CN219769741U - Environment-friendly equipment transportation mechanism - Google Patents

Environment-friendly equipment transportation mechanism Download PDF

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Publication number
CN219769741U
CN219769741U CN202321111990.7U CN202321111990U CN219769741U CN 219769741 U CN219769741 U CN 219769741U CN 202321111990 U CN202321111990 U CN 202321111990U CN 219769741 U CN219769741 U CN 219769741U
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CN
China
Prior art keywords
penetrating
plate body
side edge
extrusion
backup pad
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Application number
CN202321111990.7U
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Chinese (zh)
Inventor
梁子祥
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Jilin Anjie Environmental Protection Engineering Co ltd
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Jilin Anjie Environmental Protection Engineering Co ltd
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Priority to CN202321111990.7U priority Critical patent/CN219769741U/en
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Publication of CN219769741U publication Critical patent/CN219769741U/en
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Abstract

The utility model discloses an environment-friendly equipment transportation mechanism, which relates to the field of environment-friendly equipment and comprises a support plate body, wherein fixed side blocks are symmetrically welded on two side edges of the support plate body, a through channel is horizontally arranged on the side edge of the support plate body, rotating discs are arranged on the side edge and the bottom surface of the support plate body, a side through channel is horizontally arranged on the side edge of the support plate body, a horizontal connecting rod is horizontally inserted into the inner side edge of the side through channel, a through hole is arranged on the side edge of the support plate body, an extrusion plate is arranged on the inner side edge of the through hole, a rubber pad layer is fixedly adhered on the inner side edge of the through hole, transmission screw holes are arranged on the top surface and the side edge of the support plate body, a rectangular groove is arranged on the bottom surface of the side through channel, and the inner side edge of the rectangular groove is inserted with an extrusion bottom block.

