CN209851194U - 5mm thick ultra-thin split brick preparation mould - Google Patents

5mm thick ultra-thin split brick preparation mould Download PDF

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Publication number
CN209851194U
CN209851194U CN201822249313.7U CN201822249313U CN209851194U CN 209851194 U CN209851194 U CN 209851194U CN 201822249313 U CN201822249313 U CN 201822249313U CN 209851194 U CN209851194 U CN 209851194U
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mold
hole
core
rectangular
frame
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CN201822249313.7U
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Chinese (zh)
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祝金元
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Yixing Kaihua Ceramics Co Ltd
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Yixing Kaihua Ceramics Co Ltd
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Abstract

The utility model provides a 5mm thick ultra-thin split brick preparation mould, the mould frame is installed on the bottom plate, is equipped with the rectangle through-hole in the mould frame, and the upper edge department and the lower edge department that the rectangle through-hole is nearly rectangle through-hole all are equipped with the steel wire line, and two steel wire lines are fixed by three briquetting, and wherein four briquetting is located four corners of rectangle through-hole, and two briquetting are located the both ends of spacer in addition; the pressing sheets at the two ends of the separating sheet are provided with protruding blocks which are overlapped with the separating sheet, and the protruding blocks are provided with through holes which penetrate through the steel wire; the distance from the mold core to the two steel wires is 5 mm. The utility model discloses in can produce the ultrathin brick that splits of 5mm thickness, and the brick shape rule of splitting that produces, when the mould frame has the damage, only need to change the packing plate can, a triangle-shaped arch does benefit to the later stage and splits, and the rectangle arch is favorable to the formation of the dovetail at the brick back of splitting, and No. two triangle-shaped archs make wire rope draw the breakthrough occasionally, draw the skin easily.

