New GD&TIP: Is it correct to treat cylindricity as ± (plus-minus) from the center axis of the part? If there is one thing, we can be sure about, A physical workpiece will never be perfect (and even if it was, we have limited measurement accuracy). That is the reason we need to specify Functional limits to geometry to assure a manufactured part will fit and function as plane. For further reading follow the link:
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🔍 Exploring Gear Metrology: Gear Terminology PART 01 🔍 In this comprehensive video, we uncover the essential concepts that form the backbone of gear design and manufacturing. 🔹 Pitch Circle: The cornerstone of gear geometry. 🔹 Pitch Circle Diameter: Calculating the key dimension for gear design. 🔹 Pressure Angle: Understanding its crucial role in gear meshing. 🔹 Pitch Point: Exploring its significance in gear engagement. 🔹 Addendum and Dedendum: Unveiling the components that shape gear teeth. 🔹 Base Circle: The foundation of gear geometry. 🔹 Circular Pitch: Connecting tooth size to gear geometry. Stay tuned for Gear Terminology PART 02, where we'll continue our exploration into the fascinating realm of gear metrology. Watch now and expand your understanding of gears! https://lnkd.in/dV6DMWDA
Gear Terminology ( PART 01 / 02 ) #gear #gearmanufacturing #machnical #knowledge
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Update on the 3D discrete-element strike-slip model - a quick montage of geometries, max. shear strain over last 50 m displacement...more explanation etc to follow...sorry, posted that early this morning, frictional-cohesive cover 800 m thick, total displacement at this stage 280 m. A couple of sections both shown in ImageTank and then max. shear strain calculated and shown in SSPX.
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Aluminium ingots are usually produced using a rotating casting wheel. In this casting process, it is important to strive for low turbulence filling to minimize air and oxide inclusions. Thanks to FLOW-3D CAST's ability to define any geometry as a moving geometry, the rotation of the casting wheel and the translation of the molds can be modeled very easily. In combination with the realistic flow simulation, FLOW-3D CAST is able to accurately represent the flows and turbulence as well as possible oxide or air inclusions in the melt. The entire heat balance, solidification and cooling of the ingots, in combination with a stress calculation, can also be examined in detail in order to avoid undesirable porosities, deformations or cracks. For more information on using FLOW-3D CAST, visit us at https://lnkd.in/dEGE-TF8. #cfd #computationalfluiddynamics #flow3d #flow3dcast #simulation #simulationsoftware #simulations #engineering #technology #fluiddynamics #fluidflow #turbulence #metalcasting #casting #castingindustry
Production of Aluminum Ingots with a Rotating Casting Wheel | FLOW-3D CAST
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Aluminum ingots are usually produced using a rotating casting wheel. In this casting process, it is important to strive for low turbulence filling to minimize air and oxide inclusions. Thanks to FLOW-3D CAST's ability to define any geometry as a moving geometry, the rotation of the casting wheel and the translation of the molds can be modeled very easily. In combination with the realistic flow simulation, FLOW-3D CAST can accurately represent the flows and turbulence as well as possible oxide or air inclusions in the melt. The entire heat balance, solidification and cooling of the ingots in combination with a stress calculation can also be examined in detail in order to avoid undesirable porosities, deformations or cracks. For more information on using FLOW-3D CAST, visit us at https://lnkd.in/fQAYjRj #flow3d #flow3dcast #simulationsoftware #metalcasting #cfd
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Weekly (20240407) Roll-forming process (roll flower) design (COPRA RF) ), and roll-forming CAE analysis (COPRA FEA) practice : Window Frame. 每週 (20240407)連續輥軋製程(花圖)、輥輪設計(COPRA RF) 練習:窗框。 #REFERENCE: [1] KR20060032982A, Window frame and window frame manufacturing system (Translated from Korean). ---- Tags: #ColdRollForming , #RollForming , #RollFlower , #COPRA, #COPRARF, #COPRAFEARF. ----
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The spring is used in most mechanical systems to store energy or to balance forces. They like to absorb tension and pressure forces. Here you can see a simple 3D Disign of a spring.
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Calibration made easy. Vernier Calipers The vernier caliper is an indispensable tool in the engineer's toolkit, embodying precision and accuracy. It consists of two main components: a main scale (body) and a sliding vernier scale. This design enables exceptional measurement accuracy when an item is placed between the scales. The caliper tool is adept at measuring internal and external diameters, as well as depths https://lnkd.in/dD4sq_FP
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Layer-parallel slip, weak partings etc - a better example, simple but illustrative. 2D discrete-element model of cover deformation above a listric fault. Cover is frictional-cohesive, bottom panel homogeneous, top panel has 5 weak contacts/partings/layers. All other boundary conditions identical. Scales etc given to the right, although this example is just chosen to illustrate/test a point and a mechanism. Left column is just end geometry, right column is total max. shear strain. Just how strain can hide eh? More later, coffee time.
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Inspecting a blade and not sure how to extract critical features such as: - Chords - Total Length - Thickness - Diameters - etc. Metrolog X4's blade module can help analyze these features and incorporate each step into a program to run through multiple pieces. For a personalized demo and to learn more please click the Book An Appointment to schedule time. #Inspection #Metrology #Blades #Turbines #GDT #ISO #ASME #CMM #Arms #Trackers
💡 Did you know how to use the Blade module in X4? Thanks to a simple, user-friendly interface, you can carry out 3D inspection of your blades. Check the measurements of your leading edges, trailing edges, Max thickness, Min circumscribed and much more. 📊 Find these results in your detailed views for better interpretation.
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💡 Did you know how to use the Blade module in X4? Thanks to a simple, user-friendly interface, you can carry out 3D inspection of your blades. Check the measurements of your leading edges, trailing edges, Max thickness, Min circumscribed and much more. 📊 Find these results in your detailed views for better interpretation.
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