Electric hoist material lifting tank
By designing the coordinated action of the sealing, rotating, and scraping components of the electric hoist's material tank, the problem of material residue caused by insufficient hopper inclination angle was solved, achieving complete material descent and tank stability.
Patent Information
- Application Number
- CN202520310144.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-25
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2035-02-25
AI Technical Summary
During the material feeding process, if the angle of the feeding hopper is not large enough, material residue will remain, resulting in material loss.
An electric hoist material lifting tank was designed, comprising a tank body, a support plate, a hopper, a sealing component, a rotating component, a driving component, and a scraping component. By controlling the rising and falling of the sealing component, combined with the actions of the driving component and the scraping component, the complete falling of the material and the stability of the tank body are achieved.
It effectively reduces material loss and improves the stability of the tank during movement, ensuring that the material is completely unloaded into the unloading chute and reducing shaking.
Smart Images

Figure CN223658915U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to bulk material handling machinery technology field, especially relates to a electric hoist lifting tank. BACKGROUND
[0002] The electric hoist lifting tank can meet the diversified hoisting demand due to the characteristics of high efficiency, safety, easy operation, wide application, economy and environmental protection, so that the electric hoist lifting tank is widely used in the fields of industry, logistics, construction, rubber and plastic production, papermaking, coal mining, wind power generation and other industries.
[0003] A related electric hoist lifting tank comprises a tank body, a lower hopper is arranged at the bottom of the tank body, a lower discharge cover is arranged at the bottom end of the lower hopper, and a lifting ring is arranged at the top of the tank body.
[0004] However, during the discharging process of the electric hoist lifting tank, the material in the lower hopper is not discharged completely due to the insufficient inclination angle of the lower hopper, so that the material loss is reduced. Invention content
[0005] In order to reduce the material loss, the present application provides an electric hoist lifting tank.
[0006] The present application provides an electric hoist lifting tank, which adopts the following technical scheme:
[0007] An electric hoist lifting tank comprises
[0008] A tank body, a feeding cavity is arranged in the tank body;
[0009] A support plate is fixedly connected with the outer circumferential side of the tank body;
[0010] A lower hopper is fixedly arranged at the bottom end of the tank body;
[0011] A plugging piece is fixedly connected with the lower hopper and is used for controlling the discharging of the material in the tank body;
[0012] A rotating piece is slidingly connected with the bottom end of the tank body, and the rotating piece abuts against the lower hopper;
[0013] A driving piece is fixedly arranged in the tank body and is used for driving the rotating piece to rotate;
[0014] A scraping piece is fixedly arranged at the bottom end of the tank body, and the scraping piece abuts against the rotating piece.
[0015] By adopting the technical scheme, the tank body is arranged to realize material feeding, the supporting plate is arranged to support the tank body, the lower hopper and the rotating member are arranged to guide the falling material, and the scraping member is arranged to push the residual material on the rotating member to fall, thereby reducing material loss. The blocking member is controlled to rise, at this time, the blocking member blocks the lower hopper, so that the blocking member drives the lower hopper and the tank body to rise together, thereby reducing the shaking of the blocking member when rising, and further reducing the shaking of the tank body when moving, so as to increase the stability of the tank body when moving. When the tank body moves to the unloading position, the blocking member is controlled to descend, so that the supporting plate abuts against the upper end of the unloading groove. At this time, due to the supporting effect of the supporting plate, the tank body is located in the unloading groove. The blocking member is controlled to continue to descend, so that the blocking member is away from the lower hopper. Due to the gravity, the material in the feeding cavity falls into the unloading groove from the gap between the blocking member and the lower hopper. The driving member is started, so that the driving member drives the rotating member to rotate. Due to the abutment between the scraping member and the rotating member, the scraping member pushes the residual material on the rotating member, so that the residual material falls into the unloading groove.
[0016] Optionally, the blocking member comprises:
[0017] The lifting rod is arranged in the feeding cavity.
