Injection mold flies mould and uses hammering device

文档序号:1514115 发布日期:2020-02-11 浏览:9次 中文

阅读说明:本技术 一种注塑模具飞模用锤击装置 (Injection mold flies mould and uses hammering device ) 是由 *** 于 2019-11-19 设计创作,主要内容包括:本发明公开了一种注塑模具飞模用锤击装置,包括用于放置注塑模具的工作台,所述工作台的上方设有铜锤,铜锤设有驱使其上移和自由落体的驱动机构,驱动机构的基座与设置在工作台上的移动机构的两个连接臂固定连接。本发明的铜棒可以对注塑模具进行自动捶打,且方便调节捶打的位置,可有效降低工人的工作强度和危险系数。(The invention discloses a hammering device for flying a mold of an injection mold, which comprises a workbench for placing the injection mold, wherein a copper hammer is arranged above the workbench, the copper hammer is provided with a driving mechanism for driving the copper hammer to move upwards and freely fall, and a base of the driving mechanism is fixedly connected with two connecting arms of a moving mechanism arranged on the workbench. The copper bar can automatically beat an injection mold, the beating position is convenient to adjust, and the working strength and the danger coefficient of workers can be effectively reduced.)

1. The utility model provides an injection mold flies mould and uses hammering device, includes workstation (1) that is used for placing injection mold, its characterized in that: the copper hammer (2) is arranged above the workbench (1), the copper hammer (2) is provided with a driving mechanism (3) for driving the copper hammer to move upwards and freely fall, and a base (31) of the driving mechanism (3) is fixedly connected with two connecting arms (41) of a moving mechanism (4) arranged on the workbench (1).

2. The hammering device for the injection mold flying die according to claim 1, characterized in that: the base (31) is an unclosed circular ring;

actuating mechanism (3) are still including cup jointing lift cylinder (32) in base (31), the lower extreme at lift cylinder (32) is fixed in copper hammer (2), the shaping has vertical extension rack groove (321) on lift cylinder (32), rack groove (321) internal fixation has rack (33), rack (33) meshing has scarce gear (34), lack gear (34) through gear shaft (35) fixedly connected with second gear (36), gear shaft (35) are articulated with articulated seat (311) of shaping on base (31), second gear (36) and fix third gear (38) meshing on the motor shaft of motor (37), motor (37) are fixed on articulated seat (311).

3. The hammering device for the injection mold flying die according to claim 1, characterized in that: the moving mechanism (4) further comprises two wheel seats (42) which are arranged in bilateral symmetry, each connecting arm (41) is inserted in one corresponding wheel seat (42), and two universal wheels (43) which are arranged in front and back are fixed on each wheel seat (42).

4. The hammering device for the injection mold flying die according to claim 3, characterized in that: wheel seat (42) are the T style of calligraphy, and the shaping has upside open-ended rectangular hole (421) and control the jack (422) that the direction runs through rectangular hole (421) on wheel seat (42), the lower extreme of linking arm (41) is the rectangle strip, and the lower extreme plug bush of linking arm (41) is in rectangular hole (421), the lower extreme shaping of linking arm (41) has through-hole (411) that the direction runs through about the linear equipartition of a plurality of upper and lower directions, and plug (44) have been cup jointed in jack (422), and one of them through-hole (411) on linking arm (41) are passed in plug (44).

5. The hammering device for the injection mold flying die as claimed in claim 2, wherein: a cavity is formed in the lifting column body (32), and a lead block (30) is filled in the cavity.

6. The hammering device for the injection mold flying die as claimed in claim 2, wherein: a baffle plate (39) is fixed at the top end of the lifting column body (32), and the outer diameter of the baffle plate (39) is larger than the inner diameter of the base (31).

7. The hammering device for the injection mold flying die according to claim 3, characterized in that: the distance between the two wheel seats (42) is L1, and the maximum width of the injection mould is L2, and L1> 2L 2.

Technical Field

The invention relates to the technical field of injection mold manufacturing, in particular to a hammering device for an injection mold flying die.

Background

In the production process of the injection mold, after machining of a movable mold and a fixed mold (or a male mold and a female mold) is completed, mold matching needs to be carried out on parting surfaces of the movable mold and the fixed mold; in the process of matching the injection mold, red lead is coated on the parting surfaces of the movable mold and the fixed mold, then the movable mold and the fixed mold are combined together, one of the movable mold and the fixed mold is beaten by a copper rod, so that the movable mold and the fixed mold are further combined together, whether the contact between the parting surfaces is good or not is confirmed by coloring the red lead, if no red lead exists on the parting surfaces, a problem is marked, and the movable mold and the fixed mold need to be polished. In some small mold production plants, because of limited capital, the molds are beaten by manually swinging the copper rods, so that the working intensity of workers is high and the danger coefficient is high.

Disclosure of Invention

The invention aims to overcome the defects of the prior art and provides a hammering device for an injection mold flying die, a copper bar of the hammering device can automatically hammer the injection mold, the hammering position is convenient to adjust, and the working strength and the danger coefficient of workers can be effectively reduced.

The scheme for solving the technical problems is as follows:

the utility model provides an injection mold flies hammering device for mould, is including the workstation that is used for placing injection mold, the top of workstation is equipped with the copper hammer, and the copper hammer is equipped with the actuating mechanism who orders about it to shift up and freely fall, actuating mechanism's base and two linking arm fixed connection of the moving mechanism of setting on the workstation.

The base is an unclosed circular ring;

the driving mechanism further comprises a lifting cylinder sleeved in the base, the copper hammer is fixed at the lower end of the lifting cylinder, a vertically extending rack groove is formed in the lifting cylinder, a rack is fixed in the rack groove, a gear is meshed with the rack and is in a missing state, the gear is fixedly connected with a second gear through a gear shaft, the gear shaft is hinged to a hinged seat formed on the base, the second gear is meshed with a third gear fixed on a motor shaft of the motor, and the motor is fixed on the hinged seat.

The moving mechanism further comprises two wheel seats which are arranged in bilateral symmetry, each connecting arm is inserted in one corresponding wheel seat, and two universal wheels which are arranged in the front and back are fixed on each wheel seat.

The wheel seat is the T style of calligraphy, and the shaping has upside open-ended rectangular hole and controls the jack that the direction runs through the rectangular hole on the wheel seat, the lower extreme of linking arm is the rectangle strip, and the lower extreme plug bush of linking arm is in the rectangular hole, the lower extreme shaping of linking arm has a plurality of upper and lower direction linear equipartition about the through-hole that the direction runs through, has cup jointed the bolt in the jack, and the bolt passes one of them through-hole on the linking arm.

A cavity is formed in the lifting cylinder, and a lead block is filled in the cavity.

A baffle is fixed at the top end of the lifting column body, and the outer diameter of the baffle is larger than the inner diameter of the base.

The distance between the two wheel seats is L1, and the maximum width of the injection mold is L2, and L1 is more than 2L 2.

The invention has the following outstanding effects: compared with the prior art, its bar copper can beat injection mold automatically, and conveniently adjusts the position of beating, can effectively reduce workman's working strength and danger coefficient.

Drawings

FIG. 1 is a schematic structural view of the present invention;

FIG. 2 is a front view of the present invention;

FIG. 3 is a cross-sectional view of FIG. 2 taken about A-A;

FIG. 4 is a cross-sectional view of FIG. 3 taken about B-B;

FIG. 5 is an enlarged view of a portion of FIG. 1 about C;

fig. 6 is a partial enlarged view of fig. 2 with respect to D.

Detailed Description

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