CN220804988U - Discharging device of section bar extruder - Google Patents

Discharging device of section bar extruder Download PDF

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Publication number
CN220804988U
CN220804988U CN202321928440.4U CN202321928440U CN220804988U CN 220804988 U CN220804988 U CN 220804988U CN 202321928440 U CN202321928440 U CN 202321928440U CN 220804988 U CN220804988 U CN 220804988U
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blanking
support
blanking support
traction
profile
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CN202321928440.4U
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Chinese (zh)
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陈祥
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Foshan Yaohe Building Materials Co ltd
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Foshan Yaohe Building Materials Co ltd
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Abstract

The utility model discloses a blanking device of a profile extruder, wherein a first blanking support is arranged at the discharge end of the extruding device, a second blanking support is connected and arranged at the rear end of the first blanking support, a traction track parallel to the second blanking support is arranged on one side edge of the second blanking support, a blanking support is arranged on the other side edge of the second blanking support, a traction device which moves along the length direction of the second blanking support is arranged on the traction track, the first blanking support and the second blanking support are composed of a plurality of equidistant rotating rollers, a plurality of transverse transmission assemblies are arranged towards the second blanking support, and the transverse transmission assemblies transversely transmit the cut profile to the blanking support, so that the traction device can continuously traction the extruded profile along the traction track, the production efficiency of the profile is improved, and meanwhile, the smoothness of profile extrusion is maintained.

