CN207801380U - A kind of rare earth multicomponent alloy layer anti-corrosion holder - Google Patents

A kind of rare earth multicomponent alloy layer anti-corrosion holder Download PDF

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Publication number
CN207801380U
CN207801380U CN201721838969.1U CN201721838969U CN207801380U CN 207801380 U CN207801380 U CN 207801380U CN 201721838969 U CN201721838969 U CN 201721838969U CN 207801380 U CN207801380 U CN 207801380U
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CN
China
Prior art keywords
fixedly connected
supporting plate
rare earth
alloy layer
adjustable column
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Active
Application number
CN201721838969.1U
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Chinese (zh)
Inventor
徐广林
常本凤
许卫国
胡安权
左志华
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Jiangsu Shengda Cosco Electric Co ltd
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Jiangsu Zhongyuan Rare Earth New Material Co Ltd
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Abstract

The utility model provides a kind of rare earth multicomponent alloy layer anti-corrosion holder, is related to anti-corrosion field of stents.The rare earth multicomponent alloy layer anti-corrosion holder, including supporting plate, it is overlapped with adjustable column on the left of the supporting plate, the upper surface of the supporting plate is fixedly connected with fixed block, and the right side opening of the adjustable column is equipped with lifting groove, and the left side of the fixed block is simultaneously fixedly connected with wheel bar positioned at the inside of lifting groove, the described wheel one end of bar far from fixed block is fixedly connected with wheel shaft, the upper surface of wheel shaft is fixedly connected with connecting rod, and fixing axle is fixedly connected on the right side of adjustable column, and the surface of fixing axle is socketed with driven gear.The rare earth multicomponent alloy layer anti-corrosion holder, by taking turns the mutual cooperation between bar, wheel shaft and runner, stuck or inclined effect can be occurred when adjusting supporting plate height to avoid supporting plate by reaching, the spring being arranged by connecting rod top, reach when adjusting supporting plate downwards, the rebound of spring can be utilized to be adjusted, so that easily facilitating adjusting.

