Conveyor capable of preventing deviation and falling
By designing a feeding mechanism and a rotating mechanism on the conveyor and using an electric telescopic rod to adjust the height of the transmission roller, the problems of material deviation and falling are solved, and the effects of stable transportation and convenient loading are achieved.
Patent Information
- Application Number
- CN202423085480.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-13
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-12-13
AI Technical Summary
When conveying materials, the materials are easily deflected and dropped, and the heights of the containers to be transported are different, which makes it difficult to set up the end components of the conveyor, affecting material loading.
A conveyor with anti-deviating and falling function is designed, which includes a feeding mechanism, a connecting mechanism and a rotating mechanism. The feeding hopper and feeding pipe are used to prevent material splashing. The electric telescopic rod is used to drive the conveying roller to rise above the container to be conveyed. The roller is adjusted according to the height of the container to facilitate loading and keep the conveyor stable.
It effectively prevents material deviation and falling, improves the practicality of the conveyor, ensures that the conveyor remains stable when the conveyor roller is raised, does not affect normal operation, and is convenient for height adjustment and loading.
Smart Images

Figure CN223457649U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a conveyor technical field, concretely relates to a kind of anti-deviation falling conveyors. BACKGROUND
[0002] When conveying material, material is easy to deviate and fall during feeding, and the height of the container to be transported is not the same, the conveying end of the conveyor needs to be adjusted in height for conveying, and the end of the conveyor is connected with rack and other components, which is difficult to be erected on the container to be transported. Therefore, an anti-deviation falling conveyor is proposed. SUMMARY
[0003] The utility model discloses to the defects and deficiencies of prior art, provide a kind of anti-deviation falling conveyor, avoid material splashing, avoid material deviation and fall when feeding, improve practicality;The transmission roller on the right side can be lifted to the upper side of the container to be transported, and the height of the container to be transported is adjusted, so that feeding is facilitated, and the components of the conveyor end do not affect feeding;Ensure that the conveyor remains stable when the transmission roller is lifted, and the normal operation of the conveyor is not affected, facilitating conveying.
[0004] To achieve the above object, the utility model adopts the following technical scheme: it contains base, universal wheel, transmission belt and transmission roller;The bottom of base is provided with a plurality of universal wheels;Base is provided with transmission belt, and the left and right transmission rollers are drivingly connected in transmission belt, the left transmission roller is fixed on base by mounting plate, and the left transmission roller is driven by motor;
[0005] It also contains:
[0006] Feeding mechanism, the feeding mechanism is located on the left side of base;
[0007] Connecting mechanism, the connecting mechanism is located in the transmission belt;
[0008] Rotating mechanism, the rotating mechanism is arranged on the base, and the rotating mechanism is connected with the transmission belt.
[0009] Preferably, the feeding mechanism contains:
[0010] Feed hopper, the feed hopper is arranged above the left side of the transmission belt;
[0011] A first support rod, the number of the first support rod is two, and is fixed on the bottom of the feed hopper front and back respectively, and the bottom of the first support rod is fixed on the base;
[0012] Feed pipe, the feed pipe is arc structure, and the feed pipe is connected with the bottom of the feed hopper;
[0013] The second supporting rod is L-shaped, one end of the second supporting rod is fixed on the feeding pipe, and the bottom of the second supporting rod is fixed on the base;
[0014] The blocking belt is provided with two blocking belts, and the two blocking belts are respectively fixed on the front and back of the upper surface belt of the conveying belt.
[0015] The blocking plate is provided with a plurality of blocking plates, and the plurality of blocking plates are respectively fixed on the conveying belt in an equidistant distribution.
[0016] Preferably, the connecting mechanism comprises:
[0017] The first connecting rod is arranged between the two conveying rollers.
[0018] The first sliding block is provided with two first sliding blocks, and the two first sliding blocks are respectively fixed on the left and right ends of the first connecting rod; the middle of the conveying roller is provided with a sliding groove, and the sliding groove is T-shaped; and the first sliding block is slidingly clamped in the sliding groove.
[0019] Preferably, the outer end of the first sliding block is rollingly embedded with a ball bearing, and the ball bearing is abutted in the sliding groove.
[0020] Preferably, the rotating mechanism comprises:
[0021] The slide rail is provided with two slide rails, and the two slide rails are respectively fixed on the front and back sidewalls of the first connecting rod.
