CN218742674U - Be applicable to H shaped steel production line hanger - Google Patents

Be applicable to H shaped steel production line hanger Download PDF

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Publication number
CN218742674U
CN218742674U CN202223030021.7U CN202223030021U CN218742674U CN 218742674 U CN218742674 U CN 218742674U CN 202223030021 U CN202223030021 U CN 202223030021U CN 218742674 U CN218742674 U CN 218742674U
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shaped steel
hanging
wall
hanger
fixture block
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CN202223030021.7U
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陈亚军
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Yancheng Youfeng Surface Treatment Technology Co ltd
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Yancheng Youfeng Surface Treatment Technology Co ltd
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Abstract

The utility model provides a be applicable to H shaped steel production line hanger, includes H shaped steel and hanger subassembly, the hanger subassembly hangs the unit under unit and the multiunit including last string of unit and multiunit, goes up to hang the unit and includes the last link plate that is located H shaped steel top both sides, goes up the link plate and be the rectangle, and two last side wall central point that go up the link plate put the department and have all seted up the through-hole, inserts in the through-hole and installs the hoist couple. This scheme is through hanging unit and multiunit under setting up, it can carry out the hanging of upper and lower layer-stepping to H shaped steel to have realized, it is used for the hoist to go up link plate and hoist couple, it can hang to go up the H shaped steel of link plate and jib top, the linking up couple, link plate and jib hang to the H shaped steel of downside again down, this scheme can continue to hang H shaped steel down according to this mode, the realization hangs the multilayer of H shaped steel, the hanger subassembly simple structure of this scheme, convenient and practical, it only can the individual layer hang H shaped steel to have solved prior art problem, lead to the problem that spraying efficiency is low.

