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NX Mold Design automates and streamlines the entire mold development process including part design, tool design and motion validation. You can ensure fast response to design changes and high-quality molds. NX Mold Design automates and streamlines the entire mold development process including part design, tool design and motion validation. You can ensure fast response to design changes and high-quality molds. Accelerate the design of the most challenging molds using advanced functionality, step-by-step guidance and associativity with part model to ensure fast response to design changes and quality molds.
NX Mold Design automates and streamlines the entire mold development process including part design, tool design and motion validation. You can ensure fast response to design changes and high-quality molds.
The user should have basic concepts in the following
Introduction to Siemens NX
User interface and navigation
Application and workbench overview
Part Navigator
Layer management
Coordinate systems
Units and document settings
File management
Modeling preferences
Design intent and parametric modelling
Introduction to Sketcher
2D sketch creation
Lines, circles, arcs and rectangles
Slots and polygons
Spline creation
Construction geometry
Trim, extend and offset
Geometric constraints
Dimensional constraints
Fully constrained sketches
Sketch modification and analysis
Introduction to 3D modelling
Extrude
Revolve
Sweep
Through Curves
Through Curve Mesh
Hole
Edge Blend
Chamfer
Shell
Draft
Rib
Pattern features
Mirror geometry
Boolean operations
Datum planes and axes
Feature modification and editing
Introduction to surface modelling
Studio Surface
Through Curve
Through Curve Mesh
Swept surface
N-Sided surface
Bridge surface
Trimmed sheet
Offset surface
Sew and Join surfaces
Extend surface
Untrim surface
Replace face
Surface continuity
Surface-to-solid conversion
Complex product surface development
Introduction to plastic product design
Product design considerations
Wall thickness
Draft angle
Ribs and bosses
Snap-fit features
Mounting features
Plastic component modelling
Parting line considerations
Undercut identification
Product modification
Design feasibility for injection molding
Introduction to injection molding
Mold components and terminology
Two-plate mold
Three-plate mold – Introduction
Core and cavity concepts
Mold base structure
Parting line
Parting surface
Mold opening direction
Shrinkage concepts
Mold design workflow
Mold component selection
Mold design environment
Importing and preparing the product
Model validation
Mold coordinate system
Product scaling and shrinkage
Parting direction
Parting line creation
Parting surface creation
Core and cavity separation
Mold volume
Mold block creation
Mold component preparation
Core and cavity development
Core creation
Cavity creation
Parting surface application
Mold split
Boolean operations
Core inserts
Cavity inserts
Interchangeable inserts
Undercut identification
Slide and lifter concepts
Core and cavity modification
Mold design verification
Introduction to mold assembly
Mold base components
Fixed half and moving half
Core plate
Cavity plate
Support plate
Clamping plates
Ejector plates
Guide pillars and bushes
Locating ring
Sprue bush
Assembly positioning
Mold component placement
Assembly relationships
Mold assembly structure
Standard mold components
Guide pillars and guide bushes
Ejector pins
Ejector sleeves
Return pins
Sprue bush
Locating ring
Core pins
Inserts
Slides
Lifters
Side core mechanisms
Component positioning
Mold component clearance
Standard component selection
Introduction to ejection systems
Ejector pin arrangement
Ejector sleeve
Ejector plates
Return mechanism
Ejector pin placement
Ejection clearance
Ejector system assembly
Ejection stroke concepts
Ejection system detailing
Practical ejection design
Introduction to runner systems
Sprue and runner concepts
Gate types
Gate positioning
Runner layout
Cold runner system
Cooling channel concepts
Cooling layout
Basic cooling component placement
Manufacturing considerations
Introduction to mold drawings
Assembly drawing creation
Component drawings
Section views
Detail views
Exploded views
Dimensions
Tolerances and fits
Surface finish symbols
Hole callouts
Ejector pin details
Core and cavity drawings
Mold base drawings
Bill of Materials (BOM)
Balloons and annotations
Manufacturing documentation
Product modelling
Draft angle application
Wall thickness
Ribs and bosses
Design modification
Product preparation
Parting line
Parting surface
Core and cavity separation
Mold insert creation
Mold base assembly
Core and cavity inserts
Guide pillars and bushes
Ejection system
Assembly documentation
Mold assembly drawing
Core and cavity detailing
Component drawings
BOM
Manufacturing documentation
Have Queries? Talk to our Career Counselor
for more Guidance on picking the right Career for you! .
Learning a technology with a professional who is well expertise in that solve 60% of your needs.
We support any training with more practical classes. So, we always prefers to give hands-on training.
We started with 2 trainers, now we are 100+ and it’s still increasing. So we can give the students flexibility timings.
If you need software assistance we are here to back you up. Bring your laptop and load the required software and learn.
If you need software assistance we are here to back you up. Bring your laptop and load the required software and learn.
Every course in covered with interview point questions and real-time scenarios of what the company may look after from you.
Nx Mold Certification is one of the professional credentials which demonstrate that the candidate has gained in-depth knowledge of the Nx Mold and its application. With a real-time project experience provided at the end of the Nx Mold training, this certification states that the candidate has acquired the necessary skills to work in Nx Mold software. Having this certificate along with your resume helps in prioritizing your profile at the time of the interview, and also it opens the door for a wide range of career opportunities.
Nx Mold certificate from SSA holds the necessary skill sets that are required for a professional designer under the guidance of our Real-time professionals. Nx Mold training is provided by professionals who have 8+ years of experience in the Designing platform and also as corporate trainers. They upskill your knowledge with the recent developments in the relevant field of yours.
NX MOLD is the best software used by mechanical engineers. It is used for product designs in automobile industries. This software combines CAD, CAM and CAE all together in one this make very easy for 3D printing.
Some of the NX MOLD software using companies are:
SSA provides trainings both offline and online.
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