Moxa shaping batcher

The automated control of the moxa wool shaping and dispensing device has solved the problem of time-consuming and labor-intensive production of moxa bricks in existing technologies, and has achieved efficient production of moxa bricks.

CN223735539UActive Publication Date: 2025-12-30DONGGUAN TRADITIONAL CHINESE MEDICINE HOSPITAL
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Patent Information

Application Number
CN202520167383.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-24
Publication Date
2025-12-30
Estimated Expiration
2035-01-24

AI Technical Summary

Technical Problem

In the existing technology, the production of moxa bricks requires frequent extrusion and feeding, which is time-consuming, labor-intensive, and inefficient.

Method used

The method employs a moxa wool shaping and dispensing device, utilizing a motor-driven mold opening and closing switch and extruder to automatically control the opening and closing of the mold and the extrusion process, thereby achieving quantitative dispensing and shaping of moxa wool.

Benefits of technology

The elimination of the need for manual squeezing of moxa wool improves the efficiency of moxa brick production and simplifies the operation process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a moxa shaping batcher. A moxa shaping batcher comprises a table body, a mold body is installed on the table body, moxa is placed in the mold body, the mold body has an open state and a closed state, and when the mold body is in the closed state, the mold body is a cuboid with the left end and the right end communicated; when moxa is placed in the mold body, the mold body opening and closing switcher drives the mold body to be adjusted to an open state, the moxa is placed in the mold body, and the mold body is switched to a closed state. The moxa extruding device can move from the left end and the right end of the mold body in the length direction of the mold body to extrude moxa, and finally the operation is repeated until the moxa brick is manufactured to be in the proper size and hardness, so that the moxa does not need to be manually extruded by a user, and the moxa brick manufacturing efficiency is effectively improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to moxa moulding technical field, and specifically relates to a moxa moulding rationer. BACKGROUND

[0002] Moxa is a kind of downy material produced and processed from wormwood leaf, moxa is the best leaf of careful selection, and the primary downy material is formed after drying and continuous beating, the leaf is derived from chrysanthemum family plant wormwood, and moxa with grayish white color and softness like down is obtained after processing, and moxa brick usually refers to the main raw material of wormwood.

[0003] In some small-scale individuals, moxa brick is mostly made in the mode of using a mould, placing moxa in the mould, and then extruding the moxa in the mould by pressing plate to make moxa brick by compression molding, but the mode is very time-consuming and laborious, and the production efficiency is low. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a moxa moulding rationer, and aims at solving the problems that the moxa in the mould is extruded by pressing plate by the user in the prior art, the moxa brick is made by compression molding, the mode is very time-consuming and laborious, the production efficiency is low, and the mode is very inconvenient.

[0005] To achieve the above-mentioned purpose, the utility model adopts the following technical scheme: a moxa moulding rationer, including table body, mould body: install on table body, moxa is placed in mould body, mould body has two kinds of state of opening and closing, when mould body is closed state, mould body is the long rectangular solid of left and right two ends through, moxa extruder: set up on table body, when moxa is placed in mould body, moxa extruder can extrude moxa from the left and right two ends of mould body, mould body opening and closing switch: set up on mould body, for driving mould body to switch between the two kinds of state of opening and closing.

[0006] The further technical scheme of the utility model is that the mould body includes the bottom plate fixedly connected on the table body, the side plate is fixedly connected on the front and back two ends of the bottom plate, the top plate is fixedly connected on the top end of the side plate, and the cover plate is hinged on the left and right two ends of the top plate.

[0007] The further technical scheme of the utility model discloses, the moxa extruder includes two first sliding grooves set in the table body, and two first sliding grooves are located at the left and right ends of the bottom plate respectively, and the first sliding block is slidably connected in two first sliding grooves, and the moving block is fixedly connected on the first sliding block, and the connecting rod is fixedly connected on the side face of two moving blocks that are close to each other, and the extrusion plate is fixedly connected on the end of two connecting rods that are close to each other, and the extrusion plate is located in the mould body, and the bottom surface of the table body is fixedly connected with the first driving part, and the output shaft of the first driving part is fixedly connected with the cover plate, and the nut is threadedly connected on the surface of two first screws, and the nut is fixedly connected on the bottom surface of the first sliding block.

[0008] The further technical scheme of the utility model discloses, the first driving part is double-shaft motor.

[0009] The further technical scheme of the utility model discloses, the mould body opening and closing switch includes the lifting plate set up on the cover plate, and the second sliding block is slidably connected in two second sliding grooves set in the lifting plate, and the top of two second sliding blocks is hinged with two cover plates respectively, and the second screw is threadedly connected in the lifting plate, and the top of the second screw is rotationally connected with the top plate, and the second driving part is installed on the table body through the fixing frame, and the output end of the second driving part is fixedly connected with the top of the second screw.