Description

Environment-friendly equipment transportation mechanism
Technical Field
The utility model relates to the technical field of environmental protection equipment, in particular to an environmental protection equipment transportation mechanism.
Background
Environmental protection equipment refers to mechanical products, structures, and systems manufactured and built by production units or building installation units for controlling environmental pollution and improving environmental quality. Environmental protection equipment is also considered to mean mechanical processing products for treating environmental pollution, such as dust collectors, welding fume purifiers, single water treatment equipment, noise controllers, and the like. This knowledge is not comprehensive. Environmental protection equipment also includes power equipment for conveying fluid substances containing pollutants, such as water pumps, fans, conveyors and the like; and meanwhile, the device also comprises monitoring control instrument instruments, such as a detection instrument, a pressure gauge, a flow monitoring device and the like, for ensuring the normal operation of the pollution control facility.
When using current environmental protection equipment, because environmental protection equipment most all need use cylindric jar body structural design for all can fix it with the fixed operation that needs the multichannel when transporting, make the operation get up comparatively loaded down with trivial details, make simultaneously have rolling condition at cylindric structure, make its rock back and forth when transporting can cause wearing and tearing condition, be unfavorable for current environmental protection equipment to transport and use.
Disclosure of Invention
The utility model aims to provide an environment-friendly equipment transportation mechanism, which solves the problems that most of the environment-friendly equipment needs to be designed into a cylindrical tank body structure when the existing environment-friendly equipment is used, so that the existing environment-friendly equipment can be fixed only by a plurality of fixing operations when in transportation, the operation is complicated, and meanwhile, the rolling condition is caused by the cylindrical structure, so that the rolling condition can be caused when the existing environment-friendly equipment is swayed back and forth during transportation, and the transportation and the use of the existing environment-friendly equipment are not facilitated.
In order to achieve the above purpose, the present utility model provides the following technical solutions:
the utility model provides an environmental protection equipment transport mechanism, includes the backup pad body, the both sides limit symmetry welding of backup pad body has fixed side piece, the side level of backup pad body has been seted up and has been run through the channel, the side of backup pad body and bottom surface all are provided with the rotation disc, the side of backup pad body has been seted up the side and has been run through the groove, the side has been run through the inboard side level grafting of groove and has been had the horizontal connecting rod, the through hole has been seted up to the side of backup pad body, the inboard limit that runs through the through hole is provided with the stripper plate, the fixed rubber mat that bonds of inboard limit of through hole, the transmission screw has been seted up to the top surface and the side of backup pad body, the rectangular channel has been seted up to the bottom surface of side through the groove, the bottom surface grafting of backup pad body has the extrusion screw, the inboard limit of transmission screw peg graft has the transmission screw, the side draw-in hole has been seted up to the side of stripper plate, the one end welding of transmission screw has the end fixture block, the stripper plate is fixed with the isolation rubber slab on one side of keeping away from the side draw-in hole, the one end of horizontal end is perpendicular upwards to extend the top of end, the horizontal carrier bar has the horizontal carrier bar to extend the bottom surface of level, the horizontal carrier bar is set up.
As a preferred embodiment of the present utility model: the number of the fixed side blocks is four, the four fixed side blocks are horizontally and fixedly arranged at the bottom corner positions of two side edges of the supporting plate body, the top surface of the fixed side block is provided with a through hole structure, and the through channel is horizontally and penetratingly arranged at the side edge of the supporting plate body close to the bottom surface.
As a preferred embodiment of the present utility model: the side central point of the rotating disc is fixed and sleeved at one end of the transmission screw, the number of the side penetrating grooves is two, the two side penetrating grooves are arranged in parallel, and the two side penetrating grooves are symmetrically arranged at the side edge of the supporting plate body close to the bottom surface in a horizontal penetrating mode.
As a preferred embodiment of the present utility model: the horizontal connecting rod is the inboard limit of penetrating type one-to-one grafting setting at the side through groove, and the through-hole is the side central point position of penetrating type seting up at the backup pad body, and the number of stripper plate is two, and two stripper plates all set up at the inboard top surface and the side position of penetrating the through-hole.