Description

A kind of rare earth multicomponent alloy layer anti-corrosion holder
Technical field
The utility model is related to anti-corrosion support technology field, specially a kind of rare earth multicomponent alloy layer anti-corrosion holder.
Background technology
Holder is usually setting up public utilities and industrial cable.There are metallic support and composite material bracket as holder.Gold It is welded or assembled with fastener after steel or aluminium alloy material are typically rolled into required proximate matter between category.But permitted Under more severe environmental conditions, using metallic support easily corrosion, the maintenance cost of facility is high.And using composite material make cable, The backing material of pipeline etc. has corrosion resistance characteristic, meets fire prevention, low cigarette, nontoxic safety standard, thus has obtained answering extensively With rare earth multicomponent alloy layer anti-corrosion holder is mainly used for the support of cable testing bridge, can carry out during use very well Anti-corrosion.
Currently, cable testing bridge is made of holder, trailing arm and installation attachment etc., rare earth is used when being installed for crane span structure Multi-elements alloying coating anti-corrosion holder is supported so that crane span structure has the effect of that fastness is good after mounting, but existing dilute Native multi-elements alloying coating anti-corrosion holder according to different size of crane span structure when installing, due to being not easy to adjust height, to make branch Frame cannot be suitable for a variety of different crane span structures well.
Utility model content
(1) the technical issues of solving
In view of the deficiencies of the prior art, the utility model provides a kind of rare earth multicomponent alloy layer anti-corrosion holder, solves Existing rare earth multicomponent alloy layer anti-corrosion holder is high due to being not easy to adjust when being installed according to different size of crane span structure Degree, to prevent the problem of holder from being suitable for a variety of different crane span structures well.
(2) technical solution
In order to achieve the above object, the utility model is achieved by the following technical programs:A kind of rare earth multicomponent Alloy Plating Layer anti-corrosion holder, including supporting plate are overlapped with adjustable column on the left of the supporting plate, and the upper surface of the supporting plate is fixedly connected with fixation The right side opening of block, the adjustable column is equipped with lifting groove, and the left side of the fixed block is simultaneously fixedly connected with positioned at the inside of lifting groove Bar is taken turns, the described wheel one end of bar far from fixed block is fixedly connected with wheel shaft, and the upper surface of the wheel shaft is fixedly connected with connecting rod, Fixing axle is fixedly connected on the right side of the adjustable column, the surface of the fixing axle is socketed with driven gear, the driven gear Right side be fixedly connected with shaft, the one end of the shaft far from driven gear is fixedly connected with swivel becket, the swivel becket Lower surface is fixedly connected with drawstring, and the one end of the drawstring far from swivel becket is fixedly connected with the upper surface of fixed block, it is described from The upper surface of moving gear is engaged with driving gear, and rotating bar is fixedly connected on the left of the driving gear, the adjustable column Left side offers the movable span being connected with right side, and the one end of the rotating bar far from driving gear is through movable span and extends to The left side of adjustable column, one end upper surface that the rotating bar is located on the left of adjustable column offer the jack being connected with lower surface.
Preferably, the surface of the wheel shaft is socketed with runner, and the surface of the runner and the internal activity of lifting groove connect.
Preferably, the one end of the connecting rod far from wheel shaft is fixedly connected with spring, the spring far from connecting rod one End is fixedly connected with the inner roof wall of lifting groove.
Preferably, the inner left wall of the lifting groove offers sliding slot, and the internal slide of the sliding slot is connected with slide bar, institute It states and is fixedly connected on the left of the one end of slide bar far from sliding slot and connecting rod.
Preferably, shifting chute is offered on the left of the adjustable column, the internal slide of the shifting chute is connected with sliding shoe, Gag lever post, the inside grafting of the gag lever post one end and jack far from sliding shoe are fixedly connected on the left of the sliding shoe.
Preferably, the quantity of the adjustable column is two, and two adjustable columns are symmetrical arranged with the central axes of supporting plate.
(3) advantageous effect
The utility model provides a kind of rare earth multicomponent alloy layer anti-corrosion holder.Has following advantageous effect:
1, the rare earth multicomponent alloy layer anti-corrosion holder is reached by taking turns the mutual cooperation between bar, wheel shaft and runner Can occur stuck or inclined effect when adjusting supporting plate height to avoid supporting plate, the spring being arranged by connecting rod top reaches To when adjusting supporting plate downwards, the rebound of spring can be utilized to be adjusted, so that easily facilitating adjusting.
2, the rare earth multicomponent alloy layer anti-corrosion holder, by rotate rotating bar, reach increased by driving gear it is driven The rotating speed of gear so that adjust more rapid and convenient, by the rotation of swivel becket, reach the height for pulling drawstring that supporting plate is adjusted Degree, solves existing rare earth multicomponent alloy layer anti-corrosion holder when being installed according to different size of crane span structure, due to being not easy to Height is adjusted, to prevent the problem of holder from being suitable for a variety of different crane span structures well.
Description of the drawings
FIG. 1 is a schematic structural view of the utility model;
Fig. 2 is the utility model structure front view.
Wherein, 1 supporting plate, 2 adjustable columns, 3 lifting grooves, 4 fixed blocks, 5 wheel bars, 6 wheel shafts, 7 runners, 8 connecting rods, 9 slide bars, 10 sliding slots, 11 springs, 12 fixing axles, 13 rotating bars, 14 jacks, 15 gag lever posts, 16 shifting chutes, 17 sliding shoes, 18 driving gears, 19 driven gears, 20 shafts, 21 swivel beckets, 22 drawstrings, 23 movable spans.
