CN216232304U - Barreled raw material transfer trolley - Google Patents

Barreled raw material transfer trolley Download PDF

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CN216232304U
CN216232304U CN202122826534.8U CN202122826534U CN216232304U CN 216232304 U CN216232304 U CN 216232304U CN 202122826534 U CN202122826534 U CN 202122826534U CN 216232304 U CN216232304 U CN 216232304U
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rod
raw material
pull rod
rods
pull
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CN202122826534.8U
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张晓峰
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Xi'an Nanfeng Daily Chemical Co ltd
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Xi'an Nanfeng Daily Chemical Co ltd
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Abstract

The application relates to a barreled raw material transfer trolley, which comprises two parallel pull rods and a pair of transport wheels, wherein the two transport wheels are respectively and rotatably connected to one sides of the two pull rods, which are far away from each other, the barreled raw material transfer trolley also comprises a positioning assembly, at least two support rods and a prying plate arranged at one end of the pull rods, which is far away from the force application end, wherein two ends of each support rod are respectively arranged on the two pull rods, the plurality of support rods are mutually parallel and distributed along the length direction of the pull rods, the support rods are arranged according to the packaging appearance of a raw material barrel, and the support rods are arranged at the other side of the prying plate, which takes the pull rods as a parting line; the prying plate can extend into a position between the raw material barrel and the material placing surface; the positioning component is arranged on the pull rod and can fix the raw material barrel between the two pull rods and the supporting rod. This application is convenient for carry various large-scale barrel-shaped raw materialss.

