Effervescent tablet subpackaging system

文档序号:1498405 发布日期:2020-02-07 浏览:24次 中文

阅读说明:本技术 一种泡腾片分装系统 (Effervescent tablet subpackaging system ) 是由 高志钢 肖德军 覃世冬 于 2018-07-26 设计创作,主要内容包括:本发明属于药片分装设备技术领域,特别涉及一种泡腾片分装系统,其包括漏斗、料槽、滑槽、转动圆盘和弧形围边,所述转动圆盘的边缘处设有若干个开口朝外的转送通孔,所述弧形围边套设于转动圆盘的外侧且设有与转送通孔的开口大小相同的连接口,所述料槽倾斜设置,所述料槽的接料端设于漏斗的下方,所述滑槽的一端连接料槽的出料端,所述滑槽的另一端呈弧形设置并与连接口连接。(The invention belongs to the technical field of tablet split charging equipment, and particularly relates to an effervescent tablet split charging system which comprises a funnel, a trough, a chute, a rotating disc and an arc-shaped surrounding edge, wherein a plurality of transfer through holes with outward openings are formed in the edge of the rotating disc, the arc-shaped surrounding edge is sleeved on the outer side of the rotating disc and is provided with a connecting port with the same size as the openings of the transfer through holes, the trough is obliquely arranged, a material receiving end of the trough is arranged below the funnel, one end of the chute is connected with a material discharging end of the trough, and the other end of the chute is arranged in an arc shape and is connected with the connecting port.)

1. An effervescent tablet dispensing system, comprising: including funnel (1), silo (2), spout (3), rotating disc (4) and arc surrounding edge (5), the edge of rotating disc (4) is equipped with a plurality of opening transfer on through-hole (41) outwards, the outside of rotating disc (4) is located and is equipped with connector (51) the same with the opening size that transfers on through-hole (41) is located to arc surrounding edge (5) cover, silo (2) slope sets up, discharge gate (11) below of funnel (1) is located in connecing material end (21) of silo (2), discharge end (22) of silo (2) are connected to the one end of spout (3), the other end of spout (3) is the arc setting and is connected with connector (51).

2. The effervescent tablet dispensing system of claim 1, wherein: the bottom surface of the discharge end (22) is in a furling trapezoid shape towards the direction of the chute (3).

3. The effervescent tablet dispensing system of claim 2, wherein: an array plate (23) is arranged between the two side walls of the discharge end (22), and the array plate (23) is arranged in parallel with the bottom surface of the discharge end (22).

4. The effervescent tablet dispensing system of claim 3, wherein: one side of the whole row of plates (23) close to the funnel (1) is a circular arc edge.

5. The effervescent tablet dispensing system of claim 3, wherein: the distance between the bottom surface of the whole array plate (23) and the top surface of the bottom of the discharge end (22) is 1-1.3 times of the height of the effervescent tablets.

6. The effervescent tablet dispensing system of claim 1, wherein: the transfer through hole (41) is U-shaped, and the bottom surface of the transfer through hole is semicircular.

7. The effervescent tablet dispensing system of claim 6, wherein: the straight edge length and the bottom surface radius of the transfer through hole (41) are equal to the radius of the effervescent tablet.

8. The effervescent tablet dispensing system of claim 6, wherein: a distribution disc (6) with the same size as the rotating disc (4) is arranged below the rotating disc (4), at least one distribution through hole is formed in the edge of the distribution disc (6), and the shape and the size of the distribution through hole are the same as those of the transfer through hole (41).

Technical Field

The invention belongs to the technical field of tablet split charging equipment, and particularly relates to an effervescent tablet split charging system.

Background

At present, dosage forms such as missible oil, wettable powder, emulsion in water, suspending agent and the like are commonly used in pesticide dosage forms, in the pesticide dosage forms, the missible oil contains a large amount of organic solvent, so the missible oil is inflammable and easy to leak, fire prevention and leakage prevention are strictly required in production and transportation, the wettable powder has small granularity, occupies large volume, is easy to agglomerate in storage, brings inconvenience to use, and the emulsion in water and the suspending agent also have the leakage problem. In addition, the organic solvent of the pesticide formulation not only affects the body health of a pesticide applicator, but also pollutes the environment.

The effervescent tablet is a new medicine formulation in China, and is different from a common tablet in that the effervescent tablet uses the reaction of organic acid and alkali type carbonate (hydrogen) as an effervescent disintegrant, and is put into water to carry out an effervescent reaction immediately to generate and release a large amount of carbon dioxide gas in a boiling state, so the effervescent tablet is named. The applicant finds in practice that the effervescent tablet prepared by mixing the pesticide active ingredient with various additives can effectively solve the safety problem and the environmental pollution problem of the pesticide in production, transportation, storage, sale and use.

