Hollow bottle loading plate structure of agastache chinghui-chingchih water

CN224690570UActive Publication Date: 2026-08-28SICHUAN YIKE PHARMA CO LTD
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Patent Information

Application Number
CN202522230141.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-22
Publication Date
2026-08-28
Estimated Expiration
2035-10-22

AI Technical Summary

Technical Problem

现有的缩小空瓶之间间距的方式,无论是手动缩小还是机械臂驱动方式缩小,由于都是采用直接施加外力驱动进而调节间距的方式,因此都会导致个别空瓶在前述间距缩小过程中倒下,导致空瓶不能顺利的放置到托盘槽内,进而影响生产节奏

Benefits of technology

一、在实际使用时,由上游的传送带传送而来的一列空瓶,按照空瓶与引导槽一一对应的方式将空瓶设置到引导槽内。随后,让空瓶沿着引导槽向引导槽出口方向滑动。在滑动的过程中,由于引导槽出口之间并排设置且引导槽入口的入口宽度大于引导槽出口的出口宽度,导致该列空瓶之间的间距在上述滑动过程中逐渐缩小,即该列空瓶之间逐渐靠拢,最终通过引导槽出口设置到托盘槽内,实现了空瓶之间的间距缩小。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a production equipment field of Huo Xiang Zhengqi water, especially to a stable realization empty bottle spacing reduction's Huo Xiang Zhengqi water empty bottle tray structure, including tray, at least one tray groove for receiving empty bottle is provided on the tray, including tray mechanism, and the tray mechanism includes at least two guide grooves, the guide groove includes guide groove entrance and guide groove export, and the entrance width of guide groove entrance is greater than the export width of guide groove export, the export width is greater than the empty bottle diameter of empty bottle, and the guide groove entrance is side by side arrangement between, and the guide groove export is side by side arrangement between, and the guide groove export is set in the extension direction of tray groove and is set on the tray groove top. The utility model is especially applicable to Huo Xiang Zhengqi water empty bottle batch conveyance to the process of tray.
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Description

Technical Field

[0001] This utility model relates to the field of Huoxiang Zhengqi Water production equipment, and in particular to a Huoxiang Zhengqi Water empty bottle tray structure. Background Technology

[0002] Huoxiang Zhengqi Water is a commonly used traditional Chinese medicine with the effects of relieving exterior syndromes and dampness, regulating qi and harmonizing the middle jiao. It is mainly used for colds caused by external wind-cold, internal dampness stagnation, or summer heat and dampness. The main symptoms of colds include headache, dizziness, chest tightness, abdominal distension and pain, vomiting, and diarrhea. Currently, the production process of Huoxiang Zhengqi Water generally involves filling it into corresponding plastic bottles using a Huoxiang Zhengqi Water filling machine, thus achieving mass production of Huoxiang Zhengqi Water.

[0003] Before filling the bottles, empty bottles need to be evenly placed in rows of tray slots on a pallet. After the empty bottles are in the tray slots, the pallets and empty bottles are transported to the Huoxiang Zhengqi Water filling machine for filling. Currently, empty bottles are transported to the pallet by an upstream conveyor belt. During transport, the empty bottles are arranged in rows perpendicular to the conveyor belt's direction. Due to the arrangement requirements, the spacing between each row of empty bottles on the conveyor belt is too large. To place each row of empty bottles into its corresponding tray slot, the spacing between the empty bottles needs to be reduced. Existing methods for reducing the spacing between empty bottles, whether manual or robotic, rely on directly applying external force to adjust the spacing. This causes some empty bottles to tip over during the spacing reduction process, preventing them from being placed smoothly into the tray slots and thus affecting the production rhythm. Utility Model Content

[0004] The technical problem to be solved by this utility model is to provide a stable tray structure for empty Huoxiang Zhengqi Water bottles that reduces the spacing between empty bottles.

[0005] The technical solution adopted by this utility model to solve its technical problem is: a tray structure for empty bottles of Huoxiang Zhengqi Water, including a tray, on which at least one tray groove for storing empty bottles is provided, including a tray loading mechanism, the tray loading mechanism including at least two guide grooves; the guide groove includes a guide groove inlet and a guide groove outlet, the inlet width of the guide groove inlet is greater than the outlet width of the guide groove outlet, the outlet width is greater than the diameter of the empty bottle, the guide groove inlets are arranged side by side, the guide groove outlets are arranged side by side, and the guide groove outlets are arranged above the tray groove along the extension direction of the tray groove.

