Automatic Hydraulic Cap Making Machine Plastic Cap injection Molding Machine
DESCRIPTION
The process of making oil pull caps for injection molding machines requires attention to environmental protection and sustainable development. The injection molding industry is committed to researching and adopting environmentally friendly plastic materials to reduce their impact on the environment. In addition, optimizing the energy consumption and waste disposal process of injection molding machines is also an important environmental protection measure.
One of the advantages of using an injection molding machine to make oil pull caps is that it can achieve large-scale production and high efficiency. Injection molding machines have the ability to quickly inject and cool, and can produce a large number of oil pull cap products in a short period of time. In addition, injection molding machines can also achieve automated production, reduce manual operations, and improve production efficiency.
In addition, the production of oil pull caps by injection molding machines also has good product consistency and quality stability. Due to the precise control of injection pressure, temperature, and cooling time parameters by injection molding machines, the size and performance of each oil pull cap are basically consistent.
Technical Parameter
INJECTION UNIT | K-TEC120 | K-TEC140 | K-TEC170 | K-TEC230 | K-TEC270 | |||||||||||
Screw diameter | mm | 35 | 38 | 42 | 38 | 42 | 45 | 42 | 45 | 50 | 45 | 50 | 55 | 50 | ||
Screw L/D ratio | L/D | 22.8 | 21 | 19 | 22.1 | 20 | 18.7 | 23.5 | 22 | 19.8 | 23.4 | 21 | 19.1 | 25.2 | ||
Shot volume(theoretical) | cm³ | 163 | 192 | 235 | 226 | 277 | 318 | 311 | 357 | 441 | 397 | 490 | 593 | 530 | ||
Shot weight | g | 148 | 175 | 214 | 206 | 252 | 289 | 283 | 325 | 401 | 362 | 446 | 540 | 482 | ||
Injection rate | g/s | 92 | 108 | 130 | 94 | 115 | 132 | 138 | 160 | 196 | 124 | 154 | 186 | 187 | ||
Injection pressure | Mpa | 219 | 186 | 158 | 209 | 171 | 149 | 203 | 177 | 143 | 207 | 168 | 138 | 205 | ||
Screw speed | r.p.m | 220 | 220 | 200 | 175 | 185 | ||||||||||
CLAMPING | ||||||||||||||||
Clamp tonnage | KN | 1200 | 1400 | 1700 | 2300 | 2700 | ||||||||||
Toggle stroke | mm | 360 | 380 | 435 | 475 | 540 | ||||||||||
Space between tie-bars | mm | 410 * 410 | 420 * 420 | 460 * 460 | 520 * 520 | 570 * 570 | ||||||||||
Mould Height | mm | 160 - 400 | 160 - 450 | 180 - 520 | 200 - 530 | 200 - 580 | ||||||||||
Ejector stroke | mm | 100 | 120 | 135 | 140 | 150 | ||||||||||
Ejector tonnage | KN | 30 | 50 | 50 | 70 | 70 | ||||||||||
OTHERS | ||||||||||||||||
Max. pump pressure | MPa | 16 | 16 | 16 | 16 | 16 | ||||||||||
Motor power | KW | 14 | 14 | 21 | 28 | 36 | ||||||||||
Heat power | KW | 7.55 | 9.3 | 12.3 | 14.8 | 16.8 | ||||||||||
Machine dimension | m | 4.4*1.2*1.8 | 4.48*1.33*1.90 | 5.18*1.4*2.12 | 5.58*1.5*2.14 | 6*1.6*2.25 | ||||||||||
Oil tank capacity | L | 220 | 270 | 300 | 300 | 380 | ||||||||||
Machine weight | t | 3.8 | 4.3 | 6 | 7 | 8.5 |
Application
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