Injection Modling Machine
20180178428 ยท 2018-06-28
Inventors
Cpc classification
B29K2995/0056
PERFORMING OPERATIONS; TRANSPORTING
B29C45/0408
PERFORMING OPERATIONS; TRANSPORTING
B29K2067/046
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
An injection molding machine includes at least one machine platform, an injection device, at least one heating unit, at least one cooling unit, and at least one push-pull device. The injection device is configured to inject materials into at least one mold. The at least one heating unit is configured to heat the at least one mold. The at least one cooling unit is configured to cool the at least one mold. The push-pull drive member is configured to drive the at least one mold to move between a first position, in which the at least one mold corresponds to the injection device and the at least one heating unit, and a second position, in which the at least one mold corresponds to the at least one cooling unit.
Claims
1. An injection molding machine configured to perform injecting, cooling and heat setting operations on at least one mold, said injection molding machine comprising: at least one machine platform extending along a first axial direction and including a base seat, a lift drive member mounted on said base seat, and a lower mold seat drivable by said lift drive member to move up and down relative to said base seat; an injection device extending along a second axial direction transverse to the first axial direction and configured to inject materials into the at least one mold, said injection device having an injection mouth; at least one heating unit configured to heat the at least one mold and including a lower heating plate mounted on said lower mold seat, and an upper heating plate disposed above said lower heating plate and positionable relative to said at least one machine platform, said upper heating plate having a passage hole for passage of said injection mouth therethrough; at least one cooling unit mounted on said lower mold seat and configured to cool the at least one mold, said at least one cooling unit including a lower cooling plate, an upper cooling plate disposed above said lower cooling plate, and a cooling drive member for driving said lower and upper cooling plates to move toward and away from each other along the second axial direction, said lower cooling plate being disposed on one side of said lower heating plate along a third axial direction transverse to the first and second axial directions; and at least one push-pull device mounted on said lower mold seat and opposite to said at least one cooling unit, said at least one push-pull device including a connecting member configured to be connected to the at least one mold, and a push-pull drive member connected to said connecting member, said push-pull drive member being configured to drive the at least one mold to move between a first position, in which the at least one mold corresponds to said injection device and said at least one heating unit, and a second position, in which the at least one mold corresponds to said at least one cooling unit.
2. The injection molding machine as claimed in claim 1, wherein said at least one machine platform further includes an upper mold seat disposed above said lower mold seat, said injection device is mounted on said upper mold seat, and said upper heating plate is fixed to said upper mold seat.
3. The injection molding machine as claimed in claim 2, wherein said at least one machine platform includes three machine platforms spaced apart from each other along the first axial direction, said at least one heating unit including three heating units, said at least one cooling unit including three cooling units, said at least one push-pull device including three push-pull devices, said injection molding machine further comprising an injection drive unit for driving said injection device to move to said upper mold seat of a selected one of said machine platforms along the first axial direction.
4. The injection molding machine as claimed in claim 1, wherein the at least one mold includes a lower mold part and an upper mold part for covering the lower mold part, said at least one cooling unit further including a positioning plate, said upper cooling plate being fixed to said positioning plate, said injection molding machine further comprising at least one mold opening unit which includes a pair of mold opening drive members mounted on said positioning plate, a pair of engaging members drivable by said pair of mold opening drive members, and a pair of connecting rods each of which is pivotally connected between said positioning plate and a corresponding one of said engaging members, said pair of engaging members being configured to engage and disengage with the upper mold part when said pair of mold opening drive members are activated, said positioning plate being configured to move the upper mold part away from the lower mold part when said cooling drive member is activated.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0010] Other features and advantages of the disclosure will become apparent in the following detailed description of the embodiment with reference to the accompanying drawings, of which:
[0011]
[0012]
[0013]
[0014]
[0015]
[0016]
[0017]
[0018]
[0019]
DETAILED DESCRIPTION
[0020] Referring to
[0021] The injection molding machine of this disclosure is provided with three workstations 1, 2, 3 spaced apart from each other along the first axial direction (X), and uses only one injection device 20 that is movable among the workstations 1, 2, 3. Each workstation 1, 2, 3 has a machine platform 10, a heating unit 30, a cooling unit 40, a mold opening unit 50 and a push-pull device 60. To make this specification concise, only one workstation will be described hereinafter with reference to
[0022] The machine platform 10 extends along the first axial direction (X), and includes a base seat 11, a lift drive member 12 mounted on the base seat 11 and configured as a pressure cylinder, a lower mold seat 13 mounted on the lift drive member 12 and drivable by a piston 121 thereof to move up and down relative to the base seat 11, an upper mold seat 14 disposed above the lower mold seat 13, and a plurality of support posts 15 connected between the upper and lower mold seats 14, 13. The upper mold seat 14 has a through hole 142.