Description

Barreled raw material transfer trolley
Technical Field
The application relates to the field of raw material transfer devices, in particular to a barreled raw material transfer trolley.
Background
In the production and production of daily chemicals, various raw materials of different forms are required and the raw materials are added in different processes, so that the raw materials are generally required to be stocked to corresponding positions. Among various raw materials, there are generally cylindrical or prismatic raw materials, which are bulky, heavy and difficult to handle.
At present in the workshop production process, transporting of various barreled materials mainly depends on manual handling or flatbed to transport, and under this condition, when former storage bucket is cylindrical, because former storage bucket is heavier, generally roll former storage bucket and move to the workplace under the condition that does not have other appurtenance, when former storage bucket is square prism, generally carry former storage bucket to on the former storage bucket to transport to the workplace.
In view of the above related technologies, the inventor believes that the raw material barrel is easily damaged in the rolling process, so that liquid materials flow out, and waste and loss of manpower and material resources are caused; when the raw material barrel is carried by using the flat car, no enclosure exists when bumping occurs, and the safety and the stability are poor.
SUMMERY OF THE UTILITY MODEL
In order to facilitate carrying various large-scale barrel-shaped raw materials, the application provides a barreled raw material transfer trolley.
The application provides a barreled raw material transfer car (buggy) adopts following technical scheme:
a barreled raw material transfer trolley comprises two parallel pull rods and a pair of transport wheels, wherein the two transport wheels are respectively and rotatably connected to one side, away from each other, of each pull rod; the prying plate can extend into a position between the raw material barrel and the material placing surface; the positioning assembly is arranged on the pull rod and can fix the raw material barrel between the pull rod and the support rod.
By adopting the technical scheme, when the raw material barrel is transported, the adjusting pull rod rotates along the transport wheel, one end of each of the two prying plates is in contact with the material placing surface of the raw material barrel, the pull rod is pushed to drive the transport wheel to rotate and move towards one side of the raw material barrel until the two prying plates extend into the bottom side of the raw material barrel, the side wall of the raw material barrel is in contact with the support column, then the adjusting and positioning assembly is used for fixing the raw material barrel between the two pull rods and the support rod, finally, force is applied to the pull rod and the raw material barrel is driven to rotate towards the horizontal direction until a worker pulls the transfer trolley to drive the raw material barrel to transfer; the bracing piece that sets up, sled board and locating component, can realize being connected of transfer car (buggy) and former storage bucket through locating component, provide the sled point through the sled board, use ground as the fulcrum, use the transport that less power realized former storage bucket, labour saving and time saving, hug closely former storage bucket and support former storage bucket through the bracing piece, make former storage bucket more reliable and more stable, improve the security, stability and the reliability of former storage bucket in the transportation, be convenient for more carry various large-scale barrel-shaped raw materialss.
Optionally, locating component includes locating lever, slide bar and buckle, the locating lever sets up two with the bracing piece isomorphism on the pull rod, and set up pinch plate one side is kept away from to the bracing piece, the slide bar is parallel with the pull rod, and sets up the locating lever is adjacent with the locating lever between the bracing piece, the buckle sets up to "L" type to sliding connection is in on the slide bar, just the buckle can block and establish the bung avris at raw material barrel.
By adopting the technical scheme, when the raw material barrel is positioned, the movable buckle moves along the slide rod to the direction far away from the pry plate, the buckle is released after the side wall of the raw material barrel is contacted with the support column, the buckle slides along the slide rod under the action of gravity until the end part of the buckle is contacted with the top wall of the raw material barrel, the raw material barrel keeps static in the process that the raw material barrel rotates along with the rotating vehicle until the buckled end of the buckle is clamped in the edge groove of the barrel cover of the raw material barrel, and then the raw material barrel is driven to rotate along with the rotating vehicle, so that the positioning of the raw material barrel is realized; the locating lever, the slide bar and the buckle that set up, easy operation is convenient, and the location is efficient, and is effectual, and then makes the transportation of former storage bucket reliable and stable more.
Optionally, the two ends of the support rod close to the pull rod are provided with stop rods.
