CN209754864U - Vertical double-tube capsule fine polishing machine - Google Patents

Vertical double-tube capsule fine polishing machine Download PDF

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Publication number
CN209754864U
CN209754864U CN201920200482.3U CN201920200482U CN209754864U CN 209754864 U CN209754864 U CN 209754864U CN 201920200482 U CN201920200482 U CN 201920200482U CN 209754864 U CN209754864 U CN 209754864U
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China
Prior art keywords
polishing
capsule
feeding spring
pipe
clean cloth
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Application number
CN201920200482.3U
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Chinese (zh)
Inventor
黄焕镐
韩阳
黄人强
余剑峰
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Ruian Huashili Technology Co Ltd
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Ruian Huashili Technology Co Ltd
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Priority to CN201920200482.3U priority Critical patent/CN209754864U/en
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Abstract

The utility model provides a vertical double-barrelled capsule fine polishing machine that can be connected with capsule filling machine, includes box (7), goes into hopper (10), one-level polishing subassembly (1) be equipped with second grade polishing subassembly (2) that link to each other with one-level polishing subassembly on the box, one-level polishing subassembly, second grade polishing subassembly all include polishing pipe (13), polishing brush roller (15), feeding spring (17) the polishing pipe inner wall of second grade polishing subassembly is equipped with the clean cloth cover of polishing (14), and this clean cloth cover of polishing is extruded by the feeding spring in the polishing pipe, the external discharging pipe (4) of second grade polishing subassembly. The polishing clean cloth sleeve can automatically and quickly remove viscous dirt on the surface of the capsule, and saves a large amount of manpower resources and time. Thereby improving the working efficiency and quality of capsule production.

