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SWITEK Robotic Arms for Injection Molding Machine Installation Instruction -- Chapter 3: Robot Installation

Injection Robotic Arm

One Stop Robotic Arms for Injection Molding Machine Purchasing

SWITEK Robotic Arms for Injection Molding Machine Installation Instruction -- Chapter 3: Robot Installation
Abstract

The robotic arms for the injection molding machines would be installed to the top of the injection molding machine, the installer of the robotic arm must keep the SAFETY INSTRUCTION in his mind throughout the installation process. Here in this chapter you'll have a detailed guide line of how to fix the robotic arm to the injection molding machine safely step by step.

3.1 Check the mounting plate hole size

First check the robot base plate or transfer plate if it's match to the injection molding machine mounting plate?

robot installation

3.2 Use crane pick up the robot

  1. Move the X-axis manually, put the X-axis the the end of Z axis and have it locked with a clamp block .
    robot installation
  2. Move the X-axis manually to the end of Z-axis about 200mm and have it blocked with a clamp block.
  3. Use a long special rope for crane to through the loading holes at both ends of the machine beam, and need one more special rope for crane lock the X axis (Prevent uneven force resulting in machine tilt), finding the machine balance point, then pick it up as the pick below:
    robot installation

3.3 Connect with injection molding machine

Connecting the Power Supply -- Power Wiring via a transformer

robot installation

Communication with the Injection Molding Machine -- EU12/EU67/JIS

robot installation

3.4 Connecting to the conveyor
robot installation

COM points and CW/CCW points inside the conveyor belt control box are connected to his joint on the robot.

3.5 Turn on air source
robot installation

Please connect the prepared main air pipe to the "IN" of the pressure reducing valve of the air filter

NOTE: the pressure of the two pressure gauges must not be less than 0.5mpa, and the air source must be kept dry

3.6 Standard machine

All pipe and air pipe should be regulated and fixed by rolling tape and kept away from high temperature and hot areas.

3.7 Turn on the machine
  1. After the system start, tap the upper right corner of the screen [OPERATOR], choose [Senior Administrator] from the dialog box and input the password: 123
    robot installation
  2. Turn the button on the top left of the controller to the "STOPPING" position, and then press the "ORIGIN" button, press the start button again, wait for the robot to complete back to the origin.
    robot installation

    AREA 2: For the injection molding machine and the manipulator to connect and exchange signal visual area.

3.8 Signal test
  1. Turn on the "ROBOT FUNCTION" signal, check whether the injection molding machine can open and close the thimble movement, it should not be able to move. Turn-off this signal and the injection molding machine should be free.
  2. Put the robot in manual mode and open the safety door of the injection molding machine. You'll see the "Safety door open" signal and the robotic arm is prohibited of any movement.
  3. In stop mode, the robot is forced to open the closing signal to see whether the injection molding machine can open and close the mold. When the opening and closing is completed, see whether the opening and closing signal appears on the IO interface of the robot. Check thimble and core-pulling signals in the same manner.
  4. In manual mode, can not open and close the mold, see whether the injection molding machine can open and close the mold, should not open and close the mold, check thimber and core-pulling in the same way.
  5. In manual mode, move the robot's arm to the mold area to see if the injection molding machine can close the mold. It should not close the mold.


Hybrid Injection Molding Machine for Laboratory Consumable Petri Dish Injection Molding -- HD260KDY
Haida hybrid Injection Molding Machine
HD260KDY

HD260KDY -- HaiDa Hybrid Injection Molding Machine

No. Name Value
1 Clamping Force 2600 kN
2 Shot Weight 326 g
3 Shot Speed 350 mm/s
4 Screw Diameter 45 mm
5 Opening Stroke 500 mm
6 Space Between Tie Bars 570 x 520 mm
7 Mold Thickness (Min) 200 mm
8 Mold Thickness (Max) 560 mm
9 Pumper Motor 115 kW
10 Heating Capacity 18 kW

Injection Automation Application -- Side Entry Petri Dishs Injection Molding Automation Solution
petri dish packing solution

SIDE ENTRY PETRI DISH PACKING SOLUTION

Introduction of SWITEK Side Entry Petri Dish Packing System

The SWITEK side entry petri dish packing system is a custom made automation system for the stable production of laboratory consumable plastic petri dish with the picking robot, the petri dish assembly, stacking, packing unit etc. integrated as auniformed system for the efficient and stable production of the petri dish. The system can be custome made for a petri dish mold layout design of 2+2, 4+4, 6+6, 8+8 etc.

Functional Units of SWITEK Top Entry Petri Dish Packing System
petri dish packing solution
  • (1) -- Side Entry Robotic Arm: The picking arm of the packing system in handling the picking of the petri dish from the injection molding machine and place them on the assembly unit.
  • (2) -- Injection Mold: The core injection unit to shape the petri dish, it can be 2+2, 4+4, 6+6, 8+8 configuragion of the petri covers and bottoms.
  • (3) -- Petri Dish Assembly Unit: Have the cover and bottom of the petri dish assembled and drop it on the conveyor.
  • (4) -- Sorting Conveyor: Lined the assembled petri dish sets for stacking before packing.
  • (5) -- Stacking Station: Have the well assembled petri dishes stacked up as requested (5/10/15/20/25 sets etc.).
  • (6) -- Petri Dish Packing Unit: Have the well stacked petri dish packed and sealed with optional function of vacuume the bag.
  • (7) -- Petri Dish Transfer Robot: Catch the well sealed petri dish bag and drop it to the conveyor.
  • (8) -- Petri Dish Dropping Conveyor: Deliver the well packed petri dish.
  • (9) -- Injection Molding Machine: The injection unit of the whole syste.

Installation Dimension of SWITEK Side Entry Petri Dish Packing System
petri dish packing solution

Productivity of SWITEK Side Entry Petri Dish Packing Solutions
    Vacuumed Sleeve Packing
  • 10 Sets/Bag --Injection Cycle time: 9s
  • 20 Sets/Bag --Injection cycle: 6s
  • 25 Sets/Bag --Injection Cycle: 5.5s
    Non-vacuumed Sleeve Packing
  • 10 Sets/Bag --Injection Cycle time: 6.5s
  • 20 Sets/Bag --Injection cycle: 6s
  • 25 Sets/Bag --Injection Cycle: 5.5s

Mold Layout Design & Sleeve Size for the Petri Dish Packing System
petri dish packing solution

Mold Layout Deisgn

petri dish packing solution

Sleeve Size for Package with Vacuum Request

petri dish packing solution

Sleeve Size for Package without Vacuum Request

petri dish packing solution

Sleeve (With Mark) Size for Package with Vacuum Request

petri dish packing solution

Sleeve (With Mark) Size for Package without Vacuum Request

I think you'll have an overall understanding about the SWITEK top/side entry petri dish packing system. If you still have any other question about it or need any help in your petri dish production project, please feel free to contact SWITEK laboratory consumable plastic parts injection molding solutions team for more information.


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