[0018] The blocking base plate is fixedly arranged at the lower end of the lifting rod and abuts against the lower hopper.
[0019] By adopting the technical scheme, the lifting rod is arranged to control the rising and descending of the blocking base plate, and the blocking base plate is arranged to control the feeding and unloading of the material in the feeding cavity. The lifting rod is controlled to rise, so that the lifting rod drives the blocking base plate to rise, thereby making the blocking base plate abut against the lower hopper, and further making the material remain in the feeding cavity. The lifting rod is controlled to descend, so that the lifting rod drives the blocking base plate to descend, thereby making the blocking base plate away from the lower hopper, so that a gap is formed between the blocking base plate and the lower hopper, and further making the material unload from the gap between the blocking base plate and the lower hopper.
[0020] Optionally, a rotating groove is horizontally arranged at the bottom end of the tank body, and the rotating member comprises:
[0021] The rotating block is rotatably arranged in the rotating groove.
[0022] The rack is fixedly arranged at one side of the rotating block close to the feeding cavity.
[0023] The rotating plate is fixedly arranged at one end of the rotating block away from the rotating groove and abuts against the lower hopper.
[0024] By adopting the technical scheme, the rotating groove and the rotating block are arranged to convert the rotation of the rack into the rotation of the rotating block, so as to drive the rotating plate to rotate, the rack is arranged to convert the movement of the driving member into the rotation of the rack, and the rotating plate is arranged to guide the falling material.
[0025] Optionally, the driving member comprises:
[0026] The motor is fixedly connected with the tank body.
[0027] The gear is fixedly arranged at the output end of the motor and is engaged with the rack.
[0028] By adopting the technical scheme, the motor is arranged to drive the gear to rotate, the gear is arranged to convert the rotation of the output shaft of the motor into the rotation of the gear, so as to drive the rack to rotate. The motor is started, so that the output shaft of the motor drives the gear to rotate, and the gear drives the rack to rotate due to the engagement between the gear and the rack. The rack drives the rotating block to rotate in the rotating groove due to the rack being fixedly arranged at the side of the rotating block close to the feeding cavity, so that the rotating block drives the rotating plate to move.
[0029] Optionally, the scraping member comprises:
[0030] The baffle is fixedly arranged at the bottom end of the tank body.
[0031] The scraper is fixedly arranged at the end of the baffle away from the tank body and abuts against the rotating plate.
[0032] By adopting the technical scheme, the baffle is arranged to reduce the probability of the material in the feeding cavity falling on the surfaces of the motor, the gear, the rack and the sliding block, and the scraper is arranged to push the residual material on the rotating plate to fall. The residual material on the rotating plate can be pushed to fall by the scraper when the rotating plate rotates, so as to reduce the material loss.
[0033] Optionally, a limiting member is fixedly arranged in the feeding cavity, and the limiting member comprises:
[0034] The limiting plates are arranged at intervals along the circumferential side of the feeding cavity, one side of each limiting plate is fixedly connected with the feeding cavity, and the limiting plates are parallel to the radius of the feeding cavity.
[0035] The limiting ring is fixedly connected with the ends of the plurality of limiting plates away from the tank body, and the axis of the limiting ring is consistent with the axis of the feeding cavity.
[0036] The limiting plate is used for fixing the limiting ring, and the limiting ring is used for limiting the movement range of the lifting ring.
[0037] Optionally, the limiting members are arranged at intervals along the axial direction of the tank body.
[0038] By adopting the above technical scheme, the plurality of limiting members are arranged, further reducing the shaking of the lifting rod when rising, thereby further reducing the shaking of the tank body when moving, and further increasing the stability of the tank body when moving.
[0039] Optionally, the lower end of the lower hopper is provided with a guide slope, and the guide slope is in abutment with the blocking bottom disc.
