
Future Trends in Injection Stretch Blow Molding Machine Technology
The field of Injection Stretch Blow Molding Machine technology is constantly evolving, driven by the demands of various industries for more efficient, sustainable, and high - quality production.
One of the prominent trends is the increasing integration of Industry 4.0 technologies. ISBM machines are being equipped with sensors and connectivity features that enable real - time monitoring and data collection. This data can be used to optimize the manufacturing process. For example, sensors can track the temperature, pressure, and speed at each stage of the injection, stretching, and blow - molding processes. By analyzing this data, manufacturers can identify inefficiencies and make adjustments to improve product quality and production speed. Additionally, remote monitoring allows for quick troubleshooting and maintenance, reducing downtime. Technicians can access the machine's data from anywhere in the world and diagnose problems without having to be physically present at the factory.
Another trend is the development of more energy - efficient machines. As environmental concerns continue to grow, manufacturers are looking for ways to reduce the energy consumption of their production processes. Future ISBM machines are likely to incorporate advanced energy - recovery systems. For instance, the heat generated during the cooling of the molded products can be used more effectively. Instead of simply dissipating this heat, it can be captured and used to pre - heat the incoming plastic resin pellets or to provide heating for other parts of the factory. Newer heating and cooling technologies may also be introduced to further reduce energy usage, such as more efficient induction heating systems in the barrel and hot runner.
The ability to handle a wider range of materials is also an emerging trend. With the growing emphasis on sustainable and recycled materials, ISBM machines need to be adaptable. Manufacturers are researching and developing ways to process bio - based plastics and recycled polymers more effectively. These materials often have different properties compared to traditional plastics, so the machine's injection, stretching, and blow - molding parameters need to be adjusted. For example, bio - based plastics may require different temperature profiles during heating and may have different flow characteristics during injection. Future ISBM machines will be designed to accommodate these variations, allowing for greater use of sustainable materials in plastic container production.
Automation and robotics are also set to play a more significant role in the future of ISBM technology. Robotic arms can be used to handle the transfer of preforms between different stages of the process with greater precision and speed. This not only reduces the risk of human error but also increases the overall productivity of the machine. Automated quality control systems, using technologies such as machine vision, will become more prevalent. These systems can quickly detect any defects in the molded products, such as cracks, uneven wall thickness, or incorrect dimensions, and immediately flag them for further inspection or removal.
In conclusion, the future of Injection Stretch Blow Molding Machine technology holds great promise. With the integration of Industry 4.0, energy - efficiency improvements, expanded material capabilities, and increased automation, these machines will continue to be at the forefront of plastic manufacturing, meeting the evolving needs of various industries.

Bahagi ng Iniksyon |
Screw Diameter |
40mm |
Screw L / D Ratio |
20.5:1 |
Screw Speed |
0-190RPM |
Theoretical Injection Capacity |
238cm3 |
Presyon ng Pag-iniksiyon |
174Mpa |
Max. Hydraulic Pressure |
|
Ang Aktwal na Dami ng Iniksyon (PS): |
|
Screw Stroke: |
|
Bahagi ng Clamping |
Puwersa ng Pag-clap ng suntok: |
800 |
Clamp Tonnage: |
400Kn |
Wheel Diameter: |
800mm |
Max. Taas ng Bote: |
ISB: 145 / isa: 140 |
Buksan ang Vertical Mode Trip: |
430mm |
mga iba |
Max. Presyon ng bomba: |
16Mpa |
Langis ng Motor: |
18.5 Kw |
Kuryente: |
12.2 Kw |
Tangke ng langis: |
400L |
Pangkalahatang Dimensyon(L*W*H): |
3.8M * 1.45M * 3.0m |
Timbang: |
5000kg |



ISB800 |
PC, PS, PMMA lamp cover, LED light lampshade, Christmas flash light, garden at street light. |
PET na may mataas na transparent na bote (mas manipis na pader), cosmetic bottle na 10ml hanggang 500ml, PET wide neck jar, PET pharmaceutical bottle. |
PP mataas na transparent na bote, bote ng pagpapakain ng sanggol, bote ng isport |
PCTG, Tritan drinking water bottle, sport bottle |
Single step VS Two-step Single step at two-step
Moulding |
paraan |
kaayusan |
Manpower/Enerhiya/Espasyo |
Kalidad ng Produkto |
Dawson One-step Injection Stretch Blow Molding Machine |
Mula sa preform hanggang sa produkto sa isang makina |
Isang makina |
maliit |
Hindi apektado ng mamasa-masa at mas kaunting polusyon; Iba't ibang uri ng hugis |
Iba pang makina |
Ang pag-injection at blow molding ay dalawang magkahiwalay na proseso |
1. Injection molding machine 2. Preform transiting machine 3. Muling pag-init, kahabaan at off-moulding machine |
pa |
Madaling maapektuhan ng mamasa-masa at polluted; Hugis ng pagiging single |




1. Ang pag-ikot ng gulong ay hinihimok ng de-koryenteng servo motor, hindi haydroliko.
2. Buong awtomatikong sistema ng pagkontrol, madaling pagpapatakbo.
3. Ang temperatura ng materyal na bariles at mainit na runner ay tumpak na kinokontrol ng PIT.
4. Mas maraming gastos ang matitipid kaysa sa tradisyunal na makina.
5. Compact na istraktura; mas kaunting espasyo ang kailangan.
6. Iniksyon: Ang hot runner at temperature control device ay karaniwang configuration.
Baguhin lamang ang amag para sa paggawa ng bagong produkto;
Stretch blow: Hydraulic mold clamping, core insert, stretch blow at bottom molding ay karaniwang configuration;
Paglabas ng Produkto: Nilagyan ng karaniwang ejector.
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