Description

Vertical double-tube capsule fine polishing machine
Technical Field
The invention relates to a capsule polishing machine capable of being connected with a capsule filling machine to work.
Technical Field
At present, a full-automatic capsule filling machine used in the pharmaceutical industry comprises a capsule sorting and separating mechanism, an empty capsule waste removing mechanism, a filling mechanism, a powder adding mechanism, a capsule locking mechanism, a finished product discharging mechanism, a mould cleaning mechanism, a human-computer interface control mechanism, a mechanical transmission mechanism, an indexing turntable mechanism, a rack, a working platform and the like. The filled medicine can be powder, tablet or pill. Powder is generally left on the surface of a produced capsule finished product, the surface of a capsule shell needs to be polished, however, some surfaces of the capsule finished product have sticky dirt, the sticky dirt cannot be polished, the sticky dirt needs to be manually erased by cloth, more manpower and time need to be invested, the investment cost is increased, and the capsule can be damaged by manual erasing treatment sometimes. In addition, the feeding spring in the polishing pipe of the polishing component is inconvenient to install, so that the polishing working efficiency and quality of the capsule are influenced.
Disclosure of Invention
The invention aims to overcome the defects and provide a vertical double-tube capsule fine polishing machine capable of automatically removing dirt on the surface of a capsule.
The purpose of the invention is realized by the following technical scheme: the vertical double-tube capsule fine polishing machine comprises a box body, a feeding hopper and a first-stage polishing assembly, wherein a second-stage polishing assembly connected with the first-stage polishing assembly is arranged on the box body, the first-stage polishing assembly and the second-stage polishing assembly respectively comprise a polishing tube, a polishing hairbrush roll and a feeding spring, a polishing clean cloth sleeve is arranged on the inner wall of the polishing tube of the second-stage polishing assembly, the polishing clean cloth sleeve is extruded by the feeding spring in the polishing tube, and the second-stage polishing assembly is externally connected with a discharging tube.
The upper end part of the polishing clean cloth sleeve is provided with a fixing ring, and one side surface of the polishing clean cloth sleeve is provided with meshes. And a brush tray is arranged in the polishing pipe and at the bottom of the polishing brush roller, the brush tray comprises a nylon bristle bundle carrier, and nylon bristle bundles are arranged on the nylon bristle bundle carrier. The lower part of the feeding spring is provided with a fixed hook.
After the capsule surface powder cleaning and polishing device is adopted, the primary polishing assembly finishes the conventional capsule surface powder cleaning and polishing, the polishing clean cloth sleeve on the inner wall of the polishing pipe of the secondary polishing assembly can automatically and quickly and effectively clean viscous dirt on the surface of the capsule, and a large amount of manpower resources and time are saved. The feeding spring in the polishing pipe can be conveniently and smoothly loaded after being subjected to shrinkage treatment and then can be restored to the original shape. Thereby improving the working efficiency and quality of capsule production.
Drawings
FIG. 1 is a schematic view of the installation structure of the vertical double-tube capsule fine polishing machine of the present invention.
Fig. 2 is a schematic view (partially in section) of an installation structure of the secondary polishing assembly of fig. 1.
Fig. 3 is a schematic structural view of the polishing cleaning cloth cover in fig. 2.
Fig. 4 is a schematic view illustrating a structure of the brush tray of fig. 2.
Fig. 5 is a schematic view of the mounting structure of the feeding spring retracting and mounting tool adopted by the invention.
Fig. 6 is a schematic structural view (mounting a feeding spring and a foot pedal) after the rotation of fig. 5 for half a circle.
Detailed Description
Referring to fig. 1 and 2, the vertical double-tube capsule fine polishing machine used in conjunction with a capsule filling machine comprises a box body 7, a feeding hopper 10 (and a shield 11), a primary polishing assembly 1, a secondary polishing component 2 connected with the primary polishing component 1 is arranged on the box body 7 (the primary polishing component 1 is connected with the secondary polishing component 2 through a middle conveying pipe 12), the primary polishing component 1 and the secondary polishing component 2 both comprise a polishing pipe 13, a polishing brush roller 15 and a feeding spring 17 (spiral type, namely the feeding spring is sleeved in the polishing pipe, the polishing brush roller is sleeved in the polishing pipe and the feeding spring), a polishing clean cloth sleeve 14 is arranged on the inner wall of the polishing pipe 13 of the secondary polishing component 2, the polishing clean cloth cover 14 is extruded by a feeding spring 17 in the polishing pipe, and the secondary polishing component 2 is externally connected with a discharging pipe 4 (provided with a discharging port). Namely, the diameters of the feeding spring 17, the polishing clean cloth cover 14 and the polishing pipe 13 are increased in sequence.
The second-stage polishing component 2 further comprises a polishing clean cloth sleeve 14, viscous dirt on the surface of the capsule is removed by the polishing clean cloth sleeve, the polishing clean cloth sleeve is not arranged on the first-stage polishing component, the polishing clean cloth sleeve and the polishing brush roller 15 both rotate to polish and remove dust on the surface of the capsule, and the feeding spring 17 plays a role in conveying the capsule from bottom to top. As shown in fig. 3, the polishing and cleaning cloth cover 14 has a fixing ring 20 at its upper end, and has a mesh 18 (a woven gauze) on one side (i.e., the side connected to the vacuum cleaner) to facilitate the negative pressure discharge of the sticky dirt on the surface of the wiped capsule. The intermediate delivery pipe 12 is equipped with a visual mirror 19 to facilitate the observation of the capsule flow. The polishing tubes 13 of the first-stage polishing assembly 1 and the second-stage polishing assembly 2 are in butt joint with a dust collector through a connector tube, and the dust collector has the functions of sucking dust and sticky dirt in the polishing tubes and generating negative pressure in the polishing tubes. As shown in fig. 4, a brush tray 16 is arranged in the polishing pipe 13 and at the bottom of the polishing brush roller 15, the brush tray 16 comprises a nylon bristle bundle carrier (disc-shaped) 22, and nylon bristle bundles 21 are (evenly distributed) arranged on the nylon bristle bundle carrier 22, which effectively prevents the surface of the capsule from being scratched and prevents the capsule from being broken by extrusion. The polishing brush roller 15 is connected with a rotary power source 8 in the box body. The end of the discharge pipe 4 is provided with a waste rejecting component 3 (on the upper part) and an air filter 5 (on the lower part). And a heat dissipation assembly 6 (playing an internal heat dissipation role) and a power control switch 9 are arranged in the box body 7.
The installation method of the feeding spring of the vertical double-tube capsule fine polishing machine comprises the following steps: firstly, the upper arc edge of the feeding spring is clamped by two points or three points, the lower part of the feeding spring is provided with one point type clamping installation, and the lower part of the feeding spring is positioned and kept at a fixed position; then, the upper part of the feeding spring rotates around the center position of the feeding spring for a circle to a half circle, so that the feeding spring is contracted and the circle diameter of the feeding spring is reduced, and then the feeding spring is locked to keep a contracted state; finally, the lower part of the feeding spring in a contraction state is placed downwards and enters the polishing tube to be in place, and then the clamping positions of a plurality of positions (four positions) of the feeding spring are sequentially separated from bottom to top one by one, so that the feeding spring is released and restored to the original state, and the feeding spring is smoothly loaded downwards into the polishing tube. The lower portion (lower end portion) of the feed spring 17 has a fixing hook 46.
As shown in fig. 5 and 6, the feeding spring retracting and mounting tool adopted by the method for mounting the feeding spring of the vertical double-tube capsule fine polishing machine comprises an upper fixing body 40 and a lower positioning sleeve 39, wherein a connecting rod 35 is arranged between the upper fixing body 40 and the lower positioning sleeve 39, the upper fixing body 40 and the connecting rod 35 are movably mounted, the lower positioning sleeve 39 and the connecting rod 35 are fixedly mounted, an upper spring clamping column 41 (at the upper part) and a lower spring clamping column 34 (at the lower part) which are vertically arranged are mounted on the upper fixing body 40, an anti-tilting frame 36 is mounted on the lower positioning sleeve 39 and the connecting rod 35, a feeding spring lower positioning column 38 is arranged at the lower part of the anti-tilting frame 36 and adjacent to the lower positioning sleeve, and a locking hand wheel 32 and a rotating hand wheel 31 are sequentially mounted at the top end of the connecting rod 35 and above the upper fixing body 40.
A middle spring clip column 42 is arranged on the upper fixing body 40 and between the upper spring clip column 41 and the lower spring clip column 34. The outer end parts of the upper spring clamping column 41 (towards the right), the middle spring clamping column 42 (towards the front) and the lower spring clamping column 34 (towards the left) are respectively provided with a clamping column groove 43 capable of clamping the arc edge of the feeding spring, the upper spring clamping column 34 penetrates through the upper part of the upper fixing body 40, and the other outer end part of the upper spring clamping column 41 is provided with a spring rotating handle 33. The lower locating sleeve 39 is mounted on a mounting seat 44, and a projection 45 is arranged on the mounting seat 44 and is clamped in a clamping groove of the lower locating sleeve. A foot pedal 37 (a handle is arranged on the foot pedal) is arranged under the mounting seat 44.
The working principle of the feeding spring retracting and installing tool used by the invention is as follows: the outer end clamping column groove 43 of the upper spring clamping column 41, the middle spring clamping column 42 and the lower spring clamping column 34 is arc-shaped edges at three positions at the upper part of the feeding spring (or arc-shaped edges at two positions at the upper part of the feeding spring and at the lower part of the feeding spring clamping column 41 and the lower spring clamping column 34) at three points at the upper part, the fixed hook 46 at the lower part of the feeding spring is fixedly clamped on the lower part positioning column 38 of the feeding spring of the anti-tilting frame 36 at one point, and therefore the feeding spring is installed on the retractable installation tool in a four-point clamping mode (or in a three-point clamping mode). And fixed by the bulge of the lower positioning sleeve 39 on the mounting seat, the spring rotating handle 33 on the upper spring clamping column is pressed to rotate the upper fixing body along the connecting rod 35 for one circle to one and a half of a circle (optimally 540 degrees), the feeding spring is contracted to reduce the diameter of the circle, and then the locking hand wheel 32 is rotated to lock and fix the contracted feeding spring. Then, the upper fixing body is lifted to enable the lower positioning sleeve to be separated from the mounting seat, the lower positioning sleeve, the connecting rod and the upper fixing body are placed inside the polishing tube, finally, the rotating hand wheel 31 is operated to rotate the connecting rod and the anti-tilting frame, the fixing hook at the lower part of the feeding spring is separated from the positioning column at the lower part of the feeding spring, the arc edges at the upper part of the feeding spring are separated from the clamping column grooves from bottom to top one by one, the feeding spring is loosely placed to be restored to the original state, and the feeding spring is smoothly and downwards placed inside the polishing tube.