As a preferred embodiment of the present utility model: the transmission screw is all to be the top surface and the bottom surface central point that run through and offer at the backup pad body put, and the inside of transmission screw keeps the joint setting with the inside that runs through the through-hole, and the equal one-to-one grafting in top of extrusion bottom piece sets up and keeps the tooth to connect the setting at the medial edge of spacing tooth's socket, and the screw cup joints the setting in the top of extrusion screw and keeps threaded connection setting, and the equal one-to-one extension grafting in top of extrusion screw sets up the medial edge in rectangular channel.
As a preferred embodiment of the present utility model: the penetrating end extension butt joint of transmission screw rod sets up the side open end position at the side card hole, and the outer arc central point that is at the stripper plate is seted up to the side card hole, and end block joint sets up the medial border at the side card hole, extends end pole parallel arrangement each other and sets up, and the end holds in the palm the gluey piece and adopts hard rubber material preparation setting, and fixed the setting in the horizontal pole central point that extends end pole side top.
Compared with the prior art, the utility model has the beneficial effects that:
according to the utility model, the supporting plate body is sleeved at the two end positions of the environment-friendly equipment through the through holes on the side edges, the rotating discs on the top surface and the side edges are rotated to drive the transmission screw to rotate, the end clamping blocks at one end of the supporting plate body are propped against the extrusion plates to move towards the center position, the two extrusion plates are used for extruding and fixing the environment-friendly equipment in the through holes, meanwhile, the internal extrusion bottom blocks propped against the rectangular grooves are enabled to move downwards after the extrusion screw is rotated, the horizontal connecting rod is pushed before the internal extrusion bottom blocks are enabled to horizontally move in the side through grooves, the extending end rod is stretched to a designated height, one end of the end supporting rubber block on the side edge is propped against the end position of the equipment, the extrusion bottom blocks are clamped into the limiting tooth grooves in an upward movement mode, then the supporting plate body is vertically placed at the top surface position of the transport vehicle, the fixed side blocks are fixedly connected to the inside through bolts, the binding band penetrates through the through grooves, the binding band to further fix the inside the rectangular groove, the frame body structure is adopted to enable the environment-friendly equipment to be fixed, and the environment-friendly and reliable and firm and more stable and stable transportation structure is enabled to be carried out when the fixing structure is adopted.
Drawings
Other features, objects and advantages of the present utility model will become more apparent upon reading of the detailed description of non-limiting embodiments, given with reference to the accompanying drawings in which:
FIG. 1 is a schematic perspective view of an environmental protection equipment transportation mechanism;
FIG. 2 is a schematic diagram of a side view cross-sectional connection detail of a support plate body of an environmental protection equipment transport mechanism;
FIG. 3 is a schematic diagram of a side view cross-sectional connection detail of an extrusion plate of an environmental protection equipment transport mechanism;
fig. 4 is a schematic structural view of a horizontal link elevation cross-section connection detail of an environmental protection equipment transport mechanism.
In the figure: 1. a support plate body; 2. fixing the side blocks; 3. penetrating the channel; 4. rotating the disc; 5. a side through groove; 6. a horizontal link; 7. a through hole; 8. an extrusion plate; 9. a cushion rubber layer; 10. a transmission screw hole; 11. rectangular grooves; 12. extruding the bottom block; 13. extruding a screw; 14. a transmission screw; 15. a side clamping hole; 16. a clamping block is arranged at the end; 17. an isolation rubber plate; 18. extending the end rod; 19. an end support glue block; 20. limiting tooth grooves.
Detailed Description
