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a powder remover

A powder remover and powder removal technology, applied in beehives, applications, beekeeping, etc., can solve the problems of poor heat dissipation effect of beehives, unfavorable normal operation of bee colonies, and high temperature, so as to improve heat dissipation effect and increase pollen production , the effect of reducing the degree of congestion

Active Publication Date: 2022-08-02
吴晓彬
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the applicant found in the course of further research that the powder remover in the prior art still has the following disadvantages: (1) the powder remover is installed at the entrance of the beehive, and the powder removal on the front of the powder remover is completely relied on between the beehive and the outside world The airflow exchange between the circle and the one-way channel leads to poor heat dissipation inside the beehive. When the weather is hot, the temperature inside the beehive is easily too high, which makes the bees unwilling to enter the nest; (2) the bees always crawl upward when crawling outside the hive. The biological trend of the biological trend, the applicant found during the experiment that the number of traditional dedusting rings is limited and all of them are located on the front of the dedusting device. When unable to enter the nest quickly, many bees will automatically crawl upwards and stop on the upper part of the de-powdering device. These bees have tried to return to the nest for many times without success, and even stagnate and "strike" on the de-powdering device, which is not conducive to bees. The normal operation of the colony; and the bees also have an aggregation effect, more and more bees stay on the top of the depowder device, and more bees will stagnate here; (3) the existing depowder device, its ideal state The working principle is to rely on the pollen removal ring to peel off the pollen on the bees, and the peeled pollen will automatically fall into the powder storage box; however, the applicant found during the experiment that because the pollen contains sugar substances, it is The exfoliated pollen is easy to stick to each other at the pollen circle, and even accumulates in large quantities on the front side of the pollen circle and the gap between two adjacent pollen circles, resulting in a low pollen collection rate

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0033] like Figure 1 to Figure 6 The shown depulverizer includes a depulverizer body 1. The front of the depulverizer body 1 is provided with a number of first depulverizer rings 2 and assembly holes 3. The assembly holes 3 are used to install a one-way channel. The bottom and top of the powder remover body 1 are respectively provided with a bottom plate 4 and a top plate 5. There is a powder removal gap 6 between the bottom plate 4 and the powder remover body 1, and the upper surface of the bottom plate 4 is a first inclined surface 7. The first inclined surface 7 is inclined downward from the inside to the outside; the top plate 5 is provided with a through groove 8, and a plurality of second powder removal rings 9 are arranged in the through groove 8, and the second powder removal ring 9 is facing the first Bevel 7. Several third powder removal rings 10 are arranged in the powder removal gap 6 .

[0034] In this embodiment, the inner diameter of the first powder removing...

Embodiment 2

[0037] like Figure 1 to Figure 6 In the illustrated powder remover, on the basis of Embodiment 1, the bottom of the third powder removal ring 10 is embedded in the first inclined surface 7 . Above the powder removal gap 6 is a first spacer 11 , and the bottom surface of the first spacer 11 is a second inclined surface 12 , and the second inclined surface 12 is parallel to the first inclined surface 7 . The front of the powder remover body 1 is provided with a number of second spacers 13 arranged between the first spacer 11 and the top plate 5; between the uppermost second spacer 13 and the top plate 5 , and between the lowermost second spacer 13 and the first spacer 11 . The distance between the first spacer 11 and the bottom plate 4 is a, the minimum distance between two adjacent rows of second spacers 13 is b, and the minimum distance between the top second spacer 13 and the top plate 5 is c, and the minimum distance between the lowermost second spacer 13 and the first sp...

Embodiment 3

[0039] On the basis of any of the above embodiments, a third spacer 14 is provided on the back of the deduster body 1, and the top surface of the third spacer 14 is a third inclined surface 15, and the third inclined surface 15 extends from the inside The top end of the third spacer bar 14 is in contact with the top plate 5 ; the bottom end of the third inclined surface 15 is located directly above the first inclined surface 7 . A fourth spacer 16 is arranged in the through groove 8, and a second powder removal ring 9 is arranged on both sides of the fourth spacer 16; and the second powder removal ring 9 on one side of the fourth spacer 16 is directly opposite. The first inclined surface 7 and the second powder removing ring 9 located on the other side of the fourth spacer 16 face the third inclined surface 15 . The fourth spacer 16 is also provided with a fourth inclined surface 17 on the side facing the back of the powder remover body 1 . The fourth inclined surface 17 is in...

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PUM

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Abstract

The invention discloses a powder remover, comprising a powder remover body. The front of the powder remover body is provided with a plurality of first powder removal rings and assembly holes. The assembly holes are used to install a one-way channel. The bottom and top of the device body are respectively provided with a bottom plate and a top plate, there is a powder removal gap between the bottom plate and the powder remover body, and the upper surface of the bottom plate is a first inclined surface, and the first inclined surface slopes downward from the inside to the outside; the A through groove is set on the top plate, and a plurality of second powder removing rings are arranged in the through groove, and the second powder removing rings are facing the first inclined surface. The invention provides a powder remover, so as to improve the heat dissipation efficiency inside the beehive, improve the enthusiasm and feasibility of bees returning to the nest, facilitate the rapid return of the bees to the nest, and at the same time improve the collection rate of pollen.

Description

technical field [0001] The invention relates to the field of powder removers, in particular to a powder remover. Background technique [0002] Pollen is a kind of natural nutritional product with high value, which has been widely used in diet, cosmetic and other industries. At present, the beekeeper collects pollen by setting a powder remover at the entrance of the front end of the hive. When the bees enter the hive box, a suitable size of entry hole (removing powder ring) is set through the powder remover, so that the bees returning to the hive can pass the powder removal. When the bees pass through the de-pollinating circle, they are passively squeezed out of the pollen collected from their bodies. [0003] The applicant of this case has previously filed a large number of patent applications related to the powder remover, and has optimized and improved the powder remover from many aspects such as improving the powder removal efficiency, reducing the damage to bees, and di...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): A01K47/06
CPCA01K47/06
Inventor 吴晓彬
Owner 吴晓彬