Compact steel plate continuous quenching machine
Abstract
The present invention provides a compact steel plate continuous quenching machine, which includes a load-bearing steel frame, a support transmission assembly, a water supply mechanism, a first water supply pipeline assembly, a first nozzle assembly, a support steel frame, a lifting mechanism, a movable steel frame, a compression transmission assembly, a second water supply pipeline assembly, a water jacket, a third water supply pipeline assembly, and a second nozzle assembly. By enabling the third water supply pipeline assembly to move within the water jacket to adapt to the height of the movable steel frame, compared to using a metal hose to connect the second nozzle assembly with the second water supply pipeline assembly, the space occupied by the bending of the metal hose can be saved, thereby making the product more compact, reducing the space occupied by the product, and further enhancing the user experience of the product.
Claims
exact text as granted — not AI-modified1 . A compact steel plate continuous quenching machine, characterized in that:
the compact continuous quenching machine comprises: a load-bearing frame; a support transmission assembly installed on the load-bearing frame; a water supply mechanism located on one side of the load-bearing frame; a plurality of first water supply pipeline assemblies, wherein one end of each of the plurality of first water supply pipeline assemblies is connected to the water supply mechanism, and the other end of each of the plurality of first water supply pipeline assemblies is located below the support transmission assembly; a first nozzle assembly installed at the other end of each of the first water supply pipeline assemblies, wherein the first nozzle assembly is located below the support transmission assembly; a support frame installed on the load-bearing frame; a lifting mechanism installed on the support frame; a moving frame embedded within the support frame, wherein the moving frame is connected to the lifting mechanism, and the moving frame is located above the load-bearing frame; a pressing transmission assembly installed below the moving frame, wherein the pressing transmission assembly is located above the support transmission assembly; a plurality of second water supply pipeline assemblies, wherein one end of each of the plurality of second water supply pipeline assemblies is connected to the water supply mechanism, the plurality of second water supply pipeline assemblies are installed on the outer side of the support frame, and the other end of each of the plurality of second water supply pipeline assemblies is located above the moving frame; a water jacket, wherein the water jacket defines a hollow cavity with openings at both ends, and one end of the water jacket is connected to the other end of each of the plurality of second water supply pipeline assemblies; a plurality of third water supply pipeline assemblies, wherein one end of each of the plurality of third water supply pipeline assemblies is embedded within the water jacket, the third water supply pipeline assembly is connected to the water jacket, and the plurality of third water supply pipeline assemblies are connected to the moving frame; a second nozzle assembly installed at the other end of each of the third water supply pipeline assemblies, wherein the second nozzle assembly is located above the pressing transmission assembly; wherein, each of the third water supply pipeline assemblies comprises: a first water supply pipeline body, wherein the first water supply pipeline body defines a hollow cavity with openings at both ends, and one end of the first water supply pipeline body is embedded within the water jacket; a sealing ring, wherein the sealing ring comprises an elastic body, at least two sealing rings are sleeved on an outer side of one end of the first water supply pipeline body, and the at least two sealing rings are installed within the water jacket; a flexible joint, wherein one end of the flexible joint is connected to the other end of the first water supply pipeline body; a second water supply pipeline body, wherein the second water supply pipeline body defines a hollow cavity with openings at both ends, one end of the second water supply pipeline body is connected to the other end of the flexible joint, and the second nozzle assembly is installed at the other end of the second water supply pipeline body; wherein, the second water supply pipeline body is connected to the moving frame.
2 . The compact steel plate continuous quenching machine according to claim 1 , characterized in that:
the support transmission assembly comprises: a plurality of first support bases fixed on both sides of the load-bearing frame, wherein the plurality of first support bases are arranged in pairs; a plurality of first transmission shafts passing through the plurality of first support bases, wherein the plurality of first transmission shafts are rotatably connected to the first support bases; a first transmission roller, wherein the first transmission roller defines a hollow cavity with openings at both ends, and corresponding first transmission shafts are embedded at both ends of the first transmission roller; a plurality of first drive mechanisms installed on one side of the load-bearing frame, wherein the plurality of first drive mechanisms are connected to the plurality of first transmission shafts; wherein, the first transmission roller and the plurality of first transmission shafts are interference-fitted.
3 . The compact steel plate continuous quenching machine according to claim 2 , characterized in that:
the support transmission assembly further comprises: a first water deflector installed on an outer wall of each of the first transmission shafts; a first sealing sleeve, wherein the first sealing sleeve comprises an elastic body, the first sealing sleeve is sleeved on an outer side of each of the first transmission shafts connected to the first drive mechanisms, and the first sealing sleeve is located between the first support bases and the first drive mechanisms.