[0023] The injection device 20 is mounted on the upper mold seat 14, and extends along a second axial direction (Z) transverse to the first axial direction (X). The injection device 20 is configured to inject materials into the mold 100, and has an injection mouth 21 facing the lower mold seat 13.
[0024] The heating unit 30 is configured to heat the mold 100, and includes a lower heating plate 31 mounted on the lower mold seat 13, and an upper heating plate 32 disposed above the lower heating plate 31. The upper heating plate 32 is fixed to a bottom portion of the upper mold seat 14, and has a passage hole 321 for passage of the injection mouth 21 therethrough and corresponding to the through hole 142.
[0025] The cooling unit 40 is mounted on the lower mold seat 13, is configured to cool the mold 100, and includes a lower cooling plate 41 disposed on one side of the lower heating plate 31 along a third axial direction (Y) transverse to the first and second axial directions (X, Z), a positioning plate 42 disposed above the lower cooling plate 41, an upper cooling plate 43 fixed to a bottom portion of the positioning plate 42, and a pair of cooling drive members 44 (only one is shown in
[0026] Referring to
[0027] With reference to
[0028] The push-pull device 60 is mounted on the lower mold seat 13 and is disposed on the other side of the lower heating plate 31 opposite to the lower cooling plate 41. The push-pull device 60 includes a fixed seat 61 fixed to the lower mold seat 13, a push-pull drive member 62 mounted on the fixed seat 61, and a connecting member 63 connected between the push-pull drive member 62 and the mold 100. The push-pull drive member 62 is a pressure cylinder. When the push-pull drive member 62 is activated, it can drive the mold 100 to move between a first position, in which the mold 100 corresponds to the injection device 20 and the heating unit 30, and a second position, in which the mold 100 corresponds to the cooling unit 40. The control of the movement of the push-pull drive member 62 is accomplished through the use of two microswitches (not shown) mounted on the lower mold seat 13.
[0029] As shown in
[0030] With reference to
[0031] Next, as shown in
[0032] As shown in
[0033] As shown in
[0034] When the temperature inside the mold 100 is detected by the temperature sensor switches 103 of the upper and lower mold parts 102, 101 to have decreased to a predetermined value (A), the temperature sensor switches 103 will send out control signals for controlling the cooling drive member 44 to drive the positioning plate 42 and the upper cooling plate 43 to move away from the lower cooling plate 41 and the mold 100 (see
[0035] By repeating the operations shown in
[0036] After the finished product is removed from the mold 100, the cooling drive member 44 is again activated to drive the positioning plate 42 to move downward, so that the upper mold part 102 covers the lower mold part 101. The mold opening drive members 51 are then activated to release engagement of the engaging members 52 from the two opposite sides of the upper mold part 102. The operations shown in
[0037] In the mold opening state, as shown in
[0038] It should be noted herein that the upper mold seats 14 of the machine platforms 10 of the three workstations 1, 2, 3 are integrally connected as one piece. The injection molding machine of this disclosure further comprises an injection drive unit 16 (see
[0039] In sum, through the cooperation of the components of this disclosure, the mold 100 can be sequentially subjected to such operations as injecting, cooling, heat setting and automatic mold opening, so that the operation time and energy can be saved.
[0040] While the disclosure has been described in connection with what is considered the exemplary embodiment, it is understood that this disclosure is not limited to the disclosed embodiment but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation so as to encompass all such modifications and equivalent arrangements.