CN213440320U - Mould splitting device for refractory material green brick mould - Google Patents

Mould splitting device for refractory material green brick mould Download PDF

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Publication number
CN213440320U
CN213440320U CN202021846970.0U CN202021846970U CN213440320U CN 213440320 U CN213440320 U CN 213440320U CN 202021846970 U CN202021846970 U CN 202021846970U CN 213440320 U CN213440320 U CN 213440320U
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fork
rod
frame
swing arm
mould
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CN202021846970.0U
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Chinese (zh)
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李有奇
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Luoyang Lier Functional Materials Co ltd
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Luoyang Lier Functional Materials Co ltd
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Abstract

A die parting device for a refractory material adobe die comprises a fork frame, swing arms, springs and a force application rod, wherein the swing arms are symmetrically arranged at the lower part of the fork frame in front and back, the springs are arranged between the swing arms and the lower part of the fork frame, and the force application rod is arranged at the upper part of the fork frame; the fork frame is an obliquely arranged door-shaped frame and comprises a longitudinal rod, side rods and fork heads A, wherein the longitudinal rod is longitudinally and horizontally arranged, the side rods are symmetrically obliquely arranged at the two ends of the lower part of the longitudinal rod in a front-back manner, and the fork heads A are arranged at the lower ends of the side rods; the fork head A is a U-shaped fork with a downward opening; the utility model discloses an use, reached beneficial effect: the mould splitting device for the refractory material green brick mould is used for easily realizing the problem of difficult mould splitting after pouring the refractory material green brick by virtue of the supporting force generated between the fork head A of the fork frame and the fork head B of the swing arm when the mould splitting device is pressed downwards, avoiding the damage to the green brick, bringing great convenience to production, obviously improving the production efficiency and improving the enterprise competitiveness.

