Receiving assembly for crushing and screening calcium lactate

By designing a calcium lactate crushing screening and coupling assembly including a conveying hopper, limiting baffle and support frame, the hydraulic cylinder is used to drive the hydraulic rod, the problem of poor output port size and height adaptability of different screening structures is solved, and better applicability and convenience are achieved.

CN222860590UActive Publication Date: 2025-05-13HENAN HONGHUI TECH CO LTD
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Patent Information

Application Number
CN202421594677.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-08
Publication Date
2025-05-13
Estimated Expiration
2034-07-08

AI Technical Summary

Technical Problem

The calcium lactate crushing and sieving feeding components are not well equipped with the output port size and height of adaptability in different screening structures, resulting in inconvenience in use.

Method used

A feeding assembly including a conveying hopper, a limit baffle and a support frame is designed. The hydraulic rod is driven by a hydraulic cylinder to drive the movement of the conveying hopper and a limit baffle, so as to achieve adaptation to different output port sizes and heights.

Benefits of technology

It improves the applicability of the feeding assembly to the output port size and height of different screening components, ensures the smooth delivery and feeding of calcium lactate powder, and improves the convenience of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a material receiving assembly for crushing and screening calcium lactate, and relates to the technical field of calcium lactate production. The conveying device comprises a conveying hopper, limiting baffles and a supporting frame, an outer sleeve frame is fixed to the top of the conveying hopper, the limiting baffles are symmetrically and movably connected in the conveying hopper, a second pushing plate is fixed to the top ends of the limiting baffles, a first pushing plate is fixed to the bottom ends of the limiting baffles, and the supporting frame is arranged on the outer side of the conveying hopper. Through the arrangement of the conveying hopper, the limiting baffle and the supporting frame, the problems that a material receiving assembly is not good enough in adaptability to the sizes of output ports of different screening assemblies and not good enough in adaptability to the heights of the output ports of the different screening assemblies are solved, and the material receiving assembly has the advantages that the adaptability to the sizes of the output ports of the different screening assemblies is better, and the adaptability to the heights of the output ports of the different screening assemblies is better. And the applicability to the heights of output ports of different screening assemblies is better.
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Description

Technical Field

[0001] The utility model belongs to the technical field of calcium lactate production, in particular to a material receiving component for crushing and screening calcium lactate. Background Art

[0002] Calcium lactate is an organic compound, commonly used as a calcium supplement, which has the functions of promoting the calcification of bones and teeth, maintaining the normal excitability of nerves and muscles, and reducing the permeability of capillaries. Its molecular formula is C6H10CaO6, and it is white or milky white crystalline powder. It is easily soluble in hot water, insoluble in ethanol, chloroform and ether. The use of calcium lactate is that calcium lactate is mainly used to prevent and treat calcium deficiency, such as osteoporosis, tetany, bone dysplasia, rickets, and calcium supplementation for children, pregnant and lactating women, menopausal women, and the elderly. In addition, calcium lactate can also be used as a food additive, a fortifier for children's nutritional food, and for calcium supplementation in medicine. In order to ensure the fineness of the calcium lactate powder used after production, the powder needs to be sieved, and after sieving, the material is connected through the material connection component, but the material connection component still has the following disadvantages in actual use:

[0003] When the receiving component is working, the powder needs to be directly output, but when different screening structures are output, the size of the output port is different. When the receiving component receives the material, it needs to be installed on the output port. The size of the output port is different, and different receiving components need to be installed to adapt, which is not convenient to use;

[0004] When the receiving component is working, the material is directly output to the receiving component, but different screening structures have different output port heights. When the position of the processing equipment is fixed, its applicability is not good enough when facing different calcium lactate screening structures. Utility Model Content

[0005] The utility model aims to provide a material receiving component for crushing and screening calcium lactate, which solves the problems that the material receiving component is not well adapted to the sizes of output ports of different screening components and is not well adapted to the heights of output ports of different screening components by arranging a feeding hopper, a limit baffle and a support frame.

