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Pro E – Engineered to be a Pro
http://ikyaglobaledu.net/proe-trainings-hyderabad.php
1
Engineers who are well versed
with Pro/Engineer are highly
demanded by industries and
companies.
2
ORGANIZATIONS WITH FAMILY
BASED OR PLATFORM DRIVEN
PRODUCT STRATEGY ESPECIALLY
REQUIRE THE SERVICES OF A
PROFESSIONAL IN PRO/E.
This software program is of great utility in healthcare,
manufacturing, electrical and design sectors. The software was
developed by PTC (Parametric Technology Corporation).
3
It involves 2D and 3D modeling,
assembly creation and datum
planes training.
http://ikyaglobaledu.net/proe-trainings-hyderabad.php
4
SEVERAL INSTITUTIONS OFFER
TRAINING IN PRO-E TO STUDENTS
FROM ENGINEERING, ARCHITECTURE
AND OTHER STREAMS.
ProE training with live projects and hands-on
experience helps students start a lucrative career in
the field.
5
The system utilizes a 3D solid modeling system as the core, and
uses the feature-based, parametric modeling method.
• Pro/ENGINEER is a
computer graphics
method for simulating
many mechanical
figures and for
executing associated
design and
manufacturing
procedures.
6
Subsequently, Pro/E became popular with successive versions like
Pro/Engineer 2000; 2000i, 2000i2; 2001, Wildfire 1.0; Wildfire 2.0, Wildfire
3.0; Wildfire 4.0; and Wildfire 5.0.
• In brief, Pro/ENGINEER
is a feature-based,
parametric solid
modeling system with
several expansive
design and
manufacturing
applications.
• Pro/Engineer is the
software product
developed by PTC
(Parametric Technology
Corporation) whose
initial versions were
Pro/E 1, 2, and go up to
19.
http://ikyaglobaledu.net/proe-trainings-hyderabad.php
7
PTC relaunched and rebranded
Pro/Engineer in 2011 as Creo
Parametric. The current version of
Pro Engineer is 3.0.
8
THE SOFTWARE APPLICATION PRO/ENGINEER WORKS ON THE
MICROSOFT WINDOWS AND UNIX PLATFORMS.
It furnishes assembly modeling, solid modeling, and drafting, NC and tooling
functionality and finite element analysis, for mechanical engineers.
9
• Also, Pro/ENGINEER,
integrated 3D
CAD/CAM/CAE solution,
is utilized by distinct
manufacturers for
mechanical engineering,
manufacturing, and
design.
http://ikyaglobaledu.net/proe-trainings-hyderabad.php
10
It was Dr. Samuel P. Geisberg who created Pro/Engineer in the mid-1980s. Pro/ENGINEER was the
first triumphant parametric, 3D CAD modeling system of the industry.
11
The parametric modeling process utilizes features, parameters,
relationships and dimensions to capture the envisaged product
style and initiates a recipe which allows design automation and
the effectiveness of the design and product development
processes.
12
• This powerful and high design
mode is utilized by companies
whose product plan is family-
based or platform-driven, where
a prescriptive blueprint strategy
is decisive to the accomplishment
of the design manner by
embedding engineering
restrictions and relationships to
rapidly tweak the design, or
where the ensuing geometry may
be intricate or based upon
equations.
http://ikyaglobaledu.net/proe-trainings-hyderabad.php
13
PRO/ENGINEER PROVIDES A FULL SET
OF ASSESSMENT, DESIGN, AND
MANUFACTURING POTENTIALITY ON
ONE, SCALABLE AND INTEGRAL
PLATFORM.
These potentials comprise of Surfacing, Solid Modeling, Data
Interoperability, Routed Systems Design, Rendering, Simulation, NC
and Tooling Design, and Tolerance Analysis. All these aspects are
covered in Pro-E training.
14
Difference between Pro-E and
other CAD systems:
15
At present, most software
manufacturers have realized the
benefit of this method and moved
their product onto this framework.
