Trajectory Input Data. Belt Speed (m/s) Discharge Radius at Belt Line (m) = Pulley Radius + Belt Thickness. Second Discharge Radius (m) = Pulley Radius + Belt Thickness + Material height on the belt. This will show a second discharge trajectory. Belt Tension (kN)-Belt Tension at the Pulley (T1) Used to calculate the Belt Sag.
ConsultaDynamic Analysis-Drive Torque Speed Principles. Helix delta-T allows the designer to control the starting of a conveyor by means of: Torque Speed Control-Starting. Speed Time Control-Starting. Constant Torque Brake-Stopping. Speed Time Curve Control-Stopping. All of the above controls can be programmed in by entering data in the
ConsultaHELIX delta-T6 Version Features. HELIX delta-T6 is offered in different versions. The following list shows the main features and functions available in each of the different versions. Helix Delta-T6 Features.
ConsultaHelix DeltaT Help Contents General Contents Introduction Getting Started Browser Compatibility FAQ References Disclaimer Warning Messages Upload & Download Conveyors Changelog Videos Search Account and Subscriptions Manage Account Subscriptions
ConsultaSecond Discharge Radius (m) = Pulley Radius + Belt Thickness + Material height on the belt. This will show a second discharge trajectory. Belt Tension (kN)-Belt Tension at the Pulley (T1) Used to calculate the Belt Sag. The helper value in brackets [] is the maximum tension in kN for the current conveyor. Belt Mass Wb (kg/m)-Belt Mass per
ConsultaDelta T Help Contents. We suggest you first look at the Demonstration conveyors located under the Conveyors dropdown menu and Conveyor Demo's Page at the top Navigation Bar. A list of Conveyors will displayed. Click on the Open button next to the conveyor name to get started. You can add your own new Conveyor or copy one of the existing Demo
ConsultaWelcome to Helix Delta T6 Online Conveyor Design Software. Here are some steps to get you started: View some Demo files to familiarise yourself with the software and have a look at what you can create. Add a new conveyor or copy an existing conveyor-see the help file here. Start Drawing the conveyor profile and continue through the help pages
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ConsultaThank you for your enquiry about training for the Helix delta-T Conveyor Design Software. We are pleased to offer the following: Skirt, Hopper and Belt Feeder Pull-out forces Discharge Trajectories Starting methods and settings for Fluid Couplings, VVVF
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ConsultaFind the conveyor that you want to download and press the Action dropdown and select either Download T6 Xml or Download Json. Download Conveyor Files. You can store the .json files on your computer and upload them at any time (Subscription is required) You can open the .xml file in Delta T6 Desktop program. Conveyor Design and Analysis Software.
ConsultaHelix delta-T6 has three main methods for calculating conveyors: The ISO 5048 is the International Standard method and is closely related to the German DIN 22101 Standard. The Helix delta-T program follows the requirements of this standard with the addition of an automatic friction factor estimation based on belt sag.
ConsultaSee our new DeltaT Online Conveyor Design Software at www.helixconveyor.com. Online WebApp-No installation required. Tension and Power Calculations including graphs. Draw a sketch of the conveyor Profile and also view a scale drawing and a 3D line model of the conveyor. Calculate using CEMA, ISO 5048 or the Viscoelastic method.
ConsultaHELIX delta-D Pulley Shaft Calculation Program. Helix delta-D is an easy to use pulley shaft calculation program provided to perform conveyor pulley shaft size calculations. The program requires pulley and shaft dimensions as well as conveyor belt tensions for starting and running. This program is based on Australian Standard AS 1403-Design
ConsultaResistance and losses include: Belt to Idler Indentation Resistance, Material and Belt Flexure losses, Idler Rotation (Rim Drag) Resistances, Belt to Idler scuffing losses. Extract data from multiple conveyor design files and export to CSV then save as Excel. View reports in the browser or download directly to a folder.