Specific implementation mode
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole Embodiment.Based on the embodiments of the present invention, those of ordinary skill in the art are without making creative work The every other embodiment obtained, shall fall within the protection scope of the present invention.
The utility model embodiment provides a kind of rare earth multicomponent alloy layer anti-corrosion holder, as shown in Figs. 1-2, including supporting plate 1, the left side of supporting plate 1 is overlapped with adjustable column 2, and the quantity of adjustable column 2 is two, and two adjustable columns 2 are symmetrical with the central axes of supporting plate 1 Setting, can be adjusted the height of supporting plate 1, two adjustable columns 2 are located at support while adjustable column 2 is used to support supporting plate 1 The left and right sides of plate 1, when adjusting, two adjustable columns 2 are adjusted jointly, more steady when supporting plate 1 can be made to adjust, supporting plate 1 it is upper Surface is fixedly connected with fixed block 4, and the right side opening of adjustable column 2 is equipped with lifting groove 3, and the left side of fixed block 4 is simultaneously located at lifting groove 3 Inside is fixedly connected with wheel bar 5, and the one end of wheel bar 5 far from fixed block 4 is fixedly connected with wheel shaft 6, and the surface of wheel shaft 6 is socketed with The surface of runner 7, runner 7 is connect with the internal activity of lifting groove 3, when drawstring 22 drives fixed block 4 to move up, fixed block 4 can drive runner 7 to be moved inside lifting groove 3, can reduce the friction of fixed block 4 when moving in this way so that adjust 1 height of supporting plate more convenient quickly, the upper surface of wheel shaft 6 are fixedly connected with connecting rod 8, and the one end of connecting rod 8 far from wheel shaft 6 is solid Surely be connected with spring 11, the one end of spring 11 far from connecting rod 8 is fixedly connected with the inner roof wall of lifting groove 3, by supporting plate 1 to When lower adjusting, as long as decontroling rotating bar 13, spring 11 carries out release elastic force at this time, and the elastic force of spring 11 pushes down on supporting plate 1, Convenient when supporting plate 1 is adjusted downwards to increase, the inner left wall of lifting groove 3 offers sliding slot 10, the internal slide of sliding slot 10 It is connected with slide bar 9, the one end of slide bar 9 far from sliding slot 10 is fixedly connected with the left side of connecting rod 8, when being adjusted up supporting plate 1, with It the mobile of supporting plate 1 to move up in the inside of sliding slot 10 with moving slide-bar 9, go out when slide bar 9 can be adjusted to avoid supporting plate 1 at this time It now tilts, the right side of adjustable column 2 is fixedly connected with fixing axle 12, and the surface of fixing axle 12 is socketed with driven gear 19, driven tooth The right side of wheel 19 is fixedly connected with shaft 20, and the one end of shaft 20 far from driven gear 19 is fixedly connected with swivel becket 21, rotation The lower surface of ring 21 is fixedly connected with drawstring 22, and company is fixed in the one end of drawstring 22 far from swivel becket 21 and the upper surface of fixed block 4 It connects, the upper surface of driven gear 19 is engaged with driving gear 18, and the left side of driving gear 18 is fixedly connected with rotating bar 13, adjusts The left side of column 2 offers the movable span 23 being connected with right side, and movable span is run through in the one end of rotating bar 13 far from driving gear 18 23 and the left side of adjustable column 2 is extended to, one end upper surface that rotating bar 13 is located at 2 left side of adjustable column offers and lower surface phase The left side of the jack 14 of connection, adjustable column 2 offers shifting chute 16, and the internal slide of shifting chute 16 is connected with sliding shoe 17, sliding The left side of motion block 17 is fixedly connected with gag lever post 15, the inside grafting of the one end of gag lever post 15 far from sliding shoe 17 and jack 14, It after regulating the height of supporting plate 1, needs to push down on gag lever post 15, to which gag lever post 15 is inserted into the inside of jack 14 1 present level of supporting plate is fixed, the rear supporting plate 1 of adjusting is avoided to loosen.
In use, rotating bar 13 is rotated, rotating bar 13 can drive driving gear 18 to rotate when rotating, driving gear Driven gear 19 can be driven to rotate when 18 rotation, driven gear 19 can drive swivel becket 21 to rotate when rotating, swivel becket 21 rotates When drawstring 22 can be pulled up, supporting plate 1 can be pulled up by fixed block 4 when drawstring 22 pulls up, it is upward in supporting plate 1 Runner 7 can be driven to scroll up in the inside of lifting groove 3 by fixed block 4 when mobile, finally push down on gag lever post 15 simultaneously It is inserted into the inside of jack 14.
In conclusion the rare earth multicomponent alloy layer anti-corrosion holder, mutual between bar 5, wheel shaft 6 and runner 7 by taking turns Cooperation, stuck or inclined effect can be occurred when adjusting 1 height of supporting plate to avoid supporting plate 1 by reaching, and pass through 8 top of connecting rod The spring 11 of setting reaches when adjusting supporting plate 1 downwards, the rebound of spring 11 can be utilized to be adjusted, so that more Convenient for adjusting.
By rotating rotating bar 13, reach the rotating speed for increasing driven gear 19 by driving gear 18 so that adjust more Rapid and convenient is reached the height for pulling drawstring 22 that supporting plate 1 is adjusted, is solved existing dilute by the rotation of swivel becket 21 Native multi-elements alloying coating anti-corrosion holder according to different size of crane span structure when installing, due to being not easy to adjust height, to make branch Frame cannot be suitable for the problem of a variety of different crane span structures well.
While there has been shown and described that the embodiments of the present invention, for the ordinary skill in the art, It is appreciated that can these embodiments be carried out with a variety of variations in the case where not departing from the principles of the present invention and spirit, repaiied Change, replace and modification, the scope of the utility model are defined by the appended claims and the equivalents thereof.

