Metal profiling positioning block forming die
Technical Field
The utility model relates to the technical field of forming dies, in particular to a metal profiling positioning block forming die.
Background
The mould is a mould and tool for obtaining the required products by injection molding, blow molding, extrusion, die casting or forging, smelting, stamping and other methods in industrial production, wherein the molding mould, also called a section mould, is a mould which is prepared according to the shape and structure of a real object in proportion, and the material is made into a tool with a certain shape by a pressing or pouring method, and the device is a metal profiling positioning block molding mould;
When the metal profiling positioning block forming die is used, the positioning block is formed in a cavity of the die, and after the forming is finished, if a product is manually taken out from the cavity by an operator, the metal profiling positioning block forming die is inconvenient;
Therefore, a metal profiling positioning block forming die is needed to solve the above problems.
Disclosure of utility model
The utility model aims to provide a metal profiling positioning block forming die, which aims to solve the problem that the metal profiling positioning block forming die is inconvenient to assist in demolding of products in the background art.
The metal profiling positioning block forming die comprises a base, a lower die holder and an upper die holder, wherein the lower die holder is arranged at the top end of the base, a demolding assembly is arranged at the central position of the bottom end of the lower die holder and comprises an air chamber, a partition plate, a sliding plate, a push rod, an air pipe and an air bag, the air chamber is arranged at the central position of the bottom end of the lower die holder, the partition plate is fixed at the bottom end inside the air chamber, the sliding plate is arranged above the partition plate, the push rod is arranged at the top end of the sliding plate, the air pipe is arranged at the bottom end of the partition plate, the tail end of the air pipe extends to the outer side, and the air bag is arranged at the tail end of the air pipe.
Further, the right side of die holder is provided with the mounting groove, the inside of mounting groove is provided with the collar, the internally mounted of collar has the division board, bellows is installed on the right side of collar, bellows's internally mounted has the fan, the right side of bellows is provided with the air inlet groove, the left side of die holder is provided with the air-out groove.
Preferably, the mounting groove is internally provided with internal threads, and the surface of the mounting ring is provided with external threads.
Further, the bottom of die holder is provided with the wind chamber, the inboard of wind chamber is provided with the spout, the inside of spout is provided with the heat-conducting plate, the surface mounting of heat-conducting plate has the fin.
Preferably, a plurality of radiating fins are fixed on the surface of the heat conducting plate, and the radiating fins are distributed in parallel.
Further, a cavity is formed in the center of the top end of the lower die holder, an upper die holder is arranged at the top end of the lower die holder, and a feeding hole is formed in the top end of the upper die holder.
Preferably, a side table is fixed on the left side of the upper die holder, a guide rod is fixed at the bottom end of the side table, a docking ring is fixed on the left side of the lower die holder, the bottom end of the guide rod extends to the inside of the docking ring, a locking table is fixed on the left side of the docking ring, a locking bolt is arranged in the locking table, and the right side of the locking bolt extends to the inside of the docking ring.
Preferably, two groups of the butt joint rings are fixed on the left side of the lower die holder, and the two groups of the butt joint rings are symmetrically distributed.
Compared with the prior art, the metal profiling positioning block forming die has the beneficial effects that the air chamber, the air pipe and the air bag are arranged, the air bag is arranged at the outer side, when the air bag is extruded, air flow can enter the air chamber through the air bag, the sliding plate in the air chamber is pushed to move upwards, the ejector rod can be pushed to move into the die cavity when the sliding plate moves upwards, the positioning block in the die cavity is ejected by the assistance of the ejector rod, and the auxiliary demoulding function of the metal profiling positioning block forming die during use is realized;
Through the arrangement of the wind cavity, the heat conducting plate and the plurality of groups of radiating fins are arranged in the wind cavity, when the heat in the cavity radiates to the periphery, the heat can be transferred to the surfaces of the heat conducting plate and the radiating fins, when a fan in the wind box is started, outside air can enter the wind cavity through the air inlet groove, and when the air flows in the wind cavity, the heat on the surfaces of the heat conducting plate and the radiating fins can be driven and then discharged to the outside along the air outlet groove, so that the auxiliary cooling function of the metal profiling positioning block forming die to the inside of the cavity is realized;
Through being provided with guide bar and docking collar, along with the upper die base lid when the die holder top, two sets of guide bars on the upper die base left side can insert to the docking collar on the die holder left side and dock, when assisting the position to the upper die base to fix a position, screw up the locking bolt of docking collar side, can oppress the fixed to inboard guide bar to this, can indirectly carry out fixed processing to the position of upper die base, realized this metal profile modeling locating piece forming die and to the spacing locking function of upper die base.
