WO2024026941A1 - 一种螺旋浮标 - Google Patents

一种螺旋浮标 Download PDF

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Publication number
WO2024026941A1
WO2024026941A1 PCT/CN2022/113337 CN2022113337W WO2024026941A1 WO 2024026941 A1 WO2024026941 A1 WO 2024026941A1 CN 2022113337 W CN2022113337 W CN 2022113337W WO 2024026941 A1 WO2024026941 A1 WO 2024026941A1
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WO
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Prior art keywords
floating
float
tail
calibration
foot
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PCT/CN2022/113337
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English (en)
French (fr)
Inventor
涂小凤
朱明�
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临湘市小凤仙鱼具中心
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Publication of WO2024026941A1 publication Critical patent/WO2024026941A1/zh

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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01KANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
    • A01K93/00Floats for angling, with or without signalling devices

Definitions

  • the utility model relates to the field of buoys, in particular to a spiral buoy.
  • the buoy is a kind of fishing gear used for fishing, used to convey the bite information of the fish, the sinking depth of the bait, etc.
  • the sinking depth of the buoy is usually determined by the floating tail, and the depth of the bait is adjusted by adjusting the weight on the floating foot, that is, by painting different colors on the floating tail at intervals, so that people can adjust the floating tail according to the pattern of the floating tail emerging from the water.
  • the existing counterweight adjustment method is also relatively complicated.
  • the floating tail and floating feet are long, after they are connected to the floating body, when the floating tail and floating feet are bent under pressure, it is easy for the stress to be concentrated at the connection between the floating tail and the floating body or the floating feet, causing the floating body or The floating feet are broken, which makes it easy to break during production, transportation, use and other moving processes, resulting in damage to the buoy and making it unusable.
  • the utility model proposes a spiral buoy.
  • a spiral buoy includes a floating body, a threaded groove is formed on the floating body, a connecting floating tail is fixed on the top of the floating body, and a plurality of calibration floating tails connected in series are detachably connected to the connecting floating tail; the calibration floating tail includes a calibration floating tail.
  • the tail body is fixed with threaded tabs on the upper part of the calibrated floating tail body; the floating feet are fixed at the bottom of the floating body; a number of counterweight rings are detachably connected to the floating feet.
  • the tops of the connecting floating tail and the calibrating floating tail body are both formed with internal thread grooves, and the bottom of the calibrating floating tail body is formed with externally threaded bumps corresponding to the internal thread grooves.
  • connection points between the calibrated floating tail and floating feet and the floating body are provided with tapered elastic sleeves.
  • a first external thread is formed on the floating foot, and the weight ring is threadedly connected to the floating foot.
  • a locking post is fixed at the bottom of the floating foot, and a second external thread is formed on the locking post; the first external thread and the second external thread have opposite thread directions; a locking ring is threadedly connected to the locking post;
  • the locking column is arranged concentrically with the floating foot and has a diameter smaller than the diameter of the floating foot.
  • the weight ring is made of stainless steel, and a magnet is formed on the top of the locking ring.
  • the top of the locking ring and the bottom of the weight ring are both damped.
  • the weight ring and the locking ring are both in the shape of a truncated cone with a narrow upper width.
  • a removable weight ring is provided to facilitate adjusting the weight of the buoy as needed so that the buoy is at the preset depth, and a locking structure is provided to prevent it from falling off underwater.
  • the floating body is provided with threads so that it can remain stable in the water flow.
  • Figure 1 is a schematic diagram of the overall structure of Embodiment 1;