Description

Be applicable to H shaped steel production line hanger
Technical Field
The utility model belongs to the technical field of H shaped steel production hanger, especially, relate to a be applicable to H shaped steel production line hanger.
Background
The H-shaped steel has the advantages of strong bending resistance, simple construction, cost saving, light structure weight and the like in all directions, and is widely applied to production lines, particularly production lines with high corrosion resistance requirements and large bearing capacity (such as electroplating). The H-section steel used in these production lines needs to be subjected to a spray surface treatment to enhance the rust and corrosion preventing properties. However, most of H-shaped steel used on equipment only has a mounting hole on one side, so that the spraying production process can only be single-layer suspended, and the contact surface of the traditional hook and a workpiece is large, so that the defect of missed spraying with a large area at the mounting hole of the H-shaped steel is caused. Therefore, the H-shaped steel is simple, convenient and fast, and is hung in multiple layers, which is a difficult problem to be solved urgently by technical personnel in the field of spraying production of power and free chains.
Therefore, the hanger suitable for the H-shaped steel production line is provided.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a be applicable to H shaped steel production line hanger to solve the technical problem that above-mentioned prior art exists.
In order to realize the purpose, the utility model adopts the following technical proposal, a hanger suitable for H-shaped steel production line comprises H-shaped steel and a hanger component, the hanger component comprises an upper hanging unit and a plurality of groups of lower hanging units, the upper hanging unit comprises upper hanging plates positioned at two sides above the H-shaped steel, the upper hanging plates are rectangular, the central positions of the upper side wall surfaces of the two upper hanging plates are respectively provided with a through hole, a hanger hook is inserted and installed in the through hole, the hanger hook is S-shaped, the middle part of the hanger hook is vertical, the lower side wall surfaces of the two upper hanging plates are respectively provided with first hanging holes which are distributed at equal intervals, two hanging holes are respectively arranged on the two side wall surfaces at the top of the H-shaped steel, two hanging rods are respectively arranged between the two hanging holes at each side and the corresponding upper hanging plate, the jib is "J" font of handstand, the upside hook-shaped end of jib is inserted and is installed downthehole at first hanging, the downside wall of jib is vertical state, the hole that hangs on the H shaped steel is passed to the vertical end of jib, the vertical end bottom of jib is provided with can press down the spacing conical head of dismantlement, the unit is hung including the lower link plate that is located link plate and H shaped steel below down to the multiunit down, the link plate is the rectangle down, the second that equidistant distribution was all seted up on the upper and lower both sides wall surface of lower link plate hangs the hole, it all is provided with the linking couple to go up between link plate and the lower link plate that corresponds for two, the linking couple is "S" shape and the middle part that links up the couple is vertical state, it hangs downthehole at the first hole that hangs that corresponds and the second hang to insert movable mounting respectively to link up two hook-shaped ends of couple.
Preferably, the limiting conical head is a circular truncated cone body, the center of the limiting conical head is a center rod movably arranged in a vertical state and movably penetrating through the limiting conical head body, the center rod is a cylinder, the top of the center rod is an inclined plane, the middle of the center rod is rotatably connected with an annular limiting plate, a limiting groove is formed in the inner wall of the limiting conical head, the limiting plate is movably clamped in the limiting groove, a supporting spring is fixedly arranged on the upper side in the cavity of the limiting groove, the bottom end of the supporting spring is in contact with the limiting plate, the bottom end of the center rod is located below the limiting conical head, and a rubber sheath is fixedly sleeved on the outer wall of the bottom of the center rod.