[0010] The further technical scheme of the utility model discloses, the second driving part is servo motor.

[0011] The utility model discloses the beneficial effect is:

[0012] The mould body opening and closing switch drives the mould body to adjust to the open state, places the moxa in the mould body, switches the mould body to the closed state, and the moxa extruder can move along the length direction of the mould body from the left and right ends of the mould body, extrudes the moxa, and finally reciprocatingly repeats the above operation until the moxa brick is made into the appropriate size and hardness, thereby can realize that the moxa is extruded and is shaped and is handled quantitatively without using personnel manually, effectively improves the efficiency of moxa brick making. ACCURATE DRAWING

[0013] Figure 1 It is the partial structure sectional view of the front direction in the specific embodiment of the utility model,

[0014] Figure 2 It is the structure schematic view of the mould body in the specific embodiment of the utility model.

[0015] As shown in the figure: 1, the table body; 21, the bottom plate; 22, the side plate; 23, the top plate; 24, the cover plate; 31, the first sliding groove; 32, the first sliding block; 33, the first driving piece; 34, the first screw rod; 35, the nut; 36, the moving block; 37, the connecting rod; 38, the extrusion plate; 41, the lifting plate; 42, the second sliding groove; 43, the second sliding block; 44, the second screw rod; 45, the second driving piece. DETAILED DESCRIPTION

[0016] The specific embodiments of the utility model will be further described below in combination with the drawings.

[0017] As shown in the figure, Figure 1 and Figure 2 A moxa molding quantifier, comprising a table body 1 and a mold body installed on the table body 1, moxa is placed in the mold body, and by continuously recycling the steps of feeding, extruding, feeding again, extruding again and the like, moxa can be extruded to make moxa bricks, the mold body has two states of opening and closing, when the mold body is in the closed state, the mold body is a long rectangular body with through holes at both ends, moxa is placed in the mold body, and by extruding moxa from both ends of the mold body, moxa bricks can be made, when the mold body is in the open state, moxa can be placed in the mold body from the top of the mold body, so that the feeding can be more convenient, the mold body comprises a bottom plate 21 fixedly connected to the table body 1, side plates 22 are fixedly connected to the front and rear ends of the bottom plate 21, a top plate 23 is fixedly connected to the top end of the side plate 22, and cover plates 24 are hingedly connected to both ends of the top plate 23, when the side faces of the cover plates 24 away from each other are rotated to contact the top end of the side plate 22, it is in the closed state, and vice versa, it is in the open state, the table body 1 is provided with a moxa extruder, after moxa is placed in the mold body, the moxa extruder can extrude moxa from both ends of the mold body, so that moxa bricks can be conveniently made, a mold body opening and closing switch is arranged above the mold body and is used to drive the cover plates 24 to rotate, thereby driving the mold body to switch between the open and closed states, so that the feeding can be conveniently carried out, and the above-mentioned moxa extruder and mold body opening and closing switch can extrude moxa without manual operation of the personnel, effectively improving the efficiency of moxa brick making.

[0018] As shown in the figure, Figure 1As shown, the moxa extruder includes two first sliding grooves 31 opened in the table body 1, and the two first sliding grooves 31 are respectively located at the left and right ends of the bottom plate 21, and the first sliding grooves 31 are slidably connected with the first sliding blocks 32, the first sliding blocks 32 are fixedly connected with the moving blocks 36, the mutually close sides of the two moving blocks 36 are fixedly connected with the connecting rods 37, the mutually close ends of the two connecting rods 37 are fixedly connected with the extrusion plates 38, and the extrusion plates 38 are located in the mold body, the bottom surface of the table body 1 is fixedly connected with the first driving member 33, the first driving member 33 is a double-shaft motor, the two output shafts of the first driving member 33 are fixedly connected with the cover plates 24, the surfaces of the two first lead screws 34 are threadedly connected with the nuts 35, and the nuts 35 are fixedly connected to the bottom surfaces of the first sliding blocks 32. First, start the first driving member 33, the output end of the first driving member 33 rotates to drive the first lead screw 34 to rotate, then the first lead screw 34 rotates to drive the nut 35 to move, and then the nut 35 moves to push the extrusion plate 38 to move through the first sliding block 32, the moving block 36 and the connecting rod 37. When the two extrusion plates 38 move towards each other, the moxa can be extruded, so that the moxa brick can be easily made.