  • Figure 2 is a schematic structural diagram of the floating tail calibration
  • Figure 3 is a schematic diagram of the overall structure of Embodiment 2.
  • a spiral buoy as shown in Figures 1 and 2 including a floating body 1, a threaded groove 2, a floating tail 3, a calibrated floating tail 4, a calibrated floating tail body 41, a threaded tab 42, a floating foot 5, and a counterweight ring 6.
  • the floating body 1 is formed with a threaded groove 2 .
  • the water flow impacts the floating body and passes through the threaded groove 2, which will cause the buoy to have a tendency to rotate, thereby making the buoy vertically and stably in the water flow.
  • the floating tail 3 is fixedly connected to the top of the floating body 1, and the floating tail 3 is detachably connected to a number of calibrated floating tails 4 connected in series.
  • the calibration float tail 4 includes a calibration float tail body 41, and a threaded protrusion 42 is fixed on the upper part of the calibration float tail body 41.
  • the threaded protrusion 42 and the smooth calibrated float tail body 41 below the threaded protrusion 42 adopt calibration structures with different thicknesses, thereby making it easier for people to observe the depth of the buoy into the water. Therefore, there is no need to distinguish based on color, thus effectively avoiding the situation where the floating tail is difficult to see clearly.
  • threaded protrusions 42 will also tend to rotate when entering water or receiving wind force, thereby maintaining the stability of the buoy.
  • a floating foot 5 is fixed at the bottom of the floating body 1; the floating foot 5 is detachably connected to a number of counterweight rings 6 through threads. In this way, the depth of the floating body sinking can be quickly adjusted by rotating and installing different numbers of counterweight rings 6 .
  • the connection between the calibrated floating tail 4 and floating feet 5 and the floating body 1 is covered with a tapered elastic sleeve 7, so that when the calibrated floating tail 4 and floating feet 5 are bent under pressure, they are protected by the tapered elastic sleeve 7. It is tapered, so the closer it is to the floating body 1, the greater the resistance of the tapered elastic sleeve 7 to the calibrated floating tail 4 and floating feet 5, so that the stress generated by the bending of the calibrated floating tail 4 and floating feet 5 is distributed throughout the cone.
  • the elastic sleeve 7 is formed as a whole instead of at the joint, thereby effectively preventing the calibration floating tail 4 and floating feet 5 from being broken under pressure.
  • An internally threaded groove 43 is formed at the top connecting the floating tail 3 and the calibrating floating tail body 41 , and an externally threaded protrusion 44 is formed with the internally threaded groove 43 at the bottom of the calibrating floating tail body 41 .
  • Embodiment 1 As shown in Figure 3, in order to prevent the counterweight ring 6 from rotating and falling off under the impact of water flow, the following improvements are made on the basis of Embodiment 1:
  • a first external thread 8 is formed on the floating foot 5, a counterweight ring 6 is threadedly connected to the floating foot 5, a locking post 9 is fixed at the bottom of the floating foot 5, and a second external thread 10 is formed on the locking post 9; first The external thread 8 and the second external thread 10 have opposite thread directions; a locking ring 11 is threadedly connected to the locking column 9; the locking column 9 is concentrically arranged with the floating foot 5 and has a diameter smaller than the diameter of the floating foot 5.
  • the weight ring 6 is made of stainless steel, and a magnet 12 is formed on the top of the locking ring 11 .
  • the top of the locking ring 11 and the bottom of the counterweight ring 6 are both damped.
  • Both the weight ring 6 and the locking ring 11 are in the shape of a truncated cone with a narrow upper width to facilitate water entry.

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  • Life Sciences & Earth Sciences (AREA)
  • Environmental Sciences (AREA)
  • Animal Husbandry (AREA)
  • Biodiversity & Conservation Biology (AREA)

Abstract

一种螺旋浮标,包括漂身(1),漂身(1)上形成有螺纹槽(2),漂身(1)顶部固定有连接漂尾(3),连接漂尾(3)可拆卸连接有若干串联连接的标定漂尾(4);标定漂尾(4)包括标定漂尾本体(41),标定漂尾本体(41)的上部固定有螺纹凸片(42);漂身(1)底部固定有漂脚(5);漂脚(5)上可拆卸连接有若干配重环(6)。本浮标通过观察漂尾(3),可快速判断螺旋浮标的下沉深度,并且标定漂尾(4)可拆卸,便于根据需要进行添加或更换;浮标设置有可拆卸的配重环(6),便于根据需要调节浮标的配重,使得浮标处于预设的深度,并且设置锁紧结构,防止其在水下脱落;漂身设置螺纹槽(2),使得其在水流中可以保持稳定。