Description

Mould splitting device for refractory material green brick mould
Technical Field
The utility model relates to a refractory material makes the field, especially relates to a refractory material adobe mould divides mould device.
Background
The refractory brick is the most widely applied material in the metal smelting industry, and the refractory block in the steel ladle of a steel plant is manufactured by adding water into sintered refractory material particles and a solidification material for mixing, pouring the mixture into a mold for solidification and molding, and then airing the mold; the existing ladle brick is usually a trapezoid block, the using amount is the largest, matched materials are poured into a rectangular box for forming when the ladle brick is poured, a large amount of personnel are needed for construction, the moulds are poured in a single row, the occupied space is large, the utilization rate of the moulds is very large, if multi-cavity superposition pouring is adopted, mould division is very difficult, the moulds are separated one by manually knocking the moulds by a crowbar and a hammer, the construction efficiency is very low, the production progress is greatly influenced, and green bricks are easily damaged; therefore, two devices are needed to solve the problems that the production progress is influenced and green bricks are easy to damage due to the fact that the mold splitting is very difficult after the pouring of the existing refractory green bricks.
SUMMERY OF THE UTILITY MODEL
The utility model provides a refractory material adobe mould divides mould device for occupation space is big in the solution current refractory material piece production process, mould utilization ratio is low, the problem that drawing of patterns difficulty and whole production efficiency are low.
A die parting device for a refractory material adobe die comprises a fork frame, swing arms, springs and a force application rod, wherein the swing arms are symmetrically arranged at the lower part of the fork frame in front and back, the springs are arranged between the swing arms and the lower part of the fork frame, and the force application rod is arranged at the upper part of the fork frame; the fork frame is an obliquely arranged door-shaped frame and comprises a longitudinal rod, side rods and fork heads A, wherein the longitudinal rod is longitudinally and horizontally arranged, the side rods are symmetrically obliquely arranged at the two ends of the lower part of the longitudinal rod in a front-back manner, and the fork heads A are arranged at the lower ends of the side rods; the fork head A is a U-shaped fork with a downward opening, the bottom of the inner side of the fork head A is of a semicircular structure, and the end of the inner side surface of the fork head A is provided with a chamfer angle.
The side rod is of a rectangular rod structure, a longitudinal through hole is formed in the lower front portion of the side rod, a triangular stop block is arranged on the lower portion of the longitudinal through hole below the side plate, and a hook ring is arranged on the lower portion of the stop block of the side rod.
The swing arm and the fork frame are arranged in an inclined mode in the opposite direction, a double lug plate is arranged at the upper end of the swing arm and is matched and hinged with a through hole in the front of a side lever of the fork frame through a rotating shaft, a fork head B is arranged at the lower end of the swing arm, and a hook ring is arranged below the swing arm.
The fork head B and the fork head A are identical in structure, the opening of the fork head B is downward, and the inclination direction of the fork head B is consistent with that of the swing arm.
The spring is an axial tension spring, one end of the spring is connected with a shackle at the lower part of the stop block of the side lever, and the other end of the spring is connected with a shackle below the swing arm.
The force applying rod is of a circular tube structure, the lower end of the force applying rod is connected with the middle of the upper part of the longitudinal rod of the fork frame, the force applying rod is arranged in an inclined mode, the inclined direction of the force applying rod is consistent with the direction of a side rod of the fork frame, and an anti-skidding handle sleeve is arranged at the upper end of the outer circle of the force applying rod.
The distance between the front side rod and the rear side rod of the fork frame is larger than the longitudinal width of the pouring die.
The utility model discloses an use, reached beneficial effect: the mould splitting device for the refractory material green brick mould is used for easily realizing the problem of difficult mould splitting after pouring the refractory material green brick by virtue of the supporting force generated between the fork head A of the fork frame and the fork head B of the swing arm when the mould splitting device is pressed downwards, avoiding the damage to the green brick, bringing great convenience to production, obviously improving the production efficiency and improving the enterprise competitiveness.
Drawings
Fig. 1 is a front view of the overall structure of the present invention.
Fig. 2 is a front view of the present invention.
In the figure, the device comprises a longitudinal rod 1, a lateral rod 2, a lateral rod 3, a rotating shaft 4, fork heads A and 5, a stop dog 6, a spring 7, a swing arm 8, fork heads B and 9, a stress application rod 10, an anti-skid handle sleeve 11, a pouring mold 12 and a support rod.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
The fire-resistant material adobe mold splitting device shown in fig. 1 and 2 comprises a fork frame, a swing arm 7, a spring 6 and a stress application rod 9, wherein the fork frame is a door-shaped frame which is obliquely arranged and consists of a longitudinal rod 1, a side rod 2 and a fork head A4, the longitudinal rod 1 is longitudinally and horizontally arranged, the side rods 2 are symmetrically obliquely arranged at two ends of the lower part of the longitudinal rod 1 in a front-back manner, the side rod 2 is of a rectangular rod structure, a longitudinal through hole is formed in the front lower part of the side rod, a triangular stop block 5 is arranged at the lower part of the longitudinal through hole below the side plate, a shackle is arranged at the lower part of the stop block 5 of the side rod 2, and the distance between the front side; the fork head A4 is arranged at the lower end of the side rod 2, the fork head A4 is a U-shaped fork with a downward opening, the bottom of the inner side of the fork head A4 is of a semicircular structure, and the end of the inner side face of the fork head A4 is provided with a chamfer angle;
the swing arms 7 are symmetrically arranged at the lower part of the fork frame in a front-back manner, the directions of the swing arms 7 and the fork frame are opposite and obliquely arranged, the upper ends of the swing arms 7 are provided with double lug plates, the double lug plates are matched and hinged with a through hole in the front of a fork frame side rod 2 through a rotating shaft 3, the lower ends of the swing arms 7 are provided with forks B8, the structures of the forks B8 and A4 are the same, the openings of the forks B8 are downward, and the oblique directions of the forks B8 are consistent with the oblique directions of the swing arms 7; a shackle is arranged below the swing arm 7; the spring 6 is arranged between the swing arm 7 and the lower part of the fork frame, the spring 6 is an axial tension spring 6, one end of the spring 6 is connected with a shackle at the lower part of the stop block 5 of the side lever 2, and the other end of the spring 6 is connected with a shackle below the swing arm 7; the force applying rod 9 is arranged on the upper portion of the fork frame, the force applying rod 9 is of a circular tube structure, the lower end of the force applying rod 9 is connected with the middle of the upper portion of the fork frame longitudinal rod 1, the force applying rod 9 is arranged in an inclined mode, the inclined direction is consistent with the direction of the side rod 2 of the fork frame, and the upper end of the outer circle of the force applying rod 9 is provided with an anti-skidding handle sleeve 10.
When the die parting device for the adobe die made of the refractory material is used, firstly, a fork head A4 of a fork frame is downwards clamped on supporting rods 12 in front of and behind the adobe casting die 11 from the front side and the rear side of the casting die 11, then a fork head B8 at the lower end of a lower swing arm 7 is downwards clamped on the supporting rods 12 in front of and behind the adjacent adobe casting die 11, an anti-skidding handle sleeve 10 at the upper part of a hand-held force applying rod 9 is downwards pressed, at the moment, a chuck B of the swing arm 7 rotates anticlockwise on the lower part of the chuck A of the fork frame, the distance between the chuck B and the chuck A is enlarged, the adjacent adobe die is quickly separated, then the force applying rod 9 is upwards lifted, the chuck B and the chuck A are upwards separated from the adobe die, the swing arm 7 is pulled back clockwise by a spring 6, and the die parting.
The part of the utility model not detailed is prior art.