[0040] By adopting the above technical scheme, the guide slope is arranged to increase the contact area between the lower hopper and the blocking bottom disc, thereby improving the limiting capacity of the blocking bottom disc on the falling of the material in the feeding cavity, and reducing the loss of the material in the feeding and moving processes.
[0041] In summary, the electric hoist material tank provided by the embodiment of the utility model has at least one of the following beneficial technical effects:
[0042] 1. The tank body is arranged to realize the feeding of the material, the supporting plate is arranged to support the tank body, the lower hopper and the rotating member are arranged to guide the falling material, and the scraping member is arranged to push the residual material on the rotating member to fall, thereby reducing the loss of the material. The blocking member is controlled to rise, at this time, the blocking member closes the lower hopper, so that the blocking member drives the lower hopper and the tank body to rise together, thereby reducing the shaking of the blocking member when rising, and further reducing the shaking of the tank body when moving, thereby increasing the stability of the tank body when moving. When the tank body moves to the unloading position, the blocking member is controlled to descend, so that the supporting plate is in abutment with the upper end of the unloading groove, at this time, the tank body is located in the unloading groove due to the supporting effect of the supporting plate. The blocking member is controlled to continue to descend, so that the blocking member is away from the lower hopper, and due to the gravity effect, the material in the feeding cavity falls into the unloading groove from the gap between the blocking member and the lower hopper. The driving member is started, so that the driving member drives the rotating member to rotate, and due to the abutment between the scraping member and the rotating member, the scraping member pushes the residual material on the rotating member, so that the residual material falls into the unloading groove.
[0043] 2, the boom is used for controlling the lifting and lowering of the blocking bottom disc, and the blocking bottom disc is used for controlling the feeding and discharging of the material in the feeding cavity. The lifting of the boom is controlled, so that the boom drives the blocking bottom disc to lift, thereby making the blocking bottom disc abut against the discharging hopper, and further making the material stay in the feeding cavity. The lowering of the boom is controlled, so that the boom drives the blocking bottom disc to lower, thereby making the blocking bottom disc away from the discharging hopper, so that a gap is formed between the blocking bottom disc and the discharging hopper, and further making the material discharged from the gap. BRIEF DESCRIPTION OF DRAWINGS
[0044] Figure 1 A structure schematic view of the electric hoist material tank is provided for the embodiment of the utility model;
[0045] Figure 2 A sectional view of the electric hoist material tank is provided for the embodiment of the utility model;
[0046] Figure 3 For Figure 2 An enlarged view of the A part in the middle.
[0047] Explanation of the figure:
[0048] 1, tank body; 11, feeding cavity; 2, support plate; 3, discharging hopper; 31, guide inclined surface; 4, blocking element; 41, boom; 411, lifting ring; 412, rod body; 42, blocking bottom disc; 5, rotating element; 51, rotating block; 52, rack; 53, rotating plate; 54, rotating groove; 6, driving element; 61, motor; 62, gear; 7, scraping element; 71, baffle; 72, scraper; 8, limiting element; 81, limiting plate; 82, limiting ring. DETAILED DESCRIPTION
[0049] The following will be combined with the drawings Figures 1-3 The application is further described in detail.
[0050] Combined Figure 1 and Figure 2 The embodiment of the application discloses an electric hoist material tank, which comprises a tank body 1, a support plate 2, a discharging hopper 3, a blocking element 4, a rotating element 5, a driving element 6 and a scraping element 7, the tank body 1 is internally provided with a feeding cavity 11, the support plate 2 is fixedly connected with the outer circumferential side of the tank body 1, the discharging hopper 3 is fixedly arranged at the bottom end of the tank body 1, the blocking element 4 is fixedly connected with the discharging hopper 3 and is used for controlling the discharging of the material in the tank body 1, the rotating element 5 is slidingly connected with the bottom end of the tank body 1, the rotating element 5 abuts against the discharging hopper 3, the driving element 6 is fixedly arranged in the tank body 1 and is used for driving the rotating element 5 to rotate, and the scraping element 7 is fixedly arranged at the bottom end of the tank body 1 and abuts against the rotating element 5.
