1. Field of the Invention
The present invention relates to an ejection mechanism for an injection mould, and more particularly to a self-adjusting angled ejector.
2. Description of the Prior Art
An angled ejector is an ejection mechanism of an injection mould and is especially applied to form a groove or an undercut on an internal surface of a product. At present, when the angled ejector applied to the mould is used for mould ejection, a top end of the angled ejector is acting as a cavity core of the mould and is capable of sliding out from the groove or the undercut of the internal surface of the product, thereby completing the action of ejecting mould. When the prior angled ejector is mounted on the mould, an angled ejector pin of the ejector passes through an angled ejector hole of the mould, which can guide the ejector pin to slide along it. A lower end of the angled ejector is fixed on an ejector plate, which is mounted on a bottom plate and can slide along the bottom plate. A post rod passes through the bottom plate and is fixed on the ejector plate. The post rod can push the ejector plate to move for further driving the angled ejector pin to move along the angled ejector hole. During the movement of the angled ejector pin along the angled ejector hole, the ejector plate is sliding along the bottom plate. When the angled ejector is pushed out, the top end thereof acting as the cavity core is capable of sliding out from the groove or the undercut of the internal surface of the product, thereby realizing mould ejection.
However, because the angled ejector is fixed in the inner of mould, the mould must be disassembled when needing to mount or dismount the angled ejector. Therefore, the prior structure needs masses of man power and material resources and largely reduces the efficiency. Moreover, the errors generated in the machining process and the mounting process of the angled ejector may induce the angled ejector to generate torsion effect, or even to be bent or broken during the angled ejector being pushed out, so that reducing the reliability of the mould, shortening the useful life of the mould, and reducing the quality of the product.
An object of the present invention is to provide a self-adjusting angled ejector, being convenient for mounting or dismounting, being capable of self adjusting the errors generated in the machining or mounting process, and enhancing the using reliability.
To achieve the above object, in accordance with the present invention, a self-adjusting angled ejector is provided. The self-adjusting angled ejector comprises an angled ejector base, a fixing member, an angled ejector pin and two adjusting plates. The angled ejector base disposes a groove on a top surface thereof. The angled ejector pin disposes an undercut-forming portion projecting on an upper end thereof, wherein a lower end of the angled ejector pin is received in the groove and is detachably fixed on the angled ejector base by the fixing member. The two adjusting plates are parallel to each other and form a rotating region therebetween, wherein the angled ejector base is pivotally located on the rotating region.
Based on the above description, the angled ejector pin of the present invention is received in the groove of the angled ejector base and is detachably fixed on the angled ejector base by the fixing member, so that the angled ejector pin can be conveniently detached from the mould by removing the fixing member. Namely, the mould need not be disassembled when mounting or dismounting the angled ejector pin, thereby saving the assembling or disassembling time of the mould, improving the production efficiency of the mould, and reducing the man power and material resources. Moreover, because the angled ejector base is pivotally mounted within the rotating region between the two parallel adjusting plates, and the two adjusting plates are held in the mounting groove, the angled ejector base can correspondingly perform a rotating action to adjust the angle of the angled ejector pin when the angled ejector pin is caused to be turned due to the self errors or mounting errors. The angled ejector pin can be prevented from being bent or broken during ejecting the product, thereby enhancing the safety and the reliability of the self-adjusting angled ejector and the mould, elongating the useful life of the mould, and improving the quality of the product.
The following embodiment with reference to the accompanying drawings now has been given for detail describing the technology, the feature, the object and the effect of the present invention.
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As described above, the self-adjusting angled ejector 10 of the present invention is mounted on the angled ejector base 110 by the bolt 140 passing through the bottom surface and the groove 111 of the angled ejector base 110. Therefore, the bolt 140 can be released from the angled ejector base 110 by the process holes 2201, 2101 of the mould 20, and then the angled ejector pin 120 can be conveniently dismounted. It is obvious that the mould 20 need not be disassembled when mounting or dismounting the angled ejector pin 120. Therefore, the assembling or disassembling time of the mould 20 can be saved, the production efficiency of the mould 20 can be improved, and the man power and material resources can be reduced. Moreover, because the angled ejector base 110 is pivotally mounted within the rotating region between the two adjusting plates 130, and the two adjusting plates 130 are held in the mounting groove 270, the angled ejector base 110 can correspondingly perform a rotating action to adjust the angle of the angled ejector pin 120 when the angled ejector pin 120 is caused to be turned due to the machining or mounting errors of self. Therefore, the angled ejector pin 120 can be prevented from being bent or broken during ejecting the product, the safety and the reliability of the self-adjusting angled ejector 10 and the mould 20 can be enhanced, the useful life of the mould 20 can be elongated, and the quality of the product can be assured.
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.