[0006] In order to solve the above technical problems, the utility model is realized by the following technical solutions:

[0007] The utility model discloses a material receiving component for crushing and screening calcium lactate, comprising a feeding hopper, a limiting baffle and a supporting frame, wherein an outer casing is fixed on the top of the feeding hopper, a limiting baffle is symmetrically and movably connected inside the feeding hopper, a second pushing plate is fixed on the top of the limiting baffle, a first pushing plate is fixed on the bottom of the limiting baffle, a supporting frame is arranged on the outer side of the feeding hopper, when working, the screened calcium lactate powder is transported to a material outlet through the feeding hopper, the calcium lactate powder is output when the limiting baffle abuts against the outer side of the outlet of the screened calcium lactate powder, and a hydraulic cylinder is supported on it through the supporting frame.

[0008] Furthermore, a discharge port is fixed at the bottom of the feed hopper, and a threaded barrel is fixedly connected to the centers of both ends of the outer casing and the discharge port. The second push plate is movably connected in the outer casing, and the first push plate is movably connected in the discharge port. The feed hopper outputs the calcium lactate powder entering therein through the discharge port, and the threaded rod is threadedly connected therein through the threaded barrel.

[0009] Furthermore, an upper cover plate is fixed on the top of the push plate 2, and the upper cover plate is arranged on the top of the outer casing. The push plate seals the upper part between the push plate 2 and the outer casing away from the center end through the upper cover plate.

[0010] Furthermore, the push plate one and the push plate two are both rotatably connected to a threaded rod on one side away from the center of the feed hopper, the threaded rod on the push plate one is threadedly connected to the threaded tube at the end of the discharge port, the threaded rod on the push plate two is threadedly connected to the threaded tube at the end of the outer frame, and a rotating frame is fixed to the end of the threaded rod away from the inner center of the feed hopper, and by rotating the rotating frame, the threaded rod is driven to rotate, so that the push plate one and the push plate two drive the limit baffle to abut the output port.

[0011] Furthermore, a hydraulic cylinder is symmetrically fixed on the top of the support frame along the transverse center line, a hydraulic rod is movably connected inside the hydraulic cylinder, and the support frame drives the hydraulic rod to move through the hydraulic cylinder.

[0012] Furthermore, fixing plates are fixed to the top ends of the two hydraulic rods, and the two fixing plates are respectively fixed to the two sides of the outer casing frame. The hydraulic cylinder drives the hydraulic rods to drive the fixing plates to push the outer casing frame upward.

[0013] The utility model has the following beneficial effects:

[0014] The utility model solves the problem that the material receiving component is not well adapted to the sizes of output ports of different screening components by arranging a feeding hopper and a limiting baffle, determines the position and size of the output port after the calcium lactate powder is screened, and then drives the feeding hopper to rise to the front side and the rear side of the inner wall through a hydraulic cylinder, and then rotates the rotating frame to drive the threaded rod to rotate, and the threaded rod rotates to drive the limiting baffle to move to the bottom of the outer side of the output port, so that the output port for screening the calcium lactate powder is closed during work, so that the calcium lactate powder is received through the feeding hopper, and the material receiving component is better adapted to the sizes of output ports of different screening components.

[0015] The utility model solves the problem that the material receiving component is not sufficiently applicable to the heights of the output ports of different screening components by arranging the material feeding hopper and the supporting frame. When working, the hydraulic cylinder is started to drive the hydraulic rod. When the hydraulic cylinder drives the hydraulic rod, the fixed plate is driven to rise. When the fixed plate rises, the material feeding hopper is driven to rise to abut against the output port of the calcium lactate screening, so that the material receiving component is better applicable to the heights of the output ports of different screening components. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] In order to more clearly illustrate the technical solutions of the embodiments of the utility model, the drawings required for describing the embodiments are briefly introduced below. Obviously, the drawings described below are only some embodiments of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.