[0006] Furthermore, the inlet width is smaller than the height of the empty bottle.

[0007] Furthermore, the extension direction of the guide groove is obliquely set to the horizontal plane.

[0008] Furthermore, the guide groove includes a base plate and two side plates, which are vertically mounted on the base plate, with the angle between the base plate and the horizontal plane ranging from 40 degrees to 50 degrees.

[0009] Furthermore, the tray slots of the trays are arranged in parallel.

[0010] The beneficial effects of this utility model are: 1. In actual use, a line of empty bottles conveyed by the upstream conveyor belt is positioned in the guide troughs in a one-to-one correspondence. The bottles are then allowed to slide along the guide troughs towards their exit. During this sliding process, because the guide trough exits are arranged side-by-side and the inlet width of the guide trough is greater than the outlet width, the distance between the bottles in this line gradually decreases, meaning the bottles gradually move closer together and are finally positioned in the tray slots through the guide trough exits, thus reducing the distance between the bottles.

[0011] Second, by setting the inlet width to be smaller than the height of the empty bottle, 180-degree rotation of the empty bottle during its sliding within the guide groove can be prevented. This ensures that, provided the bottom of the empty bottle enters the guide groove inlet before the top, the bottom of the bottle can also exit the guide groove outlet before the top. In other words, this structure ensures that the guide groove always limits the empty bottle's movement during sliding, preventing it from tipping over or falling, thus improving the efficiency of loading empty bottles onto the tray.

[0012] Third, the guide groove is obliquely set to extend from the horizontal plane, which allows the empty bottle to slide naturally from the guide groove inlet to the guide groove outlet under its own weight, eliminating the need for an external force to drive the empty bottle to slide along the guide groove and simplifying the structure.

[0013] This invention is particularly applicable to the process of batch transporting empty bottles of Huoxiang Zhengqi Water to pallets. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of one embodiment of the tray loading mechanism of this utility model.

[0015] Figure 2 yes Figure 1 A top view of the tray loading mechanism.

[0016] Figure 3 This is a schematic diagram showing how empty bottles slide down the guide groove of the tray loading mechanism, thereby reducing the gap between empty bottles in each row.

[0017] Figure 4 This is a diagram showing the empty bottles placed on the tray.

[0018] Figure 5 This is a diagram showing a tray without empty bottles.

[0019] Figure 6 This is a diagram of an empty bottle.

[0020] The following are labeled in the diagram: tray 1, tray groove 11, empty bottle 2, injection port 21, bottle body 22, loading mechanism 3, guide groove 31, side plate 32, bottom plate 33, guide groove inlet 34, guide groove outlet 35, inlet width D1, outlet width D2, empty bottle height h, and empty bottle diameter d. Detailed Implementation

[0021] The present invention will be further described below with reference to the accompanying drawings.

[0022] like Figures 1 to 3 The illustration shows an embodiment of the tray loading mechanism, including a rectangular base plate 33. Several side plates 32 are disposed on the top surface of the base plate 33, and the side plates 32 are fixedly disposed on the base plate 33 perpendicular to it. Two adjacent side plates 32 and the portion of the base plate 33 between these two adjacent side plates 32 constitute a guide groove 31. Each guide groove 31 has a guide groove inlet 34 and a guide groove outlet 35. The guide groove inlets 34 are arranged side-by-side, and all guide groove inlets 34 are concentrated at one long side of the base plate 33. The guide groove outlets 35 are also arranged side-by-side, and all guide groove outlets 35 are concentrated at the other long side of the base plate 33. Thus, the extension direction of the guide grooves 31 extends approximately along the width direction of the base plate 33, with some guide grooves 31 intersecting the width direction of the base plate 33.