Claims (6)

1. a kind of rare earth multicomponent alloy layer anti-corrosion holder, including supporting plate (1), it is characterised in that:It is taken on the left of the supporting plate (1) It is connected to adjustable column (2), the upper surface of the supporting plate (1) is fixedly connected with fixed block (4), is opened up on the right side of the adjustable column (2) There are lifting groove (3), the left side of the fixed block (4) to be simultaneously fixedly connected with wheel bar (5), the wheel positioned at the inside of lifting groove (3) The one end of bar (5) far from fixed block (4) is fixedly connected with wheel shaft (6), and the upper surface of the wheel shaft (6) is fixedly connected with connecting rod (8), fixing axle (12) is fixedly connected on the right side of the adjustable column (2), the surface of the fixing axle (12) is socketed with driven tooth It takes turns (19), shaft (20) is fixedly connected on the right side of the driven gear (19), the shaft (20) is far from driven gear (19) One end be fixedly connected with swivel becket (21), the lower surface of the swivel becket (21) is fixedly connected with drawstring (22), the drawstring (22) one end far from swivel becket (21) is fixedly connected with the upper surface of fixed block (4), the upper surface of the driven gear (19) It is engaged with driving gear (18), rotating bar (13) is fixedly connected on the left of the driving gear (18), the adjustable column (2) Left side offers the movable span (23) being connected with right side, and the one end of the rotating bar (13) far from driving gear (18) is through work Dynamic hole (23) and the left side for extending to adjustable column (2), one end upper surface that the rotating bar (13) is located on the left of adjustable column (2) is opened Equipped with the jack (14) being connected with lower surface.
2. a kind of rare earth multicomponent alloy layer anti-corrosion holder according to claim 1, it is characterised in that:The wheel shaft (6) Surface be socketed with runner (7), the surface of the runner (7) is connect with the internal activity of lifting groove (3).
3. a kind of rare earth multicomponent alloy layer anti-corrosion holder according to claim 1, it is characterised in that:The connecting rod (8) one end far from wheel shaft (6) is fixedly connected with spring (11), the spring (11) one end and lifting far from connecting rod (8) The inner roof wall of slot (3) is fixedly connected.
4. a kind of rare earth multicomponent alloy layer anti-corrosion holder according to claim 1, it is characterised in that:The lifting groove (3) inner left wall offers sliding slot (10), and the internal slide of the sliding slot (10) is connected with slide bar (9), and the slide bar (9) is remote It is fixedly connected on the left of one end and connecting rod (8) from sliding slot (10).
5. a kind of rare earth multicomponent alloy layer anti-corrosion holder according to claim 1, it is characterised in that:The adjustable column (2) shifting chute (16) is offered on the left of, the internal slide of the shifting chute (16) is connected with sliding shoe (17), the sliding shoe (17) gag lever post (15), the one end of the gag lever post (15) far from sliding shoe (17) and jack (14) are fixedly connected on the left of Internal grafting.
6. a kind of rare earth multicomponent alloy layer anti-corrosion holder according to claim 1, it is characterised in that:The adjustable column (2) quantity is two, and two adjustable columns (2) are symmetrical arranged with the central axes of supporting plate (1).
CN201721838969.1U 2017-12-26 2017-12-26 A kind of rare earth multicomponent alloy layer anti-corrosion holder Active CN207801380U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201721838969.1U CN207801380U (en) 2017-12-26 2017-12-26 A kind of rare earth multicomponent alloy layer anti-corrosion holder

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201721838969.1U CN207801380U (en) 2017-12-26 2017-12-26 A kind of rare earth multicomponent alloy layer anti-corrosion holder

Publications (1)

Publication Number Publication Date
CN207801380U true CN207801380U (en) 2018-08-31

Family

ID=63280927

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201721838969.1U Active CN207801380U (en) 2017-12-26 2017-12-26 A kind of rare earth multicomponent alloy layer anti-corrosion holder

Country Status (1)

Country Link
CN (1) CN207801380U (en)

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GR01 Patent grant
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TR01 Transfer of patent right

Effective date of registration: 20220707

Address after: 212211 Xinjiang village, Xinba Town, Yangzhong, Zhenjiang, Jiangsu

Patentee after: Jiangsu Shengda Cosco Electric Co.,Ltd.

Address before: 212200 Xin Ba Zhen Xin Jiang Cun, Yangzhong City, Zhenjiang City, Jiangsu Province

Patentee before: JIANGSU ZHONGYUAN RARE EARTH NEW MATERIAL Co.,Ltd.