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TubesT - How to configure the chc cutting head file
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TubesT - How to configure the chc cutting head file

I. Introduction

 

The chc cutting head model consists of two parts:

(1) Size parameters: used for interference detection to prevent side collision when cutting I-beams or other concave corner pipes.

For example, if you have a model with the following cutting head, you can get a simplified model like the one on the right by measuring.

 

(2) Three-dimensional model: used to make the visual effect of the simulation more realistic.

 

 

II. Usage Method

 

1. Determine whether it is a front assembly or a side assembly

 

front assembly: the front of the cutting head is parallel to the chuck face;

side assembly: The side of the cutting head is parallel to the chuck face.

 

2. Dimensional measurement and associative 3D model methods

If there is an IGS file of the cutting head, then it can be measured in IGS; If not, you can also go to the clip cutting head size and enter it into TubesT.

Note: The part close to the sprinkler head is the part that most often collides, so the modeling is more detailed; In general, there will be no collision in the upper position, so the maximum width of the section is directly entered.

 

front assembly Cutting Head Placement Tutorial:

 

side assembly Cutting Head Placement Tutorial:

 

★ If the backplate of your cutting head will cause a collision, you may wish to modify the size parameters and add the size of the backplate to do the interference detection together. 、

If you want to retain the original cutting head parameters, make a copy, and the modification will not affect the original configuration.

 

3.Other parameters

 

【Create Duplicate 】allows you to add a copy of the current cutting head, which is useful when you only need to modify a few parameters to get a new cutting head.

【Export Template】After checking the cutting head, click this button to get a CHC file.

For example, if the equipment manufacturer has 10 different cutting heads, you can configure all 10 of them first, and export the selected cutting heads to the corresponding customers as CHC files. Customers only need to 【Import Template】 to use.

【Relate 3D file】 is to use the actual model of the cutting head for dynamic simulation. **Simulation only makes the visual effect more realistic and does not represent the real processing situation.

TubesT - How to configure the chc cutting head file 1883view

I. Introduction

 

The chc cutting head model consists of two parts:

(1) Size parameters: used for interference detection to prevent side collision when cutting I-beams or other concave corner pipes.

For example, if you have a model with the following cutting head, you can get a simplified model like the one on the right by measuring.

 

(2) Three-dimensional model: used to make the visual effect of the simulation more realistic.

 

 

II. Usage Method

 

1. Determine whether it is a front assembly or a side assembly

 

front assembly: the front of the cutting head is parallel to the chuck face;

side assembly: The side of the cutting head is parallel to the chuck face.

 

2. Dimensional measurement and associative 3D model methods

If there is an IGS file of the cutting head, then it can be measured in IGS; If not, you can also go to the clip cutting head size and enter it into TubesT.

Note: The part close to the sprinkler head is the part that most often collides, so the modeling is more detailed; In general, there will be no collision in the upper position, so the maximum width of the section is directly entered.

 

front assembly Cutting Head Placement Tutorial:

 

side assembly Cutting Head Placement Tutorial:

 

★ If the backplate of your cutting head will cause a collision, you may wish to modify the size parameters and add the size of the backplate to do the interference detection together. 、

If you want to retain the original cutting head parameters, make a copy, and the modification will not affect the original configuration.

 

3.Other parameters

 

【Create Duplicate 】allows you to add a copy of the current cutting head, which is useful when you only need to modify a few parameters to get a new cutting head.

【Export Template】After checking the cutting head, click this button to get a CHC file.

For example, if the equipment manufacturer has 10 different cutting heads, you can configure all 10 of them first, and export the selected cutting heads to the corresponding customers as CHC files. Customers only need to 【Import Template】 to use.

【Relate 3D file】 is to use the actual model of the cutting head for dynamic simulation. **Simulation only makes the visual effect more realistic and does not represent the real processing situation.