[0023] like Figure 2 and Figure 3 As shown, the width of the guide channel inlet 34 of the guide channel 31 in the direction of the base plate 33 is defined as the inlet width D1, and the width of the guide channel outlet 35 of the guide channel 31 in the direction of the base plate 33 is defined as the outlet width D2. Empty bottles 2, fed in by the upstream conveyor belt, are arranged in a row along the length of the base plate 33 and are first positioned at the corresponding guide channel inlet 34. Since the inlet width D1 of the guide channel inlet 34 is greater than the outlet width D2 of the guide channel outlet 35, and the outlet width D2 is greater than the diameter d of the empty bottle 2, as the empty bottle 2 slides along the guide channel 31 towards the guide channel outlet 35 after entering the guide channel inlet 34, the distance between adjacent empty bottles 2 will decrease together under the guidance of the gradually decreasing width of the guide channel 31. When a row of empty bottles 2 slides out of the guide channel outlet 35, the distance between the empty bottles 2 is adjusted to a smaller position. At this point, the row of empty bottles 2 with smaller spacing can be smoothly placed into the tray groove 11 of the tray 1. After placing one row along the direction of the tray groove 11, the next row is placed, and so on, until the desired result is achieved. Figure 4 The tray 1 shown is in a state where all tray slots 11 are filled with empty bottles 2. After filling the empty bottles 2 with Huoxiang Zhengqi Water through the injection port 21, the injection port 21 is then sealed. For example, Figure 5 As shown, the tray 1 can have several tray slots 11, which are arranged parallel to each other. Of course, the empty bottles 2 placed in different tray slots 11 are also arranged parallel to each other.

[0024] Since the angle between the base plate 33 and the horizontal plane ranges from 40 to 50 degrees, when the empty bottle 2 is placed into the guide groove inlet 34, the side wall of the bottle body 22 is first placed tightly against the base plate 33, at which point the empty bottle 2 is placed on the base plate 33 in an inclined position. Then, the side wall of the bottle body 22 slides relative to the base plate 33, allowing the empty bottle 2 to slide along the guide groove 31 towards the guide groove outlet 35 under its own weight. During the sliding process, since the inlet width D1 is limited to be less than the empty bottle height h, the side plate 32 of the guide groove 31 can stably provide constraint throughout the entire sliding process, ensuring that the injection port 21 of the empty bottle 2 always points towards the guide groove inlet 34, preventing the empty bottle 2 from tipping over. The reason for this is that each empty bottle 2 is paired with a guide groove 31. As the empty bottle 2 slides along the guide groove 31 towards the guide groove outlet 35, the bottle body 22 is always constrained by the side plates 32 on both sides. Additionally, the empty bottle 2 is tilted, resulting in a lower center of gravity, thus maintaining its tilted position during the sliding process. After the empty bottle 2 slides out of the guide groove outlet 35, the bottle body 22 first falls into the tray groove 11 of the tray 1, and then returns to a vertical position.

Claims

1. A tray structure for empty bottles of Huoxiang Zhengqi Water, comprising a tray (1), wherein the tray (1) is provided with at least one tray groove (11) for storing empty bottles (2), characterized in that: It includes a tray loading mechanism (3), which includes at least two guide slots (31); The guide groove (31) includes a guide groove inlet (34) and a guide groove outlet (35). The inlet width (D1) of the guide groove inlet (34) is greater than the outlet width (D2) of the guide groove outlet (35). The outlet width (D2) is greater than the diameter (d) of the empty bottle (2). The guide groove inlets (34) are arranged side by side, and the guide groove outlets (35) are arranged side by side. The guide groove outlets (35) are arranged above the tray groove (11) along the extension direction of the tray groove (11).

2. The empty bottle packaging structure of Huoxiang Zhengqi Water as described in claim 1, characterized in that: The inlet width (D1) is less than the empty bottle height (h) of the empty bottle (2).

3. The empty bottle packaging structure for Huoxiang Zhengqi Water as described in claim 1 or 2, characterized in that: The extension direction of the guide groove (31) is obliquely set to the horizontal plane.

4. The empty bottle packaging structure of Huoxiang Zhengqi Water as described in claim 3, characterized in that: The guide groove (31) includes a base plate (33) and two side plates (32). The two side plates (32) are vertically arranged on the base plate (33), and the angle between the base plate (33) and the horizontal plane is between 40 degrees and 50 degrees.

5. The empty bottle packaging structure for Huoxiang Zhengqi Water as described in claim 1 or 2, characterized in that: The tray slots (11) of the tray (1) are arranged in parallel.