Machining feeding device
By using a worm gear motor to drive the worm and gear meshing in the machining feeding device, double rack support is achieved, which solves the bending deformation problem caused by the single-point support of the adjustment plate and improves the service life and stability of the equipment.
Patent Information
- Application Number
- CN202422670453.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-04
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2034-11-04
AI Technical Summary
The adjustment plate of the existing machining feeding device has a single support point, which may cause lateral bending deformation after long-term use, affecting the service life and stability of the equipment.
The worm gear is driven by two sets of worm motors on the side of the feeding rack. The worm drives the gear and rack to mesh internally, so that the double racks can provide support, reduce the load on the single rack seat, avoid bending and deformation, and maintain the stability of the equipment angle through the self-locking function of the worm and worm wheel.
This increases the service life and stability of the equipment, prevents misalignment and tooth breakage during material impact, and improves the overall stability and reliability of the equipment.
Smart Images

Figure CN223687426U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to mechanical processing field especially relates to a mechanical processing feeding device. BACKGROUND
[0002] The prior art (publication number: CN112919015A) proposes a mechanical processing feeding device. Including the bottom plate, the top of the bottom plate is hinged with two fixed seats, the top of the bottom plate is provided with a fixed frame, the inside of the fixed frame is provided with a conveying mechanism, the top of the fixed seat is hinged with a connecting plate connected with the fixed frame through the movable block, the rotating rod is rotated, and the fixed block is rotated when the rotating rod rotates, however, the device "the top of the threaded block and the fixed frame are hinged with adjusting plates through movable blocks", wherein the equipment supports the fixed frame by the adjusting plate in the front part of the bottom plate, since the adjusting plate is a single support point, if the material is too heavy or is placed offset, side bending deformation may occur after long time use, affecting the service life of the equipment. SUMMARY
[0003] The utility model provides a kind of mechanical processing feeding device for the above deficiencies existing in prior art, by the rotation of two groups of worm motors of feeding rack side part worm, make worm drive gear and rack inside meshing, reach double rack support feeding rack jointly, to reduce the load of single group of rack seat, avoid bending deformation, to increase the service life of equipment.
[0004] The utility model aims to realize by the following technical scheme:
[0005] A kind of mechanical processing feeding device, including equipment base, wheel assembly, center shaft, drive table, compression wheel shaft, worm, worm motor, the equipment base side part is fixedly connected with wheel assembly, equipment base front part is fixedly connected with feed rack, feed rack rear part is fixedly connected with feed auxiliary wheel shaft frame, feed auxiliary wheel shaft frame is adapted to conveyer belt auxiliary wheel, feed auxiliary wheel shaft frame connects conveyer belt auxiliary wheel, conveyer belt auxiliary wheel rotates in feed auxiliary wheel shaft frame, feed rack front part is fixedly connected with feed drive shaft frame, feed drive wheel has drive wheel shaft rod inside, feed drive shaft frame is adapted to drive wheel shaft rod, feed drive shaft frame connects drive wheel shaft rod, drive wheel shaft rod rotates in feed drive shaft frame, feed drive shaft frame side part is fixedly connected with feed motor, feed motor inside is fixedly connected with drive wheel shaft rod, conveyer belt auxiliary wheel is connected with feed drive wheel by feed conveyer belt, feed rack front part is fixedly connected with motor frame, motor frame side part has center shaft, equipment base inside is fixedly connected with center frame, center frame is adapted to center shaft.
[0006] The center frame is connected with a center shaft, the center shaft rotates inside the center frame, the inside of the motor frame is fixedly connected with a feeding motor, the inside of the feeding motor is fixedly connected with a feeding driving wheel, the rear part of the feeding frame is fixedly connected with a feeding auxiliary wheel shaft frame, the feeding auxiliary wheel shaft frame is matched with a feeding auxiliary wheel, the feeding auxiliary wheel shaft frame is connected with the feeding auxiliary wheel, the feeding auxiliary wheel rotates inside the feeding auxiliary wheel shaft frame, and the feeding driving wheel is connected with the feeding auxiliary wheel through a feeding conveying belt.
[0007] The side part of the feeding frame is fixedly connected with a driving table, the front part of the driving table is provided with a gear shaft slot matched with a gear shaft, the gear shaft slot is connected with the gear shaft which rotates inside the gear shaft slot, the rear part of the gear shaft is fixedly connected with a gear, and the rear part of the driving table is fixedly connected with a pressing wheel shaft slot matched with a pressing wheel shaft. Beneficial effects
[0008] 1. During the use of the machining feeding device, the two groups of worm motors of the side part of the feeding frame drive the worm to rotate, the worm drives the gear and the rack inside to mesh, the double racks jointly support the feeding frame, the load of the single rack seat is reduced, bending deformation is avoided, and the service life of the equipment is prolonged.
