameters of the valve can be calculated. (8) Meshing conditions show that the spiral in the formation surface, the screw rotor precise tool of a broader and very convenient to use. With related gear envelope production of linear cutte
16、r involute line in the example of many in the relevant materials, such as Litin and Fuentes. But Andreev 2 and xing 3 in their recent book by using screw Compressor specific forms of processing tool to screw compressor theory. Stosic 4 propose a suitable rotation of the screw rotor imbalance and do
17、not intersect axis production methods. And Stosic Etal. 5 not only describes the intersection axis method. Equation (10) gives a reverse tool of the special form of the rotor. It can be used to calculate the impact of screw rotor manufacturing processing equipment deficiencies. Tool is given the coo
18、rdinates, the rotor-line through the coordinates of the points equation (4) the inverse operation can be calculated. Algorithms are as follows; (9) Angle from the next-calculated parameters: (10)Shizi over by equation (!) The inverse operation can be calculated rotor horizontal coordinates x and y.
19、are as follows: (11)Here Once the results worked out along the distribution of the dispersion of meshing tool can be used to calculate the rotor and the coordinates. The same can be identified contact line and the rotor, rotor and contacts between the tool path. Screw compressor line is sealed by a
20、series of points near the rotor component, usually in the gap between the rotor, a similar, knives and the contact line between the workpiece can be regarded as a rotor of the contact line, redundant Preparation should be removed when the rotor machining. If these remaining tool processing of raw ma
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