Through adopting above-mentioned technical scheme, the pin that sets up can cooperate with the bracing piece, strengthens the enclosure scope to former storage bucket for former storage bucket can bear bigger jolting in the transportation, and stability is higher, and the security is stronger.
Optionally, the support rod is arc-shaped, and the arc center of the support rod faces the two pull rods.
Through adopting above-mentioned technical scheme, the bracing piece is convex, and when former storage bucket and columniform, the appearance of laminating former storage bucket, and make the sunken capacity of transfer car (buggy) bigger to utilize curved radian to carry on spacingly to the lateral wall of former storage bucket, the transportation of the cylindrical former storage bucket of being convenient for.
Optionally, the supporting rod is divided into two connected isosceles sections along the middle point, and the two isosceles sections and the plane where the two pull rods are located form an isosceles triangle.
Through adopting above-mentioned technical scheme, the isosceles section that sets up can adapt to the support and the transportation of different cylindrical tubings on the one hand, and on the other hand passes through the cooperation of contained angle, supports joint and spacing to the tubings of prismatic type, can support and spacing to the former storage bucket of different appearances, and the suitability is higher, and is more reliable.
Optionally, an elastic cushion layer is arranged on the outer wall of the support rod.
Through adopting above-mentioned technical scheme, the elastic cushion who sets up can reduce the rigidity collision between support column and the former storage bucket, in the transportation of former storage bucket, cushions the vibration of former storage bucket, reduces the damage to former storage bucket outer wall, reduces the damaged possibility of raw materials, realizes protecting former storage bucket.
Optionally, the slide bar sets up to the telescopic link, and with slide bar connection the bracing piece with pull rod sliding connection, the bracing piece both ends set up to the mounting, just the mounting can will correspond the bracing piece is fixed on the slide bar.
Through adopting above-mentioned technical scheme, foremost bracing piece is adjustable, and then can make it can adapt to transporting of former storage bucket of co-altitude according to the altitude control buckle of former storage bucket and the position that corresponds the bracing piece, and suitability and practicality are higher.
Optionally, the positioning assembly further comprises a sliding sleeve, an adjusting screw and a guide rod, the sliding sleeve is sleeved on the sliding rod and is in sliding connection with the sliding rod, one end of the adjusting screw and one end of the guide rod are rotatably connected to the buckle, the other end of the adjusting screw and the other end of the guide rod vertically penetrate through the sliding sleeve to be far away from the hollow part, and the adjusting screw is in threaded connection with the sliding sleeve.
Through adopting above-mentioned technical scheme, sliding sleeve, adjusting screw and the guide bar that sets up can rotate adjusting screw according to the shape and the size of different former storage bucket bung to make the buckle be close to or keep away from the sliding sleeve under the effect of guide bar, enlarge the working range of buckle, improve its suitability.
Optionally, a balance column is vertically arranged on the pull rod, the balance column and the support rod are arranged on the same side of the pull rod, and the length of the balance column is the same as the radius of the transport wheel.
Through adopting above-mentioned technical scheme, the upset of transfer car can be controlled to the balancing post that sets up for the extreme position of former storage bucket is the level, avoids parking temporarily of transfer car in handling, avoids former storage bucket bung hole down, improves security and reliability.
In summary, the present application includes at least one of the following beneficial technical effects:
the supporting rod, the prying plate and the positioning assembly are arranged, so that the transfer trolley can be connected with the raw material barrel through the positioning assembly, a prying point is provided through the prying plate, the ground is used as a fulcrum, the raw material barrel is conveyed by using small force, time and labor are saved, the supporting rod is tightly attached to the raw material barrel and supports the raw material barrel, the raw material barrel is more stable and reliable, the safety, the stability and the reliability of the raw material barrel in the transportation process are improved, and various large barrel-shaped raw materials are more conveniently conveyed;
the positioning rod, the sliding rod and the buckle are arranged, the buckle is adapted to the barrel cover of the raw material barrel in a sliding mode, and the buckle is connected with the barrel cover in a clamping mode, so that the operation is simple and convenient, the positioning efficiency is high, the effect is good, and the transportation of the raw material barrel is more stable and reliable;
