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Injection molding cycle calculator
An injection molding cycle time calculator is a crucial tool for manufacturers operating in the plastics industry, as it can help them accurately estimate their production cycles and optimize their manufacturing efficiency.
This calculator is useful to predict the time the molding cycle takes (typically from 10 seconds to 2 minutes, depending on many factors). The entire injection molding process has several phases that are important for the calculator. The major steps are mold closing and lock up, material injection, pressure holding, cooling, and mold opening and part ejection . Of these stages, cooling time is often the largest part of the whole cycle, which is directly affected by the wall thickness and material properties of the part. To use a cycle time calculator effectively, it is necessary for users to input critical parameters such as material type, average wall thickness, mold temperature and machine size. Material and wall thickness have the greatest effect, since they determine the amount of time the part will need to cool in order to be ejected Custom Plastics. For example, thicker walls need longer cooling times in order to avoid becoming deformed.
The biggest benefit of the calculator is that it gives an up-front estimate before actual production has been started. This enables manufacturers to assess the feasibility of projects, determine accurate pricing strategies and plan production schedules. While it is not easy to get an exact number without testing or sophisticated software simulation Custom Plastics, these calculators usually give an estimate accurate to within 15%, which is far better than making guesses.
Understanding and optimizing cycle time is very important because, along with material cost, it is the most important factor in manufacturing economics. By using these calculators in the quoting and planning stages, companies can prevent any costly miscalculations and get the most out of their equipment.
Injection Molding Cycle Time Calculator
Professional tool for calculating optimal molding cycle parameters
Total Cycle Time
| Material | HDT (°C) | α (mm²/s) | Melt Temp (°C) | Mold Temp (°C) |
|---|---|---|---|---|
| ABS | 85 | 0.080 | 180-260 | 20-70 |
| HIPS | 85 | 0.080 | 180-260 | 20-70 |
| PS | 85 | 0.080 | 180-260 | 40-70 |
| PP | 85 | 0.065 | 160-300 | 20-55 |
| HDPE | 50 | 0.090 | 150-300 | 20-45 |
| LDPE | 50 | 0.090 | 150-300 | 20-45 |
| PMMA | 90 | 0.075 | 180-260 | 40-70 |
| POM | 115 | 0.060 | 180-260 | 20-95 |
| PA6 | 130 | 0.070 | 225-250 | 70-110 |
| PA66 | 150 | 0.085 | 270-295 | 70-110 |
| PBT | 150 | 0.090 | 230-260 | 80-120 |
| PET | 150 | 0.090 | 260-290 | 80-120 |
| PC | 130 | 0.105 | 260-320 | 50-120 |
| PC-ABS | 110 | 0.095 | 230-270 | 50-80 |