Claims (7)

1. The utility model provides a refractory material adobe mould divides mould device, includes crotch, swing arm (7), spring (6) and application of force pole (9), characterized by: the swing arms (7) are symmetrically arranged at the lower part of the fork frame in front and back, the springs (6) are arranged between the swing arms (7) and the lower part of the fork frame, and the stressing rods (9) are arranged at the upper part of the fork frame; the fork frame is a door-shaped frame which is obliquely arranged and consists of a longitudinal rod (1), side rods (2) and fork heads A (4), wherein the longitudinal rod (1) is longitudinally and horizontally arranged, the side rods (2) are symmetrically obliquely arranged at two ends of the lower part of the longitudinal rod (1) in a front-back symmetrical mode, and the fork heads A (4) are arranged at the lower ends of the side rods (2); the fork head A (4) is a U-shaped fork with a downward opening, the bottom of the inner side of the fork head A (4) is of a semicircular structure, and the end of the inner side surface of the fork head A (4) is provided with a chamfer angle.
2. The apparatus as claimed in claim 1, wherein: the side rod (2) is of a rectangular rod structure, a longitudinal through hole is formed in the lower front portion of the side rod, a triangular stop block (5) is arranged on the lower portion of the longitudinal through hole below the side plate, and a hook ring is arranged on the lower portion of the stop block (5) of the side rod (2).
3. The apparatus as claimed in claim 1, wherein: swing arm (7) and the opposite direction slope setting of crotch, the upper end of swing arm (7) is provided with the binaural board, the binaural board is articulated through pivot (3) and the preceding through-hole cooperation of crotch side lever (2), the lower extreme of swing arm (7) is provided with jaw B (8), is provided with the shackle below swing arm (7).
4. The apparatus as claimed in claim 3, wherein: the fork head B (8) and the fork head A (4) are identical in structure, the fork head B (8) is downward in opening, and the inclination direction of the fork head B (8) is consistent with that of the swing arm (7).
5. The apparatus as claimed in claim 1, wherein: the spring (6) is an axial tension spring, one end of the spring (6) is connected with a shackle at the lower part of the stop block (5) of the side lever (2), and the other end of the spring (6) is connected with a shackle below the swing arm (7).
6. The apparatus as claimed in claim 1, wherein: the fork-type bicycle is characterized in that the stress application rod (9) is of a circular tube structure, the lower end of the stress application rod (9) is connected with the middle of the upper portion of the fork-frame longitudinal rod (1), the stress application rod (9) is arranged in an inclined mode, the inclined direction of the stress application rod is consistent with the direction of a side rod (2) of the fork frame, and an anti-skidding handle sleeve (10) is arranged at the upper end of the outer circle of the stress application rod (9).
7. The apparatus as claimed in claim 1, wherein: the distance between the front side rod and the rear side rod (2) of the fork frame is larger than the longitudinal width of the pouring die.
CN202021846970.0U 2020-08-31 2020-08-31 Mould splitting device for refractory material green brick mould Active CN213440320U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021846970.0U CN213440320U (en) 2020-08-31 2020-08-31 Mould splitting device for refractory material green brick mould

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021846970.0U CN213440320U (en) 2020-08-31 2020-08-31 Mould splitting device for refractory material green brick mould

Publications (1)

Publication Number Publication Date
CN213440320U true CN213440320U (en) 2021-06-15

Family

ID=76318975

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021846970.0U Active CN213440320U (en) 2020-08-31 2020-08-31 Mould splitting device for refractory material green brick mould

Country Status (1)

Country Link
CN (1) CN213440320U (en)

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