
Introduction to Siemens NX covers basic tools for modeling in surface, solid, and curve workflows, using studio surface techniques and image-based methods.
Master the Siemens NX sketcher basics in Sketcher 1 by learning how to create and constrain 2D sketches with lines, rectangles, arcs, circles, points, polygons, ellipses, and conic shapes.
Master sketching in Siemens NX by offsetting curves with direction controls, using extension gap and symmetric options; pattern, mirror with center line, derive lines, and perform trim, extend, and split.
Master sketcher techniques in Siemens NX, including offset move, scale curve, resize and delete operations, and essential geometric constraints with rapid dimension and constraint settings.
Explore the Siemens NX extrude command to convert sketches into solids or surfaces, using single or connected curves, direction, offsets, and booleans like unite, subtract, and intersect.
Use the revolve command to create solid and surface features from sketches with a defined axis. Explore open and closed profiles, subtract through cuts, and apply offsets to refine shapes.
Explore edge blend, chamfer, and shell workflows in Siemens NX. Learn trim body and split body operations for precise solid modeling.
Explore creating holes, ribs, and scale operations in Siemens NX, including through, counterbore, threaded, and screw clearance holes, plus rib modeling and uniform, symmetric, and non-uniform scaling.
Explore the mirror feature draft command in Siemens NX, using planes and middle planes to mirror multiple features, apply draft with stationary, tangent, and parting edge options, and maintain handedness.
Learn to create tube shapes along a path with sweep along guide in Siemens NX, using sections, guides, offsets, and boolean operations to build solid or hollow tubes.
Explore the Siemens NX pattern command suite, including linear, circular, polygon, spiral, and reference patterns, to efficiently array extruded features, control counts, pitch, rotation, and symmetry within boundaries.
Explore the Siemens NX measure tool to compute point-to-point, face-to-face, and vector distances, with options for minimum and maximum gaps, projected and screen distances, associative dimensions, and radius checks.
Learn to divide a face with planes, curves, or lines, apply trim sheet boundaries, and use the sue command to join multiple surfaces into a single solid.
Explore the low extension transition command in Siemens NX to create and modify surface geometry, combining curves with tangency, continuity, and symmetric options while controlling vectors, planes, and spines.
Learn to create a swept studio surface via mesh curves, selecting primary and guide curves, configuring orientation and alignment, and achieving tangent or curvature continuity with solid or sheet options.
Create bounded surfaces in NX by using boundary planes to close the area, and apply fill, trim, and inside surface operations for a high-quality single surface.
Create a solid part in NX by sketching on the XY plane, forming a hemisphere top, extruding and cutting features, and applying offsets, holes, and chamfers to finalize the model.
Learn to build a solid Siemens NX model from multiple views, apply offsets, constraints, and symmetry, then extrude, subtract, trim, fill, and add tangent arcs and circles to finalize.
Create a helix with diameter 40 and pitch 2, then build curves and lines to shape model. Drive a circular blank, set radii eight and three, trim, tube, and combine.
Construct a service-based Siemens NX model by sketching a 100-diameter circle, extruding, transforming, and using curve intersections and fills to complete the design.
Create data planes, lines, and curves in Siemens NX, apply radius and angles, then trim, replace faces, and align composite curves to complete the model.
Create a surface model in NX by sketching lines and circles, forming a helix, performing a swept operation, and shaping a tube with a diameter, then pattern and apply material.
Create a complex NX model using solid features, colors, and intersections. Extrude, align sketches, apply symmetry and boolean operations to form the final mirrored geometry and sections.
Learn to build a surface model in Siemens NX by sketching a triangle, defining centers with circles, creating and trimming curves and arcs, then applying color and solid options.
Create a solid base model in Siemens NX by shaping a hemisphere, adding sketches, extruding and cutting features, applying chamfers, and aligning sections for a final integrated part.
Build a 3d siemens nx model by sketching tangential circles and arcs, revolving the profile 180 degrees, sweeping with bounding references, uniting parts, applying shell and ribs, and assigning material.
Learn to create a solid and surface model in NX from raster images, generating curves with tangent continuity, then mirror, extrude, and trim to finalize the design.
Create a surface and solid model in NX by revolving a front sketch about the z axis, then cut, extrude ribs, and apply a three-instance pattern.
Explore creating a solid model in Siemens NX by using extrusion with multiple draft, then apply shell, cut, and blend operations, define the radius, and verify with BB section views.