Claims (4)

1. Vertical double-barrelled capsule fine polishing machine, including box (7), income hopper (10), one-level polishing subassembly (1), its characterized in that: the polishing device is characterized in that a second-stage polishing component (2) connected with the first-stage polishing component (1) is arranged on the box body (7), the first-stage polishing component (1) and the second-stage polishing component (2) respectively comprise a polishing pipe (13), a polishing brush roller (15) and a feeding spring (17), a polishing clean cloth sleeve (14) is arranged on the inner wall of the polishing pipe (13) of the second-stage polishing component (2), the polishing clean cloth sleeve (14) is extruded by the feeding spring (17) in the polishing pipe, and the second-stage polishing component (2) is externally connected with a discharging pipe (4).
2. The vertical double-tube capsule fine polishing machine according to claim 1, characterized in that: the upper end part of the polishing clean cloth sleeve (14) is provided with a fixed ring (20), and one side surface of the polishing clean cloth sleeve is provided with a mesh (18).
3. The vertical double-tube capsule fine polishing machine according to claim 1 or 2, characterized in that: a brush tray (16) is arranged in the polishing tube (13) and at the bottom of the polishing brush roller (15), the brush tray (16) comprises a nylon wool bundle carrier (22), and nylon wool bundles (21) are arranged on the nylon wool bundle carrier (22).
4. The vertical double-tube capsule fine polishing machine according to claim 1, characterized in that: the lower part of the feeding spring (17) is provided with a fixed hook (46).
CN201920200482.3U 2019-01-30 2019-01-30 Vertical double-tube capsule fine polishing machine Active CN209754864U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920200482.3U CN209754864U (en) 2019-01-30 2019-01-30 Vertical double-tube capsule fine polishing machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920200482.3U CN209754864U (en) 2019-01-30 2019-01-30 Vertical double-tube capsule fine polishing machine

Publications (1)

Publication Number Publication Date
CN209754864U true CN209754864U (en) 2019-12-10

Family

ID=68751548

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920200482.3U Active CN209754864U (en) 2019-01-30 2019-01-30 Vertical double-tube capsule fine polishing machine

Country Status (1)

Country Link
CN (1) CN209754864U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109759936A (en) * 2019-01-30 2019-05-17 瑞安市华仕力科技有限公司 Installation method, the tool of the fine polishing machine of vertical two-tube capsule and its feeding spring

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109759936A (en) * 2019-01-30 2019-05-17 瑞安市华仕力科技有限公司 Installation method, the tool of the fine polishing machine of vertical two-tube capsule and its feeding spring

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