ConsultaPerform Conveyor Pulley Shaft calculations in your browser. Helix delta-D is an easy to use pulley shaft calculation program provided to perform conveyor pulley shaft size calculations. Input the pulley shaft dimensions and conveyor belt tensions for starting and running. This program is based on Australian Standard AS 1403-Design of rotating
ConsultaGeneral Calculations. This page calculates the additional forces required to pull material out of a hopper or bin. This additional tension is mainly due to the shearing action required to pull the material out of the hopper opening. The methods shown and used are quick estimation methods and it must be pointed out that the design of feeders and
ConsultaSteps for Design of a Pipe Conveyor. In Helix delta-T a Pipe Conveyor is denoted by selecting or inputting 6 Roll Idlers and a 360 degree Troughing Angle and calculated using the Visco Calc Method. Build the model of the conveyor in the normal way as described in the Getting Started help topic. In the Belt > Belt Speed tab select a Belt Width
ConsultaConveyor Resistance Formula. u = co-efficient of friction. m = mass. g = 9.81 m/s². The Helix delta-T program provides you with three methods of calculating the conveyor friction factor, namely CEMA, ISO 5048 and Viscoelastic Method of calculation. This friction factor is usually estimated to be between 0.015 and 0.035.
ConsultaHelix DeltaT Online Conveyor Design Software-Build and Analyze Belt Conveyors in your Web Browser. Build your conveyor. Draw a sketch of the conveyor. Check the geometry in the Scale View. Enter the data in the
ConsultaAll Pulleys (Pulley, Drive, Takeup, Brake, Bend, Snub) X,Y,Z coordinates is the centre of the pulley and the Hopper and Int. Pt. are entered at the top of belt centreline. To enter the conveyor geometry we need to specify the X, Y Z coordinates of each item or pulley in the conveyor. X coordinate is the horizontal position of the item in plan
ConsultaA numeric example is shown below: Conveyor Speed = 1.0m/s, belt power = Te x Belt Speed. Effective Tension (3kN) and Absorbed power without Tension Adjustment = 3kW. Calculate hopper and add a Running Tension adjustment of 2kN (for example). Te is now 5kN and absorbed power 5kW.
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ConsultaConsult your pulley manufacturer before finalizing shaft details. The program allows a margin of 3mm on the diameter calculated to the diameter selected. For example, if the diameter calculated is 127.9 mm and there is 125mm shaft in the database, the 125mm will be selected. This is to prevent the program from oversizing the shaft when the
ConsultaQuick Calculation Pages Hopper pull out Forces Feeder Load Calc-Theoretical Discharge Trajectory Bearing Life L10h Transition Distance Motor Power Drive Traction Belt Turnover Conveyor Troubleshooting Conveyor Trouble Shooting Help Home Back To Top
ConsultaHelix delta-T6 Help File. To get help anywhere in the program all you need to do is press F1 and the relevant Help topic will be opened to guide you through steps of using the program. The Help file has. 111 Topics. 511 Local Links. 131 Internet links. 279 Graphics. The Help file shows the user the formulae and calculation methods used. There
ConsultaEnter the Belt Width and Pipe Diameter in mm. Enter the Belt Modulus, Curve Radius and Idler Spacing. Enter the Trough Angle. It must be 360 degrees for a pipe conveyor. Enter the Belt Rated Working Tension in kN/m width. Enter the Minimum Tension as a percentage of Rated Tension. Default value is 5% minimum belt tension, less than this may
ConsultaDesign Conveyor Pulleys and Shafts. Calculate Shaft Hub and Bearing Size Required. Includes Shaft Mounted Drive overhung load calculations. Calculate Pulley Shell thickness (uses Sitzwohl and MHEA methods) Calculate Pulley End-Disc thickness (uses Schmoltzi method) Calculates the Shaft deflection (Slope (radians) and Deflection in mm.
ConsultaHelix delta-T has been used as the design tool and proven in many thousands of real conveyor installations in more than 25 countries around the world since 1991. The latest version brings you even more power
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