Online feeding mechanism of rock debris packaging machine
By designing an online feeding mechanism for cuttings packaging machine including conveyor, rock cuttings trough, bag feeding packaging machine, electric rotary table, return conveyor belt, flip adjustment structure and clamping control structure, the problem of low automation degree of existing rock cutting packaging technology and confusion of samples is solved, and efficient automated packaging and convenient post-analysis are achieved.
Patent Information
- Application Number
- CN202422131902.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-02
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-09-02
AI Technical Summary
The existing rock cutting packaging technology mainly relies on manual packaging, and has low degree of automation, which can easily lead to confusion between sample layer and well depth, affecting later viewing and analysis.
An online feeding mechanism for cuttings packaging machine is designed, including a conveyor, a cuttings trough, a bag-feeding packaging machine, an electric rotary table, a return conveyor belt, a flip adjustment structure and a clamping control structure. Through the coordinated work of these components, automatic feeding and packaging of cuttings is realized.
It improves the degree of automation of rock cutting packaging, avoids confusion between sample layer and well depth, facilitates later viewing and analysis, and realizes continuous injection coding of bag packaging machine.
Smart Images

Figure CN222905997U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of cuttings packaging, in particular to an online feeding mechanism of a cuttings packaging machine. Background Art
[0002] In geological logging, it is necessary to retain samples after the cuttings are dried. At present, in actual work, the cuttings samples are mainly packaged manually, with low automation and high manual intensity. In addition, it is easy to confuse the sample horizons and well depths, making it difficult to trace the reasons during later review. In view of this, in-depth research has been carried out on the above problems, and thus this case has emerged. Content of the Utility Model
[0003] Aiming at the deficiencies of the prior art, the utility model provides an online feeding mechanism of a cuttings packaging machine, which solves the existing problems.
[0004] To achieve the above purposes, the utility model is realized through the following technical solutions: An online feeding mechanism of a cuttings packaging machine includes a conveyor and a cuttings placement groove arranged on the conveyor. A bagging machine is arranged on one side of the discharge end of the conveyor. Strip-shaped protrusions are symmetrically arranged on both sides of the cuttings placement groove. An electric rotary table is arranged between the bagging machine and the conveyor. A return conveyor belt is arranged on one side of the electric rotary table. The conveyor, the bagging machine, and the return conveyor belt are arranged in a circular array along the central position of the electric rotary table. A vertical frame is installed on the electric rotary table. A flipping and adjusting structure is arranged on the vertical frame. A clamping and controlling structure is installed at the rotating end of the flipping and adjusting structure. A clamping groove is arranged on the moving end of the clamping and controlling structure.
[0005] The above-mentioned flipping and adjusting structure includes a driving motor, a reducer, a flipping table, and a rotating support member. The driving motor is arranged on a fixed frame. The input end of the reducer is connected to the output end of the driving motor. The flipping table is arranged on the rotating support member and is connected to the output end of the reducer.
[0006] The above-mentioned rotating support member includes an annular seat, an annular guide rail, and an arc-shaped slider. The annular seat is welded to the side wall of the fixed frame. The annular guide rail is welded to the annular seat. The arc-shaped slider is slidably sleeved on the annular seat and is connected to the flipping table.
[0007] The above-mentioned clamping and controlling structure includes a fixed groove, an anti-drawing lead screw, a driving member, and a guiding member. The fixed groove is welded to the side wall of the flipping table. The anti-drawing lead screw is rotatably arranged in the fixed groove. The output end of the driving member is connected to one end of the anti-drawing lead screw. The guiding members are symmetrically arranged on both sides of the anti-drawing lead screw.
[0008] The above-mentioned guiding member includes a guiding rod and a moving seat. The guiding rods are symmetrically arranged on both sides of the wire drawing screw. The moving seat is in spiral fit with the wire drawing screw through a lead screw nut and is slidably connected to the guiding rods on both sides.
[0009] The groove size of the above-mentioned card slot matches the strip protrusion, and a chamfered slope is provided at the opening position of the groove.