[0009] 2. During the use of the machining feeding device, the two groups of worm motors of the side part of the feeding frame drive the worm to rotate, the worm drives the pressing wheel to rotate and be clamped on the opposite side of the rack frame, material impact is avoided, and the stability of the equipment is improved.
[0010] 3. During the use of the machining feeding device, the worm motor drives the worm inside to drive the worm wheel to rotate, the transmission principle of the worm and the worm wheel has a self-locking function, the equipment maintains the adjusted angle during the working process, and the stability of the equipment is improved. BRIEF DESCRIPTION OF DRAWINGS
[0011] Figure 1 The utility model discloses a machining feeding device structure schematic view.
[0012] Figure 2 The utility model discloses a machining feeding device rack frame structure three-dimensional assembly schematic view.
[0013] Figure 3 The utility model discloses a machining feeding device feeding frame structure three-dimensional assembly schematic view.
[0014] Figure 4 The utility model discloses a machining feeding device feeding frame structure three-dimensional assembly schematic view.
[0015] Figure 5The utility model relates to a kind of mechanical processing feeding device drive platform structure three-dimensional assembly schematic diagram. DETAILED DESCRIPTION
[0016] The utility model will be further explained in detail as follows according to the drawings and examples:
[0017] Example 1
[0018] A kind of mechanical processing feeding device, including equipment base 01, wheel assembly 02, central shaft 13, drive table 20, compression wheel shaft 25, worm 29, worm motor 30, the equipment base 01 side portion is fixedly connected with wheel assembly 02, equipment base 01 front portion is fixedly connected with feed frame 03, feed frame 03 rear portion is fixedly connected with feed auxiliary wheel shaft frame 04, feed auxiliary wheel shaft frame 04 is adapted to conveyer belt auxiliary wheel 05, feed auxiliary wheel shaft frame 04 is connected conveyer belt auxiliary wheel 05, conveyer belt auxiliary wheel 05 rotates inside feed auxiliary wheel shaft frame 04, feed frame 03 front portion is fixedly connected with feed drive shaft frame 06, feed drive wheel 07 has drive wheel shaft rod 08 inside, feed drive shaft frame 06 is adapted to drive wheel shaft rod 08, feed drive shaft frame 06 is connected drive wheel shaft rod 08, drive wheel shaft rod 08 rotates inside feed drive shaft frame 06, feed drive shaft frame 06 side portion is fixedly connected with feed motor 09, feed motor 09 inside is fixedly connected with drive wheel shaft rod 08, conveyer belt auxiliary wheel 05 is connected with feed drive wheel 07 by feed conveyer belt 10, feed frame 11 front portion is fixedly connected with motor frame 12, motor frame 12 side portion has central shaft 13, equipment base 01 inside is fixedly connected with center frame 14, center frame 14 is adapted to central shaft 13.
[0019] Example 2
[0020] The utility model discloses center frame 14 is connected central shaft 13, central shaft 13 rotates inside center frame 14, motor frame 12 inside is fixedly connected with feeding motor 15, feeding motor 15 inside is fixedly connected with feeding drive wheel 16, feed frame 11 rear portion is fixedly connected with feed auxiliary wheel shaft frame 17, during the use of mechanical processing feeding device, the rotation of worm 29 is driven by the two groups of worm motors 30 of the side portion of feed frame 11, make worm 29 drive gear 23 and rack 34 inside meshing, reach double rack 34 support feed frame 11 jointly, to reduce the load of single rack seat 32, avoid bending deformation, to this end increase the service life of equipment, feed auxiliary wheel shaft frame 17 is adapted to feed auxiliary wheel 18, feed auxiliary wheel shaft frame 17 is connected feed auxiliary wheel 18, feed auxiliary wheel 18 rotates inside feed auxiliary wheel shaft frame 17, feeding drive wheel 16 is connected with feed auxiliary wheel 18 by feeding conveyer belt 19.
[0021] Example 3
[0022] The utility model discloses a feeding frame 11 side portion and drive platform 20 fixed connection, drive platform 20 front portion has gear shaft groove 21, and gear shaft groove 21 is adapted with gear shaft 22, and gear shaft groove 21 connects gear shaft 22, and gear shaft 22 rotates in gear shaft groove 21 inside, and gear shaft 22 rear portion and gear 23 fixed connection, drive platform 20 rear portion and pressure wheel shaft groove 24 fixed connection, and pressure wheel shaft groove 24 is adapted with pressure wheel shaft 25.