4 . The compact steel plate continuous quenching machine according to claim 3 , characterized in that:
the pressing transmission assembly comprises: a plurality of second support bases fixed on both sides of the load-bearing frame, wherein the plurality of second support bases are arranged in pairs; a plurality of second transmission shafts passing through the plurality of second support bases, wherein the plurality of second transmission shafts are rotatably connected to the second support bases; a second transmission roller, wherein the second transmission roller defines a hollow cavity with openings at both ends, and corresponding second transmission shafts are embedded at both ends of the second transmission roller; a plurality of second drive mechanisms installed on one side of the load-bearing frame, wherein the second drive mechanisms are connected to the second transmission shafts, and the second drive mechanisms are located above the first drive mechanisms; wherein, the second transmission roller and the second transmission shafts are interference-fitted.
5 . The compact steel plate continuous quenching machine according to claim 4 , characterized in that:
the pressing transmission assembly further comprises: a second water deflector installed on an outer wall of each of the second transmission shafts; a second sealing sleeve, wherein the second sealing sleeve comprises an elastic body, the second sealing sleeve is sleeved on an outer side of each of the second transmission shafts connected to the second drive mechanisms, and the second sealing sleeve is located between the second support bases and the second drive mechanisms.
6 . The compact steel plate continuous quenching machine according to claim 1 , characterized in that:
the compact continuous quenching machine comprises: at least two tracks installed on inner walls of the support frame, wherein the at least two tracks are located on both sides of the moving frame; at least two mounting brackets fixed on both sides of the moving frame; at least two first guide wheels rotatably connected to the mounting brackets, wherein the at least two first guide wheels are in contact with both sides of the tracks; a second guide wheel rotatably connected to each of the mounting brackets, wherein the second guide wheel is in contact with an end face of the tracks near the moving frame.
7 . The compact steel plate continuous quenching machine according to claim 6 , characterized in that:
the lifting mechanism comprises: four screw lifts fixed on a top of the support frame, wherein each of the screw lifts is equipped with a lifting rod, and the lifting rods of the four screw lifts are connected to the moving frame; two steering gears installed on one side of the top of the support frame, wherein each of the steering gears is equipped with an input shaft and an output shaft, and the output shafts of the two steering gears are connected to input ends of two of the screw lifts on one side of the support frame; a first synchronizing shaft, wherein both ends of the first synchronizing shaft are connected to the input shafts of the two steering gears; two second synchronizing shafts, wherein one end of each of the two second synchronizing shafts is connected to the output shafts of the two steering gears, and the other end of each of the two second synchronizing shafts is connected to input ends of the other two screw lifts on the other side of the support frame; a third drive mechanism installed on the support frame, wherein the third drive mechanism is connected to the first synchronizing shaft.
8 . The compact steel plate continuous quenching machine according to claim 7 , characterized in that:
the lifting mechanism further comprises: a first connecting seat equipped with a first connecting groove, wherein the first connecting seat is connected to the lifting rod of each of the screw lifts; a flexible mechanism, wherein one end of the flexible mechanism is embedded in the first connecting groove, one end of the flexible mechanism is rotatably connected to the first connecting seat, and the other end of the flexible mechanism is fixed on the moving frame.
9 . The compact steel plate continuous quenching machine according to claim 8 , characterized in that:
the flexible mechanism comprises: a sleeve, wherein the sleeve defines a hollow cavity with an opening at one end, an outer wall of the sleeve is equipped with a first external thread, and the sleeve is fixed on the moving frame; a spring embedded in the sleeve, wherein one end of the spring is connected to the bottom of the sleeve; a limiting cover, wherein the limiting cover defines a hollow cavity with openings at both ends, an inner wall of the limiting cover is equipped with a first internal thread, and the limiting cover is sleeved on an outer side of the opening of the sleeve; a telescopic shaft, wherein one end of the telescopic shaft is embedded in the sleeve, one end of the telescopic shaft is connected to the other end of the spring, the other end of the telescopic shaft passes through the limiting cover, and the telescopic shaft is in contact with the limiting cover; a second external thread installed on an outer wall of the other end of the telescopic shaft; a second connecting seat equipped with a connecting hole, wherein an inner wall of the connecting hole is equipped with a second internal thread, the other end of the telescopic shaft is embedded in the connecting hole, at least part of the second connecting seat is embedded in the first connecting groove, and the second connecting seat is rotatably connected to the first connecting seat; wherein, the first external thread and the first internal thread are matched, and the second external thread and the second internal thread are matched.Join the waitlist — get patent alerts
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