Description

5mm thick ultra-thin split brick preparation mould
Technical Field
The utility model relates to a building material production technical field, concretely relates to ultra-thin brick preparation mould of splitting of 5mm thickness.
Background
The split brick is a novel architectural ceramic product for decorating buildings. Because of its good frost resistance and strong adhesion, it is widely used for exterior decoration of various buildings. The split bricks in the prior art are generally thick, the thick split bricks not only increase the production cost and the quality of the bricks, but also influence the attractiveness when the thick bricks are used, and are difficult to paste when a constructor pastes the bricks; the development of a manufacturing mold for producing ultrathin split bricks with the thickness of 5mm is urgently needed.
SUMMERY OF THE UTILITY MODEL
Utility model purpose: an object of the utility model is to prior art not enough, provide a production 5mm thick ultra-thin split brick preparation mould.
The utility model discloses an innovation point lies in the utility model provides a 4 ultra-thin split bricks of 5mm thickness can be produced to the preparation mould, and the steel wire line will split the skin on the brick limit and pull off, and the steel wire line is difficult for shifting behind the through-hole through passing salient piece department, and is fixed more firm.
The technical scheme is as follows: in order to achieve the above object, the present invention specifically provides a method for manufacturing a semiconductor device, comprising: the die comprises a die frame, a plurality of die cores, a die core frame, a plurality of die core frame supports and a bottom plate, wherein the die cores are arranged on the die core frame; the mold core frame is fixed on the bottom plate through the mold core frame support, the mold core frame and the mold frame are respectively positioned on two sides of the bottom plate, the mold cores extend into the rectangular through holes of the mold frame, the end parts of the mold cores are flush with the outer end surface of the mold frame, the mold cores are arranged in parallel along the long edges of the rectangular through holes, more than two mold cores are arranged in each of the two cavities, and the number of the mold cores in the two cavities is equal; the distance from the mold core adjacent to the partition sheet, the distance from the mold core adjacent to the short side of the rectangular through hole and the distance between the adjacent mold cores are equal, the bottom plate is used for fixing the mold frame and the mold core on a machine head of extrusion molding equipment, steel wire wires are arranged at the position, close to the upper edge and the lower edge of the rectangular through hole, the two steel wire wires are fixed by three press blocks, threaded holes for fixing the press blocks are formed in the periphery of the rectangular through hole, four press blocks are located at four corners of the rectangular through hole, and the other two press blocks are; the pressing sheets at the two ends of the separating sheet are provided with protruding blocks which are overlapped with the separating sheet, the thickness of each protruding block is smaller than that of the separating sheet, and each protruding block is provided with a through hole which penetrates through a steel wire; the distance from the mold core to the two steel wires is 5 mm. When splitting the brick and extruding, the mold core place part is two and splits the clearance between the brick, and the steel wire line will split the skin on brick both sides and pull, forms the ultra-thin brick of splitting of 5mm thickness, because be equipped with the protrusion piece on the briquetting at parting slip both ends, be equipped with the through-hole that passes the steel wire line on the protrusion piece for the difficult displacement of steel wire line, the brick shape rule of splitting of producing, just the utility model discloses in can produce 4 simultaneously and split the brick.
Furthermore, one side of the pressing block, which is opposite to the long edge of the rectangular through hole, is provided with a notch. The position of the steel wire line can be finely adjusted, and the thickness of the split brick is ensured to be 5 mm.
Further, the contact surface of the pressing block and the die frame is rough. The friction force is increased, and the steel wire is not easy to slide.
Furthermore, a circle of L-shaped channel is arranged around the rectangular through hole on the contact surface of the die frame and the bottom plate, and a filling plate matched with the L-shaped channel is arranged in the L-shaped channel. Because the mud is great when rushing out, the mould frame need be changed this moment, and the cost is great, only need now to change the infill panel can all around the rectangle through-hole on the contact surface of mould frame and bottom plate easily rubbed off throughout the year.
Further, the die core frame is I-shaped, and the die core comprises a core head and a core rod; one end of the core rod is fixed on the die core frame through an inner hexagonal screw, and the other end of the core rod is fixed with the core head through an inner hexagonal screw.
Further, the number of the mold cores is 4.
Furthermore, the cross section of the core print is square, four sides of the core print are parallel and level with four sides of the rectangular through hole, a triangular protrusion with one side coinciding with the long-side extended side of the core print is arranged at each of four corners of the core print, triangular protrusions corresponding to the triangular protrusions of the core print are arranged at the short sides of the rectangular through hole and at two sides of the separating sheet, intervals exist among the triangular protrusions corresponding to the triangular protrusions, and rectangular protrusions are arranged on the sides of the core print parallel to the long sides of the rectangular through hole. The triangular bulge reduces the connecting area between the connecting rib between the upper split brick and the lower split brick and the connecting area between the connecting rib and the two split bricks, so that later splitting is facilitated, the rectangular bulge is beneficial to forming a dovetail groove on the back of the split brick, and the paving is more firm.