• Pro/Engineer was the first CAD system
completely founded upon feature-based
blueprint and parametric build.
http://ikyaglobaledu.net/proe-trainings-hyderabad.php
16
Nonetheless, the differences
amongst a feature-based,
parametric solid modeling CAD
system and a conventional CAD
system are:
17
Pro/Engineer:
• Solid Model.
• Parametric Model.
• Feature-Based Modeling.
• Single Data Structure and Full
Associativity.
• Subject-Oriented Sub-Modeling
Systems.
• Manufacturing Information
Associated with Features.
• Generation of an Assembly by
Assembling Components.
Conventional CAD Systems:
• Wireframe and Solid Model.
• Fixed Model.
• Primitive-Based Modeling.
• Function-Oriented Data
Structure and Format
Interpreters.
• A Single Geometry-Based
System.
• Texts Attached to Geometry
Entities.
• Generation of an Assembly by
Positioning Components.
18
Ease of Use:
Pro/ENGINEER was modeled to start
where the design engineer begins
with elements and design
benchmark, through menus which
cascade.
http://ikyaglobaledu.net/proe-trainings-hyderabad.php 19
Expert users use "map keys" to aggregate frequently used
commands along with tailor-made menus to exponentially gain
their speed in function.
20
• Pro/ENGINEER renders
the power to sketch
right away on the solid
model part to sketch
right on to the solid
model, feature location
is therefore
uncomplicated and
precise.
21
• Full Associativity:
• Pro/ENGINEER is built on a single data structure, with the
power to make modification established into the system.
• Hence, when an alteration is made anywhere in the growth
process, it is circulated throughout the whole design-through-
manufacturing process.
http://ikyaglobaledu.net/proe-trainings-hyderabad.php
22
• Pro/ENGINEER Functionality:
• The fundamental functionality of Pro/ENGINEER is split into four main
spheres:
– Part Modeling and Design.
– Assembly Modeling and Design.
– Design Documentation (Drawing Generation).
– General Functionality.
23
Applications:
http://ikyaglobaledu.net/proe-trainings-hyderabad.php
24
Companies use Pro/ENGINEER to set
up an entire 3D digital model of
their creation.
The models comprise of 2D and 3D
solid model data that can also be
utilized to downstream in finite
element analysis, rapid prototyping,
tooling design, and CNC
manufacturing. 25
ALL OF THE DATA IS ASSOCIATIVE
AND INTERCHANGEABLE BETWEEN
THE CAD, CAE, AND CAM MODULES
WITHOUT CHANGEOVER.
All of the data is associative and interchangeable
between the CAD, CAE, and CAM modules without
changeover.
26
The associativity in Pro/ENGINEER
allows the users to generate
alternations in the design at any
time throughout the product
building method and automatically
update downstream deliverables.
http://ikyaglobaledu.net/proe-trainings-hyderabad.php
27
• CAD/CAM application is
vastly utilized by the
manufacturing
industries today. There
are many patterns or
approaches which can
be used utilized in order
to build the G-code (NC
code) for machining
intention.
28
THOSE WHO ARE WELL-VERSED WITH
PRO/ENGINEER ARE AT AN
ADVANTAGE BECAUSE THERE IS A
HIGH DEMAND BUT DEARTH OF
WELL-SKILLED ENGINEERS AND
OTHER PROFESSIONALS WHO ARE
PROFICIENT IN THE SOFTWARE.
Companies that are into manufacturing and creation of new product lines
find ProE to be an indispensible tool.
29
Students wishing to start a career through this software may
first enquire which companies are seeking professionals in this
field so they can target the specific company they aspire to work
for.
• Some companies employ alternative software programs.
• Students wishing to start a career through this software may first enquire
which companies are seeking professionals in this field so they can target
the specific company they aspire to work for.
http://ikyaglobaledu.net/proe-trainings-hyderabad.php
30
Merely getting trained in the software
may not be of much use unless
students make efforts to keep
themselves abreast of industry
developments.
http://ikyaglobaledu.net/proe-trainings-hyderabad.php
31
IKYA GLOBAL PROVIDES TOP-
NOTCH TRAINING IN PRO
ENGINEER.
