CN201415207Y - Spiral cleaning device of UV lamp glass sleeve - Google Patents

Spiral cleaning device of UV lamp glass sleeve Download PDF

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Publication number
CN201415207Y
CN201415207Y CN2009200543290U CN200920054329U CN201415207Y CN 201415207 Y CN201415207 Y CN 201415207Y CN 2009200543290 U CN2009200543290 U CN 2009200543290U CN 200920054329 U CN200920054329 U CN 200920054329U CN 201415207 Y CN201415207 Y CN 201415207Y
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China
Prior art keywords
lamp glass
glass sleeve
cleaning device
wire winding
wire
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Expired - Lifetime
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CN2009200543290U
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Chinese (zh)
Inventor
杨素芬
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Individual
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Individual
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Priority to CN2009200543290U priority Critical patent/CN201415207Y/en
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Abstract

The utility model provides a spiral cleaning device of UV lamp glass sleeve; the designed spiral cleaning device of UV lamp glass sleeve comprises a spring and two wire-winding rings which are fixedlyclamped at both ends of the spring; a plurality of fine wires are winded between the inner circle of the two wire-winding rings, each fine wire is slantwise winded from the first wire-winding ring tothe second wire-winding ring at a certain interval; the fine wires are arranged in the cavity limited by the two wire-winding rings at same rotating direction to form a waisting basket shape which has large ends and small middle when the spiral cleaning device is sleeved in the UV lamp glass sleeve, the fine wires which form the waisting basket shape are spirally winded at the outer wall of the UV lamp glass sleeve in a rifling shape. When the spiral cleaning device is pulled back and forth, rifling-shaped stainless steel wire 4 winded at the UV lamp glass sleeve 6 can scrape the dirt on UV lamp glass tube wall back and forth, and the UV lamp glass tube wall can be cleaned. The dirt scraped by the fine wires is not remained in cleaning ring; therefore, the cleaning effect is better.