Description

一种螺旋浮标 技术领域
本实用新型涉及浮标领域,特别是涉及一种螺旋浮标。
背景技术
浮标是一种垂钓时用的渔具,用于传递鱼获的咬勾信息,垂饵的下沉深度等。目前浮标的下沉深度通常通过漂尾确定,并通过调整漂脚上的配重调整垂饵所处的深度,即通过在漂尾上间隔涂上不同的颜色,从而人们根据漂尾露出水面的格数确定浮标下水的深度,同时在下饵料后通过在漂脚处悬挂不同的配重,以调整其下沉的深度。但是仅仅通过颜色观察,当浮标距离较远时,容易观察不清楚,且容易由于阳光照射太强等环境原因导致难以看清颜色。而且现有的配重调节方法也较为复杂。
此外,由于漂尾和漂脚较长,因为其和漂身连接后,漂尾和漂脚受压弯曲时,容易使得应力集中在漂尾与漂身或漂脚的连接处,导致漂身或漂脚折断,从而使得其在生产、运输、使用等移动过程中容易出现折断,导致浮标损坏不可用。
最后现有的漂身通常为光滑的圆形,收到水流冲击时容易歪斜。
实用新型内容
为解决上述技术问题,本实用新型提出了一种螺旋浮标。
本实用新型的目的通过以下技术方案实现:
一种螺旋浮标,包括漂身,所述漂身上形成有螺纹槽,漂身顶部固定有连接漂尾,连接漂尾可拆卸连接有若干串联连接的标定漂尾;所述标定漂尾包括标定漂尾本体,标定漂尾本体的上部固定有螺纹凸片;漂身底部固定有漂脚;漂脚上可拆卸连接有若干配重环。
进一步的改进,所述连接漂尾和标定漂尾本体的顶部均成形有内螺纹凹槽,标定漂尾本体的底部形成有与内螺纹凹槽外螺纹凸块。
进一步的改进,所述标定漂尾和漂脚与漂身的连接处套设有锥形弹性套。
进一步的改进,所述漂脚上形成有第一外螺纹,配重环螺纹连接在 漂脚上。
进一步的改进,所述漂脚底部固定有锁紧柱,锁紧柱上形成有第二外螺纹;第一外螺纹和第二外螺纹螺纹方向相反;锁紧柱上螺纹连接有锁紧环;锁紧柱与漂脚同心设置且直径小于漂脚的直径。
进一步的改进,所述配重环由不锈钢制成,所述锁紧环顶部形成有磁铁。
进一步的改进,所述锁紧环顶部和配重环底部均做阻尼处理。
进一步的改进,所述配重环和锁紧环均为上宽狭窄的圆锥台状。
本实用新型的有益效果在于:
1.设置标定漂尾,便于通过粗细观察漂尾,快速判断浮标的下沉深度,并且标定漂尾可拆卸,便于根据需要进行添加或更换。
2.设置有可拆卸的配重环,便于根据需要调节浮标的配重,使得浮标处于预设的深度,并且设置锁紧结构,防止其在水下脱落。
3.漂身设置螺纹,使得其在水流中可以保持稳定。
附图说明
利用附图对本实用新型做进一步说明,但附图中的内容不构成对本实用新型的任何限制。
图1为实施例1的整体结构示意图;
图2为标定漂尾的结构示意图;
图3为实施例2的整体结构示意图。
具体实施方式
为了使实用新型的目的、技术方案及优点更加清楚明白,以下结合附图及实例,对本实用新型进行进一步的详细说明。
实施例1