It offers ProE training in Hyderabad and training is based
on live projects.
http://ikyaglobaledu.net/proe-trainings-hyderabad.php
32

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Pro e ikya global education

  • 1. Pro E – Engineered to be a Pro http://ikyaglobaledu.net/proe-trainings-hyderabad.php 1
  • 2. Engineers who are well versed with Pro/Engineer are highly demanded by industries and companies. 2
  • 3. ORGANIZATIONS WITH FAMILY BASED OR PLATFORM DRIVEN PRODUCT STRATEGY ESPECIALLY REQUIRE THE SERVICES OF A PROFESSIONAL IN PRO/E. This software program is of great utility in healthcare, manufacturing, electrical and design sectors. The software was developed by PTC (Parametric Technology Corporation). 3
  • 4. It involves 2D and 3D modeling, assembly creation and datum planes training. http://ikyaglobaledu.net/proe-trainings-hyderabad.php 4
  • 5. SEVERAL INSTITUTIONS OFFER TRAINING IN PRO-E TO STUDENTS FROM ENGINEERING, ARCHITECTURE AND OTHER STREAMS. ProE training with live projects and hands-on experience helps students start a lucrative career in the field. 5
  • 6. The system utilizes a 3D solid modeling system as the core, and uses the feature-based, parametric modeling method. • Pro/ENGINEER is a computer graphics method for simulating many mechanical figures and for executing associated design and manufacturing procedures. 6
  • 7. Subsequently, Pro/E became popular with successive versions like Pro/Engineer 2000; 2000i, 2000i2; 2001, Wildfire 1.0; Wildfire 2.0, Wildfire 3.0; Wildfire 4.0; and Wildfire 5.0. • In brief, Pro/ENGINEER is a feature-based, parametric solid modeling system with several expansive design and manufacturing applications. • Pro/Engineer is the software product developed by PTC (Parametric Technology Corporation) whose initial versions were Pro/E 1, 2, and go up to 19. http://ikyaglobaledu.net/proe-trainings-hyderabad.php 7
  • 8. PTC relaunched and rebranded Pro/Engineer in 2011 as Creo Parametric. The current version of Pro Engineer is 3.0. 8
  • 9. THE SOFTWARE APPLICATION PRO/ENGINEER WORKS ON THE MICROSOFT WINDOWS AND UNIX PLATFORMS. It furnishes assembly modeling, solid modeling, and drafting, NC and tooling functionality and finite element analysis, for mechanical engineers. 9
  • 10. • Also, Pro/ENGINEER, integrated 3D CAD/CAM/CAE solution, is utilized by distinct manufacturers for mechanical engineering, manufacturing, and design. http://ikyaglobaledu.net/proe-trainings-hyderabad.php 10
  • 11. It was Dr. Samuel P. Geisberg who created Pro/Engineer in the mid-1980s. Pro/ENGINEER was the first triumphant parametric, 3D CAD modeling system of the industry. 11
  • 12. The parametric modeling process utilizes features, parameters, relationships and dimensions to capture the envisaged product style and initiates a recipe which allows design automation and the effectiveness of the design and product development processes. 12
  • 13. • This powerful and high design mode is utilized by companies whose product plan is family- based or platform-driven, where a prescriptive blueprint strategy is decisive to the accomplishment of the design manner by embedding engineering restrictions and relationships to rapidly tweak the design, or where the ensuing geometry may be intricate or based upon equations. http://ikyaglobaledu.net/proe-trainings-hyderabad.php 13
  • 14. PRO/ENGINEER PROVIDES A FULL SET OF ASSESSMENT, DESIGN, AND MANUFACTURING POTENTIALITY ON ONE, SCALABLE AND INTEGRAL PLATFORM. These potentials comprise of Surfacing, Solid Modeling, Data Interoperability, Routed Systems Design, Rendering, Simulation, NC and Tooling Design, and Tolerance Analysis. All these aspects are covered in Pro-E training. 14
  • 15. Difference between Pro-E and other CAD systems: 15
  • 16. At present, most software manufacturers have realized the benefit of this method and moved their product onto this framework. • Pro/Engineer was the first CAD system completely founded upon feature-based blueprint and parametric build. http://ikyaglobaledu.net/proe-trainings-hyderabad.php 16
