1. Technical Field
The invention relates to molding systems and, more particularly, to an injection molding machine system and parameter setting method thereof.
2. Description of Related Art
Injection molding machines can include many modules, such as shutdown, injection, temperature, waveform, and production control modules. Each module controls setting of different parameter values according to different products or molds.
Generally, parameter values are set by an initial setting method, used when the injection molding machine is to be operated for the first time. Alternatively, for the subsequent uses, a second method of parameter setting consists of storing all preceding parameter values set initially,, directing the system to read and set the initial setting values.
However, individual setting of the parameter values is time-consuming, especially since offsetting entry points for each module are located at different points in the control interface of the injection molding machine. If all parameter values are reset, all entry sites must be re-visited. Accordingly, repeated and complicated operations are required to set the parameter values, aggravated by a tendency in the operation interface of the injection molding machine toward less-than-user-friendly.
In addition, when product line and, accordingly, molds used by the injection molding machine change, corresponding parameter values are also needed to be changed. When new values are entered accordingly for a single module, the injection molding machine is required to re-store the complete setting file. Consequently, the injection molding machine consumes excessive internal storage resources.
What is needed, therefore, is an injection molding machine system and parameter setting method thereof which can easily control the injection molding machine and conveniently modify parameter values.
Referring to
The mode unit 2 is coupled with the interface unit 4 and the control module unit 3. The control module unit 3 is coupled with the interface unit 4 and the database 5.
The database 5 includes a plurality of files 11, each storing one or many system parameter values 12.
The mode unit 2 receives a first input instruction D1 and includes a plurality of controls enabling setting of system parameter values 12. The controls include a system last state control 21, a combination common control 22, and a new module set control 23.
The control module unit 3 includes a plurality of module classification controls 31, a parameter set control 32, and a file-name set control 33. The module classification controls 31 include a boot-shutdown control, an injection control, a wave display control, and a process control control, respectively corresponding to function modules. The boot-shutdown control corresponds to a boot-shutdown module, the injection control corresponds to an injection module, the wave display control corresponds to a wave display module, and the process control control corresponds to a process control module. The control module unit 3 receives a second input instruction D2, a third input instruction D3, a fourth input instruction D4, a fifth input instruction D5 and a selecting parameter instruction D6. The control module unit 3 also enables selection of one of the module classification controls 31 according to the second input instruction D2, modifies the system parameter values 12 of the files 11 according to the third input instruction D3 and the selecting parameter instruction D6, sets a new system parameter value 14 by selecting the parameter set control 32 according to the fourth input instruction D4, or sets a new file 13 by selecting the file-name set control 33 according to the fifth input instruction D5, and saves the new system parameter value 14 and the new file 13 in the database 5.
The interface unit 4 includes a boot interface 41, a common module interface 42, a new module setting interface 43, and a main operating interface 44.
Referring to
Referring to
Referring to
Referring to
A parameter setting method for injection molding machine system 1, as shown in
In step S01, the injection molding machine system 1 starts. In step S02, the interface unit 4 displays the boot interface 41, the common module interface 42, the new module setting interface 43, and the main operating interface 44. If no system parameter values 12 of the injection molding machine system 1 need to be modified, the system last state control 21 is selected and step S03 is executed. If some parameter values 12 of the injection molding machine system 1 require modification, the combination common module control 22 is selected and the step S04 is executed. If all the system parameter values 12 of injection molding machine system 1 require resetting, the new module set control 23 is selected and step S05 is executed.
In step S03, the system parameter values 12 are loaded. The system last state control 21 is selected and the first input instruction D1 is input into the mode unit 2 to load the system parameter values 12 from the corresponding file 11 of the database 5, as seen in
In step S04, the system parameter values 12 loaded from the database 5 are modified and saved. Referring to
In step S05, all the system parameter values 12 are newly set and saved. Referring to
In step S06, the main operating interface 44 is initiated, and as shown in
In step S07, the injection molding machine system 1 determines whether the system parameter values 12, 14 need to be fine-tuned. If yes, step S08 is executed. If not, step S09 is executed.
In step S08, the system parameter values 12, 14 are fine-tuned individually.
In step S081, the injection molding machine system 1 determines whether the files 11, 13 need to be saved. If yes, step S082 is executed. If not, step S09 is executed.
In step S082, files 11, 13 are saved.
In step S09, the main operating interface 44 is closed.
In step S10, the injection molding machine system 1 determines whether the product line has changed. If yes, step S11 is executed. If not, step S12 is executed.
In step S11, the injection molding machine system 1 determines whether the system parameter values 12, 14 require modification. If so, step S02 is executed. If not, step S12 is executed.
In step S12, the injection molding system 1 is closed.
It is to be understood, however, that even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and function of the invention, the disclosure is illustrative only, and changes may be made in detail, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.
| Number | Date | Country | Kind |
|---|---|---|---|
| 200810303193.2 | Jul 2008 | CN | national |