Create a model annex in nx using solid and surface commands, starting from a center rectangle, extruding, applying a shell, and using studio surface guides.
Learn to build a surface-based elephant model in Siemens NX by shaping outer, side, and middle curves, forming a studio surface, applying tangential surfaces, bridging, extruding, mirroring, and finalizing solid.
Learn to build a Siemens NX model from sketches, revolve, sweep, and projection operations, then trim, extrude, thicken, and apply circular patterns for a precise solid and surface design.
In Siemens NX tutorial approach 17, learn to construct a complex solid model using surface and curve features, including ellipses, circles, projections, bridge curves, boundary surface, extrude, and revolve.
Master solid and surface modeling in Siemens NX by building an intake manifold, using sketches, extrudes, mirrors, trims, and boolean operations, with iso parametric flow and guide-less design.
Create a hybrid surface and solid model in NX by revolving an outer curve, forming elliptical features, and using studio surface, trimming, and extrusion to finalize the part.
master creating a complex surface and solid with the strip command, circles and tangents; apply extrude, sweep, mirror, cut, hole, chamfer, and section views for a finished NX model.
Create a multi-view annex model in NX, constructing circular, elliptical, and conical profiles with tangential constraints. Use sweep, extrude, mirror, trim, and join to form the final surface and solid.
Learn to build a Siemens NX model using surfacing, sketching, and curve operations, including creating sections, trimming with surfaces, applying circular patterns, and verifying with cross sections.
Romesh demonstrates building a solid model in Annex solid modeling, using revolve, swept operations, and patterning. He adds a threaded hole, chamfer, and drafting checks.
Create a surface-based model from front, top, and side views by defining arcs with radii and tangent constraints, then sweep, mirror, and extrude to thickness to form a solid.
Build an axial radial rotor in Siemens NX by sketching a half-section, applying arcs and radii, then revolve to a solid; pattern, offset faces, and add fillets to finish.
Create an inner-wall geometry in Siemens NX using front view sketches and projected curves, then extrude, revolve, trim, and boolean unite to finalize the model.
Create a surface and sheet in nx by sketching a top view circle (radius 17.5, diameter 35) and extruding to thickness 40 with a tangent line and 150 radius arc.
Learn to build a mixed surface and solid model in Siemens NX using surface options, sketches with tangency constraints, a cross-section on a moved plane, and an extrude with fillets.
Hello friends welcome to our course on NX Tutorial approach software .
NX (also known as Siemens NX), a product of SIEMENS Corp., is one of the world’s leading CAD/CAM/CAE packages. Being a solid & surface modeling tool, it not only unites 3D parametric features with 2D tools command, but also addresses every design-through-manufacturing process. Besides providing an insight into the design and manufacturing content, the package promotes collaboration between companies and provides them an edge over their competitors.
this course designed in such a way that you will learn about all NX CAD important tools and commands of the software with the help of tutorials. This is a streamlined course to take you about NX CAD to give you all the knowledge and skills needed to become a certified siemens NX designer. This course should enable you to, with confidence, use NX to design your next innovation and design. After this course, you can proudly list your NX CAD skills in your resume.
I have adopted the tutorial approach and the learn-by-doing theme throughout the course. This approach guides the students through the process of creating the models and drawing in the tutorials.
Features of the course
full and lifetime access to over 30 video lectures.
over 12 hours course content.
Language - English
Software version - NX 12
This course is designed to give complete & knowledge of every tool used to make designed model or drawings with exercises.
we have provided more than 20 practice models with videos to have a better understanding of commands and tools.
You will get all part files used to create this course which is helpful to do practice.
if you have any question regarding this course NX CAD, feel free to contact us. We will love to help you.
Why take this course
this course starts with the basics and slowly takes you into the depth of designing and modelling using solid & surface.
almost all important commands are discussed that are used in industry.
this course will help you to create your own designs and innovations with solid & surface.
for any query and trouble regarding course, we are always available for you.
What you will learn in this course
learn how to create 2D sketches using commands such as lines, circles, arcs, rectangles, polyline pattern etc.
learn how to apply manual and automatic constraints to sketches and assembly.
learn how to edit, move, copy, sketches, solids, surface and sheet metal.
create 3D models and shapes using commands such as extrude, revolve, sweep, ruled, sweep blend, draft, fillet, chamfer, studio surface, tube etc.
learn how to create drawings, projections and drafting of the models and assemblies.
learn about sheet metal design.