[0022] The second sliding block is provided with two second sliding blocks, and the two second sliding blocks are respectively slidingly clamped on the slide rails.
[0023] The connecting roller is provided with two connecting rollers, and the two connecting rollers are respectively rotatably connected to the second sliding blocks through shafts and bearings.
[0024] The first connecting plate is provided with two first connecting plates, and the two first connecting plates are respectively rotatably connected to the outer ends of the connecting rollers through shafts and bearings.
[0025] The second connecting rod is provided with two second connecting rods, and the two second connecting rods are respectively rotatably connected to the first connecting plates through shafts and bearings.
[0026] The cannula is provided with two cannulas, and the two cannulas are respectively rotatably connected to the front and back of the right conveying roller through bearings; and the second connecting rod is movably inserted into the cannula.
[0027] The connecting pipe is provided with two connecting pipes, and the two connecting pipes are respectively fixed on the front and back of the base; and the first connecting plate is movably inserted into the connecting pipe.
[0028] The second connecting plate is fixed between the front and back first connecting plates.
[0029] An electric telescopic rod is fixed on the base and connected to an external power supply; and a movable end of the electric telescopic rod is connected to the second connecting plate.
[0030] Compared with the prior art, the beneficial effects of the present invention are:
[0031] 1. Equipped with a feeding hopper and a feeding pipe, the feeding hopper and the feeding pipe cooperate with each other to avoid material splashing, and avoid material deviation and falling during feeding, thus improving practicality;
[0032] 2. Equipped with a rotating mechanism, the second connecting plate is raised through the electric telescopic rod, driving the right conveying roller to be lifted above the container to be conveyed. It can be adjusted according to the height of the container to be conveyed, which facilitates loading and avoids the impact of components at the end of the conveyor on loading;
[0033] 3. A connecting mechanism is provided to ensure that the conveyor remains stable when the conveyor roller is raised, without affecting the normal operation of the conveyor and facilitating transportation. BRIEF DESCRIPTION OF THE DRAWINGS
[0034] Figure 1 It is a structural diagram of the present utility model.
[0035] Figure 2 It is a structural schematic diagram of the transmission roller, the first connecting rod, the slide rail and the second sliding block in the utility model.
[0036] Figure 3 yes Figure 2 Enlarged view of part A in .
[0037] Figure 4 It is a cross-sectional view of the transmission roller in the utility model.
[0038] Figure 5 It is a structural diagram of the connecting mechanism in the utility model.
[0039] Description of reference numerals:
[0040] Base 1, universal wheel 2, conveyor belt 3, conveyor roller 4, slide 4-1, feeding mechanism 5, feed hopper 5-1, support rod No. 1 5-2, feed pipe 5-3, support rod No. 2 5-4, barrier belt 5-5, baffle 5-6, connecting mechanism 6, connecting rod No. 1 6-1, slider No. 1 6-2, ball bearing 6-3, rotating mechanism 7, slide rail 7-1, slider No. 2 7-2, connecting roller 7-3, connecting plate No. 1 7-4, connecting rod No. 2 7-5, insert tube 7-6, connecting tube 7-7, connecting plate No. 2 7-8, electric telescopic rod 7-9. DETAILED DESCRIPTION
[0041] The technical scheme in the utility model will be described clearly and completely in connection with the drawings below, and the preferred embodiments in the description are only taken as examples, and all other embodiments obtained by the person skilled in the art without creative labor belong to the range of protection of the utility model.