Description

Discharging device of section bar extruder
Technical Field
The utility model relates to the technical field of aluminum profile processing equipment, in particular to a blanking device of a profile extruder.
Background
The aluminum profile is an aluminum alloy profile, and the aluminum alloy building profile product has the advantages of high strength, light weight, corrosion resistance, good decoration, long service life, rich colors and the like, extrusion is a main forming means of the aluminum profile, a die is firstly designed and manufactured according to the section of the profile product, and a heated round casting rod is extruded from the die by using an extruder.
When the extrusion forming work of the aluminum profile is completed through the extruder, the end head of the aluminum profile is clamped and pulled rightwards through the traction device, the extruded aluminum profile is guaranteed to finally form a whole with larger length, so that the extruded aluminum profile is cut off and transported later, sectional cutting is needed after the extrusion and traction of the profile, the subsequent profile traction work can be influenced by cutting on a traction track, the extruder is required to stop feeding and extrusion, the sectional cutting of the profile is completed, the production efficiency is influenced, and the smoothness among various procedures is influenced.
Disclosure of utility model
Aiming at the technical defects in the background technology, the utility model provides a blanking device of a section extruder, which solves the technical problems and meets the actual demands, and the specific technical scheme is as follows:
The discharging device of the profile extruder comprises extrusion equipment, wherein a first discharging support is arranged at the discharging end of the extrusion equipment, an air cooling device is arranged at one end, close to the extrusion equipment, of the first discharging support, a second discharging support is connected and arranged at the rear end of the first discharging support, a traction track parallel to the second discharging support is arranged on one side edge of the second discharging support, a discharging support is arranged on the other side edge of the second discharging support, and a traction device which moves along the length direction of the second discharging support is arranged on the traction track;
The first blanking support and the second blanking support are composed of a plurality of equidistant rotating rollers, a vertical upward supporting frame is arranged at one side, close to the blanking support, of each rotating roller, and a plurality of transverse transmission assemblies are arranged in the direction of the blanking support towards the second blanking support.
As the improvement of above-mentioned scheme, along straight line alignment, and all along length direction longitudinal transmission between first unloading support and the second unloading support, first unloading support with the height parallel and level of second unloading support, the top terminal surface height dimension of horizontal drive assembly with the height dimension parallel and level of second unloading support.
As an improvement of the scheme, the second blanking support and the blanking support are transversely aligned, one end of the transverse transmission assembly is fixed on the blanking support, and the other end extends towards the direction along the direction between every two supporting frames towards the second blanking support.
As an improvement of the above scheme, the air cooling device comprises an upper blower and a lower blower, wherein the air outlet of the upper blower rotates 45 degrees towards the traction direction of the profile, and the air outlet of the lower blower rotates 45 degrees towards the traction direction of the profile.
As an improvement of the scheme, the traction device comprises a sliding seat, a clamping assembly and a driving assembly, wherein the clamping assembly and the driving assembly are arranged on the sliding seat, an opening of a traction track faces upwards, a first sliding rail and a second sliding rail are respectively arranged on two sides of the inner surface of the traction track, and pulleys are arranged on two sides of the sliding seat corresponding to the first sliding rail and the second sliding rail.
As the improvement of above-mentioned scheme, the clamping assembly is including setting up clamping bracket on the slide, centre gripping cylinder and centre gripping clamp plate, the clamping bracket is C type, and the opening direction orientation blanking support one side, the clamping cylinder sets up the top of clamping bracket, and the output passes downwards the clamping bracket connects on the clamp plate.
As an improvement of the scheme, the driving assembly comprises a rack arranged in the traction track, a gear arranged on the end face of the bottom end of the sliding seat and a driving motor arranged on the end face of the top end of the sliding seat, wherein the output end of the driving motor penetrates through the sliding seat downwards to be connected with the middle part of the gear, and the gear is meshed with the rack.
As the improvement of above-mentioned scheme, blanking support is close to the T type support that one side of second unloading support was equipped with, horizontal drive assembly includes drive wheel, conveyer belt, transfer line and toothed chain, the drive wheel is fixed T type support tip, the drive line meshing is in on the drive wheel, the transfer line wears to establish blanking support below, just the tip of transfer line is equipped with the rotating electrical machines, the transfer line passes through one side of toothed chain connection drive wheel.
The utility model has the beneficial effects that: the traction device is used for traction of the profile along the first blanking support and the second blanking support, when the profile is pulled to the maximum movement distance, the tail of the profile is cut off, the profile is transversely moved to the blanking support through the transverse transmission assembly after cut off, the profile is sectioned and cut off on the blanking support, the traction device can be used for traction of the extruded profile along the traction track repeatedly, production efficiency of the profile is improved, and meanwhile smoothness of extrusion and discharge of the profile is maintained.
