CN-224216404-U - Small-sized sand core sample mold
Abstract
The utility model discloses a small sand core sample mold, which comprises a fixed mold and a movable mold, wherein a sand mold and a second sand injection port are formed in the inner side of the fixed mold, a first sand injection port and a sample sand core are respectively formed in the inner side of the movable mold, which corresponds to the sand mold and the second sand injection port, a push plate is arranged in the inner side of the movable mold, a push rod is connected to the push plate, a first electric heater is arranged at the side of the fixed mold in a positioning manner, a second electric heater is arranged at the side of the movable mold in a positioning manner, the fixed mold is fixed in position, the movable mold moves forwards through pushing of the push rod and the push plate, and a mold is clamped between the movable mold and the fixed mold. The small sand core sample mould is provided with the combined mode sand core sample mould and the dust collection mechanism, so that sand materials can be conveniently and quickly detected, whether the sand materials are qualified or not is detected, the influence of unqualified sand materials on the device is reduced, and the dust collection treatment can be carried out on redundant sand materials outside the mould, so that the small sand core sample mould is simple and quick.
Inventors
- LIU XIANGUI
- GU LIANG
Assignees
- 苏州小鹰铸造装备有限公司
Dates
- Publication Date
- 20260508
- Application Date
- 20250409
Claims (6)
- 1. The small sand core sample mold comprises a fixed mold (1) and a movable mold (6) and is characterized in that a sand mold (9) and a second sand injection port (10) are formed in the inner side of the fixed mold (1), a first sand injection port (7) and a sample sand core (14) are respectively arranged at positions, corresponding to the sand mold (9) and the second sand injection port (10), of the inner side of the movable mold (6), a push plate (4) is arranged in the inner side of the movable mold (6), a push rod (5) is connected to the push plate (4), a first electric heater (2) is arranged at the side position of the fixed mold (1), and a second electric heater (3) is arranged at the side position of the movable mold (6).
- 2. The small-sized sand core sample mold according to claim 1, wherein a sliding rail (8) is arranged at the side of the first electric heater (2), a sliding seat (11) is movably arranged at the side of the sliding rail (8), a connecting frame (12) is arranged on the sliding seat (11), a dust collector (13) is arranged at the end part of the connecting frame (12), a current collector (18) is connected with the outer wall of the dust collector (13), a fan (19) is arranged at the rear end of the dust collector (13), a dust collection pipe (17) is connected with the front end of the dust collector (13), a connecting seat (16) is connected with the end part of the dust collection pipe (17), and a dust collection cover (15) is arranged at the side of the connecting seat (16).
- 3. The small-sized sand core sample mold according to claim 1, wherein the position of the fixed mold (1) is fixed, the movable mold (6) moves forward by pushing of the ejector rod (5) and the push plate (4), and the movable mold (6) and the fixed mold (1) are clamped.
- 4. The small-sized sand core sample mold according to claim 1, wherein when the fixed mold (1) and the movable mold (6) are assembled, the sand mold (9), the second sand injection port (10), the first sand injection port (7) and the sample sand core (14) are matched.
- 5. The small-sized sand core sample mold according to claim 1, wherein the fixed mold (1) and the first electric heater (2) are fixed through bolts, and the movable mold (6) and the second electric heater (3) are fixed through bolts.
- 6. The small-sized sand core sample mold according to claim 2, wherein the sliding seat (11) moves up and down on the sliding rail (8), the connecting frame (12) is fixed with the sliding seat (11) and the dust collector (13) through bolts, and the dust collector (13) controls the position of the dust collection cover (15) to suck sand and dust through the fan (19).
Description
Small-sized sand core sample mold Technical Field The utility model relates to the technical field of sand core sample molds, in particular to a small-sized sand core sample mold. Background The sand core sample mould is a supporting device for detecting the qualification degree of sand body, the sand mould casting needs to put a mould in sand, then the sand is filled around the mould, the sand forms a casting mould after the mould is taken out after the mould is opened, and along with the continuous development of technology, the requirements of people on the manufacturing process of the sand core sample mould are higher and higher. The existing sand core has certain defects when in use, firstly, the existing sand core is directly used, the unqualified condition possibly occurs, certain influence can be caused on a machine, sand cannot be conveniently and rapidly detected, and redundant sand materials after detection cannot be conveniently and rapidly processed, so that certain adverse effects are brought to the actual use process, and therefore, the small sand core sample mold is provided. Disclosure of utility model Aiming at the defects of the prior art, the utility model provides the small sand core sample mould which is provided with the combined mode sand core sample mould and the dust collection mechanism, so that the sand materials can be conveniently and rapidly detected, whether the sand materials are qualified or not can be detected, the influence of unqualified sand materials on the device is reduced, and the dust collection treatment can be carried out on the redundant sand materials outside the mould, so that the problems in the background art can be effectively solved. The technical scheme includes that the small sand core sample mold comprises a fixed mold and a movable mold, wherein a sand mold and a second sand injection port are formed in the inner side of the fixed mold, a first sand injection port and a sample sand core are respectively arranged at positions, corresponding to the sand mold and the second sand injection port, of the inner side of the movable mold, a push plate is arranged on the inner side of the movable mold, a push rod is connected to the push plate, a first electric heater is arranged on the side of the fixed mold in a positioning mode, and a second electric heater is arranged on the side of the movable mold in a positioning mode. Preferably, the slide rail is installed in the avris location of first electric heater, slide rail avris activity is provided with the slide, be located the link on the slide, the link tip location has the dust catcher, the outer wall connection of dust catcher has the current collector, the fan is installed to the rear end of dust catcher, the front end of dust catcher is connected with the dust absorption pipe, the end connection of dust absorption pipe has the connecting seat, the dust hood is installed to the connecting seat avris. Preferably, the fixed die is fixed in position, the movable die moves forward by pushing the ejector rod and the push plate, and the die is clamped between the movable die and the fixed die. Preferably, when the fixed die and the movable die are clamped, the sand die, the second sand injection port, the first sand injection port and the sample sand core are matched. Preferably, the fixed die and the first electric heater are fixed through bolts, and the movable die and the second electric heater are fixed through bolts. Preferably, the sliding seat moves up and down on the sliding rail, the connecting frame is fixed with the sliding seat and the dust collector through bolts, and the dust collector controls the position of the dust collection cover to suck sand and dust through the fan. Compared with the prior art, the small sand core sample mould has the advantages that the small sand core sample mould is provided with the sand core sample mould and the dust suction mechanism in a combined mode, so that whether sand is qualified or not can be conveniently and rapidly detected, influences of unqualified sand on the device are reduced, redundant sand outside the mould can be subjected to dust suction treatment, the position of the fixed mould is fixed and fixed, the movable mould moves forwards through pushing of the ejector rod and the push plate, the mould is clamped between the movable mould and the fixed mould, and when the fixed mould is clamped with the movable mould, the sand mould, the second sand injection port, the first sand injection port and the sample sand core are matched, the sand is injected into the position where the first sand injection port and the second sand injection port are combined, and the sand core is formed and detected at the positions of the sand mould and the sample sand core. Drawings Fig. 1 is a schematic diagram of the overall structure of a small-sized sand core sample mold according to the present utility model. Fig. 2 is a schematic diagram of the structure of the other si