[0023] Example 4
[0024] The utility model discloses a pressure wheel shaft groove 24 connects pressure wheel shaft 25, and pressure wheel shaft 25 rotates in pressure wheel shaft groove 24 inside, and pressure wheel shaft 25 rear portion and pressure wheel 26 fixed connection, and gear shaft 22 and pressure wheel shaft 25 inside all are with worm wheel 27 fixed connection, and the machining feeding device uses in -process, and through the inside worm 29 of worm motor 30 drive worm wheel 27 rotation, because the transmission principle of worm 29 and worm wheel 27 has self -locking function, thereby make equipment in the working process keep the angle that has adjusted, to this strengthens the stability of equipment, and drive platform 20 inside has worm frame 28, and worm frame 28 is adapted with worm 29, and worm frame 28 connects worm 29, and worm 29 rotates in worm frame 28 inside, and worm 29 is engaged in worm wheel 27 side portion, and worm frame 28 upper portion and worm motor 30 fixed connection.
[0025] Example 5
[0026] The utility model discloses a worm motor 30 inside and worm 29 fixed connection, and the machining feeding device uses in -process, and through the two groups of worm motor 30 of feeding frame 11 side portion drive worm 29 rotation, make worm 29 drive pressure wheel 26 and carry out clamping rotation in opposite side of rack frame 33, to avoid material impact when misregistration and tooth drop, to this increases the stability of equipment, and equipment base 01 side portion has rack table 31, and rack table 31 upper portion and rack seat 32 fixed connection, and rack seat 32 upper portion has rack frame 33, and rack frame 33 inside has rack 34, and rack frame 33 rear portion has stand 35, and rack table 31 rear portion and stand 35 fixed connection, and pressure wheel shaft groove 24 is engaged in rack 34 inside, and worm wheel 27 rotates on rack 34 upper portion.
[0027] Example 6
[0028] The utility model discloses installation steps: with wheel assembly 02 fixed connection of equipment base 01 side portion, with the feeder frame 03 fixed connection of equipment base 01 front, with the feeder auxiliary wheel axle frame 04 fixed connection of feeder frame 03 rear, with the feeder auxiliary wheel 05 rotates in feeder auxiliary wheel axle frame 04 inside, with the feeder drive axle frame 06 fixed connection of feeder frame 03 front, with the drive wheel axle rod 8 rotates in feeder drive axle frame 06 inside, with the feeder drive axle frame 06 side portion and feeder motor 9 fixed connection, with the feeder motor 9 inside and drive wheel axle rod 8 fixed connection, with feeder drive wheel 7 through feeder conveyor belt 10 connection of feeder auxiliary wheel 5, with motor frame 12 fixed connection of feeder frame 11 front, with the center frame 14 fixed connection of equipment base 01 inside, with the center axle 13 rotates in center frame 14 inside, with the feeder motor 15 inside and feeder drive wheel 16 fixed connection of motor frame 12 inside, with the feeder auxiliary wheel axle frame 17 fixed connection of feeder frame 11 rear, with the feeder auxiliary wheel 18 rotates in feeder auxiliary wheel axle frame 17 inside, with feeder drive wheel 16 and feeder auxiliary wheel 18 through feeder conveyor belt 19 connection, with drive platform 20 fixed connection of feeder frame 11 side portion, with the gear shaft 22 rotates in gear shaft groove 21 inside, with the gear 23 fixed connection of gear shaft 22 rear, with the compression wheel axle groove 24 fixed connection of drive platform 20 rear, with the compression wheel axle 25 rotates in compression wheel axle groove 24 inside, with the compression wheel 26 fixed connection of compression wheel axle 25 rear, with the worm wheel 27 fixed connection of gear shaft 22 and compression wheel axle 25 inside, with the worm gear 29 rotates in worm gear frame 28 inside, with the worm gear 29 and worm wheel 27 side portion engagement, with the worm gear motor 30 fixed connection of worm gear frame 28 top, with the worm gear motor 30 inside and worm gear 29 fixed connection, with the rack seat 32 fixed connection of rack table 31 top, with the stand 35 fixed connection of rack table 31 rear, with the compression wheel axle groove 24 and rack 34 inside engagement, with the worm wheel 27 rotates on rack 34 top.
