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Phụ Mục : ..:: CAD / CAM / CNC / CAE ::.. Kiếm Trong Chuyên Mục
  Chuyên mục Bài mới Ðề tài Bài gởi
Tổng quan CAD CAM (Đang xem [1])
Các vấn đề chung về CAD CAM
Post [Trao đổi] Space E phần mềm...
bởi vsx86
31-08-2010 08:20 PM Tới bài mới nhất
66 453
Máy công cụ CNC (Đang xem [3])
Talking [Nhờ giúp đỡ] Máy CNC Mori Seiki MV40
bởi havanhuy
hôm nay 10:02 AM Tới bài mới nhất
236 1,842
Lập trình CNC (Đang xem [5])
[Đã giải đáp] Pro/NC Post Processor...
bởi haith2407
hôm nay 08:06 PM Tới bài mới nhất
199 1,679
CAE & Các PM Mô phỏng (Đang xem [1])
Các phần mềm mô phỏng, hỗ trợ kỹ thuật & các vấn đề trong CAE: ANSYS, DEFORM, HyperMesh, Moldex3D, ADAMS...
Hôm qua 04:13 PM Tới bài mới nhất
114 723
Pro/Engineer (Đang xem [4])
779 6,023
CATIA (Đang xem [1])
bởi langtuxmen
hôm nay 08:35 PM Tới bài mới nhất
275 2,744
[Trao đổi] Synchroonous...
bởi NgocAnh_07
hôm nay 04:58 PM Tới bài mới nhất
159 1,059
DelCAM (Đang xem [1])
bởi ngocpham
24-08-2010 08:44 PM Tới bài mới nhất
40 502
MasterCAM (Đang xem [2])
221 1,697
bởi Mr.Alone
hôm nay 04:37 PM Tới bài mới nhất
537 5,754
AutoCAD & Inventor (Đang xem [6])
415 3,082
Cimatron (Đang xem [1])
[Nhờ giúp đỡ] cho em hỏi về cách chọn...
31-08-2010 08:58 PM Tới bài mới nhất
86 585
bởi MrchinaCDN
27-08-2010 03:21 PM Tới bài mới nhất
35 262
Các thảo luận về MATLAB
bởi aneagle
30-08-2010 06:44 PM Tới bài mới nhất
11 53
Các thảo luận về Vericut ở đây
bởi bigbangla
15-08-2010 08:30 PM Tới bài mới nhất
13 131
Các nội dung thảo luận liên quan đến SpaceClaim
21-08-2010 04:58 PM Tới bài mới nhất
21 131
Các thảo luận về phần mềm ESPIRIT
7 44
Các thảo luận về Artcam
bởi QuyenQCM
28-08-2010 09:40 AM Tới bài mới nhất
13 151
Các thảo luận liên quan đến phần mềm TopSolid
15 82
Các phần mềm khác (Đang xem [1])
Smile [Trao đổi] Hỏi về RapidForm
bởi 3t_pu
25-08-2010 01:03 PM Tới bài mới nhất
94 425

Gởi Ðề Tài Mới
Chuyên Mục : ..:: CAD / CAM / CNC / CAE ::.. Sử Dụng Kiếm Trong Chuyên Mục
  Ðiểm Ðề tài / Người Gởi Bài mới Xếp theo thứ tự Trả lời Lần đọc
mybluelove
Hôm qua 08:48 AM
bởi ngô văn hiến Tới bài mới nhất
2 68
thanhlh84
25-08-2010 02:21 PM
bởi VNPT Tới bài mới nhất
3 431
dvnccbmacbt
20-08-2010 05:26 PM
bởi satthu Tới bài mới nhất
6 304
Post
[Trao đổi] Solid Edge
tuankcn
19-08-2010 08:37 PM
bởi tuankcn Tới bài mới nhất
0 53
[Chia sẻ] video sử dụng catia (Multi-page thread 1 2)
hannan
19-08-2010 12:39 AM
bởi Hiro Tới bài mới nhất
10 460
phamquoctuan1611
17-08-2010 10:08 PM
bởi ebook Tới bài mới nhất
1 85
Ðã chuyển: [Xin hỏi] máy tiện CNC for piston contour
thehanhctm
- - -
thanhlh84
08-08-2010 11:01 AM
bởi lqbinh Tới bài mới nhất
3 240
ViHoth Blog
30-07-2010 12:30 PM
bởi CadFirst Tới bài mới nhất
26 1,005
[Xin hỏi] Mô phỏng
maymo
15-07-2010 06:25 AM
bởi maymo Tới bài mới nhất
3 202
imcuong
02-06-2010 10:27 PM
bởi Hiro Tới bài mới nhất
1 139
NguyenTung
26-05-2010 07:55 AM
bởi neverlose Tới bài mới nhất
2 712
Exclamation
Do cuong
02-05-2010 12:26 PM
bởi laogia Tới bài mới nhất
6 688
thehanhctm
08-03-2010 09:59 AM
bởi thehanhctm Tới bài mới nhất
0 232
[Trao đổi] For Expert Ansys Man
quyenbk
31-01-2010 05:37 PM
bởi quyenbk Tới bài mới nhất
0 280
xuanhoabka
24-12-2009 09:06 PM
bởi phongpham Tới bài mới nhất
1 975
VUTHANH
13-12-2009 11:20 AM
bởi anlongan Tới bài mới nhất
1 515
Smile
tungctm8
09-12-2009 05:22 PM
bởi tungctm8 Tới bài mới nhất
0 412
Post
hoangngocthythy
15-11-2009 10:18 PM
bởi anhminhmt Tới bài mới nhất
1 554
hodinhtran
18-10-2009 12:48 AM
bởi mrgiang99 Tới bài mới nhất
1 592
Gởi Ðề Tài Mới

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Scroll to read all of the content - For Students who want to learn Engineering English Site Keywords in English:
