CN217225968U - Mould convenient for quick discharging for producing magnesia-calcium bricks - Google Patents

Mould convenient for quick discharging for producing magnesia-calcium bricks Download PDF

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CN217225968U
CN217225968U CN202123252689.1U CN202123252689U CN217225968U CN 217225968 U CN217225968 U CN 217225968U CN 202123252689 U CN202123252689 U CN 202123252689U CN 217225968 U CN217225968 U CN 217225968U
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die
brick
convenient
plate
magnesia
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CN202123252689.1U
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金锋
杨大军
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Jiangsu Xinchi New Material Co ltd
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Jiangsu Xinchi New Material Co ltd
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Abstract

The utility model discloses a magnesium calcium brick production is with mould of being convenient for unload fast, including complementary unit, bed die, go up mould and the supplementary shedding mechanism of elasticity, complementary unit's both sides upper end is provided with the bed die, and the top laminating of bed die has last mould, complementary unit's middle part top is provided with the supplementary shedding mechanism of elasticity, and the supplementary shedding mechanism of elasticity includes back force spring and brick board. This magnesium calcium brick production is with mould of being convenient for unload fast, the accessible goes up the mould and comes to extrude moulding to the inside material of bed die after the material is filled, can follow the die cavity bottom at the fashioned magnesium calcium brick of extruded in-process and unload, carry out supplementary buffering work through the distinctive elasticity of return spring, avoid magnesium calcium brick when unloading to produce the damage, need not to extrude the design again, comparatively save time, the hydraulic stem of while fixed support plate bottom installation can take it to go up and down, thereby unload the material downwards, conveniently shift.