[0029] The above only is the preferred implementation of the utility model, and does not use for limiting the utility model, should point out, for ordinary skill for the person of the prior art, on the premise of not departing from the technical principle of the utility model, can also make a number of improvements and variations, these improvements and variations also should be regarded as the protection range of the utility model.
Claims
1. A mechanical processing feeding device, characterized in that : Including device base (01), wheel assembly (02), center shaft (13), drive table (20), compression wheel shaft (25), worm (29), worm motor (30), the side of device base (01) is fixedly connected with wheel assembly (02), the front of device base (01) is fixedly connected with feed frame (03), the rear of feed frame (03) is fixedly connected with feed auxiliary wheel shaft frame (04), feed auxiliary wheel shaft frame (04) is adapted to conveyer belt auxiliary wheel (05), feed auxiliary wheel shaft frame (04) is connected with conveyer belt auxiliary wheel (05), conveyer belt auxiliary wheel (05) rotates inside feed auxiliary wheel shaft frame (04), the front of feed frame (03) is fixedly connected with feed drive shaft frame (06), feed drive wheel (07) has drive wheel shaft rod (08) inside, feed drive shaft frame (06) is adapted to drive wheel shaft rod (08), feed drive shaft frame (06) is connected with drive wheel shaft rod (08), drive wheel shaft rod (08) rotates inside feed drive shaft frame (06), the side of feed drive shaft frame (06) is fixedly connected with feed motor (09), feed motor (09) is fixedly connected with drive wheel shaft rod (08) inside, conveyer belt auxiliary wheel (05) is connected with feed drive wheel (07) through feed conveyer belt (10), the front of feed frame (11) is fixedly connected with motor frame (12), motor frame (12) has center shaft (13) on the side, the inside of device base (01) is fixedly connected with center frame (14), center frame (14) is adapted to center shaft (13).
2. The mechanical processing feeding device according to claim 1, characterized in that : Center frame (14) is connected with center shaft (13), center shaft (13) rotates inside center frame (14), motor frame (12) is fixedly connected with feed motor (15) inside, feed motor (15) is fixedly connected with feed drive wheel (16) inside, the rear of feed frame (11) is fixedly connected with feed auxiliary wheel shaft frame (17), feed auxiliary wheel shaft frame (17) is adapted to feed auxiliary wheel (18), feed auxiliary wheel shaft frame (17) is connected with feed auxiliary wheel (18), feed auxiliary wheel (18) rotates inside feed auxiliary wheel shaft frame (17), feed drive wheel (16) is connected with feed auxiliary wheel (18) through feed conveyer belt (19).
3. The mechanical processing feeding device according to claim 2, characterized in that : The side of feed frame (11) is fixedly connected with drive table (20), drive table (20) has gear shaft slot (21) on the front, gear shaft slot (21) is adapted to gear shaft (22), gear shaft slot (21) is connected with gear shaft (22), gear shaft (22) rotates inside gear shaft slot (21), gear shaft (22) is fixedly connected with gear (23) on the rear, drive table (20) is fixedly connected with compression wheel shaft slot (24) on the rear, compression wheel shaft slot (24) is adapted to compression wheel shaft (25).
4. The mechanical processing feeding device according to claim 3, characterized in that The pressing wheel shaft slot (24) is connected with the pressing wheel shaft (25), the pressing wheel shaft (25) rotates inside the pressing wheel shaft slot (24), the rear part of the pressing wheel shaft (25) is fixedly connected with the pressing wheel (26), the gear shaft (22) and the pressing wheel shaft (25) are both fixedly connected with the worm wheel (27) inside, the driving table (20) has the worm gear frame (28) inside, the worm gear frame (28) is adapted to the worm (29), the worm gear frame (28) is connected with the worm (29), the worm (29) rotates inside the worm gear frame (28), the worm (29) is engaged on the side of the worm wheel (27), and the upper part of the worm gear frame (28) is fixedly connected with the worm motor (30).
5. The mechanical processing feeding device according to claim 2, characterized in that The worm motor (30) is fixedly connected with the worm (29) inside, the side of the equipment base (01) has the rack table (31), the upper part of the rack table (31) is fixedly connected with the rack seat (32), the upper part of the rack seat (32) has the rack frame (33), the rack frame (33) has the rack (34) inside, the rear part of the rack table (31) is fixedly connected with the stand column (35), the pressing wheel shaft slot (24) is engaged inside the rack (34), and the worm wheel (27) rotates on the upper part of the rack (34).
Citation Information
Patent Citations
Machining feeding device
CN112919015A