Preferably, the central rod is connected with the limiting plate through a bearing, the inner wall of the bearing is fixedly connected with the outer wall of the central rod, and the outer wall of the bearing is fixedly connected with the inner wall of the limiting plate.
Preferably, the guide grooves are formed in the bottom wall face of the vertical end of the hanging rod and are circular, the top end of the central rod is located in the cavity of the guide grooves, a first clamping block is movably mounted at the top of the inclined face of the central rod, the top wall face of the first clamping block is also an inclined face, and a second clamping block is movably mounted at the top of the inclined face of the first clamping block.
Preferably, the bottom wall surface of the first fixture block and the top wall surface of the central rod are in a parallel fit state, the top inclined surface of the first fixture block and the top wall surface of the central rod are in a vertical parallel state, the outer wall of a cylinder on one side of the first fixture block is in an inclined outward protruding state, the top of the second fixture block is a horizontal plane, the bottom of the second fixture block is an inclined surface, the bottom wall surface of the second fixture block and the top wall surface of the inclined surface of the first fixture block are in a parallel and fit state, the outer wall of a cylinder on one side of the second fixture block is in an inclined outward protruding state, the outer wall of an inclined protrusion on one side of the second fixture block and the outer wall of an inclined protrusion on one side of the first fixture block are in a symmetrical state, and the directions of the outer wall of the inclined protrusion on one side of the second fixture block and the outer wall of the inclined protrusion on one side of the first fixture block are opposite.
Preferably, a second clamping groove is formed in one side wall surface in the guide groove cavity, the second clamping groove is arc-shaped, a side-inclined convex outer wall of the second clamping block is clamped in the second clamping groove, a first clamping groove is formed in the other side wall surface in the guide groove cavity, the first clamping groove is also arc-shaped, and a side-inclined convex outer wall of the first clamping block is clamped in the first clamping groove.
Preferably, elastic guide mechanisms are arranged between the second clamping block and the first clamping block, between the first clamping block and the central rod, each elastic guide mechanism comprises a guide sleeve fixedly installed on the bottom wall surface of the second clamping block and the bottom wall surface of the first clamping block, and the guide sleeves are perpendicular to the bottom inclined surfaces of the first clamping block and the second clamping block.
Preferably, the top inclined plane of the first clamping block and the top inclined plane of the central rod are respectively provided with an elastic groove, guide rods are fixedly arranged in the elastic grooves, the guide sleeves are movably sleeved on the corresponding guide rods, the guide rods are respectively sleeved with an extrusion spring, and the extrusion springs are positioned on one side wall surface, far away from the first clamping groove and far away from the second clamping groove, of the corresponding guide rods.
Advantageous effects
The utility model provides a be applicable to H shaped steel production line hanger. The method has the following beneficial effects:
(1) This be applicable to H shaped steel production line hanger, this scheme hangs the unit under unit and the multiunit through setting up, the layered hanging about can having realized going on H shaped steel, it is used for the hoist to go up link plate and hoist couple, it can hang to go up the H shaped steel of link plate and jib top, link up the couple down link plate and jib and hang the H shaped steel of downside again, this scheme can continue to hang H shaped steel down according to this mode, the realization hangs the multilayer of H shaped steel, the hanger subassembly simple structure of this scheme, convenient and practical, it only can the individual layer hang H shaped steel to have solved prior art problem, lead to the problem that the spraying efficiency is low.