Description

Mould convenient for quick discharging for producing magnesia-calcium bricks
Technical Field
The utility model relates to a magnesium calcium brick production technical field specifically is a magnesium calcium brick production is with mould of being convenient for unload fast.
Background
The magnesia-calcium brick is also called high-calcium magnesia brick, which is a magnesia refractory material with periclase as a main crystal phase and tricalcium silicate as a paracrystalline phase.
Mould of the production usefulness of the magnesia calcium brick on the market is not equipped with the supplementary shedding mechanism of elasticity, can't carry out the elastic buffer protection to the magnesia calcium brick when unloading fast, leads to the magnesia calcium brick when unloading to produce the damage, need extrude the design again, comparatively waste time, for this reason, we provide a mould of being convenient for fast unloading for the production of magnesia calcium brick.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a magnesium calcium brick production is with mould of being convenient for unload fast to the mould of proposing the magnesium calcium brick production usefulness on the market in solving above-mentioned background is not equipped with the supplementary shedding mechanism of elasticity, can't carry out the elastic buffer protection to the magnesium calcium brick when unloading fast, and the magnesium calcium brick that leads to when unloading produces the damage, need extrude the design again, comparatively waste time's problem.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a magnesium calcium brick production is with mould of being convenient for unload fast, includes complementary unit, bed die, goes up mould and the supplementary shedding mechanism of elasticity, complementary unit's both sides upper end is provided with the bed die, and the top laminating of bed die has last mould, complementary unit's middle part top is provided with the supplementary shedding mechanism of elasticity, and the supplementary shedding mechanism of elasticity includes return spring and brick board, return spring's upper end is connected with the brick board.
Furthermore, the return spring is movably connected with the brick plate, and the brick plate and the auxiliary mechanism form an elastic structure through the return spring.
Further, the auxiliary mechanism comprises a supporting platform, a plate groove, a hydraulic rod and a fixed support plate, the plate groove is formed in the surface of the middle of the supporting platform, the hydraulic rod is arranged inside the plate groove, and the fixed support plate is arranged at the top of the hydraulic rod.
Furthermore, the supporting platform and the plate groove are of an integral structure, and the hydraulic rod and the fixed supporting plate form a lifting structure through the supporting platform.
Further, the lower die comprises a vertical supporting plate, a die body, a die groove and a baffle, the die body is fixed to the middle of the inner side of the vertical supporting plate, the die groove is formed in the die body, and the baffle is attached to the inner portion of the die groove.
Furthermore, the vertical support plates are symmetrically distributed along the vertical middle axis of the die body, and the vertical support plates, the die body and the die cavity are of an integrated structure.
Furthermore, the baffle is matched and attached with the die cavity, and the baffle is rectangular.
Further, the upper die comprises an extrusion block, a lifting rod, a dragging plate and a hanging piece, the lifting rod is arranged at the top of the extrusion block, the dragging plate is connected to the top of the lifting rod, and the hanging piece is installed on two sides of the dragging plate.
Furthermore, the extrusion block and the lower die form a clamping structure through a lifting rod, and the lifting rod is fixedly connected with the carriage.
Compared with the prior art, the beneficial effects of the utility model are that: this magnesium calcium brick production is with mould of being convenient for unload fast, the accessible goes up the mould and comes to extrude moulding to the inside material of bed die after the material is filled, can unload from the die cavity bottom at the fashioned magnesium calcium brick of extruded in-process, carry out supplementary buffering work through the peculiar elasticity of return spring, avoid magnesium calcium brick when unloading to produce the damage, need not to extrude the design again, comparatively save time, the hydraulic stem of while fixed bolster bottom installation can take it to go up and down, thereby unload the material downwards, conveniently shift.
Through the setting of bed die, when the moulding during operation that begins, with the supplementary shedding mechanism laminating of elasticity in die cavity bottom, and closely laminate with the die body inner wall, place the baffle respectively inside the die cavity, pack the material afterwards, and the material content of every die cavity inside packing is all unanimous, places a set of baffle again on the material afterwards, can make the material rapid prototyping through the extrusion of upper end mould.
Through complementary unit's setting, come to provide the holding power for the supplementary shedding mechanism of elasticity through the fixed bolster, the hydraulic stem of fixed bolster bottom installation can take it to go up and down simultaneously to unload the material downwards, conveniently shift.
Through the setting of supplementary shedding mechanism of elasticity, the accessible goes up the mould and extrudees moulding to the inside material of bed die after the material is filled, can unload from the die cavity bottom at the fashioned magnesia calcium brick of extruded in-process, and the buffering work is assisted through the peculiar elasticity of return spring, avoids the magnesia calcium brick when unloading to produce the damage, need not to extrude the design again, comparatively save time.
Drawings
FIG. 1 is a schematic view of the front view of the internal structure of the present invention;
FIG. 2 is a schematic view of the three-dimensional structure of the auxiliary mechanism of the present invention;
fig. 3 is a schematic view of a part of an enlarged structure at a in fig. 1 according to the present invention.