[0051] The limiting piece 8 is fixedly arranged in the feeding cavity 11, and includes a limiting plate 81 and a limiting ring 82. The limiting plate 81 is arranged in plurality along the circumferential side of the feeding cavity 11, and one side of each limiting plate 81 is fixedly connected with the feeding cavity 11. The limiting plate 81 is parallel to the radius of the feeding cavity 11. The circumferential side of the limiting ring 82 is fixedly connected with the ends of the plurality of limiting plates 81 away from the tank body 1. The axis of the limiting ring 82 is consistent with the axis of the feeding cavity 11. The limiting piece 8 is arranged in plurality along the axis direction of the tank body 1.
[0052] In the embodiment of the present application, the discharge area is provided with a discharge groove to meet the discharge requirement of the tank body 1. The tank body 1 is arranged in a cylindrical shape. The feeding cavity 11 is arranged in a cylindrical shape. The support plate 2 is arranged in a ring shape. The inner diameter of the support plate 2 is consistent with the diameter of the tank body 1. The outer diameter of the support plate 2 can meet the support requirement of the tank body 1. The lower hopper 3 is arranged in a funnel shape. The diameter of the upper end of the lower hopper 3 is consistent with the diameter of the tank body 1. The diameter of the lower end of the lower hopper 3 can meet the discharge requirement of the material. The opening mode of the driving piece 6 can be remote control or through the control panel arranged on the side wall of the tank body 1 to meet the requirement of controlling the start and stop of the driving piece 6. The embodiment of the present application does not make specific limitation. The limiting plate 81 is arranged in a rectangular shape. The limiting ring 82 is arranged in a circular ring shape. The arrangement of the limiting ring 82 can meet the requirement of limiting the movement range of the plugging piece 4. The arrangement of the limiting plate 81 can meet the fixing requirement of the limiting ring 82.
[0053] The plugging piece 4 is controlled to rise. At this time, the plugging piece 4 closes the lower hopper 3. Since the lower hopper 3 is fixedly arranged at the bottom end of the tank body 1, the plugging piece 4 drives the lower discharging piece and the tank body 1 to rise together. Due to the limiting effect of the limiting plate 81 and the limiting ring 82 on the plugging piece 4, the shaking of the plugging piece 4 during rising is reduced, and the shaking of the tank body 1 during movement is reduced, thereby increasing the stability of the tank body 1 during movement. After the tank body 1 moves to the discharge position, the plugging piece 4 is controlled to descend, so that the support plate 2 abuts against the upper end of the discharge groove. At this time, due to the support effect of the support plate 2, the tank body 1 is located in the discharge groove. The plugging piece 4 is controlled to continue to descend, so that the plugging piece 4 is away from the lower hopper 3. Due to the gravity, the material in the feeding cavity 11 falls into the discharge groove from the gap between the plugging piece 4 and the lower hopper 3. The driving piece 6 is started, so that the driving piece 6 drives the rotating piece 5 to rotate. Since the scraping piece 7 abuts against the rotating piece 5, the scraping piece 7 pushes the material remaining on the rotating piece 5, so that the remaining material falls into the discharge groove, thereby reducing the material loss.