[0042] The specific embodiment adopts the following technical scheme:
[0043] Please refer to Figures 1-5 , the embodiment includes a base 1, universal wheels 2, a conveying belt 3 and conveying rollers 4; the base 1 is provided with a plurality of universal wheels 2 at the bottom; the base 1 is provided with the conveying belt 3, the conveying belt 3 is drivingly connected by left and right two conveying rollers 4, the left conveying roller 4 is fixed on the base 1 through a mounting plate, and the left conveying roller 4 is driven by a motor;
[0044] It also includes:
[0045] A feeding mechanism 5 is arranged on the left side of the base 1; the feeding mechanism 5 comprises:
[0046] A feeding hopper 5-1 is arranged above the left side of the conveying belt 3;
[0047] A first supporting rod 5-2, the number of the first supporting rod 5-2 is two, and the first supporting rod 5-2 is fixed on the bottom of the feeding hopper 5-1 through bolts;
[0048] A feeding pipe 5-3, the feeding pipe 5-3 is an arc structure, and the feeding pipe 5-3 is connected with the bottom of the feeding hopper 5-1;
[0049] A second supporting rod 5-4, the number of the second supporting rod 5-4 is two, the second supporting rod 5-4 is an L-shaped structure, one end of the second supporting rod 5-4 is fixed on the feeding pipe 5-3, and the bottom of the second supporting rod 5-4 is fixed on the base 1 through bolts;
[0050] A belt stopper 5-5, the number of the belt stopper 5-5 is two, and the belt stopper 5-5 is fixed on the upper surface of the conveying belt 3;
[0051] A baffle 5-6, the number of the baffle 5-6 is several, and the baffle 5-6 is fixed on the conveying belt 3 at equal intervals;
[0052] A connecting mechanism 6 is arranged in the conveying belt 3; the connecting mechanism 6 comprises:
[0053] A first connecting rod 6-1 is arranged between the two conveying rollers 4;
[0054] The first sliding block 6-2 is two in number and is fixed on the left and right ends of the first connecting rod 6-1 through bolts; the middle of the transmission roller 4 is provided with a sliding groove 4-1, which is a "T" shaped structure, and the first sliding block 6-2 is slidingly clamped in the sliding groove 4-1; the outer end of the first sliding block 6-2 is rollingly embedded with a ball 6-3, which is abutted in the sliding groove 4-1;
[0055] The rotating mechanism 7 is arranged on the base 1 and is connected with the transmission belt 3; the rotating mechanism 7 comprises:
[0056] The slide rails 7-1 are two in number and are fixed on the front and rear sidewalls of the first connecting rod 6-1 through bolts;
[0057] The second sliding blocks 7-2 are two in number and are slidingly clamped on the slide rails 7-1;
[0058] The connecting rollers 7-3 are two in number and are rotatably connected with the second sliding blocks 7-2 through shafts and bearings;
[0059] The first connecting plates 7-4 are two in number and are rotatably connected with the outer ends of the connecting rollers 7-3 through shafts and bearings;
[0060] The second connecting rods 7-5 are two in number and are rotatably connected with the first connecting plates 7-4 through shafts and bearings;
[0061] The cannulas 7-6 are two in number and are rotatably connected with the front and rear of the right transmission roller 4 through bearings, and the second connecting rods 7-5 are movably inserted in the cannulas 7-6;
[0062] The connecting pipes 7-7 are two in number and are fixed on the front and rear of the base 1 through bolts, and the first connecting plates 7-4 are movably inserted in the connecting pipes 7-7;
[0063] The second connecting plates 7-8 are fixed between the front and rear first connecting plates 7-4 through bolts;
[0064] The electric telescopic rod 7-9 is fixed on the base 1 through bolts, is connected with an external power supply, and is directly purchased and installed according to actual use requirements; the movable end of the electric telescopic rod 7-9 is connected with the second connecting plate 7-8.
[0065] When the utility model is used, the material is fed through the feeding hopper 5-1, and the feeding pipe 5-3 enables the material to fall on the conveying belt 3, avoiding material deviation, and the baffle 5-5 and the baffle 5-6 avoid material falling;
[0066] According to the height of the container to be conveyed, the electric telescopic rod 7-9 is started to lift the second connecting plate 7-8, drive the first connecting plate 7-4 to rise, and the second sliding block 7-2 slides on the slide rail 7-1 to enable the right conveying roller 4 to be lifted above the container to be conveyed.
[0067] When the conveying roller 4 rotates, the first sliding block 6-2 moves in the conveying roller 4, and the ball 6-3 is arranged in the sliding groove 4-1 to facilitate the rotation of the conveying roller 4.
[0068] Compared with the prior art, the utility model has the beneficial effects that:
[0069] 1. The feeding hopper 5-1 and the feeding pipe 5-3 are provided, the feeding hopper 5-1 and the feeding pipe 5-3 cooperate to avoid material splashing, avoid material deviation and falling during feeding, and improve the practicability.
