CN220307465U - Die pressing machine assembly - Google Patents

Die pressing machine assembly Download PDF

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Publication number
CN220307465U
CN220307465U CN202320917524.1U CN202320917524U CN220307465U CN 220307465 U CN220307465 U CN 220307465U CN 202320917524 U CN202320917524 U CN 202320917524U CN 220307465 U CN220307465 U CN 220307465U
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CN
China
Prior art keywords
upper die
plate
mounting plate
lifting mechanism
lower die
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Active
Application number
CN202320917524.1U
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Chinese (zh)
Inventor
曹永辉
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Kunshan Aosen Weier Automation Equipment Co ltd
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Kunshan Aosen Weier Automation Equipment Co ltd
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Priority to CN202320917524.1U priority Critical patent/CN220307465U/en
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Abstract

The utility model discloses a film pressing machine component, which is characterized by comprising the following components: the conveying rail is used for conveying the workpieces and is provided with a first station for enabling the workpieces to stay, and the conveying rail is provided with a channel with a distance h; the lower die module is positioned right below the first station and comprises a lower die pressing plate and a first lifting mechanism for driving the lower die pressing plate to lift, and the lower die pressing plate can pass through the interval h when lifted; the upper die module is positioned right above the first station and comprises an upper die pressing head and a second lifting mechanism for driving the upper die pressing head to lift, and the upper die pressing head is provided with a plurality of upper die pressing heads. The upper die assembly is provided with a plurality of upper die pressing heads, each upper die pressing head is arranged corresponding to a workpiece on the carrier plate, and when the upper die pressing heads are pressed down, the upper die pressing heads act on the corresponding workpiece below, so that each workpiece is ensured to be subjected to uniform pressure, and the problems encountered in the prior art are effectively solved.