[0054] In specific use, the blocking member 4 is controlled to rise, and after the blocking member 4 blocks the lower hopper 3, the blocking member 4 is controlled to be stationary at the current position, and then the material is poured into the tank body 1 from the upper end of the tank body 1, so that the material falls into the closed space formed by the rotating member 5, the feeding cavity 11 and the blocking member 4. After the material is fully loaded, the blocking member 4 is controlled to rise again. Since the lower hopper 3 is fixedly arranged at the bottom end of the tank body 1, the blocking member 4 drives the lower hopper and the tank body 1 to rise together. After the tank body 1 moves to the unloading position, the blocking member 4 is controlled to descend, so that the supporting plate 2 abuts against the upper end of the unloading groove. At this time, due to the supporting effect of the supporting plate 2, the tank body 1 is located in the unloading groove. The blocking member 4 is controlled to continue to descend, so that the blocking member 4 is away from the lower hopper 3. Due to the action of gravity, the material in the feeding cavity 11 falls into the unloading groove from the gap between the blocking member 4 and the lower hopper 3. After the material in the tank body 1 stops falling, the driving member 6 is started, so that the driving member 6 drives the rotating member 5 to rotate. Since the scraping member 7 abuts against the rotating member 5, the scraping member 7 pushes the material remaining on the rotating member 5, so that the remaining material falls into the unloading groove.
[0055] In combination with Figure 2 and Figure 3 , specifically, the blocking member 4 comprises a hanging rod 41 and a blocking base plate 42. The hanging rod 41 is arranged in the feeding cavity 11, and the blocking base plate 42 is fixedly arranged at the lower end of the hanging rod 41 and abuts against the lower hopper 3. The bottom end of the tank body 1 is horizontally provided with a rotating groove 54. The rotating member 5 comprises a rotating block 51, a rack 52 and a rotating plate 53. The rotating block 51 is rotatably arranged in the rotating groove 54. The rack 52 is fixedly arranged on one side of the rotating block 51 close to the feeding cavity 11. The rotating plate 53 is fixedly arranged at the end of the rotating block 51 away from the rotating groove 54 and in contact with the lower hopper 3. The driving member 6 comprises a motor 61 and a gear 62. The motor 61 is fixedly connected with the tank body 1, and the gear 62 is fixedly arranged at the output end of the motor 61 and engaged with the rack 52. The scraping member 7 comprises a baffle 71 and a scraping plate 72. The baffle 71 is fixedly arranged at the bottom end of the tank body 1, and the scraping plate 72 is fixedly arranged at the end of the baffle 71 away from the tank body 1 and abuts against the rotating plate 53. The lower end of the lower hopper 3 is provided with a guide inclined surface 31, which abuts against the blocking base plate 42.
[0056] In the embodiment of the present application, the lifting rod 41 comprises a lifting ring 411 and a rod body 412, the lifting ring 411 is arranged in a circular ring shape, the rod body 412 is arranged in a cylindrical shape, the lifting ring 411 and the rod body 412 can be integrally formed or connected by welding, as long as the requirement of fixed connection of the lifting ring 411 and the rod body 412 is met, the arrangement of the lifting rod 41 can meet the lifting requirement of the plugging base disc 42, the plugging base disc 42 is arranged in a conical shape, the arrangement of the plugging base disc 42 can meet the requirement of closing the discharge port, the guide inclined surface 31 is arranged in a funnel shape, the arrangement of the guide inclined surface 31 can meet the requirement that the guide inclined surface 31 is in contact with the plugging base disc 42. The hook is passed through the lifting rod 41, the hook is started, the lifting rod 41 is controlled to rise, so that the lifting rod 41 drives the plugging base disc 42 to rise, so that the plugging base disc 42 is in contact with the discharge hopper 3, and then the material is left in the feeding cavity 11. The lifting rod 41 is controlled to descend, so that the lifting rod 41 drives the plugging base disc 42 to descend, so that the plugging base disc 42 is away from the discharge hopper 3, so that a gap is formed between the plugging base disc 42 and the discharge hopper 3, and then the material is discharged from the gap between the plugging base disc 42 and the discharge hopper 3.