Furthermore, a second triangular bulge which is overlapped with the steel wire line is arranged at the short side of the rectangular through hole and at the two sides of the separating sheet. The second triangular bulge enables the steel wire to be easily pulled due to the fact that a burst opening is formed when the steel wire is pulled to be covered.
The utility model has the advantages that: compared with the prior art, the utility model has the advantages of as follows:
1. the utility model discloses in can produce the ultrathin brick that splits of 5mm thickness, and the brick shape rule that splits of producing.
2. The utility model discloses in when the mould frame has the damage, only need to change the infill panel can, need not to change whole mould frame, it is with low costs.
3. The utility model provides a triangle-shaped arch does benefit to the later stage and splits, and the rectangle arch is favorable to splitting the formation of brick back dovetail, and it is more firm when spreading the splitting brick.
4. The utility model discloses well No. two triangle-shaped archs make wire rope draw the skin suddenly the breach occasionally, draw the skin easily.
Drawings
Fig. 1 is a schematic structural view of embodiment 1.
Fig. 2 is a schematic view of a die core frame.
Fig. 3 is a schematic view of the front face of the mold frame.
FIG. 4 is a schematic view of the front end face of the mold frame with the wire and the mold core.
Detailed Description
Example 1: the die for manufacturing the ultrathin split brick with the thickness of 5mm comprises a die frame 1, a plurality of die cores 2, a die core frame 3, a plurality of die core frame supports 4 and a bottom plate 5, wherein the die cores 2 are arranged on the die core frame 3, the die frame 1 is arranged on the bottom plate 5, a rectangular through hole 6 is formed in the die frame 1, a through hole which is smaller than the die frame 5 and larger than the rectangular through hole 6 is formed in the bottom plate 5, and a separating sheet 7 is arranged in the rectangular through hole 6 to separate the rectangular through hole 6 into two cavities 6.1 with the same size from the length direction; the mold core frame 3 is I-shaped, and the mold core 2 comprises a core print 2.1 and a core rod 2.2; one end of a core rod 2.2 is fixed on a core frame 3 through an inner hexagonal screw, the other end of the core rod 2.2 is fixed on a core head 2.1 through the inner hexagonal screw, the core frame 3 is fixed on a bottom plate 5 through a core frame support 4, the core frame 3 and the mold frame 1 are respectively positioned on two sides of the bottom plate 5, the core 2 extends into a rectangular through hole 6 of the mold frame 1, the end part of the core 2 is parallel and level to the outer end face of the rectangular through hole 6, and the core 2 is arranged in parallel along the long edge of the rectangular through hole 6, more than two core 2 are arranged in each of two cavities 6.1, the number of the core 2 in each of the two cavities 6.1 is equal, and the. A circle of L-shaped channel is arranged around the rectangular through hole 6 on the contact surface of the die frame 1 and the bottom plate 5, and a filling plate matched with the L-shaped channel is arranged in the L-shaped channel. The distance from the mold core 2 adjacent to the partition plate 7, the distance from the mold core 2 adjacent to the short side of the rectangular through hole 6 and the distance between the adjacent mold cores 2 are equal, and the bottom plate 5 is used for fixing the mold frame 1 and the mold core 2 on a machine head of extrusion molding equipment. The rectangular through hole 6 is provided with steel wires 8 near the upper edge and the lower edge of the rectangular through hole 6, the two steel wires 8 are fixed by three press blocks 9, the periphery of the rectangular through hole 6 is provided with threaded holes for fixing the press blocks, wherein four press blocks 9 are positioned at four corners of the rectangular through hole 6, and the two press blocks are positioned at two ends of the separating sheet 7; the pressing sheets at the two ends of the separating sheet 7 are provided with protruding blocks 9.1 which are overlapped with the separating sheet, the thickness of each protruding block 9.1 is smaller than that of the separating sheet 7, and each protruding block 9.1 is provided with a through hole which penetrates through the steel wire 8; the distance from the mold core 2 to the two steel wires 8 is 5 mm. The pressing block 9 is provided with a notch 9.2 at one side opposite to the long side of the rectangular through hole 6, and the contact surface of the pressing block 9 and the die frame 1 is rough. The cross section of the core print 2.1 is square, four sides of the core print 2.1 are flush with four sides of the rectangular through hole 6, a first triangular bulge 2.11 with one side coinciding with the long side extension side of the core print 2.1 is arranged at four corners of the core print 2.1, a first triangular bulge 2.11 corresponding to the first triangular bulge 2.11 of the core print 2.1 is arranged at the short side of the rectangular through hole 6 and at two sides of the separating sheet 7, the corresponding first triangular bulges 2.11 have intervals, and a rectangular bulge 2.12 is arranged on the side of the core print 2.1 parallel to the long side of the rectangular through hole 6; the short side of the rectangular through hole 6 and the two sides of the separating sheet 7 are also provided with a second triangular bulge 10 which is superposed with the steel wire 8.