Description

Die pressing machine assembly
Technical Field
The utility model relates to a film pressing machine component.
Background
A Flexible Printed Circuit (FPC) is a flexible printed circuit board having high reliability and excellent properties, which is made of polyimide or polyester film as a base material; the circuit board film pressing machine is used for pasting a photosensitive film and a solder resist film in the circuit board manufacturing process.
The existing flexible circuit board film pressing machine is characterized in that FPC workpieces are placed on a workpiece carrier plate, and then transported to a film pressing station by the carrier plate to be pressed. A plurality of FPC workpieces are usually arranged on the carrier plate, and film pressing is carried out through an integral upper film pressing plate in the film pressing process, so that the FPC workpieces on the carrier plate are unevenly stressed.
Disclosure of Invention
The utility model aims to provide a film pressing machine capable of realizing uniform film pressing.
In order to solve the above problems, the present utility model provides a film pressing machine assembly, which is characterized by comprising:
the conveying rail is used for conveying the workpieces and is provided with a first station for enabling the workpieces to stay, and the conveying rail is provided with a channel with a distance h;
the lower die module is positioned right below the first station and comprises a lower die pressing plate and a first lifting mechanism for driving the lower die pressing plate to lift, and the lower die pressing plate can pass through the interval h when lifted;
the upper die module is positioned right above the first station and comprises an upper die pressing head and a second lifting mechanism for driving the upper die pressing head to lift, and the upper die pressing head is provided with a plurality of upper die pressing heads.
As a further improvement of the present utility model, the upper die set is provided with:
the fixed end of the first lifting mechanism is arranged on the first fixed support plate;
the upper die pressing head is arranged below the first fixed supporting plate, the upper die mounting plate is horizontally arranged, the movable end of the first lifting mechanism is mounted on the upper die mounting plate, and a plurality of upper die pressing heads are further arranged below the upper die mounting plate.
As a further improvement of the present utility model, the upper die set further includes:
the fixed block is vertically arranged on the lower surface of the upper die mounting plate;
the fixing rod is vertically arranged on the lower surface of the upper die mounting plate or the fixing block;
the upper die pressing head is arranged at the bottom of the sliding block;
and the compression spring is positioned between the upper die mounting plate and the sliding block and sleeved on the fixing rod.
As a further improvement of the utility model, a sliding rail is vertically arranged on the side wall of the sliding block, the sliding rail part extends out of the upper part of the sliding block, and a sliding groove for the sliding rail to slide in is arranged on the side wall of the fixed block.
As a further improvement of the present utility model, the lower die set includes:
the fixed end of the second lifting mechanism is arranged on the second fixed support plate;
the lower die mounting plate is positioned above the second fixed supporting plate, the movable end of the second lifting mechanism is connected to the lower die mounting plate, and the lower die pressing plate is arranged above the lower die mounting plate.
As a further improvement of the present utility model, a heating plate is provided between the lower die plate and the die mounting plate, and the lower die plate obtains heat by heat transfer.
As a further improvement of the utility model, the second lifting mechanism is a cylinder.
As a further improvement of the utility model, the first lifting mechanism is a screw lifting mechanism.
The die press assembly of claim, wherein the upper die ram is removably mounted to the upper die mounting plate.
As a further improvement of the utility model, a heat insulation plate is arranged between the lower die mounting plate and the heating plate.
The utility model has the beneficial effects that the upper die assembly is provided with a plurality of upper die pressing heads, each upper die pressing head is arranged corresponding to a workpiece on the carrier plate, and when the upper die pressing heads are pressed down, the upper die pressing heads act on the corresponding workpieces below, so that each workpiece is ensured to be subjected to uniform pressure, and the problems encountered in the prior art are effectively solved.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic diagram of the lower and upper mold modules in FIG. 1;
FIG. 3 is a schematic view of a part of the upper die set
In the figure: 200-transporting tracks; 202-channel; 400-lower die set; 402-lower die plate; 404-a second stationary support plate; 406-a lower die mounting plate; 408-heating plate; 410-insulating panels; 600-upper die set; 602-upper die ram; 604-a first stationary support plate; 606-upper die mounting plate; 608-fixing blocks; 610-a fixed rod; 612-sliding blocks; 614-compression spring; 616—a slide rail; 618-chute.
Detailed Description
The technical scheme of the utility model is further described below by the specific embodiments with reference to the accompanying drawings.
As shown in fig. 1-3, the present utility model includes:
a transport rail 200 for transporting the workpiece and provided with a first station at which the workpiece rests, the transport rail being provided with a channel 202 having a distance h;
the lower die module 400 is located right below the first station and comprises a lower die pressing plate 402 and a first lifting mechanism for driving the lower die pressing plate 402 to lift, and the lower die pressing plate 402 can pass through the interval h when lifted;
the upper die set 600 is located right above the first station and comprises an upper die pressing head 602 and a second lifting mechanism for driving the upper die pressing head 602 to lift, and the upper die pressing head 602 is provided with a plurality of upper die pressing heads.
As a further improvement of the present utility model, the upper die set 600 is provided with:
a first fixed support plate 604 horizontally arranged, and a fixed end of the first lifting mechanism is arranged on the first fixed support plate 604;
the upper die mounting plate 606 is located below the first fixed support plate 604, and is horizontally arranged, the movable end of the first lifting mechanism is mounted on the upper die mounting plate 606, and a plurality of upper die pressing heads 602 are further arranged below the upper die mounting plate 606.
As a further improvement of the present utility model, the upper die set 600 further includes:
a fixing block 608 vertically installed on the lower surface of the upper die mounting plate 606;
a fixing rod 610 vertically installed on the lower surface of the upper die mounting plate 606 or the fixing block 608;
a sliding block 612 slidably mounted on a bottom free end of the fixed rod 610, the upper die press 602 being mounted on a bottom of the sliding block 612;
a compression spring 614 positioned between the upper die mounting plate 606 and the sliding block 612, wherein the compression spring 614 is sleeved on the fixed rod 610.
As a further improvement of the present utility model, a sliding rail 616 is vertically disposed on a side wall of the sliding block 612, the sliding rail 616 partially extends above the sliding block 612, and a sliding groove 618 for sliding the sliding rail 616 therein is disposed on a side wall of the fixed block 608.
As a further improvement of the present utility model, the lower die set 400 includes:
a second fixed support plate 404 disposed horizontally, the fixed end of the second lifting mechanism being disposed on the second fixed support plate 404;
the lower die mounting plate 406 is located above the second fixed support plate 404, the movable end of the second lifting mechanism is connected to the lower die mounting plate 406, and the lower die pressing plate 402 is disposed above the lower die mounting plate 406.
As a further improvement of the present utility model, a heating plate 408 is provided between the lower die plate 402 and the die mounting plate, and the lower die plate 402 obtains heat by heat transfer.
As a further improvement of the utility model, the second lifting mechanism is a cylinder.
As a further improvement of the utility model, the first lifting mechanism is a screw lifting mechanism.
The die press assembly of claim, wherein the upper die ram 602 is removably mounted to the upper die mounting plate 606.
In the utility model, the following components are added:
(1) A transportation rail 200 is arranged, the transportation rail 200 is composed of two rails and a channel 202 arranged between the rails, and a carrier plate loaded with workpieces is transported to a film pressing station through the transportation rail 200;
(2) After the carrier plate is transported to the film pressing station, the jacking cylinder on the lower die assembly jacks up the lower die mounting plate 406, the heat insulation plate 410, the heating plate 408 and the lower die pressing plate 402 simultaneously, and the size of the four plates is smaller than the width h of the channel 202, so that the carrier plate on the film pressing station of the transport rail 200 can be jacked up by the four plate structure through the channel 202;
(3) The servo motor on the upper die assembly drives the spiral lifting mechanism to move so that the upper die mounting plate 606 moves downwards, and the upper die press head 602 contacts with the workpiece on the carrier plate to finish film pressing. The upper die pressing heads 602 are provided with a plurality of workpieces on carrier plates corresponding to specific numbers and positions, each upper die pressing head 602 is arranged at the bottom of one sliding block 612, a fixed rod 610 which is connected with the sliding block 612 in a sliding way is arranged above the sliding block 612, a plurality of fixed blocks 608 (the number of the fixed blocks corresponds to that of the upper die pressing heads 602) are arranged on the lower surface of each upper die mounting plate 606, each fixed block 608 is of an L-shaped structure, each fixed rod 610 is arranged on the upper half part of each fixed block 608, a compression spring 614 is arranged between each fixed rod 610 and each sliding block 612, each compression spring 614 is sleeved on each fixed rod 610, a sliding rail 616 is further arranged on the side face of each sliding block 612, each sliding rail 616 can slide in a sliding groove 618 on the side face of each fixed block 608, and acting force on each workpiece can be effectively controlled by adopting the structure.
The technical principle of the present utility model is described above in connection with the specific embodiments. The description is made for the purpose of illustrating the general principles of the utility model and should not be taken in any way as limiting the scope of the utility model. Other embodiments of the utility model will be apparent to those skilled in the art from consideration of this specification without undue burden.