(2) This be applicable to H shaped steel production line hanger, this scheme is through setting up spacing conical head, first fixture block, second fixture block and elasticity guiding mechanism, not only realized can carrying out quick installation to spacing conical head and jib, it hangs to H shaped steel to be convenient, when hanging H shaped steel, the vertical end bottom of jib passes behind the hole that hangs on H shaped steel, quick install the bottom wall of jib with spacing conical head on, it is spacing to realize hanging the jib, when dismantling, press down rubber sheath and promote well core rod again, rotate well core rod, can be quick dismantle spacing conical head, can be quick dismantle H shaped steel after the spraying H shaped steel is accomplished, thereby the practicality of this scheme has been improved.
Drawings
FIG. 1 is a perspective view of the H-shaped steel and hanger assembly of the present invention;
FIG. 2 is a perspective view of the H-shaped steel of the present invention;
FIG. 3 is a perspective view of the hanger bar of the present invention;
fig. 4 is a partial sectional view of the boom and the limiting cone of the present invention;
FIG. 5 is an enlarged view of the point A in FIG. 4 according to the present invention;
fig. 6 is an enlarged view of the point B in fig. 5 according to the present invention.
The notation in the figure is: 10. h-shaped steel; 11. a hanging hole; 12. hanging the plate; 13. a first hanging hole; 14. a through hole; 15. a hanger hook; 16. connecting the hooks; 17. a boom; 18. hanging plates; 19. a second hanging hole; 20. a limiting conical head; 21. a center pole; 22. a rubber sheath; 23. a limiting plate; 24. a limiting groove; 25. a support spring; 26. a first clamping block; 27. a second fixture block; 28. a guide groove; 29. a first card slot; 30. a second card slot; 31. a guide sleeve; 32. a guide bar; 33. an elastic groove; 34. compressing the spring.
Detailed Description
In order to better understand the purpose, structure and function of the present invention, the following figures are combined to describe the present invention in further detail for the hanger suitable for the H-shaped steel production line.
The first embodiment is as follows: the utility model provides a be applicable to H shaped steel production line hanger, including H shaped steel 10 and hanger subassembly, as shown in fig. 1, the hanger subassembly hangs the unit under unit and the multiunit including last string of unit and multiunit, it includes the last link plate 12 that is located H shaped steel 10 top both sides to go up string of unit, it is the rectangle to go up link plate 12, two upside wall central point departments of going up link plate 12 have all seted up through-hole 14, it installs hoist couple 15 to insert in the through-hole 14, hoist couple 15 is "S" shape and the middle part of hoist couple 15 is vertical state, it hangs hole 13 all to set up equidistant distribution on the lower side wall of link plate 12 for two.
As shown in fig. 2, fig. 1 and fig. 3, two suspension holes 11 are formed in both side wall surfaces of the top of the H-shaped steel 10, two suspension rods 17 are arranged between the two suspension holes 11 on each side and the corresponding upper suspension plate 12, the suspension rod 17 is inverted "J" -shaped, the upper hook-shaped end of the suspension rod 17 is inserted into the first suspension hole 13, the lower wall surface of the suspension rod 17 is vertical, the vertical end of the suspension rod 17 passes through the suspension hole 11 in the H-shaped steel 10, and the bottom of the vertical end of the suspension rod 17 is provided with a limiting conical head 20 which can be pressed and detached.
As shown in fig. 1, the multiple groups of lower hanging units comprise lower hanging plates 18 located below the upper hanging plate 12 and the H-shaped steel 10, the lower hanging plates 18 are rectangular, second hanging holes 19 distributed at equal intervals are formed in the upper side wall surface and the lower side wall surface of each lower hanging plate 18, linking hooks 16 are arranged between the two upper hanging plates 12 and the corresponding lower hanging plates 18, each linking hook 16 is S-shaped, the middle of each linking hook 16 is vertical, and two hook-shaped ends of each linking hook 16 are respectively inserted into the corresponding first hanging hole 13 and the corresponding second hanging hole 19 in a movable manner.
When the H-shaped steel 10 is hung, firstly, the upper hanging plates 12 on two sides are hung by using two hanger hooks 15, the bottom ends of the two hanger hooks 15 penetrate through the corresponding through holes 14, the upper side hook-shaped ends of the two hanger hooks 15 are hung on a hanger, the hook-shaped ends of the hanging rods 17 are hung on the first hanging holes 13 of the upper hanging plates 12, the vertical ends of the hanging rods 17 penetrate through the hanging holes 11 on the H-shaped steel 10, the limiting conical heads 20 are arranged at the bottoms of the hanging rods 17, the number of the hanging rods 17 on each side of the H-shaped steel 10 is two, and therefore the H-shaped steel 10 is hung on the two upper hanging plates 12 through the hanging rods 17.