Claims (8)

  1. The mold for manufacturing the ultrathin split brick with the thickness of 1.5mm comprises a mold frame, a plurality of mold cores, a mold core frame, a plurality of mold core frame supports and a bottom plate, wherein the mold cores are installed on the mold core frame, the mold frame is installed on the bottom plate, a rectangular through hole is formed in the mold frame, a through hole which is smaller than the mold frame and larger than the rectangular through hole is formed in the bottom plate, and a partition sheet is arranged in the rectangular through hole to partition the rectangular through hole into two cavities with the same size from the length direction; the mold core frame is fixed on the bottom plate through the mold core frame support, the mold core frame and the mold frame are respectively positioned on two sides of the bottom plate, the mold cores extend into the rectangular through holes of the mold frame, the end parts of the mold cores are flush with the outer end surface of the mold frame, the mold cores are arranged in parallel along the long edges of the rectangular through holes, more than two mold cores are arranged in each of the two cavities, and the number of the mold cores in the two cavities is equal; the distance from the mold core adjacent to the partition sheet, the distance from the mold core adjacent to the short side of the rectangular through hole and the distance between the adjacent mold cores are equal, the bottom plate is used for fixing the mold frame and the mold core on a machine head of extrusion molding equipment, and the extrusion molding equipment is characterized in that steel wire wires are arranged at the upper edge and the lower edge of the rectangular through hole, the two steel wire wires are fixed by three pressing blocks, threaded holes for fixing the pressing blocks are formed in the periphery of the rectangular through hole, four pressing blocks are located at four corners of the rectangular through hole, and two pressing blocks are located at two ends of the partition sheet; the pressing sheets at the two ends of the separating sheet are provided with protruding blocks which are overlapped with the separating sheet, the thickness of each protruding block is smaller than that of the separating sheet, and each protruding block is provided with a through hole which penetrates through a steel wire; the distance from the mold core to the two steel wires is 5 mm.
  2. 2. The mold for manufacturing a 5 mm-thick and ultrathin split brick as claimed in claim 1, wherein a notch is formed in one side of the pressing block opposite to the long side of the rectangular through hole.
  3. 3. The mold for manufacturing a 5 mm-thick and ultra-thin split brick according to claim 2, wherein the contact surface between the pressing block and the mold frame is rough.
  4. 4. The mold for manufacturing the ultrathin split brick with the thickness of 5mm as claimed in claim 1, wherein a circle of L-shaped groove channel is arranged around the rectangular through hole at the contact surface of the mold frame and the bottom plate, and a filling plate matched with the L-shaped groove channel is arranged in the L-shaped groove channel.
  5. 5. The mold for manufacturing the ultrathin split brick with the thickness of 5mm as claimed in claim 1, wherein the mold core frame is i-shaped, and the mold core comprises a core head and a core rod; one end of the core rod is fixed on the die core frame through an inner hexagonal screw, and the other end of the core rod is fixed with the core head through an inner hexagonal screw.
  6. 6. The mold for manufacturing the ultrathin split bricks with the thickness of 5mm as claimed in claim 5, wherein the number of the mold cores is 4.
  7. 7. The mold for manufacturing a 5mm thick and ultra-thin split brick according to claim 6, wherein the core print has a square cross section, four sides of the core print are flush with four sides of the rectangular through hole, a first triangular protrusion having one side coinciding with the longer side of the core print is disposed at each of four corners of the core print, a first triangular protrusion corresponding to the first triangular protrusion of the core print is disposed at each of the shorter side of the rectangular through hole and the two sides of the spacer, a space is formed between the corresponding first triangular protrusions, and a rectangular protrusion is disposed on the side of the core print parallel to the longer side of the rectangular through hole.
  8. 8. The mold for manufacturing a 5mm thick and ultra-thin split brick as claimed in claim 7, wherein a second triangular protrusion coinciding with the steel wire is further provided at the short side of the rectangular through hole and at both sides of the spacer.
CN201822249313.7U 2018-12-29 2018-12-29 5mm thick ultra-thin split brick preparation mould Active CN209851194U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201822249313.7U CN209851194U (en) 2018-12-29 2018-12-29 5mm thick ultra-thin split brick preparation mould

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201822249313.7U CN209851194U (en) 2018-12-29 2018-12-29 5mm thick ultra-thin split brick preparation mould

Publications (1)

Publication Number Publication Date
CN209851194U true CN209851194U (en) 2019-12-27

Family

ID=68929720

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201822249313.7U Active CN209851194U (en) 2018-12-29 2018-12-29 5mm thick ultra-thin split brick preparation mould

Country Status (1)

Country Link
CN (1) CN209851194U (en)

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