Referring to fig. 1, in the embodiment of the utility model, an environmental protection equipment transportation mechanism comprises a supporting plate body 1, two side edges of the supporting plate body 1 are symmetrically welded with fixed side blocks 2, two side edges of the supporting plate body 1 are horizontally provided with through grooves 3, the number of the fixed side blocks 2 is four, the four fixed side blocks 2 are horizontally and fixedly arranged at two side edge and bottom corner positions of the supporting plate body 1, the top surface of the fixed side blocks 2 is provided with a through hole structure, the through grooves 3 are horizontally and penetratingly arranged at the side edges of the supporting plate body 1 close to the bottom surface, the side edges and the bottom surface of the supporting plate body 1 are respectively provided with a rotating disc 4, the side edges of the supporting plate body 1 are horizontally provided with side through grooves 5, the side edge center positions of the rotating disc 4 are fixedly sleeved at one end position of a transmission screw 14, the number of the two side through grooves 5 is two, the two side through grooves 5 are mutually arranged in parallel, the two side through grooves 5 are horizontally and symmetrically arranged at the side edges of the supporting plate body 1 close to the bottom surface position, the inner side edges of the side through grooves 5 are horizontally inserted with horizontal connecting rods 6, the side edges of the supporting plate 1 are horizontally provided with through holes 7, the inner side edges 7 are horizontally arranged at the side edges of the supporting plate 1, the through holes 7 are horizontally arranged at the positions corresponding to the two side edges 8 are respectively arranged at the through holes 8, which are arranged at the two through holes 8, and are arranged at the positions corresponding through side edges 8, which are respectively, which are arranged at the through holes 8, and are arranged respectively, and are horizontally;
referring to fig. 2-4, in the embodiment of the utility model, a rubber cushion layer 9 is fixedly adhered to the inner side of a through hole 7, a transmission screw hole 10 is formed on the top surface and the side edge of a supporting plate body 1, a rectangular groove 11 is formed on the bottom surface of a side through groove 5, a extrusion bottom block 12 is inserted on the inner side edge of the rectangular groove 11, an extrusion screw 13 is inserted on the bottom surface of the supporting plate body 1, the transmission screw holes 10 are all arranged at the center positions of the top surface and the bottom surface of the supporting plate body 1 in a penetrating manner, the inside of the transmission screw hole 10 and the inside of the through hole 7 are in a communicating manner, the top ends of the extrusion bottom block 12 are uniformly and correspondingly inserted on the inner side edge of a limiting tooth groove 20, the screw holes at the bottom end are sleeved on the top ends of the extrusion screw 13 in a threaded manner, the top ends of the extrusion screw 13 are uniformly and correspondingly extended on the inner side edge of the rectangular groove 11, a transmission screw 14 is inserted on the inner side edge of the transmission screw hole 10, a side edge of the extrusion plate 8 is provided with a side clamping hole 15, one end clamping block 16 is welded on one end of the extrusion screw plate 8, a side edge far from the side clamping hole 15 is fixedly adhered to the center position of the supporting plate 17, the inner side edge of the extrusion plate 8 is horizontally arranged at the side 18, the end 18 extends to the top end 18 is arranged at the side of the vertical end of the supporting rod 18, the vertical end 18 is arranged at the end 18, the end 18 is arranged at the end of the side of the vertical end 18, and the end 18 is arranged in parallel to the top end of the side of the vertical end 18, and is arranged, and the end 18 is arranged, the bottom surface of the horizontal connecting rod 6 is horizontally provided with a limiting tooth slot 20.
The working principle of the utility model is as follows:
the supporting plate body 1 is sleeved at two end positions of the environment-friendly equipment through the through holes 7 on the side, the rotating discs 4 on the top surface and the side are rotated to drive the transmission screw 14 to rotate, the end clamping blocks 16 at one end of the supporting plate body are propped against the extrusion plates 8 to move towards the center position, the two extrusion plates 8 extrude and fix the environment-friendly equipment in the through holes 7, meanwhile, the internal extrusion bottom blocks 12 propped against the rectangular grooves 11 are enabled to move downwards after rotating the extrusion screw 13, the horizontal connecting rods 6 are pushed to enable the internal horizontal movement of the side through grooves 5 before the internal extrusion bottom blocks, meanwhile, the extending end rods 18 are stretched to a specified height, one end of the end supporting rubber blocks 19 on the side are enabled to be propped against one end position of the equipment, the end clamping blocks 12 move upwards to be clamped into the limiting tooth grooves 20 and then are stabilized, then the supporting plate body 1 is vertically placed at the top surface position of the transport vehicle, the fixed side blocks 2 are fixedly connected and arranged at the top surface position of the transport vehicle through bolts, and further fixing operation can be carried out after the binding bands penetrate through the binding bands.
The foregoing description is only a preferred embodiment of the present utility model, but the scope of the present utility model is not limited thereto, and any person skilled in the art, who is within the scope of the present utility model, should make equivalent substitutions or modifications according to the technical solution of the present utility model and the inventive concept thereof, and should be covered by the scope of the present utility model.