Then, two connecting hooks 16 are hung on the upper hanging plates 12 on two sides, the upper hook-shaped ends of the connecting hooks 16 penetrate through the first hanging holes 13 in the upper hanging plates 12, the upper hanging plates 18 and the lower hanging plates 18 are scraped on the bottom hook-shaped ends of the connecting hooks 16, the lower hanging plates 18 are located below the first hanging holes 13 and the H-shaped steel 10, then the hanging rods 17 on the lower hanging plates 18 are pressed according to the same steps, and then the H-shaped steel 10 on the lower layer is hung on the hanging rods 17, wherein the specific hanging distribution state is shown in figure 1.
This scheme is through setting up and hanging unit and multiunit under, it hangs the unit to have realized the layering formula about can going on H shaped steel 10, it is used for the hoist to go up link plate 12 and hoist couple 15, it can hang to go up link plate 12 and the H shaped steel 10 of jib 17 the top, it hangs 16 to link up couple, link plate 18 and jib 17 hang the H shaped steel 10 of downside again down, this scheme can continue to hang H shaped steel 10 down according to this mode, the realization hangs the multilayer of H shaped steel 10, the hanger subassembly simple structure of this scheme, convenient and practical, it only can the individual layer hang H shaped steel 10 to have solved prior art problem, lead to the problem of spraying inefficiency.
Example two: as shown in fig. 4 and 5, the limiting conical head 20 is a circular truncated cone, the center of the limiting conical head 20 is a central rod 21 movably mounted in a vertical state and movably penetrating through the body of the limiting conical head 20, the central rod 21 is a cylinder, the top of the central rod 21 is an inclined plane, the middle of the central rod 21 is rotatably connected with an annular limiting plate 23, a limiting groove 24 is formed in the inner wall of the limiting conical head 20, the limiting plate 23 is movably clamped in the limiting groove 24, a supporting spring 25 is fixedly mounted on the upper side in the cavity of the limiting groove 24, the bottom end of the supporting spring 25 contacts with the limiting plate 23, the bottom end of the central rod 21 is located below the limiting conical head 20, a rubber sheath 22 is fixed on the outer wall of the bottom of the central rod 21, the central rod 21 is connected with the limiting plate 23 through a bearing, the inner wall of the bearing is fixedly connected with the outer wall of the central rod 21, the outer wall of the bearing is fixedly connected with the inner wall of the limiting plate 23, guide grooves 28 are formed in the bottom wall of the vertical end of the suspension rod 17, the guide groove 28 is circular guide groove, a first fixture block 26 is movably mounted on the inclined plane of the top of the inclined plane of the first fixture block 26, and a second inclined plane is also mounted on the inclined plane of the movable top of the first fixture block 27.
As shown in fig. 5, the bottom wall surface of the first fixture block 26 and the top wall surface of the central rod 21 are in parallel fit, the top inclined surface of the first fixture block 26 and the top wall surface of the central rod 21 are in a vertical parallel state, the outer wall of the cylinder on one side of the first fixture block 26 is in an inclined and outward protruding state, the top of the second fixture block 27 is a horizontal plane, the bottom of the second fixture block 27 is an inclined surface, the bottom wall surface of the second fixture block 27 and the top wall surface of the inclined surface of the first fixture block 26 are in a parallel and fit state, the outer wall of the cylinder on one side of the second fixture block 27 is in an inclined and outward protruding state, the outer wall of the inclined and protruding side of the second fixture block 27 and the outer wall of the inclined and protruding side of the first fixture block 26 are in a symmetrical state and in opposite directions, the second fixture block 30 and the second fixture block 30 are provided on one side wall surface in the cavity of the guide groove 28, the second fixture block 30 is in an arc shape, the inclined and the outer wall surface of the inclined and the first fixture block 27 is provided with a first fixture groove 29 in the other side cavity, the first fixture block 29 is also in an arc shape.