Drawings
Fig. 1 is a schematic structural diagram of a first blanking bracket, a second blanking bracket and a blanking bracket according to the present utility model.
Fig. 2 is a schematic diagram of a position structure of an air cooling device according to the present utility model.
Fig. 3 is a schematic view of a transverse transmission assembly according to the present utility model.
Fig. 4 is a schematic view of the traction track structure of the present utility model.
Fig. 5 is a schematic structural view of the traction device of the present utility model.
Wherein: the extrusion equipment 1, a first blanking bracket 2, a rotating roller 201, an air cooling device 3, an upper blower 301, a lower blower 302, a second blanking bracket 4, a supporting frame 401, a traction track 5, a first sliding rail 501, a second sliding rail 502, a blanking bracket 6, a T-shaped bracket 601, a traction device 7, a sliding seat 701, a pulley 702, a clamping assembly 703, a clamping bracket 7031, a clamping cylinder 7032, a clamping pressing plate 7033, a driving assembly 704, a rack 7041, a gear 7042, a driving motor 7043, a transverse transmission assembly 8, a driving wheel 801, a conveying belt 802, a transmission rod 803, a toothed chain 804 and a rotating motor 805.
Detailed Description
Embodiments of the present utility model will be described below with reference to the accompanying drawings and examples, but the embodiments of the present utility model are not limited to the following examples, and the present utility model relates to the relevant essential parts in the art, and should be regarded as known and understood by those skilled in the art.
The blanking device of the profile extruder is shown in fig. 1 to 5, and comprises extrusion equipment 1, wherein a first blanking bracket 2 is arranged at the discharge end of the extrusion equipment 1, an air cooling device 3 is arranged at one end, close to the extrusion equipment 1, of the first blanking bracket 2, a second blanking bracket 4 is connected and arranged at the rear end of the first blanking bracket 2, a traction track 5 parallel to the second blanking bracket 4 is arranged on one side edge of the second blanking bracket 4, a blanking bracket 6 is arranged on the other side edge of the second blanking bracket 4, and a traction device 7 moving along the length direction of the second blanking bracket 4 is arranged on the traction track 5;
As shown in fig. 1, in use, the profile is extruded through the discharge port of the extruder, the linear extrusion is guided along the length direction of the first blanking support 2, the profile is cooled by air cooling, bending deformation of the profile during traction due to too high temperature surface softening is avoided, the traction device 7 clamps the end position of one end of the profile and moves along the traction track 5, the traction profile moves along the first blanking support 2 and the second blanking support 4, when the traction device 7 moves to the maximum traction limit or a preset traction length value, the position of the profile close to the extruder is cut, the clamping device releases the clamped end of the profile, the transverse transmission device transversely moves the cut profile to the blanking support 6, and segmented cutting is completed on the blanking support 6, and the clamping device resets along the traction track 5 to continue the next traction procedure, so that the traction device 7 can repeatedly and continuously drag the extruded profile along the traction track 5, the production efficiency of the profile is improved, and meanwhile, the smoothness of the extrusion is maintained.
As shown in fig. 1, it should be noted that, the first blanking support 2 and the second blanking support 4 are formed by a plurality of equidistant rotating rollers 201, the rotating rollers 201 can reduce friction force of the section bar during traction, when the section bar with higher requirement on extrusion size and complex shape is extruded, the section bar is excessively high in temperature and improperly drawn and can cause deformation of the section bar, resulting in low yield, the surface of the section bar is primarily cooled by the air cooling device 3, rapid shaping of the surface of the section bar can be promoted, rolling of the rotating rollers 201 during traction can reduce friction force of the surface of the section bar, deformation of the section bar caused by traction is reduced, one side of the second blanking support 4 close to the blanking support 6 is provided with a vertical upward supporting frame 401 corresponding to the end part of each rotating roller 201, and the blanking support 6 is provided with a plurality of transverse transmission assemblies 8 towards the second blanking support 4.
As shown in fig. 1, further, in the above solution, the first blanking support 2 and the second blanking support 4 are aligned along a straight line and are both transported longitudinally along the length direction, the heights of the first blanking support 2 and the second blanking support 4 are flush, and the height dimension of the top end face of the transverse transmission assembly 8 is flush with the height dimension of the second blanking support 4.
As shown in fig. 1, in the above solution, further, the second blanking support 4 and the blanking support 6 are transversely aligned, one end of the transverse transmission assembly 8 is fixed on the blanking support 6, the other end of the transverse transmission assembly extends toward the second blanking support 4 along the direction between the two support frames 401, the rotating rods on the second conveyor belt 802 and the transverse transmission assembly 8 are staggered, when the profile is pulled along the length direction of the second blanking support 4 under the action of the pulling device 7, the transverse transmission assembly 8 is in a static state, the rotating roller 201 reduces the friction force suffered by the profile during pulling, and after the position of the profile, close to the extruder, is cut off by the pulling device 7, the transverse transmission assembly 8 is started, and the profile is transversely moved onto the blanking support 6 by the conveyor belt 802, so as to avoid affecting the subsequent extrusion pulling procedure of the profile.