machine, cnc, tools, engineering, cad cam, solidworks, pro engineer, catia, mastercam, inventor, mold, cae, materials, heat treat, mechanics, alloys, materials, steels, industry, machining, casting, machine, model, 3d, stl, scanner, laser, ptc, catia, cimatron, visi, solidcam, mold, die, jobs, software, metallurgy, iscar, mori seiki, mazak, cutting, edm, cae, sodick, automobile, sandvik, shipbuilding, aerospace, technique, experiment, fixture, valve, fluid, airplane, lathe, milling, automation, sensor, robot, industry, design, product, factory, equipment, welding, weld, machine element, pipe, astm, aisi, rfid, steel, standard, sae, jis, din, gost, gb, afnor, iron, metal, processing, forming, shaping, rolling, punching, drawing, chill, foundry, crucible, furnace, materials, ferrous, data, ceramic, polymer, composite, organic, semiconductor, superconductor, english, free, grammar, nano, biomaterials, manufacture, manufacturing,a ssembly, instrument, measurement, QC, QA, quality control, quality assurance, ergonomic, Vericut, Artcam, delcam, unigraphic, nx, pdm, plm, npd, siemens, spaceclaim, vericut, autocad, development, research, scholarship, autodesk, mechatronics, ebooks, free, download, career, recruitment, mechanical, study, student, solutions, services, maintenance, expert, scientist, engineer, surface, dfx, dwg, bearing, meter, plant, component, market
This Month's reference reading for better English skills:
Mechanical Engineering:
Many mechanical engineering companies, especially those in industrialized nations, have begun to incorporate computer-aided engineering (CAE) programs into their existing design and analysis processes, including 2D and 3D solid modeling computer-aided design (CAD). This method has many benefits, including easier and more exhaustive visualization of products, the ability to create virtual assemblies of parts, and the ease of use in designing mating interfaces and tolerances. Other CAE programs commonly used by mechanical engineers include product lifecycle management (PLM) tools and analysis tools used to perform complex simulations. Analysis tools may be used to predict product response to expected loads, including fatigue life and manufacturability. These tools include finite element analysis (FEA), computational fluid dynamics (CFD), and computer-aided manufacturing (CAM). Using CAE programs, a mechanical design team can quickly and cheaply iterate the design process to develop a product that better meets cost, performance, and other constraints. No physical prototype need be created until the design nears completion, allowing hundreds or thousands of designs to be evaluated, instead of a relative few. In addition, CAE analysis programs can model complicated physical phenomena which cannot be solved by hand, such as viscoelasticity, complex contact between mating parts, or non-Newtonian flows As mechanical engineering begins to merge with other disciplines, as seen in mechatronics, multidisciplinary design optimization (MDO) is being used with other CAE programs to automate and improve the iterative design process. MDO tools wrap around existing CAE processes, allowing product evaluation to continue even after the analyst goes home for the day. They also utilize sophisticated optimization algorithms to more intelligently explore possible designs, often finding better, innovative solutions to difficult multidisciplinary design problems. Computer Aided Design - CAD:
Computer-Aided Design is one of the many tools used by engineers and designers and is used in many ways depending on the profession of the user and the type of software in question. There are several different types of CAD. Each of these different types of CAD systems require the operator to think differently about how he or she will use them and he or she must design their virtual components in a different manner for each. There are many producers of the lower-end 2D systems, including a number of free and open source programs. These provide an approach to the drawing process without all the fuss over scale and placement on the drawing sheet that accompanied hand drafting, since these can be adjusted as required during the creation of the final draft. 3D wireframe is basically an extension of 2D drafting. Each line has to be manually inserted into the drawing. The final product has no mass properties associated with it and cannot have features directly added to it, such as holes. The operator approaches these in a similar fashion to the 2D systems, although many 3D systems allow using the wireframe model to make the final engineering drawing views. 