In the figure: 1. an auxiliary mechanism; 101. a support platform; 102. a plate groove; 103. a hydraulic lever; 104. fixing the support plate; 2. a lower die; 201. a vertical support plate; 202. a mold body; 203. a die cavity; 204. a baffle plate; 3. an upper die; 301. extruding the block; 302. a lifting rod; 303. a carriage; 304. a hanger; 4. an elastic auxiliary discharge mechanism; 401. a return spring; 402. brick board.
Detailed Description
As shown in fig. 1, a mold for producing magnesia-calcium brick, which is convenient for quick discharging, comprises: the auxiliary mechanism 1, the upper ends of both sides of the auxiliary mechanism 1 are provided with lower dies 2, the top of the lower die 2 is jointed with an upper die 3, the upper part of the middle part of the auxiliary mechanism 1 is provided with an elastic auxiliary discharging mechanism 4, the lower die 2 comprises a vertical support plate 201, a die body 202, a die groove 203 and a baffle 204, the middle part of the inner side of the vertical support plate 201 is fixed with the die body 202, the die groove 203 is arranged inside the die body 202, the baffle 204 is jointed inside the die groove 203, the vertical support plate 201 is symmetrically distributed along the vertical middle axis of the die body 202, the vertical support plate 201, the die body 202 and the die groove 203 are in an integral structure, the lower die 2 is composed of the die body 202 and the die groove 203, the lower die is supported by the vertical support plate 201, the die groove 203 is hollow, discharging is convenient, the baffle 204 and the die groove 203 are matched and jointed, the baffle 204 is in a rectangular shape, when the shaping work is started, the elastic auxiliary discharging mechanism 4 is jointed at the bottom of the die groove 203, the baffle plates 204 are respectively placed in the die cavities 203, then materials are filled, the content of the materials filled in each die cavity 203 is consistent, then a group of baffle plates 204 are placed at the upper end of the materials, the materials can be quickly molded through the extrusion of an upper end die, the upper die 3 comprises an extrusion block 301, a lifting rod 302, a carriage 303 and a hanging piece 304, the top of the extrusion block 301 is provided with a lifting rod 302, the top of the lifting rod 302 is connected with the carriage 303, the two sides of the carriage 303 are provided with the hanging piece 304, the extrusion block 301 forms a clamping structure with the lower die 2 through the lifting rod 302, the lifting rod 302 and the carriage 303 are fixedly connected, the upper die 3 comprises the extrusion block 301, the lifting rod 302 and the carriage 303, the carriage 303 is fixed at the top of a wall body through the hanging piece 304 or at the bottom end of a support plate and can be installed according to the environment, the lifting rod 302 is installed at the bottom of the carriage 303, can support extrusion piece 301, can slide the lift from top to bottom simultaneously and extrude the material of bottom, unload fast through the extrusion.
As shown in fig. 2-3, an auxiliary mechanism 1 for producing magnesite-lime bricks is provided, which comprises a supporting platform 101, a plate slot 102, a hydraulic rod 103 and a fixed supporting plate 104, wherein the plate slot 102 is disposed on the middle surface of the supporting platform 101, the hydraulic rod 103 is disposed inside the plate slot 102, the fixed supporting plate 104 is disposed on the top of the hydraulic rod 103, the supporting platform 101 and the plate slot 102 are integrated, the hydraulic rod 103 and the fixed supporting plate 104 form a lifting structure via the supporting platform 101, the fixed supporting plate 104 provides a supporting force for an elastic auxiliary discharging mechanism 4, the hydraulic rod 103 disposed on the bottom of the fixed supporting plate 104 can lift the elastic auxiliary discharging mechanism to discharge the material downwards for convenient transfer, the elastic auxiliary discharging mechanism 4 comprises a return spring 401 and a brick plate 402, the upper end of the return spring 401 is connected with the brick plate 402, the return spring 401 is movably connected with the brick plate 402, and brick board 402 constitutes elastic construction through return spring 401 and complementary unit 1, the bottom of die body 202 is equipped with the dead slot and comes the laminating to place brick board 402, return spring 401 is installed to the bottom of its brick board 402, return spring 401 installs the bottom fixed stay board 104 and comes to support it, the material that comes to extrude moulding to the inside material of bed die 2 through last mould 3 after the material is filled, fashioned magnesium calcium brick can be unloaded from die cavity 203 bottom at the extruded in-process, buffer work is assisted through the peculiar elasticity of return spring 401, it produces the damage to avoid magnesium calcium brick when unloading, need not to extrude the design again, comparatively save time.
In conclusion, the mold for producing the magnesia-calcium brick is convenient for quick discharging, firstly, when the molding operation is started, the elastic auxiliary discharging mechanism 4 is attached to the bottom of the mold cavity 203 and is tightly attached to the inner wall of the mold body 202, the baffles 204 are respectively placed inside the mold cavity 203, then the materials are filled, the content of the materials filled inside each mold cavity 203 is consistent, then a group of baffles 204 are placed at the upper end of the materials, the materials can be quickly molded through the extrusion of the upper mold, after the materials are filled, the materials inside the lower mold 2 can be extruded and molded through the upper mold 3, the magnesia-calcium brick molded in the extrusion process can be discharged from the bottom of the mold cavity 203, the auxiliary buffering operation is carried out through the special elasticity of the return spring 401, the magnesia-calcium brick is prevented from being damaged when the discharging operation is carried out, the re-extrusion molding is not needed, the time is saved, and meanwhile, the hydraulic rod 103 arranged at the bottom of the fixed support plate 104 can be lifted, thereby discharging the materials downwards and facilitating the transfer.