As shown in fig. 6, an elastic force guiding mechanism is disposed between each of the second fixture block 27 and the first fixture block 26, and between each of the first fixture block 26 and the center rod 21, the elastic force guiding mechanism includes a guiding sleeve 31 fixedly mounted on a bottom wall surface of the second fixture block 27 and a bottom wall surface of the first fixture block 26, bottom inclined surfaces of the guiding sleeve 31 and the first fixture block 26, and bottom inclined surfaces of the guiding sleeve 31 and the second fixture block 27 are perpendicular to each other, each of the top inclined surface of the first fixture block 26 and the top inclined surface of the center rod 21 is provided with an elastic groove 33, a guiding rod 32 is fixedly mounted in each of the elastic grooves 33, the guiding sleeve 31 is movably sleeved on the corresponding guiding rod 32, each of the guiding rods 32 is sleeved with an extrusion spring 34, and the extrusion spring 34 is located on a side wall surface of the corresponding guiding rod 32, which is far away from the first clamping groove 29 and far away from the second clamping groove 30.
When jib 17 and spacing conical head 20 are installed, press respectively and promote second fixture block 27 and first fixture block 26, make and be in same vertical axis direction as far as possible with well core rod 21 body, then insert in guide way 28, the top that promotes spacing conical head 20 is the state of laminating with the bottom of jib 17, promote well core rod 21 up-moving simultaneously, when first fixture block 26 moves to the one side that is close to first draw-in groove 29, under the spring action of extrusion spring 34, make the slope protruding end of first fixture block 26 insert in first draw-in groove 29, and the same is true, when second fixture block 27 is close to second draw-in groove 30, under the spring action of extrusion spring 34, make the slope protruding end of second fixture block 27 insert in second draw-in groove 30, thereby realize that well core rod 21 fixes between spacing conical head 20 and jib 17, thereby realize carrying out quick fixed to jib 17 and spacing conical head 20.
Similarly, when dismantling jib 17 and spacing conical head 20, up press the bottom that promotes well core rod 21, make well core rod 21's top further stretch into guide way 28 in, first fixture block 26 and second fixture block 27 then can be along with corresponding first draw-in groove 29 and second draw-in groove 30 up motion, promote well core rod 21 back completely, second fixture block 27 this moment, first fixture block 26 and well core rod 21 are in same vertical axle center mode again, properly rotate well core rod 21 this moment, make first fixture block 26's inclined plane bulge end keep away from first draw-in groove 29, second fixture block 27's inclined plane bulge end keeps away from second draw-in groove 30, after the completion, can be smooth with spacing conical head 20 from jib 17 bottom separation.
This scheme is through setting up spacing conical head 20, first fixture block 26, second fixture block 27 and elasticity guiding mechanism, not only realized can carrying out quick installation to spacing conical head 20 and jib 17, conveniently hang H shaped steel 10, when hanging H shaped steel 10, the vertical end bottom of jib 17 passes behind the hole 11 that hangs on the H shaped steel 10, quick install spacing conical head 20 on jib 17's bottom wall, it is spacing to realize hanging jib 17, when dismantling, press down rubber sheath 22 and promote well core rod 21 again, well core rod 21 rotates, can be quick dismantle spacing conical head 20, can be quick dismantle H shaped steel 10 after spraying H shaped steel 10 accomplishes, thereby the practicality of this scheme has been improved.
It is to be understood that the present invention has been described with reference to certain embodiments, and that various changes or equivalents may be substituted for elements thereof by those skilled in the art without departing from the spirit and scope of the invention. In addition, many modifications may be made to adapt a particular situation or material to the teachings of the invention without departing from the essential scope thereof. Therefore, the present invention is not limited to the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of the present application are intended to be covered by the present invention.