如图1和图2所示的一种螺旋浮标,包括漂身1、螺纹槽2、漂尾3、标定漂尾4、标定漂尾本体41、螺纹凸片42、漂脚5、配重环6、锥形弹性套7和第一外螺纹8。
其中,漂身1上形成有螺纹槽2。这样漂身1处于水中时,水流冲 击漂身经过螺纹槽2,会使得浮标有旋转的趋势,从而使得浮标竖直稳定的处于水流中。
而漂身1顶部固定有连接漂尾3,连接漂尾3可拆卸连接有若干串联连接的标定漂尾4。其中,标定漂尾4包括标定漂尾本体41,标定漂尾本体41的上部固定有螺纹凸片42。
这样通过螺纹凸片42和螺纹凸片42下方光滑的标定漂尾本体41,从承粗细不同的标定结构,从而便于人们观察浮标下水的深度。从而不需要根据颜色辨别,从而有效避免漂尾难以看清的情况。
此外,螺纹凸片42在入水或收到风力时,也会产生旋转倾向,从而维持浮标的稳定。
此外,漂身1底部固定有漂脚5;漂脚5通过螺纹可拆卸连接有若干配重环6。这样通过旋转安装不同数量的配重环6即可快速调整漂身下沉的深度。
标定漂尾4和漂脚5与漂身1的连接处套设有锥形弹性套7,这样当标定漂尾4和漂脚5受压弯曲时,收到锥形弹性套7的保护,由于其为锥形,从而越接近漂身1处,锥形弹性套7对于标定漂尾4和漂脚5的阻力越大,从而使得标定漂尾4和漂脚5弯曲是产生的应力遍布于锥形弹性套7整体,而非连接处,从而有效防止标定漂尾4和漂脚5受压折断。
连接漂尾3和标定漂尾本体41的顶部均成形有内螺纹凹槽43,标定漂尾本体41的底部形成有与内螺纹凹槽43外螺纹凸块44。这样,可以根据需要安装不同数目的标定漂尾4,且有标定漂尾4损坏时,只更换对应的标定漂尾4即可,从而增加浮标的使用寿命。
实施例2
如图3所示,为了防止在配重环6在水流冲击下出现旋转脱落,在实施例1的基础上做如下改进:
漂脚5上形成有第一外螺纹8,配重环6螺纹连接在漂脚5上,漂脚5底部固定有锁紧柱9,锁紧柱9上形成有第二外螺纹10;第一外螺 纹8和第二外螺纹10螺纹方向相反;锁紧柱9上螺纹连接有锁紧环11;锁紧柱9与漂脚5同心设置且直径小于漂脚5的直径。
配重环6由不锈钢制成,所述锁紧环11顶部形成有磁铁12。
锁紧环11顶部和配重环6底部均做阻尼处理。
这样当使用时首选安装对应数量的配重环6到漂脚5上,然后连接锁紧环11,并使得锁紧环的顶部与最底部的配重环6的底部接触,从而使得锁紧环11与最底部的配重环6通过磁铁吸附在一起。此时,由于第一外螺纹8和第二外螺纹10旋转方向相反,因此导致锁紧环11在水流的冲击下无法旋转脱落,从而起到阻值配重环6脱落的作用。
配重环6和锁紧环11均为上宽狭窄的圆锥台状,以便于入水。
最后应当说明的是,以上实施例仅用于说明本实用新型的技术方案而非对本实用新型保护范围的限制,尽管参照较佳实施例对本实用新型作了详细说明,本领域的普通技术人员应当了解,可以对本实用新型的技术方案进行修改或者等同替换,而不脱离本实用新型技术方案的实质和范围。

Claims (8)