the isosceles section that sets up can adapt to the support and the transportation of different cylindrical tubings on the one hand, and on the other hand passes through the cooperation of contained angle, supports joint and spacing to the tubings of prismatic type, can support and spacing to the former storage bucket of different appearances, and the suitability is higher, and is more reliable.
Drawings
Fig. 1 is a schematic view of the overall structure of embodiment 1 of the present application.
Fig. 2 is a schematic structural diagram of a raw material barrel for transferring in example 1 of the present application.
Fig. 3 is another schematic structural diagram of the support rod in embodiment 1 of the present application.
Fig. 4 is a schematic view of the overall structure of embodiment 2 of the present application.
Fig. 5 is an enlarged view of a portion a in fig. 4.
Fig. 6 is a schematic view of the overall structure of embodiment 3 of the present application.
Description of reference numerals: 1. a pull rod; 11. a grip; 2. a transport wheel; 3. a balancing column; 4. a support bar; 41. an isosceles segment; 5. a pry plate; 6. a positioning assembly; 61. positioning a rod; 62. a slide bar; 63. a sliding sleeve; 64. adjusting a rod; 65. buckling; 651. an extension section; 652. a clamping section; 66. adjusting the screw rod; 67. a guide bar; 68. a sleeve; 69. tightly abutting against the bolt; 7. a stop lever.
Detailed Description
The present application is described in further detail below with reference to figures 1-6.
The embodiment of the application discloses barreled raw material transfer trolley.
Example 1:
referring to fig. 1 and 2, the barreled raw material transfer trolley comprises two parallel pull rods 1, a transport wheel 2, a balance column 3, a support rod 4, a prying plate 5 and a positioning assembly 6, wherein the two pull rods 1 are arranged in parallel and in parallel, and one ends of the two pull rods 1 are adhered with grips 11 for applying force; the two transport wheels 2 are respectively and rotatably connected to the sides, far away from each other, of the two pull rods 1, and the rotating shafts are horizontal; the prying plates 5 are welded at one ends of the pull rods 1 far away from the handle 11, the two support rods 4 are arranged and are welded on the two pull rods 1 perpendicular to the two ends of the pull rods 1, and the positioning assemblies 6 are arranged on the pull rods 1; the two balance columns 3 are respectively and vertically welded below the two pull rods 1. And each raw material of the transfer trolley adopts steel pipes, steel bars or other steel materials, so that the materials can be conveniently obtained and the steel materials can be recycled.
Referring to fig. 1, pinch plate 5 perpendicular to pull rod 1 welds at 1 tip of pull rod, and pinch plate 5 one end welding on pull rod 1, and the other end is along the horizontal direction towards pull rod 1 top, and pinch plate 5 is close to the lateral wall slope setting of 1 one side of pull rod and is that pinch plate 5 keeps away from the width of 1 one end of pull rod promptly and be less than the other end, and pinch plate 5 of being convenient for stretches into former storage bucket and puts between the charge level. Transport wheel 2 is close to sled board 5 one side setting, and two bracing pieces 4 set up in the region that pull rod 1 is close to sled board 5 one side, and two bracing pieces 4 set up in pull rod 1 below along the horizontal direction.
Referring to fig. 1, the balance post 3 is arranged between the handle 11 and the support column, the length of the balance post 3 is the same as the radius of the transport wheel 2, and when the support column is vertical and is in contact with the ground, the pull rod 1 is in a horizontal state.
Referring to fig. 2 and 3, the support rod 4 is arc-shaped, the arc center of the support rod 4 is arranged towards the direction of the two pull rods 1, and the outer wall of the support rod 4 is sleeved with and bonded with an elastic cushion layer.
The supporting rod 4 can also be divided into two connected isosceles sections 41 along the middle point, and the two isosceles sections 41 and the plane where the two pull rods 1 are located form an isosceles triangle. When carrying out former storage bucket and transporting, not only can adapt to the support and the transportation of the cylindrical barrel material of different diameters, also can carry out joint and spacing to the barrel material of prism type according to the contained angle between two isosceles sections 41 simultaneously, the suitability is higher.
Referring to fig. 1, the positioning assembly 6 includes a positioning rod 61, a sliding rod 62, a sliding sleeve 63, an adjusting rod 64 and a buckle 65, the positioning rod 61 and the supporting rod 4 are arranged in parallel and have the same structure, and two ends of the positioning rod 61 are respectively welded on the two pull rods 1 and are arranged between the supporting rod 4 and the handle 11. The slide bar 62 is parallel to the pull rod 1, and two ends of the slide bar 62 are respectively welded at the midpoint of the positioning rod 61 and the midpoint of the support rod 4 adjacent to the positioning rod 61. The sliding rod 62 is a square column, and the sliding sleeve 63 is sleeved on the sliding rod 62 and is coaxially and slidably connected with the sliding rod 62.