Claims (6)

1. The utility model provides an environmental protection equipment transport mechanism, includes backup pad body (1), its characterized in that, fixed side piece (2) have been welded to the both sides limit symmetry of backup pad body (1), run through channel (3) have been seted up to the side level of backup pad body (1), the side of backup pad body (1) and bottom surface all are provided with rotation disc (4), side run through groove (5) have been seted up to the side level of backup pad body (1), the inboard side horizontal grafting of side run through groove (5) has horizontal connecting rod (6), run through hole (7) have been seted up to the side of backup pad body (1), the inboard limit of run through hole (7) is provided with stripper plate (8), the inboard limit fixed bonding of run through hole (7) has cushion layer (9), top surface and side of backup pad body (1) have been seted up transmission screw (10), rectangular channel (11) have been seted up to the bottom surface of side run through groove (5), the inboard limit grafting of rectangular channel (11) has extrusion bottom piece (12), the bottom surface of backup pad body (1) has extrusion screw (13), the inboard limit (14) have one end of screw rod (16) to be connected in advance, screw rod (14) has one end (16), the extrusion plate (8) is fixedly adhered with an isolation rubber plate (17) at one side far away from the side clamping hole (15), one end of the horizontal connecting rod (6) is vertically welded with an extending end rod (18) upwards, the top end of the extending end rod (18) is horizontally provided with an end supporting rubber block (19), and the bottom surface of the horizontal connecting rod (6) is horizontally provided with a limiting tooth groove (20).
2. The transportation mechanism of environmental protection equipment according to claim 1, wherein the number of the fixed side blocks (2) is four, the four fixed side blocks (2) are horizontally and fixedly arranged at the bottom corner positions of two sides of the supporting plate body (1), the top surface of the fixed side block (2) is provided with a through hole structure, and the through channel (3) is horizontally and penetratingly arranged at the side edge of the supporting plate body (1) close to the bottom surface.
3. The transportation mechanism of environmental protection equipment according to claim 1, wherein the center position of the side edge of the rotating disc (4) is fixedly sleeved at one end position of the transmission screw (14), the number of the side penetrating grooves (5) is two, the two side penetrating grooves (5) are arranged in parallel, and the two side penetrating grooves (5) are symmetrically arranged at the side edge of the supporting plate body (1) close to the bottom surface in a horizontal penetrating mode.
4. The transportation mechanism of environmental protection equipment according to claim 1, wherein the horizontal connecting rods (6) are inserted and arranged on the inner side edges of the side penetrating grooves (5) in a penetrating mode in a one-to-one correspondence mode, the penetrating through holes (7) are formed in the center positions of the side edges of the supporting plate body (1) in a penetrating mode, the number of the extruding plates (8) is two, and the two extruding plates (8) are arranged on the inner top surfaces and the side edge positions of the penetrating through holes (7).
5. The transportation mechanism of environmental protection equipment according to claim 1, wherein the transmission screw holes (10) are all arranged at the center positions of the top surface and the bottom surface of the supporting plate body (1) in a penetrating mode, the inside of the transmission screw holes (10) is in through connection with the inside of the penetrating through holes (7), the top ends of the extrusion bottom blocks (12) are in one-to-one connection with each other and are arranged on the inner side edges of the limiting tooth grooves (20) in a toothed connection mode, the screw holes at the bottom ends are in one-to-one connection with each other and are arranged on the top ends of the extrusion screw rods (13) in a threaded connection mode, and the top ends of the extrusion screw rods (13) are in one-to-one extension connection with each other and are arranged on the inner side edges of the rectangular grooves (11).
6. The transportation mechanism of environmental protection equipment according to claim 1, wherein the penetrating end of the transmission screw (14) extends and is in butt joint with the side opening end position of the side clamping hole (15), the side clamping hole (15) is arranged at the outer arc-shaped central position of the extrusion plate (8), the end clamping block (16) is clamped and arranged at the inner side edge of the side clamping hole (15), the extending end rods (18) are arranged in parallel, the end supporting rubber block (19) is made of hard rubber materials, and the end supporting rubber block is fixedly arranged at the central position of a cross rod at the top end of the side edge of the extending end rod (18).
CN202321111990.7U 2023-05-10 2023-05-10 Environment-friendly equipment transportation mechanism Active CN219769741U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321111990.7U CN219769741U (en) 2023-05-10 2023-05-10 Environment-friendly equipment transportation mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321111990.7U CN219769741U (en) 2023-05-10 2023-05-10 Environment-friendly equipment transportation mechanism

Publications (1)

Publication Number Publication Date
CN219769741U true CN219769741U (en) 2023-09-29

Family

ID=88134940

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321111990.7U Active CN219769741U (en) 2023-05-10 2023-05-10 Environment-friendly equipment transportation mechanism

Country Status (1)

Country Link
CN (1) CN219769741U (en)

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