[0057] The rotating groove 54 is arranged in a ring shape, the vertical cross section of the rotating groove 54 is arranged in a T shape, the rotating block 51 is arranged in a ring shape, the vertical cross section of the rotating block 51 is arranged in a T shape, the arrangement of the rotating groove 54 can meet the rotation requirement of the rotating block 51, the rack 52 is arranged in a ring shape, the rotating plate 53 is arranged in a funnel shape, the arrangement of the rotating plate 53 can meet the requirement of material feeding, the arrangement of the gear 62 can meet the requirement that the gear 62 is engaged with the rack 52, the baffle 71 is arranged in a circular ring shape, the arrangement of the baffle 71 can meet the requirement of reducing the material falling on the surface of the gear 62 and the rack 52 in the feeding cavity 11, the scraper 72 is arranged in a rectangular shape, the arrangement of the scraper 72 can meet the requirement of scraping the residual material on the surface of the rotating plate 53, and the embodiment of the present application is not limited in particular. The motor 61 is started, so that the output shaft of the motor 61 drives the gear 62 to rotate, since the gear 62 is engaged with the rack 52, the gear 62 drives the rack 52 to rotate, since the rack 52 is fixedly arranged on one side of the rotating block 51 close to the feeding cavity 11, the rack 52 drives the rotating block 51 to rotate in the rotating groove 54, so that the rotating block 51 drives the rotating plate 53 to move, since the scraper 72 is in contact with the rotating plate 53, when the rotating plate 53 rotates, the scraper 72 can push the residual material on the rotating plate 53 to fall, so as to reduce the material loss.
[0058] In specific use, the hook is passed through the suspender 41, the hook is started, the suspender 41 is controlled to rise, the suspender 41 drives the blocking base 42 to rise, so that the blocking base 42 is in contact with the lower hopper 3, and then the material is discharged into the feeding cavity 11. After the material is loaded, the suspender 41 is controlled to rise again, the tank body 1 is moved to the discharging groove, the suspender 41 is controlled to descend, the suspender 41 drives the blocking base 42 to descend, so that the blocking base 42 is away from the lower hopper 3, a gap is formed between the blocking base 42 and the lower hopper 3, due to the action of gravity, the material in the feeding cavity 11 falls into the discharging groove from the gap formed between the blocking member 4 and the lower hopper 3. After the material in the tank body 1 stops falling, the motor 61 is started, the output shaft of the motor 61 drives the gear 62 to rotate, due to the meshing of the gear 62 and the rack 52, the gear 62 drives the rack 52 to rotate, due to the rack 52 being fixedly arranged on one side of the rotating block 51 close to the feeding cavity 11, the rack 52 drives the rotating block 51 to rotate in the rotating groove 54, so that the rotating block 51 drives the rotating plate 53 to move, due to the contact between the scraper 72 and the rotating plate 53, when the rotating plate 53 rotates, the scraper 72 can push the residual material on the rotating plate 53 to fall, so as to reduce the material loss.
[0059] The implementation principle of the embodiment of the application is as follows: the hook is passed through the suspender 41, the hook is started, the suspender 41 is controlled to rise, the suspender 41 drives the blocking base 42 to rise, so that the blocking base 42 is in contact with the lower hopper 3, the suspender 41 is controlled to be stationary at the current position, so that the blocking base 42 closes the lower hopper 3, and then the material is poured into the tank body 1 from the upper end of the tank body 1, so that the material falls in the closed space formed by the rotating member 5, the feeding cavity 11 and the blocking member 4, after the material is loaded, the suspender 41 is controlled to rise again, the tank body 1 is moved to the discharging position, the blocking member 4 is controlled to descend, so that the supporting plate 2 is in contact with the upper end of the discharging groove. At this time, due to the supporting action of the supporting plate 2, the tank body 1 is located in the discharging groove.