[0019] As shown in the Figure 1 mold body opening and closing switch includes a lifting plate 41 arranged above the cover plate 24, two second sliding grooves 42 are opened in the lifting plate 41, and the second sliding grooves 42 are slidably connected with the second sliding blocks 43, and the two second sliding blocks 43 are hingedly connected with the top ends of the two cover plates 24, the lifting plate 41 is threadedly connected with the second lead screw 44, and the bottom end of the second lead screw 44 is rotatably connected with the top plate 23, the second driving member 45 is installed on the table body 1 through a fixing frame, and the output end of the second driving member 45 is fixedly connected with the top end of the second lead screw 44. The second driving member 45 is a servo motor. First, start the second driving member 45, the output end of the second driving member 45 rotates to drive the second lead screw 44 to rotate, then the second lead screw 44 rotates to drive the lifting plate 41 to lift, when the lifting plate 41 moves downward, the two cover plates 24 can be rotated away, and the mold body can be easily switched between the open and closed states, and the moxa can be easily placed in the mold body.

[0020] Working principle: first, start the mold body opening and closing switch, the mold body opening and closing switch drives the mold body to adjust to the open state, then place the moxa in the mold body, then switch the mold body to the closed state, then start the moxa extruder, the moxa extruder can move along the length direction of the mold body from the left and right ends of the mold body to extrude the moxa, and finally repeat the above operation until the moxa brick is made to the appropriate size and hardness, so that the moxa can be extruded without manual operation, and the efficiency of making moxa brick is effectively improved.

[0021] It will be obvious to a person skilled in the art that the application is not limited to the details of the above-described exemplary embodiments, but that the application can be implemented in other concrete forms without departing from the spirit or essential characteristics of the application. The embodiments should, therefore, be considered in all respects as illustrative and not restrictive, the scope of the application being indicated by the appended claims rather than by the above description, and all changes which come within the meaning and range of equivalents of the claims are therefore intended to be embraced therein. Any reference signs in the claims should not be construed as limiting the claims concerned.

[0022] Furthermore, it should be understood that although the present specification is described in terms of embodiments, not every embodiment according to the present specification need necessarily include every independent technical characteristic referred to or implied in the specification. The description herein of any particular embodiment is primarily intended to enable others skilled in the art to make or use the claimed application. Any reference in the specification to something being "exemplary" does not necessarily connote that something is necessarily essential to the subject matter described in this specification. The specification is not intended to be limited to the embodiments shown herein but is to be accorded the full scope consistent with the claims, wherein reference to an "invention," "the invention," or "embodiments of the invention” in the singular sense means one specific embodiment, and the use of the term "invention" in the plural sense means multiple specific embodiments.

Claims

1. A flax forming and quantifying device, comprising a table body (1), characterized in that: a mold body is installed on the table body (1), flax is placed in the mold body, the mold body has two states of opening and closing, and when the mold body is in the closed state, the mold body is a long rectangular parallelepiped with through holes at both ends; a flax extruder is arranged on the table body (1), and the flax extruder can extrude the flax from both ends of the mold body after the flax is placed in the mold body; a mold body opening and closing switch is arranged on the mold body and used to drive the mold body to switch between the two states of opening and closing.

2. The molded flax quantifier according to claim 1, characterized in that: The mold body comprises a bottom plate (21) fixedly connected to the table body (1), side plates (22) fixedly connected to both ends of the bottom plate (21), a top plate (23) fixedly connected to the top ends of the side plates (22), and cover plates (24) hingedly connected to both ends of the top plate (23).

3. The molded flax quantifier according to claim 2, characterized in that: The flax extruder comprises two first sliding grooves (31) formed in the table body (1), and the two first sliding grooves (31) are respectively located at both ends of the bottom plate (21). First sliding blocks (32) are slidably connected in the two first sliding grooves (31), a moving block (36) is fixedly connected to each first sliding block (32), a connecting rod (37) is fixedly connected to each side of the two moving blocks (36) that are close to each other, an extrusion plate (38) is fixedly connected to one end of each connecting rod (37) that is close to each other, the extrusion plate (38) is located in the mold body, a first driving member (33) is fixedly connected to the bottom surface of the table body (1), output shafts of the first driving member (33) are fixedly connected to first screws (34), and nuts (35) are threadedly connected to the surfaces of the two first screws (34) and fixedly connected to the bottom surfaces of the first sliding blocks (32).

4. The molded flax quantifier according to claim 3, characterized in that: The first driving member (33) is a double-shaft motor.

5. The molded flax quantifier according to claim 4, characterized in that: The mold body opening and closing switch comprises a lifting plate (41) arranged above the cover plates (24), two second sliding grooves (42) formed in the lifting plate (41), second sliding blocks (43) slidably connected in the second sliding grooves (42), the top ends of the two cover plates (24) hingedly connected to the two second sliding blocks (43), a second screw (44) threadedly connected in the lifting plate (41) and rotationally connected to the bottom end of the top plate (23), a second driving member (45) installed on the table body (1) through a fixing frame, and the output end of the second driving member (45) fixedly connected to the top end of the second screw (44).

6. The moxa molding and quantifying device according to claim 1, wherein: The second driving member (45) is a servo motor.