[0070] 2. The rotating mechanism 7 is provided, the second connecting plate 7-8 is lifted through the electric telescopic rod 7-9, the right conveying roller 4 can be lifted above the container to be conveyed, the height of the container to be conveyed is adjusted, the feeding is facilitated, and the components at the end of the conveyor are prevented from affecting the feeding.
[0071] 3. The connecting mechanism 6 is provided, the conveyor remains stable when the conveying roller 4 is lifted, the normal work of the conveyor is not affected, and the conveying is facilitated.
[0072] For those skilled in the art, the technical solutions recorded in the foregoing embodiments can be modified, equivalent replaced, and the like, and any modification, equivalent replacement, improvement and the like within the spirit and principles of the utility model should be included in the protection scope of the utility model.
Claims
1. An anti-deviation falling conveyor, comprising a base (1), universal wheels (2), a conveying belt (3) and conveying rollers (4); the base (1) is provided with a plurality of universal wheels (2) at the bottom; the conveying belt (3) is arranged on the base (1), and the conveying belt (3) is drivingly connected by the left and right conveying rollers (4); the left conveying roller (4) is fixed on the base (1) through a mounting plate, and the left conveying roller (4) is driven by a motor; characterized in that It also comprises: a feeding mechanism (5) arranged on the left side of the base (1); a connecting mechanism (6) arranged in the conveying belt (3); a rotating mechanism (7) arranged on the base (1), and the rotating mechanism (7) is connected with the conveying belt (3).
2. A misalignment fall-preventing conveyor according to claim 1, characterized in that: The feeding mechanism (5) comprises: a feeding hopper (5-1) arranged above the left side of the conveying belt (3); a first supporting rod (5-2) which is provided in two and fixed on the bottom of the feeding hopper (5-1) in front and back, and the bottom of the first supporting rod (5-2) is fixed on the base (1); a feeding pipe (5-3) which is an arc structure and is connected with the bottom of the feeding hopper (5-1); a second supporting rod (5-4) which is provided in two and is an "L" shaped structure, one end of the second supporting rod (5-4) is fixed on the feeding pipe (5-3), and the bottom of the second supporting rod (5-4) is fixed on the base (1); a belt stopper (5-5) which is provided in two and fixed on the upper surface of the conveying belt (3) in front and back; a baffle (5-6) which is provided in several and fixed on the conveying belt (3) in equidistant distribution.
3. A misalignment fall-preventing conveyor according to claim 2, characterized in that: The connecting mechanism (6) comprises: a first connecting rod (6-1) arranged between the two conveying rollers (4); a first sliding block (6-2) which is provided in two and fixed on the left and right ends of the first connecting rod (6-1); the middle of the conveying roller (4) is provided with a sliding groove (4-1) which is a "T" shaped structure, and the first sliding block (6-2) is slidingly arranged in the sliding groove (4-1).
4. A misalignment fall-preventing conveyor according to claim 3, characterized in that: The outer end of the first sliding block (6-2) is rollingly embedded with a ball (6-3), and the ball (6-3) is arranged in the sliding groove (4-1).
5. A misalignment fall-preventing conveyor according to claim 3, characterized in that: The rotating mechanism (7) comprises: a slide rail (7-1) which is provided in two and fixed on the front and back sidewalls of the first connecting rod (6-1); a second sliding block (7-2) which is provided in two and slidingly arranged on the slide rail (7-1); a connecting roller (7-3) which is provided in two and rotatably connected with the second sliding block (7-2) through a shaft and a bearing. The first connecting plate (7-4) is two in number and is rotatably connected to the outer end of the connecting roller (7-3) through a shaft and a bearing; The second connecting rod (7-5) is two in number and is rotatably connected to the first connecting plate (7-4) through a shaft and a bearing; The insertion tube (7-6) is two in number and is rotatably connected to the front and back of the right transmission roller (4) through a bearing, and the second connecting rod (7-5) is movably inserted into the insertion tube (7-6); The connecting pipe (7-7) is two in number and is fixed to the front and back of the base (1), and the first connecting plate (7-4) is movably inserted into the connecting pipe (7-7); The second connecting plate (7-8) is fixed between the front and back first connecting plates (7-4); The electric telescopic rod (7-9) is fixed to the base (1) and is connected to an external power source, and the movable end of the electric telescopic rod (7-9) is connected to the second connecting plate (7-8).