[0010] The utility model provides an on-line feeding mechanism for a cuttings packaging machine, which has the following beneficial effects: for the on-line feeding mechanism of the cuttings packaging machine, a turning adjustment structure and a clamping control structure are arranged between the bag-type packaging machine and the conveyor, and a return conveyor belt is additionally provided. During use, the cuttings placement groove after logging is transported by the conveyor. When the placement groove moves to the outlet position, the clamping control structure is started, and the strip protrusions on both sides of the placement groove are clamped and fixed by the clamping control structure. After the clamping action is completed, the electric rotary table is started, and the placement groove is moved above the feeding port of the bag-type packaging machine by the electric rotary table. The turning adjustment structure is started to turn the placement groove 180°, and the cuttings are put into the packaging machine for packaging. After the feeding is completed, the placement groove is turned 180° again, the electric rotary table rotates to move the empty placement groove onto the return conveyor belt, the clamping structure is controlled to reset, and the empty placement groove is transported to other workstations via the return conveyor belt. The electric rotary table is controlled to continue rotating, so that the card slot is reset, and the next placement groove is grabbed. The design is scientific, and the degree of automation is relatively high. The bag-type packaging machine can perform continuous inkjet coding, effectively avoiding confusion caused by the sample layer position and well depth, and facilitating later viewing. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figure 1 It is a front view structural schematic diagram of the on-line feeding mechanism for a cuttings packaging machine described in the utility model.
[0012] Figure 2 It is a top view structural schematic diagram of the on-line feeding mechanism for a cuttings packaging machine described in the utility model.
[0013] Figure 3 It is a partial enlarged structural schematic diagram of the on-line feeding mechanism for a cuttings packaging machine described in the utility model.
[0014] Figure 4 It is a cross-sectional structural schematic diagram of the card slot and the cuttings placement groove of the utility model in a clamped state.
[0015] In the figure: 1. conveyor; 2. cuttings placement groove; 3. bag-type packaging machine; 4. strip protrusion; 5. electric rotary table; 6. return conveyor belt; 7. vertical frame; 8. card slot; 9. drive motor; 10. reducer; 11. turning table; 12. annular guide rail; 13. arc-shaped slider; 14. fixed groove; 15. wire drawing screw; 16. driving member; 17. guiding rod; 18. moving seat. Detailed implementation mode
[0016] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0017] Embodiment: Referring to the attached drawings of the specification Figures 1-4 As can be seen, this solution specifically designs an on-line feeding mechanism for a cuttings packaging machine, including a conveyor 1 and a cuttings placement groove 2 provided on the conveyor 1. A bag-type packaging machine 3 is provided on one side of the discharge end of the conveyor 1. Strip-shaped protrusions 4 are symmetrically arranged on both sides of the cuttings placement groove 2. An electric rotary table 5 is provided between the bag-type packaging machine 3 and the conveyor 1. A return conveyor belt 6 is provided on one side of the electric rotary table 5. The conveyor 1, the bag-type packaging machine 3, and the return conveyor belt 6 are arranged in a circular array along the central position of the electric rotary table 5. A vertical frame 7 is installed on the electric rotary table 5. A flipping and adjusting structure is provided on the vertical frame 7. A clamping control structure is installed at the rotating end of the flipping and adjusting structure. A clamping groove 8 is provided on the moving end of the clamping control structure. The groove size of the clamping groove 8 matches the strip-shaped protrusion 4, and a chamfered slope is provided at the opening position of the groove; a flipping and adjusting structure and a clamping control structure are provided between the bag-type packaging machine 3 and the conveyor 1, and a return conveyor belt 6 is additionally provided. During use, the cuttings placement groove 2 after logging is transported by the conveyor 1. When the placement groove moves to the outlet position, the clamping control structure is started, and the strip-shaped protrusions 4 on both sides of the placement groove are clamped and fixed by the clamping control structure. After the clamping action is completed, the electric rotary table 5 is started, and the placement groove is moved above the feeding port of the bag-type packaging machine 3 by the electric rotary table 5. The flipping and adjusting structure is started to flip the placement groove 180°, and the cuttings are put into the packaging machine for packaging. After the feeding is completed, the placement groove is flipped 180° again. The electric rotary table 5 rotates to move the empty placement groove to the return conveyor belt 6, and the clamping structure is controlled to reset. The empty placement groove is then transported to other workstations by the return conveyor belt 6. The electric rotary table 5 is controlled to continue rotating, so that the clamping groove 8 is reset, and the next placement groove is grabbed. The design is scientific and the degree of automation is relatively high. The bag-type packaging machine 3 can perform continuous inkjet coding, effectively avoiding confusion caused by sample horizons and well depths, and facilitating later viewing.