The effervescent tablets prepared by matching the pesticide active ingredients with various additives need to be dispersed and packaged before sale, and the existing subpackaging system has low working efficiency and cannot meet the requirements of modern production.

Disclosure of Invention

In order to solve the problems, the invention provides the effervescent tablet subpackaging system which is reasonable in design, high in subpackaging efficiency, good in structure protection effect on effervescent tablets and extremely high in practicability.

The invention is realized by adopting the following technical scheme:

the utility model provides an effervescent tablet partial shipment system, includes funnel, silo, spout, rotating disc and arc surrounding edge, the edge of rotating disc is equipped with a plurality of opening and outwards forwards the through-hole, the outside of rotating disc and be equipped with and the same connector of opening size who forwards the through-hole are located to arc surrounding edge cover, the silo slope sets up, the discharge gate below of funnel is located to the material end that connects of silo, the discharge end of silo is connected to the one end of spout, the other end of spout is the arc setting and with the connector connection.

In the preferred scheme, the bottom surface of the discharge end is in a furled trapezoid shape towards the direction of the chute.

In the preferred scheme, an entire row of plates are arranged between the two side walls of the discharge end, and the entire row of plates are arranged in parallel with the bottom surface of the discharge end.

Preferably, one side of the array plate close to the funnel is a circular arc edge.

In a preferable scheme, the distance between the bottom surface of the array plate and the top surface of the bottom of the discharge end is 1-1.3 times of the height of the effervescent tablets. In the invention, the effervescent tablet is in a disc shape, the bottom surface of the effervescent tablet is in a circular shape, and the height of the effervescent tablet refers to the distance between the bottom surface and the top surface of the effervescent tablet.

Preferably, the transfer through hole is U-shaped, and the bottom surface of the transfer through hole is semicircular.

Preferably, the straight edge length and the bottom surface radius of the transfer through hole are equal to the radius of the effervescent tablet.

In an optimized scheme, a distribution disc with the same size as the rotating disc is arranged below the rotating disc, at least one distribution through hole is formed in the edge of the distribution disc, and the shape and the size of the distribution through hole are the same as those of the transfer through hole.

The invention has the beneficial effects that:

1. effervescent tablet gets into the silo that the slope set up from the funnel in, gets into under the effect of the special construction of discharge end and whole row board in the spout and arrange into a row of in close contact with, and in the arc end that effervescent tablet reachs the spout got into the through-hole that forwards on the rotating disc, distributed a packing section of thick bamboo through the distribution through-hole, this partial shipment system reasonable in design, partial shipment is efficient, and is effectual to effervescent tablet's structure protection, has high practicality.

2. The whole row of plates can separate the effervescent tablets which are overlapped together, so that the effervescent tablets can be transversely arranged only on the plane where the sliding grooves are located, and one side of the whole row of plates, which is close to the funnel, is an arc edge, so that the impact strength of the effervescent tablets and the whole row of plates is reduced, and the integrity of the effervescent tablets is ensured.

3. The special shape of the transfer through hole is beneficial to transferring the effervescent tablets, the effervescent tablets in the sliding groove and the effervescent tablets carried in the transfer through hole can be contacted with each other during transferring without influencing the normal rotation of the rotating disc, and the rotating disc can not cause structural damage to the effervescent tablets during rotation to influence the actual use effect of the effervescent tablets.

Drawings

In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings needed to be used in the description of the embodiments will be briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art to obtain other drawings based on these drawings without creative efforts.

Figure 1 is a schematic diagram of the construction of the effervescent tablet dispensing system of the present invention.

Fig. 2 is a schematic view of the structure of the array plate of the present invention.

Fig. 3 is a top view of the rotating disk of the present invention.

In the figure, 1, a funnel; 11. a discharge port; 2. a trough; 21. a receiving end; 22. a discharge end; 23. arranging the plates in a row; 3. a chute; 4. rotating the disc; 41. a transfer through hole; 5. an arc surrounding edge; 51. a connecting port; 6. a distribution disk; 7. and (7) packaging the tube.

Detailed Description

The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments. It is to be understood that the described embodiments are merely a few embodiments of the invention, and not all embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments of the present invention without any inventive step, are within the scope of the present invention.

