In 2021, Dozens of Lectures Were
Trained Throughout the Year
Technical Field of More Than
100 Sets of PPT Smart Manufacturing Case Courseware
1. Main Design of Courseware for
The Whole Year
There are dozens of courses throughout the year. The list of
courses designed at present is as follows:
group |
|
Main contents of the course |
I |
Overview and requirements of Smart Manufacturing |
In addition to the following specialized fields, basic
technologies in Smart Manufacturing include
multi-level computer control, basic automation, MES, ERP,
learning methods, etc |
II |
Engineering modeling of Smart Manufacturing
(production process optimization) |
Engineering problems include the coordination between
various process parameters, the calculation of main key
parameters, the influence of incoming material parameters
and various engineering parameters on product quality, and
so on. The lecture is based on the actual cases of more
than 100 sets of models in the same industry and emerging
industries, as well as the three-day modeling lecture
conducted by the main trainer for a university and a
company. |
III |
Machine learning based on model and field data, data
acquisition, digital manufacturing, etc |
Firstly, collect the dynamic data of the site based on
digital manufacturing, then machine learn the established
engineering model, and use a large amount of online data
to inverse calibrate the model coefficients in the
engineering model, so as to fully bind them with the
process, products and equipment on site; With the change
of equipment and production conditions, the model
coefficient changes, so the model is fully bound with the
production line. The lecture is based on the actual cases
on site and the solutions of self-study logic problems. |
IV |
Intelligent system architecture and development, and
factory software engineering |
Based on the formed model (about 1 / 3) and various
scenario use cases of the production line (about 2 / 3).
Scenario use cases are mainly the sum of all solutions to
the problems solved by each engineer. Scenario use cases
also include some unique problem solutions of products.
For example, when thick materials are processed into thin
materials, due to the low temperature at both ends of the
material, the head and tail are thicker than the middle
part due to the rapid temperature drop during the same
reduction, so the solution of scenario use cases is
required. Usually, the corresponding software should be
constructed first, and then programmed by the programming
team. |
V |
Field case analysis of Smart Manufacturing |
In addition to the above technical points that call on the
field case analysis, the case analysis here summarizes the
completed field projects; In addition, the team is
studying the content sharing of various intelligent
systems. |
2. Lectures Based on Enterprise Field Projects
This includes a series of on-site projects
completed by the main Trainer:
ID |
On site case lecture |
describe |
1 |
Cascat intelligent system project, Lecture 4
Architecture and development of three Level 2s of
electric furnace, refining furnace and continuous casting
-Functional design
-Software development
-Model and calculation
-Interface, database and others |
Based on a 300 page book written by the main trainer but
not yet published, focusing on the first-hand information
of the on-site project |
2 |
Morgan / Siemens project, 4 lectures
More than 100 sets of engineering model development
experience, based on Morgan's more than 100 years of
research and development and customer data around the
world, including 5 years of experimental rolling
-Deformation calculation
-Force energy calculation
-Microstructure and properties
-Others |
The courseware is drawn from a 5-day model training
courseware (20 courseware + 20 exercises) and a 3-day
model training courseware for Taiyuan University of
science and technology and TISCO |
3 |
Oregon company and subsequent development, 4 lectures
-Engineering modeling and machine learning of secondary
system
-Scenario and software architecture development of
Level 2
-Microstructure model, intelligent self-study and
continuous upgrading of the new generation of secondary
system
-Application of a new generation of Level 2 -
Bivariate self-study under the guidance |
The essence of several on-site two level
system projects, including the essence of
dozens of related international papers. |
4 |
German Research Association project, 2 lectures
-Engineering modeling
-Results and verification |
Including scientific research reports, master's theses and
theses from well-known German magazines, etc |
5 |
BYD project, 4 lectures
Development of lithium battery Smart Manufacturing
system and soft measurement, etc
-Engineering model development and machine learning
-Software function and architecture development
-Defect early warning system and its application
-Soft sensing technology and field development |
It also discusses the problems and opportunities of
Smart Manufacturing in China |
6 |
Metal Pass platform development, lecture 2
More than 100 app architecture development |
50000 pages of app development on Metal Pass online,
including 4 relevant international papers |
7 |
South Korea POSCO project, Lecture 1
Flexible design of enterprise field project based on
online app |
Highly difficult design with nine mutual constraints,
based on online app |
8 |
Other projects, 4 lectures
Tesla, Zhengwei, Skyworth, TCL, Guangye, Tiannuo, etc |
Focus on problem solving and current situation discussion |
From the designed course list, determine the final course
according to the students' quality and interest. Enterprise
personnel are welcome to bring the existing problems of the
enterprise to the classroom, so as to explain the courseware
in combination with the on-site problems.
3. Areas
Covered by Courseware
The
course focuses on Smart Manufacturing itself, and only
slightly involves supplementary courses of automation or
digitization. Courses can be flexibly set to one day, two
days, three days, five days, two weeks, etc. When there are
few classes, some parts can only be passed slightly. It
usually takes a long time to finish the 30-year work system.
Basic application and learning methodology:
-
Teacher
student interaction and curriculum planning
-
Industry 4.0 /
Smart Manufacturing background
-
Problems and
promotion methods of Smart Manufacturing
-
Application of
artificial intelligence in manufacturing industry
-
Learning
foreign languages, computers, scientific research methods
and others
Case based
Smart Manufacturing technology:
-
Existing
technology case of Smart Manufacturing
-
Smart Manufacturing problems and system architecture
-
Suggestions on
key areas of Smart Manufacturing
-
Suggestions on
the development of multilevel computer system
-
Introduction
to Smart Manufacturing technology
Examples of
Smart Manufacturing factories in various countries
-
Smart Manufacturing case - subsystem
-
Smart Manufacturing case - advanced materials (1)
-
Smart Manufacturing case - advanced materials (2)
-
Smart Manufacturing case - Electronics / SMT
-
Smart Manufacturing case - lithium battery electrode
Practical
training based on Smart Manufacturing case
-
Site scheme
-
Four
industrial brains
-
Field project
-
Practical
training
-
Continue to
improve
This course
balances basic skills, field cases, academic methods and
practical combat.
Training
General,
Paper,
Courses,
Course overview,
Resources,
Trainer,
Experience,
Study method,
project,
Case-based
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