[0018] In the specific implementation process, as a preferred setting, the above-mentioned flipping and adjusting structure includes a driving motor 9, a speed reducer 10, a flipping table 11 and a rotating support member. The driving motor 9 is arranged on the fixed frame. The input end of the speed reducer 10 is connected to the output end of the driving motor 9. The flipping table 11 is arranged on the rotating support member and connected to the output end of the speed reducer 10. The rotating support member includes an annular seat, an annular guide rail 12 and an arc-shaped slider 13. The annular seat is welded to the side wall of the fixed frame. The annular guide rail 12 is welded to the annular seat. The arc-shaped slider 13 is slidably sleeved on the annular seat and connected to the flipping table 11. The above-mentioned clamping control structure includes a fixed groove 14, a wire drawing screw rod 15, a driving member 16 and a guiding member. The fixed groove 14 is welded to the side wall of the flipping table 11. The wire drawing screw rod 15 is rotatably arranged in the fixed groove 14. The output end of the driving member 16 is connected to one end of the wire drawing screw rod 15. The guiding members are symmetrically arranged on both sides of the wire drawing screw rod 15. The guiding member includes a guiding rod 17 and a moving seat 18. The guiding rods 17 are symmetrically arranged on both sides of the wire drawing screw rod 15. The moving seat 18 is in spiral cooperation with the wire drawing screw rod 15 through a lead screw nut and is slidably connected to the guiding rods 17 on both sides respectively. During use, the cooperation of the driving motor 9 and the speed reducer 10 is used to realize the rotational control of the flipping table 11 in the vertical direction. During the rotation of the flipping table 11, the arc-shaped slider 13 slides along the annular guide rail 12, effectively ensuring the smooth flipping of the flipping table 11. In addition, the rotation adjustment of the wire drawing screw rod 15 can be realized through the driving member 16. When the wire drawing screw rod 15 rotates, the moving seat 18 moves under the cooperation of the lead screw nut and the guiding rods 17 on both sides. The two moving seats 18 are symmetrically arranged and slide synchronously, so as to realize the position adjustment of the clamping groove 8, and further cooperate to realize the clamping and releasing actions of the cuttings placement groove 2. The structure is simple and the degree of automation is high.
[0019] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An online feeding mechanism for a rock chip packaging machine, comprising a conveyor and a rock chip placement trough arranged on the conveyor, wherein a bag-feeding packaging machine is arranged on one side of the discharge end of the conveyor, characterized in that: The rock cutting placement groove is symmetrically provided with strip protrusions on both sides, an electric turntable is provided between the bag-feeding packaging machine and the conveyor, a return conveyor belt is provided on one side of the electric turntable, the conveyor, the bag-feeding packaging machine and the return conveyor belt are arranged in a circular array along the center position of the electric turntable, a vertical frame is installed on the electric turntable, a flip adjustment structure is provided on the vertical frame, a clamping control structure is installed on the rotating end of the flip adjustment structure, and a card slot is provided on the moving end of the clamping control structure.
2. The online feeding mechanism of a cuttings packaging machine according to claim 1, characterized in that: The flip adjustment structure includes a driving motor, a reducer, a flip table and a rotating support member. The driving motor is arranged on a fixed frame, the input end of the reducer is connected to the output end of the driving motor, and the flip table is arranged on the rotating support member and connected to the output end of the reducer.
3. The online feeding mechanism of a cuttings packaging machine according to claim 2 is characterized in that: The rotating support component includes an annular seat, an annular guide rail and an arc-shaped slider. The annular seat is welded to the side wall of the fixing frame, the annular guide rail is welded to the annular seat, and the arc-shaped slider is slidably mounted on the annular seat and connected to the turning table.
4. The online feeding mechanism of a cuttings packaging machine according to claim 2, characterized in that: The clamping control structure includes a fixed groove, a wire drawing screw, a driving member and a guide member. The fixed groove is welded to the side wall of the turning table. The wire drawing screw is rotatably arranged in the fixed groove. The output end of the driving member is connected to one end of the wire drawing screw. The guide member is symmetrically arranged on both sides of the wire drawing screw.
5. The online feeding mechanism of a cuttings packaging machine according to claim 4, characterized in that: The guide member comprises a guide rod and a movable seat. The guide rod is symmetrically arranged on both sides of the drawing screw. The movable seat is spirally matched with the drawing screw through a screw nut and is slidably connected to the guide rod on both sides.
6. The online feeding mechanism of a cuttings packaging machine according to claim 1, characterized in that: The size of the groove of the clamping slot matches the strip-shaped protrusion and an inclined chamfer is provided at the opening position of the groove.