Referring to fig. 1, the buckle 65 is provided with an "L" shape, and includes an elongated section 651 and a clamping section 652 which are vertically arranged, wherein the elongated section 651 is parallel to the balance post 3 and is arranged above the pull rod 1; extension section 651 one end welding is on sliding sleeve 63, and the other end sets up with joint section 652 is integrative, and joint section 652 sets up towards sled 5 one side, and joint section 652 keeps away from extension section 651 one end and is less than the other end setting, and the joint section 652 card of being convenient for is established in the edge groove of the bung avris of former storage bucket. The adjusting rod 64 is parallel to the extending section 651 and welded on the side wall of the sliding sleeve 63, and the adjusting rod 64 is arranged below the pull rod 1, so that a worker can conveniently apply force to adjust the sliding sleeve 63 to slide.
The implementation principle of the barreled raw material transfer trolley in the embodiment of the application is as follows: when carrying raw materials barrel, to the handle 11 application of force, adjust pull rod 1 and rotate along haulage wheel 2 for two sled board 5 one end and raw materials barrel put the charge level contact, promote pull rod 1 and drive haulage wheel 2 and rotate, and move to raw materials barrel one side, stretch into raw materials barrel bottom side until two sled boards 5, and raw materials barrel lateral wall and support column contact.
Force is applied to the adjusting rod 64, the adjusting rod drives the sliding sleeve 63 and the buckle 65 to move in the direction away from the pry plate 5 along the sliding rod 62 until the side wall of the raw material barrel is contacted with the supporting column, then the force applied to the adjusting rod 64 is stopped, the buckle 65 slides along the sliding rod 62 under the action of gravity until the clamping section 652 is contacted with the top wall of the raw material barrel, the raw material barrel is kept static in the process that the raw material barrel rotates along with the rotating vehicle until the buckled end of the clamping section 652 is clamped in the edge groove of the barrel cover of the raw material barrel, and then the raw material barrel is driven to rotate along with the rotating vehicle, and the positioning of the raw material barrel is realized. Finally, force is applied to the handle 11 and the raw material barrel is driven to rotate towards the horizontal direction until a worker pulls the transfer trolley to drive the raw material barrel to transfer.
Example 2:
referring to fig. 4 and 5, the embodiment of the present application differs from embodiment 1 in that: the positioning assembly 6 further comprises an adjusting screw 66 and a guide rod 67, the adjusting screw 66 and the guide rod 67 are symmetrically arranged on two sides of the sliding rod 62, one end of the adjusting screw 66 and one end of the guide rod 67 are rotatably connected to the buckle 65 through a bearing, the other end of the adjusting screw 66 and the other end of the guide rod 67 vertically penetrate through the sliding sleeve 63 and are far away from the hollow part, and the adjusting screw 66 is in threaded connection with the sliding sleeve 63. The sliding rod 62 is arranged as a telescopic rod, two ends of the supporting rod 4 connected with the sliding rod 62 are arranged as fixing pieces, each fixing piece comprises a sleeve 68 and a fastening bolt 69, the side wall of each sleeve 68 is welded at two ends of the corresponding supporting column, and the sleeves 68 are sleeved on the two pull rods 1 and are connected in a sliding mode along the pull rods 1; the abutting bolt 69 penetrates through the sleeve 68 to abut against the pull rod 1 and is in threaded connection with the sleeve 68.
The implementation principle of embodiment 2 of the present application is as follows: the supporting column far away from one end of the prying plate 5 is controlled to slide along the pull rod 1 by rotating the abutting bolt 69, so that the material barrels with different heights are adapted; by rotating the adjusting screw 66, the buckle 65 is close to or far away from the sliding sleeve 63 under the action of the guide rod 67, the distance between the clamping section 652 and the sliding sleeve 63 is increased, the shape and the size of different raw material barrel covers are adapted, the action range of the buckle 65 is expanded, and the applicability of the transfer trolley is further improved.
Example 3:
referring to fig. 6, the embodiment of the present application differs from embodiment 1 in that: the support rods 4 and the pull rod 1 are located on the same plane, the stop rods 7 are welded at the two ends, close to the pull rod 1, of the support rods 4, and the stop rods 7 are perpendicular to the plane where the support rods 4 are located. The stop lever 7 can be a vertical rod, the bottom end of the vertical rod is welded on the support rod 4, and the other end faces the direction away from each other. The stop levers 7 can also be arc-shaped, and the circle centers of the two stop levers 7 are arranged on the side where the two stop levers 7 are close to each other.
The implementation principle of embodiment 3 of the application is as follows: the stop lever 7 is welded on the support rod 4 for limiting, so that the transfer trolley is more convenient to manufacture, the existing transfer trolley can be directly refitted, the re-purchase is not needed, and the cost is greatly saved.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (9)

