The present invention relates to a mold, and especially to a plastic injection mold.
In the conventional plastic injection molding field, under the circumstances when forming a plastic product with a more complex shape, adhesion force on some parts of the molded product is very strong when the product is ejected. Thus, when the corresponding ejecting force of the product from the product ejection mechanism is unequal, it is easy to cause deformation on the parts of the product due to the strong ejecting force.
Referring to
To eject the above-mentioned complicatedly-shaped injection-molded product 80, a common method is to utilize an inclined slide side action mechanism to achieve the purpose of product ejection. The method, however, requires occupying a large amount of space, and it is also easy to increase the production costs.
An objective of the present invention is to provide a plastic injection mold for facilitating mold releasing of an injection-molded product without causing undesired deformation.
To achieve the foregoing objective, the present invention provides a plastic injection mold for forming an injection-molded product. The product comprises a base, an elastic arm extending from the base, and a lateral bulge protruding from one side of the elastic arm. The injection mold comprises a stationary mold member, a movable mold member mating with the stationary mold member, an unloading mechanism which is disposed on the movable mold member, and a movable platen operating mechanism which is disposed on the movable mold member. The movable mold member comprises a movable mold fixing plate, an auxiliary platen which is fixed on the movable mold fixing plate, and a movable platen which is movably disposed on the auxiliary platen. A molding rod is fixed on the auxiliary platen to define a molding cavity with the stationary mold member and the movable mold member. The molding cavity comprises an elastic arm molding portion which is located in the movable platen for forming the elastic arm and a protrusion molding portion for forming the lateral bulge. A receiving hole is defined in the auxiliary platen. The unloading mechanism comprises an ejector plate and a plurality of ejector pins fixed on the ejector plate. The ejector plate and the ejector pins are movable between the movable mold fixing plate and the auxiliary platen. The movable platen operating mechanism comprises an elastic element and a stopping element. The elastic element has an end coupled to the ejector plate and an opposite end extending through the receiving hole of the auxiliary platen to be positioned against the movable platen. The movable platen is coupled to the auxiliary platen by the stopping element in a relatively movable manner.
The present invention provides a movable platen operating mechanism disposed on the movable mold member, whereby the plastic injection mold of the present invention is operated in a two-stage process in ejecting a molded product from the plastic injection mold. This arrangement ensures the product to be successfully released from the mold without causing undesired deformation.
Reference will now be made in detail to a preferred embodiment of the invention, examples of which are illustrated in the accompanying drawings.
With reference to the drawings and in particular to
The movable mold member 10 includes a movable mold fixing plate 11, two spacer plates 12, an ejector plate 13, an ejector retainer plate 14, a plurality of ejector pins 15, an auxiliary platen 16, a movable platen 17, a mold core 18 which is disposed in the movable platen 17, and a movable platen operating mechanism 19. The spacer plates 12 are fixed on the movable mold fixing plate 11, and the auxiliary platen 16 is fixed on the spacer plates 12. The movable platen 17 is movably disposed on the auxiliary platen 16. The ejector pins 15 are fixed on the ejector plate 13. The ejector plate 13 and the ejector retainer plate 14 are movable along the spacer plates 12 between the movable mold fixing plate 11 and the auxiliary platen 16. A receiving hole 161 is formed in the auxiliary platen 16.
Referring to
The mold core 18 has a base rod 181, and a molding rod 182 protrudes from an end of the base rod 181. The length of the molding rod 182 is less than the depth of the stop hole 171. The base rod 181 is fixed on the auxiliary platen 16, and a molding cavity 183 is defined by the molding rod 182 with the movable mold member 10 and the stationary mold member 20, wherein the molding cavity 183 is utilized to mold a product 80. The molding cavity 183 comprises an elastic arm molding portion 1831, which is located in the movable platen 17 for forming elastic arms 82 of the product 80 and a protrusion molding portion 1832 for forming lateral bulges 83. The molding rod 182 is utilized to assist in forming the elastic arms 82.
The movable platen operating mechanism 19 comprises a return rod 19, a spring 192, and a stopper bolt 193. One end of the return rod 19 is mounted on the ejector plate 13. The spring 192 is fitted over the return rod 181 and has opposite ends respectively positioned against the ejector plate 13 and the movable platen 17. The return rod 191 is inserted into the movable platen 17 through the receiving hole 161 of the auxiliary platen 16, and a part of the spring 192 is received in the receiving hole 161. The stopper bolt 193 is movably received in the stop hole 171, and extends through the connection hole 172 to fix to the auxiliary platen 16.
Referring to
Referring to
As mentioned above, the present invention provides a movable platen operating mechanism 19 disposed on the movable mold member 10, whereby the plastic injection mold 1 of the present invention is operated in a two-stage process in ejecting a product 80 from the plastic injection mold 1. This arrangement ensures the product 80 to be successfully released from the mold without causing undesired deformation.
While the preferred embodiment of the present invention has been illustrated and described in detail, various modifications and alterations can be made by persons skilled in this art. For instance, the stopper bolt can be replaced by chains or other connection parts. All these modifications and alterations should be covered in the appended claims.