[0060] The suspender 41 is controlled to continue to descend, the suspender 41 drives the blocking base 42 to descend, so that the blocking base 42 is away from the lower hopper 3, a gap is formed between the blocking base 42 and the lower hopper 3, due to the action of gravity, the material in the feeding cavity 11 falls into the discharging groove from the gap formed between the blocking base 42 and the lower hopper 3. After the material in the tank body 1 stops falling, the motor 61 is started, the output shaft of the motor 61 drives the gear 62 to rotate, due to the meshing of the gear 62 and the rack 52, the gear 62 drives the rack 52 to rotate, due to the rack 52 being fixedly arranged on one side of the rotating block 51 close to the feeding cavity 11, the rack 52 drives the rotating block 51 to rotate in the rotating groove 54, so that the rotating block 51 drives the rotating plate 53 to move, due to the contact between the scraper 72 and the rotating plate 53, when the rotating plate 53 rotates, the scraper 72 can push the residual material on the rotating plate 53 to fall, so as to reduce the material loss.
[0061] The embodiments are only illustrative of the present application, and are not intended to limit the present application. Those skilled in the art can make modifications to the embodiments according to the present application without creative contribution, as long as the modifications are within the scope of the present application.
Claims
1. A material storage container for an electric hoist, characterized in that, include: Tank (1), wherein a feeding chamber (11) is provided inside the tank (1); Support plate (2), which is fixedly connected to the outer periphery of the tank body (1); The feeding hopper (3) is fixedly installed at the bottom end of the tank body (1); A sealing component (4) is fixedly connected to the hopper (3) and is used to control the discharge of materials in the tank (1); Rotating component (5), the rotating component (5) is slidably connected to the bottom end of the tank body (1), and the rotating component (5) abuts against the hopper (3); A driving component (6) is fixedly disposed inside the tank body (1) and is used to drive the rotating component (5) to rotate. The scraper (7) is fixedly disposed at the bottom end of the tank (1) and the scraper (7) abuts against the rotating part (5).
2. The electric hoist material container according to claim 1, characterized in that, The sealing component (4) includes: A lifting rod (41) is disposed inside the feeding chamber (11); A sealing chassis (42) is fixedly installed at the lower end of the boom (41), and the sealing chassis (42) abuts against the hopper (3).
3. The electric hoist material container according to claim 1, characterized in that, The bottom end of the tank (1) is provided with a horizontal rotating groove (54), and the rotating component (5) includes: Rotating block (51), the rotating block (51) is rotatably disposed in the rotating groove (54); A rack (52) is fixedly disposed on the side of the rotating block (51) near the feeding chamber (11); A rotating plate (53) is fixedly disposed at one end of the rotating block (51) away from the rotating groove (54), and the rotating plate (53) is in contact with the feeding hopper (3).
4. The electric hoist material container according to claim 3, characterized in that, The driving component (6) includes: Motor (61), the motor (61) is fixedly connected to the tank (1); Gear (62), which is fixedly disposed at the output end of the motor (61), meshes with the rack (52).
5. A material storage tank for an electric hoist according to claim 3, characterized in that, The scraping element (7) includes: Baffle (71), the baffle (71) is fixedly installed at the bottom end of the tank body (1); The scraper (72) is fixedly disposed at one end of the baffle (71) away from the tank (1), and the scraper (72) abuts against the rotating plate (53).
6. The electric hoist material storage tank according to claim 1, characterized in that, A limiting member (8) is fixedly installed inside the feeding chamber (11), and the limiting member (8) includes: A limiting plate (81) is provided at intervals along the periphery of the feeding cavity (11). One side of each limiting plate (81) is fixedly connected to the feeding cavity (11). The limiting plate (81) is parallel to the radius of the feeding cavity (11). The limiting ring (82) is fixedly connected to the periphery of the multiple limiting plates (81) at the end away from the tank (1), and the axis of the limiting ring (82) is consistent with the axis of the feeding chamber (11).
7. A material storage tank for an electric hoist according to claim 6, characterized in that, The limiting member (8) is provided in multiple intervals along the axial direction of the tank body (1).
8. A material storage tank for an electric hoist according to claim 2, characterized in that, The lower end of the hopper (3) is provided with a guide slope (31), which abuts against the sealing chassis (42).