3D "dumb" solids (programs incorporating this technology include AutoCAD and Cadkey 19) are created in a way analogous to manipulations of real world objects. Basic three-dimensional geometric forms (prisms, cylinders, spheres, and so on) have solid volumes added or subtracted from them, as if assembling or cutting real-world objects. Two-dimensional projected views can easily be generated from the models. Basic 3D solids don't usually include tools to easily allow motion of components, set limits to their motion, or identify interference between components. 3D parametric solid modeling require the operator to use what is referred to as "design intent". The objects and features created are adjustable. Any future modifications will be simple, difficult, or nearly impossible, depending on how the original part was created. One must think of this as being a "perfect world" representation of the component. If a feature was intended to be located from the center of the part, the operator needs to locate it from the center of the model, not, perhaps, from a more convenient edge or an arbitrary point, as he could when using "dumb" solids. Parametric solids require the operator to consider the consequences of his actions carefully. Some software packages provide the ability to edit parametric and non-parametric geometry without the need to understand or undo the design intent history of the geometry by use of direct modeling functionality. This ability may also include the additional ability to infer the correct relationships between selected geometry (e.g., tangency, concentricity) which makes the editing process less time and labor intensive while still freeing the engineer from the burden of understanding the model’s design intent history. These kind of non history based systems are called Explicit Modellers. The first Explicit Modeling system was introduced to the world at the end of 80's by Hewlett-Packard under the name SolidDesigner. This CAD solution, which released many later versions, is now sold by PTC as "CoCreate Modeling" Draft views are able to be generated easily from the models. Assemblies usually incorporate tools to represent the motions of components, set their limits, and identify interference. The tool kits available for these systems are ever increasing; including 3D piping and injection mold designing packages. Mid range software are integrating parametric solids more easily to the end user: integrating more intuitive functions (SketchUp), using the best of both 3D dumb solids and parametric characteristics (VectorWorks), making very real-view scenes in relative few steps (Cinema4D) or offering all-in-one (form•Z). Top end systems offer the capabilities to incorporate more organic, aesthetics and ergonomic features into designs (Catia, GenerativeComponents). Freeform surface modelling is often combined with solids to allow the designer to create products that fit the human form and visual requirements as well as they interface with the machine. Modern CNC Machines:
Numerical control (NC) refers to the automation of machine tools that are operated by abstractly programmed commands encoded on a storage medium, as opposed to manually controlled via handwheels or levers, or mechanically automated via cams alone. The first NC machines were built in the 1940s and '50s, based on existing tools that were modified with motors that moved the controls to follow points fed into the system on paper tape. These early servomechanisms were rapidly augmented with analog and digital computers, creating the modern computed numerically controlled (CNC) machine tools that have revolutionized the design process. In modern CNC systems, end-to-end component design is highly automated using CAD/CAM programs. The programs produce a computer file that is interpreted to extract the commands needed to operate a particular machine via a post processor, and then loaded into the CNC machines for production. Since any particular component might require the use of a number of different tools—drills, saws, etc.—modern machines often combine multiple tools into a single "cell". In other cases, a number of different machines are used with an external controller and human or robotic operators that move the component from machine to machine. In either case, the complex series of steps needed to produce any part is highly automated and produces a part that closely matches the original CAD design.
Source: Wikipedia