CN-224210149-U - Pouring molding vibrating table difficult to accumulate materials
Abstract
The utility model provides a pouring molding vibrating table which is difficult to accumulate materials, comprising a base, a table top, a vibrating motor and a special mold, wherein the vibrating motor and the special mold are arranged at the bottom of the table top, four corners of the bottom of the table top are connected with the base through a spring mechanism, the table top comprises a rectangular frame and a plurality of cross bars, the cross bars are arranged in the rectangular frame at equal intervals, a material leakage neutral position is formed between the cross bars and between the edge cross bars and the rectangular frame, the special mold comprises a mold body and a clamping seat fixed at the bottom of the mold body, and at least one bayonet capable of clamping the cross bars is arranged at the bottom of the clamping seat. The pouring molding vibrating table with the difficult material accumulation has the advantages that the sludge is difficult to deposit on the table top, so that the placement of the molding die is difficult to influence, and the table top cleaning time can be saved.
Inventors
- GUO YANSHU
- WANG HAIFENG
- SHI WEI
- CHAI LI
- WU HUABAO
- GU YANQING
- FENG YAWEN
Assignees
- 南阳炬唐新材料科技有限公司
Dates
- Publication Date
- 20260508
- Application Date
- 20250529
Claims (5)
- 1. The pouring molding vibrating table is characterized by further comprising a special die, wherein the table top comprises a rectangular frame and a plurality of cross bars, the cross bars are arranged in the rectangular frame at equal intervals, a material leakage neutral space is formed between the cross bars and between the edge cross bars and the rectangular frame, the special die comprises a die body and a clamping seat fixed at the bottom of the die body, and at least one bayonet capable of clamping the cross bars is arranged at the bottom of the clamping seat.
- 2. The pouring molding vibration table with the small possibility of accumulation of materials, as set forth in claim 1, wherein the table top further comprises a longitudinal connecting rod, the centers of the plurality of cross rods are connected with the longitudinal connecting rod, the two ends of the longitudinal connecting rod are provided with a lapping part, and the two ends of the longitudinal connecting rod are movably lapped on the frame of the rectangular frame through the lapping part.
- 3. The pouring molding vibration table difficult to accumulate according to claim 2, wherein a baffle edge is arranged at the top of the rectangular frame.
- 4. The pouring molding vibration table difficult to accumulate according to any one of claims 1 to 3, wherein a cover plate is arranged at the top of the vibration motor, and the vibration motor is fixed at the center of the bottom of the table top through the cover plate so as to prevent mud from falling onto the vibration motor.
- 5. The vibration table for casting molding which is not easy to accumulate materials of claim 4, wherein the base is provided with a collecting hopper under the table top, and two ends of the collecting hopper are arranged in an open mode.
Description
Pouring molding vibrating table difficult to accumulate materials Technical Field The utility model relates to the technical field of refractory material production, in particular to a pouring molding vibrating table which is difficult to accumulate materials. Background The refractory castable is a mixture composed of refractory aggregate, a binder and an additive, and can be blended into pug after being added with water (or liquid binder), when in construction, a mould is required to be placed on a vibrating table, the pug is poured into the mould, and the shaping is completed along with the vibration of the vibrating table. The traditional pouring molding vibrating table mainly comprises a base, a table top and a vibrating motor arranged on the table top, wherein four corners of the bottom of the table top are connected with the base through a spring mechanism, eccentric wheels are arranged on driving shafts of the vibrating motor, centrifugal force is generated through rotation of the eccentric wheels, the table top is driven to vibrate, mud residues are scattered onto the table top from a die in the vibration molding process, accumulation is caused, the placement of the die is affected seriously, and the cleaning is very troublesome after accumulation of a certain amount of accumulation and shaping are carried out. In order to solve the above problems, an ideal technical solution is always sought. Disclosure of Invention The utility model aims at overcoming the defects of the prior art, and provides a pouring molding vibrating table which is difficult to deposit sludge on a table top, so that the placement of a molding die is difficult to influence, and the cleaning time of the table top can be saved. In order to achieve the purpose, the technical scheme includes that the pouring molding vibrating table difficult to accumulate comprises a base, a table top, a vibrating motor and a special mold, wherein the vibrating motor is installed at the bottom of the table top, four corners of the bottom of the table top are connected with the base through a spring mechanism, the table top comprises a rectangular frame and a plurality of cross bars, the cross bars are arranged in the rectangular frame at equal intervals, a material leakage neutral position is formed between the cross bars and between the edge cross bars and the rectangular frame, the special mold comprises a mold body and a clamping seat fixed at the bottom of the mold body, and at least one bayonet capable of clamping the cross bars is arranged at the bottom of the clamping seat. The beneficial effects are that the rectangular frame and the cross bars form the table top, and meanwhile, a matched special die is arranged, the cross bars are clamped by the bayonet at the bottom of the clamping seat, the die is fixed in position, and the spilled mud slag can fall from the leaking gap in the mud vibration forming process, so that the mud slag is not easy to deposit on the table top. Based on the above, the table top further comprises longitudinal connecting rods, the centers of the cross rods are connected with the longitudinal connecting rods, the two ends of the longitudinal connecting rods are provided with the pressing parts, and the two ends of the longitudinal connecting rods are movably pressed on the frame of the rectangular frame through the pressing parts. The vertical connecting rod has the beneficial effects that the vertical connecting rod connects a plurality of cross rods into a whole, the overlapping parts are arranged at the two ends, so that the middle part of the cross rod is prevented from being pressed and deformed during vibration molding, meanwhile, the two ends of the vertical connecting rod are mutually separated from the rectangular frame, and when the cross rod is deeply cleaned, the cross rod can vibrate through knocking the cross rod or the vertical connecting rod, so that mud is separated from the surface of the cross rod. Based on the above, the top of the rectangular frame is provided with a blocking edge. The beneficial effects are that can avoid the mud residue to spill from the table surface edge. Based on the above, the vibrating motor top is provided with the apron, vibrating motor passes through the apron is fixed mesa bottom central authorities to avoid mud material to fall on the vibrating motor. Based on the above, the base is provided with the collecting hopper under the table top, and two ends of the collecting hopper are opened. The mud collecting hopper has the beneficial effects that mud is convenient to collect, two ends of the collecting hopper are open, and a spade is convenient to spade out accumulated mud. Drawings FIG. 1 is a schematic side view of a casting vibration table with less tendency to accumulate materials. Fig. 2 is a top view of a mesa in the present utility model. FIG. 3 is a diagram of the mating relationship of the table top and the dedicated mold in the present utility model. Fig. 4 i