As shown in fig. 1, fig. 2, fig. 3, an effervescent tablet partial shipment system, including funnel 1, silo 2, spout 3, rotating disc 4 and arc surrounding edge 5, the edge of rotating disc 4 is equipped with a plurality of opening and forwards through-hole 41 outwards, the outside of rotating disc 4 and be equipped with the connector 51 the same with the opening size that forwards through-hole 41 are located to arc surrounding edge 5 cover, the slope of silo 2 sets up, the material receiving end 21 of silo 2 is located the 11 below of discharge gate of funnel 1, the discharge end 22 of silo 2 is connected to the one end of spout 3, the other end of spout 3 is the arc setting and is connected with connector 51.

Furthermore, the bottom surface of the discharge end 22 is in a folded trapezoid shape towards the direction of the chute 3, and when adjacent effervescent tablets reach the discharge end 22, the space is gradually folded and automatically arranged.

Further, an array plate 23 is arranged between two side walls of the discharge end 22, and the array plate 23 is parallel to the bottom surface of the discharge end 22. The purpose of the array of plates 23 is to separate the stacked effervescent tablets so that the effervescent tablets can only be arranged transversely in the plane of the chute 3 in preparation for the subsequent dispensing of the effervescent tablets by the dispensing unit.

Furthermore, the distance between the bottom surface of the array plate 23 and the top surface of the bottom of the discharge end 22 is not more than 1.3 times of the height of the effervescent tablets, the parameter limitation is precious experience obtained through long-term practice, and the effervescent tablet subpackaging system provided by the invention is very accordant, so that the stability of the effervescent tablet subpackaging system can be improved, and the maintenance rate of the effervescent tablet subpackaging system is reduced. In the invention, the effervescent tablet is in a disc shape, the bottom surface of the effervescent tablet is in a circular shape, and the height of the effervescent tablet refers to the distance between the bottom surface and the top surface of the effervescent tablet.

Furthermore, the array plate 23 is trapezoidal and is matched with the shape and structure of the discharge end 22, so that the arrangement effect on the effervescent tablets is improved.

Further, one side of the whole row of plates 23 close to the funnel 1 is an arc edge, and when the effervescent tablet subpackaging system is used, one side of the whole row of plates 23 close to the funnel 1 is in long-term contact with the effervescent tablets, the impact strength between the effervescent tablets and the whole row of plates 23 can be reduced by arranging the arc edge, and the completeness of the effervescent tablets is guaranteed.

In this embodiment, the width of spout 3 only can hold a slice effervescent tablet, and the effervescent tablet is a row in spout 3 and distributes, and the slip can not appear basically hindered, the effervescent tablet can not accurately get into the scheduling problem of distribution unit, has improved the stability and the practicality of effervescent tablet partial shipment system.

Further, the transfer through hole 41 is U-shaped and has a semicircular bottom surface, and preferably, the straight edge length and the bottom surface radius of the transfer through hole 41 are equal to the radius of the effervescent tablet. The special shape of the transfer through hole 41 is arranged, so that the effervescent tablets can be transferred conveniently, the effervescent tablets in the sliding groove 3 and the effervescent tablets loaded in the transfer through hole 41 can be contacted with each other during transfer without influencing the normal rotation of the rotating disc 4, and the rotating disc 4 can not cause structural damage to the effervescent tablets during rotation to influence the actual use effect of the effervescent tablets.

Further, the below of rotating disc 4 is equipped with the distribution disc 6 that equals with rotating disc 4 size, the edge of distribution disc 6 is equipped with at least one distribution through-hole, the shape, the size of distribution through-hole all with transmit through-hole 41 the same, through the setting of distribution disc 6, improved effervescent tablet partial shipment system's degree of automation and work efficiency, and can ensure that the effervescent tablet does not take place rotatoryly when falling into the distribution through-hole from transmitting through-hole 41, reduced the effervescent tablet because of packing impaired possibility, improved the quality of packing product.

During specific work, effervescent tablets enter the obliquely arranged trough 2 from the funnel 1 and reach the position of the discharge end 22, enter the chute 3 under the action of the special structure of the discharge end 22 and the array plate 23 and are arranged in a row in close contact with each other, the effervescent tablets enter the transfer through hole 41 on the rotating disc 4 after reaching the arc-shaped end of the chute 3, two distribution through holes are formed in the distribution disc 6 below the rotating disc 4, a packaging barrel 7 is arranged below each distribution through hole in a bearing mode, and each packaging barrel 7 can contain 10 effervescent tablets. The effervescent tablet firstly falls into first packing section of thick bamboo 7, and only after 7 partial shipment of first packing section of thick bamboo finished, the effervescent tablet just can fall into second packing section of thick bamboo 7, and when 7 partial shipment of a packing section of thick bamboo were carried out, can change another packing section of thick bamboo 7, improved partial shipment efficiency.

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