[0017] Figure 1 It is a stereoscopic diagram of the assembly structure of a receiving component for crushing and screening calcium lactate;

[0018] Figure 2 It is a three-dimensional diagram of the feeding hopper structure;

[0019] Figure 3 It is a three-dimensional diagram of the outer jacket frame structure;

[0020] Figure 4 It is a three-dimensional diagram of the limit baffle structure;

[0021] Figure 5 It is a three-dimensional diagram of the supporting frame structure.

[0022] Reference numerals:

[0023] 1. Feed hopper; 101. Outer casing frame; 102. Discharge port; 103. Threaded barrel; 2. Limit baffle; 201. Push plate 1; 202. Push plate 2; 203. Upper cover plate; 204. Threaded rod; 205. Rotating frame; 3. Support frame; 301. Hydraulic cylinder; 302. Hydraulic rod; 303. Fixed plate. DETAILED DESCRIPTION

[0024] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model. Specific embodiment 1

[0025] See also Figure 1-5 The utility model is a material receiving component for crushing and screening calcium lactate, comprising a feed hopper 1, a limit baffle 2 and a support frame 3. An outer frame 101 is fixed on the top of the feed hopper 1, and the feed hopper 1 movably connects the output hopper of the screened material therein, and a push plate 2 202 is movably connected therein through the outer frame 101. The feed hopper 1 is symmetrically and movably connected with the limit baffle 2, and the calcium lactate screening output port is limited by the limit baffle 2. The top of the limit baffle 2 is fixed with a push plate 2 202, and the bottom of the limit baffle 2 is fixed with a push plate 1 201. The push plate 1 201 and the push plate 2 202 cooperate to drive the limit baffle 2 to move. A support frame 3 is arranged on the outside of the feed hopper 1, and the support frame 3 is fixedly supported at the position of the external support structure, and a hydraulic cylinder 301 is fixed thereon through the support frame 3.

[0026] Specifically, a discharge port 102 is fixed at the bottom of the feed hopper 1, and a threaded barrel 103 is fixedly connected to the center of both ends of the outer frame 101 and the discharge port 102. The push plate 202 is movably connected in the outer frame 101, and the push plate 1 201 is movably connected in the discharge port 102. The feed hopper 1 outputs the calcium lactate material transported therein to the next processing equipment through the discharge port 102, and is threadedly connected to the threaded rod 204 through the threaded barrel 103.

[0027] Furthermore, an upper cover plate 203 is fixed on the top of the second push plate 202 , and the upper cover plate 203 is arranged on the top of the outer casing 101 . The second push plate 202 closes the space between the second push plate 202 and the inner walls on both sides of the outer casing 101 through the upper cover plate 203 .

[0028] Furthermore, the push plate 1 201 and the push plate 202 are both rotatably connected to the side away from the center of the feed hopper 1 with a threaded rod 204. The threaded rod 204 on the push plate 1 201 is threadedly connected to the threaded tube 103 at the end of the discharge port 102. The threaded rod 204 on the push plate 202 is threadedly connected to the threaded tube 103 at the end of the outer frame 101. A rotating frame 205 is fixed to the end of the threaded rod 204 away from the inner center of the feed hopper 1. By rotating the rotating frame 205, the threaded rod 204 is driven to rotate. When the threaded rod 204 rotates, the push plate 1 201 and the push plate 2 202 drive the limit baffle 2 to move.

[0029] The operation process of this embodiment is as follows: when working, first determine the position and size of the output port for outputting the calcium lactate powder after screening, then drive the feed hopper 1 to rise to the front and rear sides of the inner wall through the hydraulic cylinder 301, and then rotate the rotating frame 205 to drive the threaded rod 204 to rotate. The threaded rod 204 rotates to drive the limit baffle 2 to move to the bottom of the outer side of the output port, so that when working, the output port for screening the calcium lactate powder is closed, so that the calcium lactate powder can be received by the feed hopper 1. Specific embodiment 2

[0030] See also Figure 1 , 2 5. On the basis of the specific embodiment 1, a hydraulic cylinder 301 is symmetrically fixed along the transverse center line on the top of the support frame 3, and a hydraulic rod 302 is movably connected inside the hydraulic cylinder 301. The support frame 3 drives the hydraulic rod 302 to move through the hydraulic cylinder 301.