Description

A kind of spiral cleaning device of ultra violet lamp glass sleeve
Technical field
The utility model relates to a kind of device that cleans pipe fitting outer wall dirt, specifically, relates to a kind of open channel cleaning device of the ultra violet lamp glass sleeve in the illuminaton ultraviolet ray disinfecting system under water.
Background technology
Disinfection by ultraviolet light since have sterilization rapidly and efficiently, safe, easy to operate and take up an area of advantages such as little, in sewage disposal, be widely used, present most ultraviolet wastewater disinfection system all adopts open channel illuminaton under water, in sewage disposal, this ultraviolet radiation for sterilizing and disinfecting device is to be sunken to work in the water body for a long time, in the course of time after, meeting deposition, bonding last layer dirt on the quartz glass tube outer wall, this one deck dirt can reduce, weaken the ultraviolet penetration power that the built-in quartz burner of quartz glass tube sends, and has so just reduced the effect of sterilizing.Cleaning device is to be used for the key element that the ultra violet lamp glass sleeve outer surface cleans, and its purposes is to strike off the dirt that cleans glass tube exterior surface.Present traditional cleaning device; adopt ring-type graphite and fluorine material; its shortcoming is that poor structure, scraping resistance are big, the surperficial contact area of cleaning device and scraping greatly, cooperate not close; if sand grains or other solid particulate matters are especially arranged in cleaning process; then can be trapped in to clean and be difficult in the ring break away from; along with the operation of cleaning ring is constantly swiped to clean surface, cause clean surface to scratch, reduce ultraviolet light transmittance.Another kind of cleaning device is the cleaning device that adopts the ring-type silk weaving, as CN201088978 disclosed " ring is cleaned in silk weaving ".The intensive silk screen that this cleaning ring constitutes by a lot of filaments of winding in an annulus strikes off the dirt on the glass tube outer wall.But the filament on this cleaning ring is too intensive; and the silk fabrics back is the annulus internal ring wall of sealing, and silk fabrics is at the dirt of scraping glass tube outer wall, comprise sand grains or other solid particulate matters after; also can be trapped in to clean and be difficult in the ring break away from, thereby influence cleaning performance.
Summary of the invention
The purpose of this utility model provides and a kind ofly can overcome above-mentioned cleaning device existing problems, with the spiral cleaning device of the ultra violet lamp glass sleeve that improves cleaning performance.
For achieving the above object, the utility model proposes following technical scheme: the spiral cleaning device of designed ultra violet lamp glass sleeve, comprise two wire winding rings, i.e. first wire winding ring and second wire winding ring, these two wire winding rings are installed on a both ends of the spring, on two wire winding rings, be provided with the groove or the hole of symmetry, along twining a lot of bar filaments by described groove or hole between the inside circumference of these two wire winding rings, each bar filament is oblique around to second wire winding ring from first wire winding ring at a certain distance mutually, these filaments in the chamber that two wire winding rings are limit by same direction of rotation Boulez, form the thin waisting basket shape in big centre, two, each bar filament non-overlapping copies, when this cleaning device was inserted in ultra violet lamp glass sleeve, each filament at described waisting basket shape middle part was reflex wire spiral and embraces outer wall around ultra violet lamp glass sleeve.
Between two wire winding rings, be wound in the filament of waisting basket shape, can adopt metal or non-metallic material, preferably adopt stainless steel wire.
The spring that the utility model is used plays the resiliency supported effect to two wire winding rings, and whole device can be inserted on the ultra violet lamp glass sleeve that needs cleaning.Fixedly snap ring of spring can be set respectively on the opposite face of two wire winding rings, be used for spring is installed and fixed.
In the utility model, the waisting basket shape that between two wire winding rings, is entwined by described filament, waist then forms circular cavity in the middle of it, the internal diameter of this cavity should be littler than the external diameter of the ultra violet lamp glass sleeve that is used to clean, when this cleaning device is packed into ultra violet lamp glass sleeve, ultra violet lamp glass sleeve can strut waisting basket shape, makes each filament that forms waisting basket shape be reflex wire (promptly rotating curved) spiral and embraces the outer wall around ultra violet lamp glass sleeve.
The spiral cleaning device of this ultra violet lamp glass sleeve can be made by the following method easily: will twine the filament that a lot of bars are parallel to each other by described groove or hole between the inside circumference of first wire winding ring and second wire winding ring earlier, make these filaments form straight tubular, again two wire winding rings are rotated an angle along the axis with opposite angles, make each bar filament to the oblique knob in center, form big-and-middle the thin waisting basket shape in a two, clamp the position of two wire winding rings fixing with spring the back.
The utlity model has following useful technique effect:
The spiral cleaning device of ultra violet lamp glass sleeve of the present utility model supports two built-in filaments that form waisting basket shape of wire winding ring by a spring, during use, whole cleaning device is inserted in ultra violet lamp glass sleeve, the filament that ultra violet lamp glass sleeve will form waisting basket shape struts, these filaments (stainless steel wire) are reflex wire (promptly rotating curved) spiral and are entangled in the outer wall of ultra violet lamp glass sleeve, and utilize the elastic force and the inside anchor ear of spring force of filament self, embrace around glass tube walls flexibly.When this cleaning device being spurred back and forth with external drive unit; because of every filament all intersects with ultra violet lamp glass sleeve wall spirality is oblique; each root filament all mutually disjoints overlapping; not only the resistance of motion is little; and cleaning performance is better; simultaneously; because the filament outside of respectively cleaning of this device is not closed; dirt at filament scraping glass tube outer wall; after comprising sand grains or other solid particulate matters; this this dirt will outwards drop, and can not be trapped in to clean in the ring, thereby overcome the defective that traditional cleaning device exists.
Description of drawings
Fig. 1 is the three-dimensional structure diagram of the spiral cleaning device of ultra violet lamp glass sleeve of the present utility model;
Fig. 2 is the front view of the spiral cleaning device of ultra violet lamp glass sleeve of the present utility model;
Fig. 3 is the vertical view of the spiral cleaning device of ultra violet lamp glass sleeve of the present utility model;
Fig. 4 is that the A-A of Fig. 3 is to profile;
Fig. 5 is the fixing front view of snap ring of spring in the spiral cleaning device of ultra violet lamp glass sleeve of the present utility model;
Fig. 6 is that the B-B of Fig. 5 is to cutaway view;
Fig. 7 is the fixing three-dimensional view of snap ring of spring in the spiral cleaning device of ultra violet lamp glass sleeve of the present utility model;
Fig. 8 is the application state schematic diagram of the spiral cleaning device of ultra violet lamp glass sleeve of the present utility model.
The specific embodiment
Further specify the utility model in the following examples, but do not limit scope of the present utility model.
Embodiment
Shown in Fig. 1-4, the spiral cleaning device of this ultra violet lamp glass sleeve comprises first wire winding ring 1, second wire winding ring 2 and spring 3, two wire winding rings adopt plastics king material, which is provided with the equally distributed groove of a lot of symmetries, first wire winding ring 1 is positioned at the upper end of device, second wire winding ring 2 is positioned at the lower end of device, on two wire winding ring opposing end faces, be mounted with fixedly snap ring 5 of a spring respectively, spring fixedly snap ring 5 adopts stainless steel, its structure such as Fig. 5-shown in Figure 7, spring 3 is fixed on two springs fixedly between the snap ring 5, thereby first wire winding ring 1 and second wire winding ring 2 is supported and fixed on the two ends of spring 3.Between the inside circumference of two wire winding rings, twine a lot of bar stainless steel filament 4 by described groove, these stainless steel filament 4 are oblique around to second wire winding ring from first wire winding ring at a certain distance, and by identical direction of rotation Boulez, form the thin waisting basket shape in big centre, two, the internal diameter of the circular cavity that the middle part of this waisting basket shape (being its waist) forms is littler than the external diameter of the ultra violet lamp glass sleeve that is used to clean.During use (as shown in Figure 8), the spiral cleaning device of this ultra violet lamp glass sleeve is inserted in ultra violet lamp glass sleeve 6, this ultra violet lamp glass sleeve 6 can strut the waisting basket shape by stainless steel filament 4 coileds, and these stainless steel filament 4 are reflex wire (promptly rotating curved) spiral by its elastic force and embrace around the outer wall of ultra violet lamp glass sleeve 6.The spring 3 of this cleaning device is clamped by anchor clamps 7, drive unit when the outside drives anchor clamps 7, when this cleaning device is moved back and forth on ultra violet lamp glass sleeve 6, embrace the reflex wire stainless steel wire 4 on the ultra violet lamp glass sleeve 6, with scraping the dirt of sweeping on the ultraviolet lamp glass tube walls back and forth, glass tube walls is cleaned up.
The spiral cleaning device of this ultra violet lamp glass sleeve can adopt following method manufacturing: will twine the stainless steel filament 4 that a lot of bars are parallel to each other by described groove or hole between the inside circumference of first wire winding ring 1 and second wire winding ring 2 earlier, make these stainless steel filament form straight tubular, again two wire winding rings are rotated an angle along the axis with opposite angles, make each bar filament to the oblique knob in center, form big-and-middle the thin waisting basket shape in a two, with after spring 3 clamped be fixed on the spring on two wire winding rings fixedly on the snap ring 5, the fixed-site of two wire winding rings.