Claims (8)

1. The utility model provides a be applicable to H shaped steel production line hanger, includes H shaped steel (10) and hanger subassembly, its characterized in that: the hanger assembly comprises an upper hanging unit and a plurality of groups of lower hanging units, the upper hanging unit comprises upper hanging plates (12) which are positioned on two sides above H-shaped steel (10), the upper hanging plates (12) are rectangular, through holes (14) are formed in the center positions of the upper side wall surfaces of the two upper hanging plates (12), hanger hooks (15) are inserted into the through holes (14), the hanger hooks (15) are S-shaped, the middle parts of the hanger hooks (15) are vertical, first hanging holes (13) which are distributed at equal intervals are formed in the lower side wall surfaces of the two upper hanging plates (12), two hanging holes (11) are formed in the two side wall surfaces of the top of the H-shaped steel (10), two hanging rods (17) are arranged between the two hanging holes (11) on each side and the corresponding upper hanging plate (12), the hanging rods (17) are inverted J-shaped, the upper hook-shaped ends of the hanging rods (17) are inserted into the first hanging holes (13), the lower side wall surfaces of the hanging rods (17) are vertical, the vertical ends of the hanging rods (17) penetrate through the upper hanging holes (11) on the H-shaped steel (10), the lower hanging rods (18) which are distributed at equal intervals are arranged on the lower side wall surfaces of the upper hanging holes (18), the lower hanging plates (18) which are arranged below the H-shaped steel, the lower hanging plates (18) which are arranged on the lower hanging plates (18), the two upper hanging plates (12) and the corresponding lower hanging plates (18) are respectively provided with a connecting hook (16), the connecting hooks (16) are S-shaped, the middle parts of the connecting hooks (16) are vertical, and two hook-shaped ends of the connecting hooks (16) are respectively inserted into the corresponding first hanging holes (13) and the second hanging holes (19) in a movable mode.
2. The hanger suitable for the H-shaped steel production line according to claim 1, is characterized in that: spacing conical head (20) are the round platform body, the center of spacing conical head (20) is well core rod (21) that vertical state activity runs through spacing conical head (20) body for department movable mounting, well core rod (21) are the cylinder, the top of well core rod (21) is the inclined plane, the middle part of well core rod (21) is rotated and is connected with annular limiting plate (23), spacing groove (24) have been seted up in the inner wall of spacing conical head (20), limiting plate (23) activity block is in limiting groove (24), the intracavity upside fixed mounting of limiting groove (24) has supporting spring (25), the bottom and the limiting plate (23) contact of supporting spring (25), the bottom of well core rod (21) is located spacing conical head (20) below, be fixed on the bottom outer wall of well core rod (21) and embolia rubber sheath (22).
3. The hanger suitable for the H-shaped steel production line according to claim 2, is characterized in that: the central rod (21) is connected with the limiting plate (23) through a bearing, the inner wall of the bearing is fixedly connected with the outer wall of the central rod (21), and the outer wall of the bearing is fixedly connected with the inner wall of the limiting plate (23).
4. The hanger suitable for the H-shaped steel production line according to claim 1, is characterized in that: all seted up guide way (28) on the vertical end bottom wall of jib (17), guide way (28) are circular, and the top of well core rod (21) is located the intracavity of guide way (28), and the inclined plane top movable mounting of well core rod (21) has first fixture block (26), and the top wall of first fixture block (26) also is the inclined plane, and the inclined plane top movable mounting of first fixture block (26) has second fixture block (27).
5. The hanger suitable for the H-shaped steel production line according to claim 4, is characterized in that: the bottom wall surface of the first clamping block (26) is in parallel fit with the top wall surface of the central rod (21), the top inclined surface of the first clamping block (26) is in up-down parallel with the top wall surface of the central rod (21), the outer wall of a cylinder at one side of the first clamping block (26) is in an inclined and outwards convex state, the top of the second clamping block (27) is a horizontal plane, the bottom of the second clamping block (27) is an inclined surface, the bottom wall surface of the second fixture block (27) is in a state of being parallel to and attached to the inclined top wall surface of the first fixture block (26), the outer wall of a cylinder on one side of the second fixture block (27) is in a state of being inclined and protruding outwards, the outer wall of the inclined and protruding on one side of the second fixture block (27) is in a state of being symmetrical to the outer wall of the inclined and protruding on one side of the first fixture block (26), and the directions of the outer wall and the inclined and protruding outer wall are opposite.
6. The hanger suitable for the H-shaped steel production line according to claim 5, is characterized in that: a second clamping groove (30) is formed in one side wall face in the cavity of the guide groove (28), the second clamping groove (30) is arc-shaped, a side inclined convex outer wall of the second clamping block (27) is clamped in the second clamping groove (30), a first clamping groove (29) is formed in the other side wall face in the cavity of the guide groove (28), the first clamping groove (29) is also arc-shaped, and a side inclined convex outer wall of the first clamping block (26) is clamped in the first clamping groove (29).
7. The hanger suitable for the H-shaped steel production line according to claim 6, is characterized in that: and elastic guide mechanisms are arranged among the second clamping block (27), the first clamping block (26) and the central rod (21), each elastic guide mechanism comprises a guide sleeve (31) fixedly mounted on the bottom wall surface of the second clamping block (27) and the bottom wall surface of the first clamping block (26), and the guide sleeves (31) and the bottom inclined surfaces of the first clamping block (26) and the second clamping block (27) are vertical to each other.
8. The hanger suitable for the H-shaped steel production line according to claim 7, is characterized in that: elastic grooves (33) are formed in the top inclined surface of the first clamping block (26) and the top inclined surface of the central rod (21), guide rods (32) are fixedly mounted in the elastic grooves (33), the guide sleeves (31) are movably sleeved on the corresponding guide rods (32), extrusion springs (34) are sleeved on the guide rods (32), and the extrusion springs (34) are located on one side wall surface, away from the first clamping groove (29) and the second clamping groove (30), of the corresponding guide rods (32).
CN202223030021.7U 2022-11-15 2022-11-15 Be applicable to H shaped steel production line hanger Active CN218742674U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223030021.7U CN218742674U (en) 2022-11-15 2022-11-15 Be applicable to H shaped steel production line hanger

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223030021.7U CN218742674U (en) 2022-11-15 2022-11-15 Be applicable to H shaped steel production line hanger

Publications (1)

Publication Number Publication Date
CN218742674U true CN218742674U (en) 2023-03-28

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CN202223030021.7U Active CN218742674U (en) 2022-11-15 2022-11-15 Be applicable to H shaped steel production line hanger

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CN (1) CN218742674U (en)

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