SolidWorks
🔰 PLC Program Flow and Control Instructions 🎟2020-10-16 • ⏱41m • 💡Advanced 🗣 Zahraa Khalil Explore advanced PLC ladder logic programming instructions, including bit shift left, bit shift right, word shift operations, and subroutine instructions. 📦 Topics:…
📁 Full denoscription
Ladder logic is a common programming language used in industrial and manufacturing processes. The controller, using a programmable logic controller (PLC) program, specifies what action each device needs to perform. Many PLC operations follow linear sequences, but as you develop more complex applications, you also need to build more sophisticated logic into your projects. In this course, explore advanced PLC ladder logic programming instructions, including bit shift left, bit shift right, word shift operations, program flow control instructions, and subroutine instructions. Learn about first in, first out (FIFO) and last in, first out (LIFO) word shifting instructions, as well as other options (and how to choose from among them).
Download Tutorial Video and Exercises Files👇👇
Ladder logic is a common programming language used in industrial and manufacturing processes. The controller, using a programmable logic controller (PLC) program, specifies what action each device needs to perform. Many PLC operations follow linear sequences, but as you develop more complex applications, you also need to build more sophisticated logic into your projects. In this course, explore advanced PLC ladder logic programming instructions, including bit shift left, bit shift right, word shift operations, program flow control instructions, and subroutine instructions. Learn about first in, first out (FIFO) and last in, first out (LIFO) word shifting instructions, as well as other options (and how to choose from among them).
Download Tutorial Video and Exercises Files👇👇
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📌Spoon Basket Modeling in SolidWorks
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📌Spoon Basket Modeling in SolidWorks
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📌Design World ( July 2021)
Inside:
1) Motion Connectivity
2) Electronics
3) Fastener Engineering
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💡📔Injection Molding Design Guidelines
📌Subject: Mold Wall Thickness
The thickness of the mold wall depends on the spacing between various features in the plastic model.
If features like ribs, bosses are placed close to each other or the walls of the parts, thin areas are created which can be hard to cool and can affect quality. If the mold wall is too thin, it is also difficult to manufacture and can also result in a lower life for the mold due to problems like hot bladecreation and differential cooling. Minimum allowable mold wall thickness needs to be decided based on process and material considerations.
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📌Subject: Mold Wall Thickness
The thickness of the mold wall depends on the spacing between various features in the plastic model.
If features like ribs, bosses are placed close to each other or the walls of the parts, thin areas are created which can be hard to cool and can affect quality. If the mold wall is too thin, it is also difficult to manufacture and can also result in a lower life for the mold due to problems like hot bladecreation and differential cooling. Minimum allowable mold wall thickness needs to be decided based on process and material considerations.
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💡📔Injection Molding Design Guidelines
📌Subject: Uniform Wall Thickness
Non-uniform wall sections can contribute to warpage and stresses in molded parts. Sections which are too thin have a higher chance of breakage in handling, may restrict the flow of material and may trap air causing a defective part.Too heavy a wall thickness, on the other hand, will slow the curing cycle and add to material cost and increase cycle time. Generally, thinner walls are more feasible with small parts rather than with large ones. The limiting factor in wall thinness is the tendency for the plastic material in thin walls to cool and solidify before the mold is filled. The shorter the material flow, the thinner the wall can be. Walls also should be as uniform in thickness as possible to avoid warpage from uneven shrinkage.
When changes in wall thickness are unavoidable, the transition should be gradual and not abrupt.
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📌Subject: Uniform Wall Thickness
Non-uniform wall sections can contribute to warpage and stresses in molded parts. Sections which are too thin have a higher chance of breakage in handling, may restrict the flow of material and may trap air causing a defective part.Too heavy a wall thickness, on the other hand, will slow the curing cycle and add to material cost and increase cycle time. Generally, thinner walls are more feasible with small parts rather than with large ones. The limiting factor in wall thinness is the tendency for the plastic material in thin walls to cool and solidify before the mold is filled. The shorter the material flow, the thinner the wall can be. Walls also should be as uniform in thickness as possible to avoid warpage from uneven shrinkage.
When changes in wall thickness are unavoidable, the transition should be gradual and not abrupt.
🆔Channel :@SolidWorks2019
↪️ Our Telegram Group Link ↩️
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SOLIDWORKS_Quick_Tip_Natural_Frequencies,_Mode_Shapes,_and_Vibration.mp4
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📌SOLIDWORKS Quick Tip Natural Frequencies, Mode Shapes, and Vibration analysis
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📚Handbook of Mechanical Engineering
✏️Dr. J. Srinivas
📌 Second Edition
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PDF File Download 👇
✏️Dr. J. Srinivas
📌 Second Edition
🆔Channel : @Solidworks2019
↪️ Our Telegram Group Link ↩️
#Book
PDF File Download 👇
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