Claims (10)

1. A die press assembly, comprising:
a transport rail (200), wherein the transport rail (200) is used for conveying workpieces and is provided with a first station for stopping the workpieces, and the transport rail (200) is provided with a channel (202) with a distance h;
the lower die module (400) is positioned right below the first station and comprises a lower die pressing plate (402) and a first lifting mechanism for driving the lower die pressing plate (402) to lift, and the lower die pressing plate (402) can pass through the interval h when lifted;
the upper die module (600) is located right above the first station and comprises an upper die pressing head (602) and a second lifting mechanism for driving the upper die pressing head (602) to lift, and the upper die pressing head (602) is provided with a plurality of upper die pressing heads.
2. The film press assembly according to claim 1, wherein the upper die set (600) is provided with:
a horizontally arranged first fixed support plate (604), the fixed end of the first lifting mechanism being arranged on the first fixed support plate (604);
the upper die mounting plate (606) is positioned below the first fixed support plate (604), the movable end of the first lifting mechanism is mounted on the upper die mounting plate (606), and a plurality of upper die pressing heads (602) are further arranged below the upper die mounting plate (606).
3. The die press assembly of claim 2, wherein the upper die set (600) further comprises:
a fixed block (608) vertically mounted on the lower surface of the upper die mounting plate (606);
a fixing rod (610) vertically installed on the lower surface of the upper die mounting plate (606) or the fixing block (608);
a slide block (612) slidably mounted on a bottom free end of the fixed rod (610), the upper die head (602) being mounted on a bottom of the slide block (612);
and a compression spring (614) positioned between the upper die mounting plate (606) and the sliding block (612), wherein the compression spring (614) is sleeved on the fixed rod (610).
4. A film press assembly according to claim 3, wherein a sliding rail (616) is vertically arranged on a side wall of the sliding block (612), the sliding rail (616) partially extends above the sliding block (612), and a sliding groove (618) for sliding the sliding rail (616) therein is arranged on a side wall of the fixed block (608).
5. The die press assembly of claim 4, wherein the lower die set (400) comprises:
a second fixed support plate (404) horizontally arranged, wherein the fixed end of the second lifting mechanism is arranged on the second fixed support plate (404);
the lower die mounting plate (406) is arranged above the second fixed supporting plate (404), the movable end of the second lifting mechanism is connected to the lower die mounting plate (406), and the lower die pressing plate (402) is arranged above the lower die mounting plate (406).
6. A film press assembly as set forth in claim 5 wherein a heating plate (408) is disposed between said lower die platen (402) and said lower die mounting plate (406), said lower die platen (402) receiving heat by heat transfer.
7. The die press assembly of claim 6, wherein the second lifting mechanism is a cylinder.
8. The film press assembly of claim 7, wherein the first lifting mechanism is a screw lifting mechanism.
9. A die press assembly according to claim 3, wherein the upper die ram (602) is removably mounted to the upper die mounting plate (606).
10. The die press assembly of claim 8, wherein a heat shield (410) is further disposed between the lower die mounting plate (406) and the heating plate (408).
CN202320917524.1U 2023-04-21 2023-04-21 Die pressing machine assembly Active CN220307465U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320917524.1U CN220307465U (en) 2023-04-21 2023-04-21 Die pressing machine assembly

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320917524.1U CN220307465U (en) 2023-04-21 2023-04-21 Die pressing machine assembly

Publications (1)

Publication Number Publication Date
CN220307465U true CN220307465U (en) 2024-01-05

Family

ID=89348548

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320917524.1U Active CN220307465U (en) 2023-04-21 2023-04-21 Die pressing machine assembly

Country Status (1)

Country Link
CN (1) CN220307465U (en)

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