Claims (9)

1. The utility model provides a magnesium calcium brick production is with mould of being convenient for unload fast, includes complementary unit (1), bed die (2), goes up mould (3) and elasticity complementary unit (4), its characterized in that: the brick plate unloading mechanism is characterized in that lower dies (2) are arranged at the upper ends of the two sides of the auxiliary mechanism (1), an upper die (3) is attached to the top of each lower die (2), an elastic auxiliary unloading mechanism (4) is arranged above the middle of the auxiliary mechanism (1), each elastic auxiliary unloading mechanism (4) comprises a return spring (401) and a brick plate (402), and the upper end of each return spring (401) is connected with the brick plate (402).
2. The mold for producing the magnesia-calcium brick convenient for quick discharging according to claim 1, characterized in that: the return spring (401) is movably connected with the brick plate (402), and the brick plate (402) and the auxiliary mechanism (1) form an elastic structure through the return spring (401).
3. The mold for producing the magnesia-calcium brick convenient for quick discharging according to claim 1, characterized in that: the auxiliary mechanism (1) comprises a supporting platform (101), a plate groove (102), a hydraulic rod (103) and a fixed supporting plate (104), the plate groove (102) is formed in the surface of the middle of the supporting platform (101), the hydraulic rod (103) is arranged inside the plate groove (102), and the fixed supporting plate (104) is arranged at the top of the hydraulic rod (103).
4. The mold for producing the magnesia-calcium brick convenient for quick discharging according to claim 3, characterized in that: the supporting platform (101) and the plate groove (102) are of an integral structure, and the hydraulic rod (103) and the fixed supporting plate (104) form a lifting structure through the supporting platform (101).
5. The mold convenient for rapid discharging for producing the magnesia-calcium brick according to claim 1, wherein: the lower die (2) comprises a vertical supporting plate (201), a die body (202), a die cavity (203) and a baffle (204), the die body (202) is fixed in the middle of the inner side of the vertical supporting plate (201), the die cavity (203) is formed in the die body (202), and the baffle (204) is attached to the inner portion of the die cavity (203).
6. The mold convenient for rapid discharging for producing the magnesia-calcium brick according to claim 5, wherein: the vertical support plates (201) are symmetrically distributed along the vertical central axis of the die body (202), and the vertical support plates (201), the die body (202) and the die cavity (203) are of an integral structure.
7. The mold for producing the magnesia-calcium brick convenient for quick discharging according to claim 5, characterized in that: the baffle (204) is matched and attached with the die cavity (203), and the baffle (204) is rectangular.
8. The mold for producing the magnesia-calcium brick convenient for quick discharging according to claim 1, characterized in that: the upper die (3) comprises an extrusion block (301), a lifting rod (302), a carriage (303) and hanging pieces (304), the lifting rod (302) is arranged at the top of the extrusion block (301), the carriage (303) is connected to the top of the lifting rod (302), and the hanging pieces (304) are installed on two sides of the carriage (303).
9. The mold for producing the magnesia-calcium brick convenient for quick discharging according to claim 8, characterized in that: the extrusion block (301) and the lower die (2) form a clamping structure through the lifting rod (302), and the lifting rod (302) is fixedly connected with the carriage (303).
CN202123252689.1U 2021-12-22 2021-12-22 Mould convenient for quick discharging for producing magnesia-calcium bricks Active CN217225968U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123252689.1U CN217225968U (en) 2021-12-22 2021-12-22 Mould convenient for quick discharging for producing magnesia-calcium bricks

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123252689.1U CN217225968U (en) 2021-12-22 2021-12-22 Mould convenient for quick discharging for producing magnesia-calcium bricks

Publications (1)

Publication Number Publication Date
CN217225968U true CN217225968U (en) 2022-08-19

Family

ID=82824669

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202123252689.1U Active CN217225968U (en) 2021-12-22 2021-12-22 Mould convenient for quick discharging for producing magnesia-calcium bricks

Country Status (1)

Country Link
CN (1) CN217225968U (en)

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