Drawings
FIG. 1 is a schematic cross-sectional elevation view of the present utility model;
FIG. 2 is a schematic top view of the present utility model;
FIG. 3 is a schematic view of the structure of the present utility model shown in FIG. 1 at a partially enlarged scale;
FIG. 4 is a schematic cross-sectional elevation view of the air chamber of the present utility model.
In the figure, 1, a base; 2, a lower die holder, 3, an installation groove, 4, an installation ring, 5, a separation plate, 6, an air box, 7, a fan, 8, an air inlet groove, 9, an air cavity, 10, a chute, 11, a heat conducting plate, 12, a radiating fin, 13, a die cavity, 14, an upper die holder, 15, a feeding hole, 16, a side table, 17, a guide rod, 18, a butt joint ring, 19, a locking table, 20, a locking bolt, 21, an air outlet groove, 22, an air chamber, 23, a partition plate, 24, a sliding plate, 25, a push rod, 26, an air pipe, 27 and an air bag.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-4, an embodiment of the utility model provides a metal profiling positioning block forming die, which comprises a base 1, a lower die holder 2 and an upper die holder 14, wherein the lower die holder 2 is arranged at the top end of the base 1, a mounting groove 3 is arranged on the right side of the lower die holder 2, a mounting ring 4 is arranged in the mounting groove 3, an internal thread is arranged in the mounting groove 3, an external thread is arranged on the surface of the mounting ring 4, a separation plate 5 is arranged in the mounting ring 4, a bellows 6 is arranged on the right side of the mounting ring 4, a fan 7 is arranged in the bellows 6, an air inlet groove 8 is arranged on the right side of the bellows 6, an air cavity 9 is arranged at the bottom end of the lower die holder 2, a chute 10 is arranged on the inner side of the air cavity 9, a heat conducting plate 11 is arranged in the chute 10, heat conducting plates 12 are fixed on the surface of the heat conducting plate 11, a plurality of heat conducting plates 12 are distributed in parallel, and an air outlet groove 21 is arranged on the left side of the lower die holder 2;
Specifically, as shown in fig. 1, 2 and 3, when in use, heat in the cavity 13 is transferred to the outside, the heat can be accumulated on the surfaces of the heat conducting plate 11 and the heat radiating fin 12, and along with the start of the fan 7 in the bellows 6, air flow can be accelerated to enter the air cavity 9 through the air inlet groove 8, and when flowing in the air cavity 9, the heat on the surfaces of the heat conducting plate 11 and the heat radiating fin 12 is driven to be discharged through the air outlet groove 21, and the flowing air is used for assisting in cooling treatment in the cavity 13;
The center position of the top end of the lower die holder 2 is provided with a die cavity 13, the top end of the lower die holder 2 is provided with an upper die holder 14, the top end of the upper die holder 14 is provided with a feeding hole 15, the left side of the upper die holder 14 is fixedly provided with a side table 16, the bottom end of the side table 16 is fixedly provided with a guide rod 17, the left side of the lower die holder 2 is fixedly provided with a docking ring 18, the bottom end of the guide rod 17 extends to the inside of the docking ring 18, the left side of the docking ring 18 is fixedly provided with a locking table 19, the inside of the locking table 19 is provided with a locking bolt 20, the right side of the locking bolt 20 extends to the inside of the docking ring 18, the left side of the lower die holder 2 is fixedly provided with two groups of docking rings 18, and the two groups of docking rings 18 are symmetrically distributed;
Specifically, as shown in fig. 1, when the upper die holder 14 is used, after the upper die holder 14 is covered, the left guide rod 17 can be inserted into the docking ring 18, the guide rod 17 and the docking ring 18 assist in positioning the upper die holder 14, then the locking bolt 20 on the outer side of the docking ring 18 is screwed down, and the guide rod 17 on the inner side of the docking ring 18 can assist in fixing by means of the locking bolt 20, so that the position of the upper die holder 14 can be fixed;