[0031] Specifically, fixed plates 303 are fixed to the tops of the two hydraulic rods 302, and the two fixed plates 303 are respectively fixed on both sides of the outer casing 101. When the hydraulic cylinder 301 drives the hydraulic rod 302, the fixed plates 303 are driven to rise. When the fixed plates 303 rise, the feed hopper 1 is driven to rise to abut against the output port of the calcium lactate screening.

[0032] The operation process of this embodiment is as follows: when working, the hydraulic cylinder 301 is started to drive the hydraulic rod 302. When the hydraulic cylinder 301 drives the hydraulic rod 302, the fixed plate 303 is driven to rise. When the fixed plate 303 rises, the feed hopper 1 is driven to rise to abut against the output port of the calcium lactate screening.

[0033] In the description of this specification, the description with reference to the terms "one embodiment", "example", "specific example", etc. means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the utility model. In this specification, the schematic representation of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0034] The preferred embodiments of the utility model disclosed above are only used to help explain the utility model. The preferred embodiments do not describe all the details in detail, nor do they limit the utility model to the specific implementation methods described. Obviously, many modifications and changes can be made according to the content of this specification. This specification selects and specifically describes these embodiments in order to better explain the principles and practical applications of the utility model, so that technicians in the relevant technical field can well understand and use the utility model. The utility model is limited only by the claims and their full scope and equivalents.

Claims

1. A material receiving assembly for crushing and screening calcium lactate, comprising a feeding hopper (1), a limit baffle (2) and a support frame (3), characterized in that: An outer casing frame (101) is fixed on the top of the feed hopper (1), a limit baffle (2) is symmetrically and movably connected inside the feed hopper (1), a push plate 2 (202) is fixed on the top of the limit baffle (2), a push plate 1 (201) is fixed on the bottom of the limit baffle (2), and a support frame (3) is arranged on the outside of the feed hopper (1).

2. The material receiving assembly for crushing and screening calcium lactate according to claim 1, characterized in that: A discharge port (102) is fixedly provided at the bottom of the feed hopper (1), a threaded tube (103) is fixedly connected to the center of both ends of the outer casing (101) and the discharge port (102), the second push plate (202) is movably connected in the outer casing (101), and the first push plate (201) is movably connected in the discharge port (102).

3. The material receiving assembly for crushing and screening calcium lactate according to claim 1, characterized in that: An upper cover plate (203) is fixed on the top of the second push plate (202), and the upper cover plate (203) is arranged on the top of the outer casing frame (101).

4. The material receiving assembly for crushing and screening calcium lactate according to claim 2, characterized in that: The push plate 1 (201) and the push plate 2 (202) are both rotatably connected to a threaded rod (204) on one side away from the center of the feed hopper (1); the threaded rod (204) on the push plate 1 (201) is threadedly connected to the threaded tube (103) at the end of the discharge port (102); the threaded rod (204) on the push plate 2 (202) is threadedly connected to the threaded tube (103) at the end of the outer casing (101); and a rotating frame (205) is fixed to one end of the threaded rod (204) away from the inner center of the feed hopper (1).

5. The material receiving assembly for crushing and screening calcium lactate according to claim 1, characterized in that: A hydraulic cylinder (301) is symmetrically fixed to the top of the support frame (3) along the transverse center line, and a hydraulic rod (302) is movably connected inside the hydraulic cylinder (301).

6. The material receiving assembly for crushing and screening calcium lactate according to claim 5, characterized in that: A fixing plate (303) is fixed to the top ends of the two hydraulic rods (302), and the two fixing plates (303) are respectively fixed to two sides of the outer casing frame (101).