1. The utility model provides a barreled raw materials transfer car (buggy), includes two parallel pull rods (1) and a pair of transport wheel (2), two transport wheel (2) rotate respectively connect in two one side that pull rod (1) kept away from each other, its characterized in that: the packaging device is characterized by further comprising a positioning assembly (6), at least two support rods (4) and a prying plate (5) arranged at one end, far away from the force application, of the pull rod (1), wherein two ends of each support rod (4) are respectively arranged on the two pull rods (1), the support rods (4) are parallel to each other and are distributed along the length direction of the pull rod (1), the support rods (4) are arranged according to the packaging appearance of a raw material barrel, and the support rods (4) are arranged on the other side, with the pull rod (1) as a dividing line, of the prying plate (5); the prying plate (5) can extend into a position between the raw material barrel and the material placing surface; locating component (6) set up on pull rod (1), and can fix former storage bucket two between pull rod (1) and bracing piece (4).
2. The barreled material transfer car (buggy) of claim 1, wherein: locating component (6) are including locating lever (61), slide bar (62) and buckle (65), locating lever (61) and bracing piece (4) are in two with the structure setting on pull rod (1), and set up pry board (5) one side is kept away from in bracing piece (4), slide bar (62) are parallel with pull rod (1), and set up locating lever (61) are adjacent with locating lever (61) between bracing piece (4), buckle (65) set up to "L" type, and sliding connection is in on slide bar (62), just buckle (65) can block the bung avris of establishing at raw materials bucket.
3. The barreled material transfer car (buggy) of claim 1, wherein: the two ends of the support rod (4) close to the pull rod (1) are provided with stop rods (7).
4. The barreled material transfer car (buggy) of claim 1, wherein: the support rod (4) is arc-shaped, and the arc center of the support rod (4) faces to the two pull rods (1).
5. The barreled material transfer car (buggy) of claim 1, wherein: the supporting rod (4) is divided into two connected isosceles sections (41) along the middle point, and the planes of the two isosceles sections (41) and the two pull rods (1) form an isosceles triangle.
6. The barreled material transfer car (buggy) of claim 1, wherein: the outer wall of the support rod (4) is provided with an elastic cushion layer.
7. The barreled material transfer car (buggy) of claim 2, wherein: the slide bar (62) sets up to the telescopic link, and with slide bar (62) are connected bracing piece (4) with pull rod (1) sliding connection, bracing piece (4) both ends set up to the mounting, just the mounting can be with corresponding bracing piece (4) are fixed on slide bar (62).
8. The barreled material transfer car (buggy) of claim 2, wherein: locating component (6) still includes sliding sleeve (63), adjusting screw (66) and guide bar (67), sliding sleeve (63) cover establish on slide bar (62) and with slide bar (62) sliding connection, adjusting screw (66) and guide bar (67) one end rotate to be connected on buckle (65), the other end passes sliding sleeve (63) perpendicularly and keeps away from hollow portion, just adjusting screw (66) and sliding sleeve (63) threaded connection.
9. The barreled material transfer car (buggy) of claim 1, wherein: the balance column (3) is vertically arranged on the pull rod (1), the balance column (3) and the support rod (4) are arranged on the same side of the pull rod (1), and the length of the balance column (3) is the same as the radius of the conveying wheel (2).
CN202122826534.8U 2021-11-17 2021-11-17 Barreled raw material transfer trolley Active CN216232304U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122826534.8U CN216232304U (en) 2021-11-17 2021-11-17 Barreled raw material transfer trolley

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122826534.8U CN216232304U (en) 2021-11-17 2021-11-17 Barreled raw material transfer trolley

Publications (1)

Publication Number Publication Date
CN216232304U true CN216232304U (en) 2022-04-08

Family

ID=80944043

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122826534.8U Active CN216232304U (en) 2021-11-17 2021-11-17 Barreled raw material transfer trolley

Country Status (1)

Country Link
CN (1) CN216232304U (en)

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