The center of the bottom end of the lower die holder 2 is provided with a demoulding component, the demoulding component comprises an air chamber 22, a partition plate 23, a sliding plate 24, a push rod 25, an air pipe 26 and an air bag 27, the center of the bottom end of the lower die holder 2 is provided with the air chamber 22, the bottom end inside the air chamber 22 is fixedly provided with the partition plate 23, the sliding plate 24 is arranged above the partition plate 23, the push rod 25 is arranged at the top end of the sliding plate 24, the air pipe 26 is arranged at the bottom end of the partition plate 23, the tail end of the air pipe 26 extends to the outer side, and the air bag 27 is arranged at the tail end of the air pipe 26;
Specifically, as shown in fig. 1, 2 and 4, when the air bag 27 located at the outer side is pressed, air can enter the air chamber 22 through the air pipe 26, and by means of the entering air, the sliding plate 24 in the air chamber 22 can be driven to drive the ejector rod 25 to move upwards, and when the ejector rod 25 moves into the cavity 13, the product in the cavity 13 can be assisted to perform demolding treatment.
Working principle: when in use, the bottom end inside the cavity 13 is provided with the ejector rod 25, the top of the ejector rod 25 is flush with the bottom surface of the cavity 13, the influence on the use of the cavity 13 is avoided, when the upper die holder 14 is covered, the left guide rod 17 can be inserted into the butt joint ring 18 at the left side of the lower die holder 2, thereby guiding the position of the upper die holder 14, simultaneously screwing the locking bolt 20, fixing the guide rod 17 at the inner side of the butt joint ring 18 can be assisted, the fixing operation of the upper die holder 14 is indirectly realized, then, melted materials can enter the cavity 13 through the feeding hole 15 and wait for high-temperature solution to solidify and form, during waiting period, the fan 7 inside the air box 6 can be started, heat inside the cavity 13 can be gathered on the surfaces of the heat conducting plate 11 and the cooling fin 12 when being transmitted outwards, along with the starting of the fan 7 inside the air box 6, the air flow can be accelerated to enter the air cavity 9 through the air inlet groove 8, when the air cavity 9 flows, the heat on the surfaces of the heat conducting plate 11 and the radiating fins 12 is driven to be discharged through the air outlet groove 21, the solution in the cavity 13 is assisted to be solidified and molded by flowing air, after the solution is solidified and molded, the metal profiling positioning block is processed, at the moment, the locking bolt 20 can be loosened, the upper die holder 14 is removed, the demolding operation of the positioning block can be carried out, when the air bag 27 on the outer side is pressed, air can enter the air chamber 22 through the air pipe 26, the slide plate 24 in the air chamber 22 can be driven to drive the ejector rod 25 to move upwards by the entering air pipe 26, when the ejector rod 25 moves into the cavity 13, the demolding treatment can be assisted to be carried out on the product in the cavity 13, after the demolding is finished, the air bag 27 is released, the air bag 27 is elastically reset, the air can be reentered into the air bag 27, and the air can be driven to move downwards, the ejector pin 25 is driven to perform the reset process.
It will be evident to those skilled in the art that the utility model is not limited to the details of the foregoing illustrative embodiments, and that the present utility model may be embodied in other specific forms without departing from the spirit or essential characteristics thereof. The present embodiments are, therefore, to be considered in all respects as illustrative and not restrictive, the scope of the utility model being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.