  1. 一种螺旋浮标,包括漂身(1),其特征在于,所述漂身(1)上形成有螺纹槽(2),漂身(1)顶部固定有连接漂尾(3),连接漂尾(3)可拆卸连接有若干串联连接的标定漂尾(4);所述标定漂尾(4)包括标定漂尾本体(41),标定漂尾本体(41)的上部固定有螺纹凸片(42);漂身(1)底部固定有漂脚(5);漂脚(5)上可拆卸连接有若干配重环(6)。
  2. 如权利要求1所述的螺旋浮标,其特征在于,所述连接漂尾(3)和标定漂尾本体(41)的顶部均成形有内螺纹凹槽(43),标定漂尾本体(41)的底部形成有与内螺纹凹槽(43)外螺纹凸块(44)。
  3. 如权利要求1所述的螺旋浮标,其特征在于,所述标定漂尾(4)和漂脚(5)与漂身(1)的连接处套设有锥形弹性套(7)。
  4. 如权利要求1所述的螺旋浮标,其特征在于,所述漂脚(5)上形成有第一外螺纹(8),配重环(6)螺纹连接在漂脚(5)上。
  5. 如权利要求4所述的螺旋浮标,其特征在于,所述漂脚(5)底部固定有锁紧柱(9),锁紧柱(9)上形成有第二外螺纹(10);第一外螺纹(8)和第二外螺纹(10)螺纹方向相反;锁紧柱(9)上螺纹连接有锁紧环(11);锁紧柱(9)与漂脚(5)同心设置且直径小于漂脚(5)的直径。
  6. 如权利要求5所述的螺旋浮标,其特征在于,所述配重环(6)由不锈钢制成,所述锁紧环(11)顶部形成有磁铁(12)。
  7. 如权利要求5所述的螺旋浮标,其特征在于,所述锁紧环(11)顶部和配重环(6)底部均做阻尼处理。
  8. 如权利要求5所述的螺旋浮标,其特征在于,所述配重环(6)和锁紧环(11)均为上宽狭窄的圆锥台状。
PCT/CN2022/113337 2022-08-01 2022-08-18 一种螺旋浮标 WO2024026941A1 (zh)

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Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2009148174A (ja) * 2007-12-19 2009-07-09 Keisuke Morimoto ズレ防止機能つきアタリウキ
JP2010178643A (ja) * 2009-02-04 2010-08-19 Nobumichi Osaki 釣り用ウキ
JP2012196185A (ja) * 2011-03-23 2012-10-18 Yoshihiro Saito 中通しウキ
CN207355289U (zh) * 2017-10-18 2018-05-15 刘大友 一种自动调节灵敏度平衡浮漂
CN208609735U (zh) * 2018-08-22 2019-03-19 刘大友 一种新型浮漂
CN209594576U (zh) * 2018-11-15 2019-11-08 吴林 一种螺旋扁尾浮漂
CN210329038U (zh) * 2019-08-18 2020-04-17 刘大友 一种碳纤维十字形漂尾的发光体浮漂
CN211458591U (zh) * 2019-12-30 2020-09-11 威海雨霖纤维制品股份有限公司 一种钓鱼用多功能浮漂装置

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2009148174A (ja) * 2007-12-19 2009-07-09 Keisuke Morimoto ズレ防止機能つきアタリウキ
JP2010178643A (ja) * 2009-02-04 2010-08-19 Nobumichi Osaki 釣り用ウキ
JP2012196185A (ja) * 2011-03-23 2012-10-18 Yoshihiro Saito 中通しウキ
CN207355289U (zh) * 2017-10-18 2018-05-15 刘大友 一种自动调节灵敏度平衡浮漂
CN208609735U (zh) * 2018-08-22 2019-03-19 刘大友 一种新型浮漂
CN209594576U (zh) * 2018-11-15 2019-11-08 吴林 一种螺旋扁尾浮漂
CN210329038U (zh) * 2019-08-18 2020-04-17 刘大友 一种碳纤维十字形漂尾的发光体浮漂
CN211458591U (zh) * 2019-12-30 2020-09-11 威海雨霖纤维制品股份有限公司 一种钓鱼用多功能浮漂装置

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