Claims (3)

1, a kind of spiral cleaning device of ultra violet lamp glass sleeve, it is characterized in that comprising first wire winding ring (1) and second wire winding ring (2), two wire winding rings are installed on a spring (3) two ends, on two wire winding rings, be provided with the groove or the hole of symmetry, along twining a lot of bar filaments (4) by described groove or hole between the inside circumference of these two wire winding rings, each bar filament is oblique around to second wire winding ring (2) from first wire winding ring (1) at a certain distance mutually, these filaments in the chamber that two wire winding rings are limit by same direction of rotation Boulez, form big-and-middle the thin waisting basket shape in a two, each bar filament non-overlapping copies, when this cleaning device was inserted in ultra violet lamp glass sleeve, each filament at described waisting basket shape middle part was reflex wire spiral and embraces outer wall around ultra violet lamp glass sleeve.
2, the spiral cleaning device of ultra violet lamp glass sleeve according to claim 1 is characterized in that described filament (4) is a stainless steel wire.
3, the spiral cleaning device of ultra violet lamp glass sleeve according to claim 1 is characterized in that being respectively equipped with on described two wire winding rings fixedly snap ring (5) of spring.
CN2009200543290U 2009-04-10 2009-04-10 Spiral cleaning device of UV lamp glass sleeve Expired - Lifetime CN201415207Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2009200543290U CN201415207Y (en) 2009-04-10 2009-04-10 Spiral cleaning device of UV lamp glass sleeve

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2009200543290U CN201415207Y (en) 2009-04-10 2009-04-10 Spiral cleaning device of UV lamp glass sleeve

Publications (1)

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CN201415207Y true CN201415207Y (en) 2010-03-03

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101524692B (en) * 2009-04-10 2010-11-17 杨素芬 Spiral cleaning device of ultra violet lamp glass sleeve and manufacturing method thereof
CN102311154A (en) * 2010-07-01 2012-01-11 深圳市海川实业股份有限公司 Sensor, cleaning device and ultraviolet disinfection equipment
CN108758780A (en) * 2018-07-09 2018-11-06 孙夏星 A kind of indoor heating method
CN108800663A (en) * 2018-07-09 2018-11-13 孙夏星 A kind of water source heat pump system
CN110721964A (en) * 2019-09-16 2020-01-24 江苏亨通海洋光网系统有限公司 Sheath process sea optical cable copper pipe wiping machine
CN112058821A (en) * 2020-08-31 2020-12-11 成都明杰科技有限公司 Outer wall cleaning device for solar photo-thermal power generation fused salt pipe

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101524692B (en) * 2009-04-10 2010-11-17 杨素芬 Spiral cleaning device of ultra violet lamp glass sleeve and manufacturing method thereof
CN102311154A (en) * 2010-07-01 2012-01-11 深圳市海川实业股份有限公司 Sensor, cleaning device and ultraviolet disinfection equipment
CN102311154B (en) * 2010-07-01 2014-11-05 深圳市海川实业股份有限公司 Sensor, cleaning device and ultraviolet disinfection equipment
CN108758780A (en) * 2018-07-09 2018-11-06 孙夏星 A kind of indoor heating method
CN108800663A (en) * 2018-07-09 2018-11-13 孙夏星 A kind of water source heat pump system
CN108758780B (en) * 2018-07-09 2020-06-09 安徽振林建筑工程有限公司 Indoor heating method
CN110721964A (en) * 2019-09-16 2020-01-24 江苏亨通海洋光网系统有限公司 Sheath process sea optical cable copper pipe wiping machine
CN112058821A (en) * 2020-08-31 2020-12-11 成都明杰科技有限公司 Outer wall cleaning device for solar photo-thermal power generation fused salt pipe

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C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20100303

Effective date of abandoning: 20090410