  • 17. Nonetheless, the differences amongst a feature-based, parametric solid modeling CAD system and a conventional CAD system are: 17
  • 18. Pro/Engineer: • Solid Model. • Parametric Model. • Feature-Based Modeling. • Single Data Structure and Full Associativity. • Subject-Oriented Sub-Modeling Systems. • Manufacturing Information Associated with Features. • Generation of an Assembly by Assembling Components. Conventional CAD Systems: • Wireframe and Solid Model. • Fixed Model. • Primitive-Based Modeling. • Function-Oriented Data Structure and Format Interpreters. • A Single Geometry-Based System. • Texts Attached to Geometry Entities. • Generation of an Assembly by Positioning Components. 18
  • 19. Ease of Use: Pro/ENGINEER was modeled to start where the design engineer begins with elements and design benchmark, through menus which cascade. http://ikyaglobaledu.net/proe-trainings-hyderabad.php 19
  • 20. Expert users use "map keys" to aggregate frequently used commands along with tailor-made menus to exponentially gain their speed in function. 20
  • 21. • Pro/ENGINEER renders the power to sketch right away on the solid model part to sketch right on to the solid model, feature location is therefore uncomplicated and precise. 21
  • 22. • Full Associativity: • Pro/ENGINEER is built on a single data structure, with the power to make modification established into the system. • Hence, when an alteration is made anywhere in the growth process, it is circulated throughout the whole design-through- manufacturing process. http://ikyaglobaledu.net/proe-trainings-hyderabad.php 22
  • 23. • Pro/ENGINEER Functionality: • The fundamental functionality of Pro/ENGINEER is split into four main spheres: – Part Modeling and Design. – Assembly Modeling and Design. – Design Documentation (Drawing Generation). – General Functionality. 23
  • 25. Companies use Pro/ENGINEER to set up an entire 3D digital model of their creation. The models comprise of 2D and 3D solid model data that can also be utilized to downstream in finite element analysis, rapid prototyping, tooling design, and CNC manufacturing. 25
  • 26. ALL OF THE DATA IS ASSOCIATIVE AND INTERCHANGEABLE BETWEEN THE CAD, CAE, AND CAM MODULES WITHOUT CHANGEOVER. All of the data is associative and interchangeable between the CAD, CAE, and CAM modules without changeover. 26
  • 27. The associativity in Pro/ENGINEER allows the users to generate alternations in the design at any time throughout the product building method and automatically update downstream deliverables. http://ikyaglobaledu.net/proe-trainings-hyderabad.php 27
  • 28. • CAD/CAM application is vastly utilized by the manufacturing industries today. There are many patterns or approaches which can be used utilized in order to build the G-code (NC code) for machining intention. 28
  • 29. THOSE WHO ARE WELL-VERSED WITH PRO/ENGINEER ARE AT AN ADVANTAGE BECAUSE THERE IS A HIGH DEMAND BUT DEARTH OF WELL-SKILLED ENGINEERS AND OTHER PROFESSIONALS WHO ARE PROFICIENT IN THE SOFTWARE. Companies that are into manufacturing and creation of new product lines find ProE to be an indispensible tool. 29
  • 30. Students wishing to start a career through this software may first enquire which companies are seeking professionals in this field so they can target the specific company they aspire to work for. • Some companies employ alternative software programs. • Students wishing to start a career through this software may first enquire which companies are seeking professionals in this field so they can target the specific company they aspire to work for. http://ikyaglobaledu.net/proe-trainings-hyderabad.php 30
  • 31. Merely getting trained in the software may not be of much use unless students make efforts to keep themselves abreast of industry developments. http://ikyaglobaledu.net/proe-trainings-hyderabad.php 31
  • 32. IKYA GLOBAL PROVIDES TOP- NOTCH TRAINING IN PRO ENGINEER. It offers ProE training in Hyderabad and training is based on live projects. http://ikyaglobaledu.net/proe-trainings-hyderabad.php 32