As shown in fig. 2, further, in the above solution, the air cooling device 3 includes an upper blower 301 and a lower blower 302, where an air outlet of the upper blower 301 rotates 45 ° toward the profile traction direction, and an air outlet of the lower blower 302 rotates 45 ° toward the profile traction direction.
As shown in fig. 1, fig. 4 and fig. 5, further, in the above-mentioned scheme, the traction device 7 includes a sliding seat 701, a clamping assembly 703 and a driving assembly 704, where the opening of the traction rail 5 faces upward, two sides of the inner surface of the traction rail 5 are respectively provided with a first rail 501 and a second rail 502, two sides of the sliding seat 701 are provided with pulleys 702 corresponding to the first rail 501 and the second rail 502, and the driving assembly 704 drives the sliding seat 701 to reciprocate along the traction rail 5, and meanwhile, the pulleys 702 are movably connected with the first rail 501 and the second rail 502, so as to perform the function of bearing the clamping assembly 703.
As shown in fig. 4 and 5, further, in the above solution, the clamping assembly 703 includes a clamping bracket 7031 disposed on the slide 701, a clamping cylinder 7032 and a clamping pressure plate 7033, the clamping bracket 7031 is C-shaped and has an opening direction facing to one side of the blanking bracket 6, the clamping cylinder 7032 is disposed above the clamping bracket 7031, and an output end passes through the clamping bracket 7031 downward to be connected to the clamping pressure plate 7033, when the end of the profile is clamped and fixed, the output end of the clamping cylinder 7032 controls the clamping pressure plate 7033 to press the end of the clamping fixed profile downward, and when the profile needs to be transferred to the blanking bracket 6, the clamping cylinder 7032 controls the clamping pressure plate 7033 to move upward to release the profile, and the profile is moved along the opening direction of the clamping bracket 7031 by the transverse transmission assembly 8, so that the end of the profile can be easily separated from the clamping bracket 7031.
As shown in fig. 4, in the foregoing solution, the driving assembly 704 further includes a rack 7041 disposed in the traction track 5, a gear 7042 disposed at a bottom end surface of the sliding seat 701, and a driving motor 7043 disposed at a top end surface of the sliding seat 701, an output end of the driving motor 7043 passes through the sliding seat 701 downward and is connected to a middle portion of the gear 7042, the gear 7042 is engaged with the rack 7041, the driving motor 7043 controls the gear 7042, and the gear 7042 moves along a length direction of the rack 7041 while rotating, so as to drive the sliding seat 701 to move along the length direction of the traction track 5 to complete a traction procedure on the profile.
As shown in fig. 1 and fig. 3, further, in the above scheme, the blanking support 6 is close to a T-shaped support 601 provided on one side of the second blanking support 4, the transverse transmission component 8 includes a transmission wheel 801, a transmission belt 802, a transmission rod 803 and a toothed chain 804, the transmission wheel 801 is fixed at the end of the T-shaped support 601, the transmission belt 802 is meshed with the transmission wheel 801, the transmission rod 803 is arranged below the T-shaped support 601 in a penetrating manner, a rotary motor 805 is provided at the end of the transmission rod 803, the transmission rod 803 is connected with one side of the transmission wheel 801 through the toothed chain 804, it is required to say that a transmission belt 802 is connected between two pairs of transmission wheels 801, one end of the T-shaped support 601 is connected with the transmission rod 803 through the toothed chain 804 for rotation, the other end of the T-shaped support 601 extends between two support frames 401 in the second blanking support 4, when the transverse transmission component 8 is required to move the blanking support 6, the rotary motor 805 is controlled to rotate, the transmission rod 803 is connected with the toothed chain 803 through the toothed chain 804, and the transmission belt 803 is connected with the toothed chain 803 for driving the transmission rod 803 to rotate, and the toothed chain 803 is connected with the transmission belt 803 from the side of the two support 803 for driving the transmission frame 804 to rotate, and the toothed chain 803 is connected with the toothed chain 803.
The foregoing is merely a preferred embodiment of the present utility model and it should be noted that modifications and adaptations to those skilled in the art may be made without departing from the principles of the present utility model, which are intended to be comprehended within the scope of the present utility model.

Claims (8)

1. The utility model provides a unloader of section bar extruder, includes extrusion equipment (1), its characterized in that, the discharge end of extrusion equipment (1) is equipped with first unloading support (2), the one end that is close to of first unloading support (2) extrusion equipment (1) is equipped with air cooling device (3), the rear end connection of first unloading support (2) is equipped with second unloading support (4), one side of second unloading support (4) is equipped with traction track (5) parallel with second unloading support (4), the opposite side of second unloading support (4) is equipped with blanking support (6), be equipped with on traction track (5) along traction device (7) of second unloading support (4) length direction activity;
The blanking device comprises a first blanking support (2) and a second blanking support (4), wherein the first blanking support (2) and the second blanking support (4) are formed by a plurality of equidistant rotating rollers (201), one side, close to the blanking support (6), of the second blanking support (4) is provided with a vertical upward supporting frame (401) corresponding to the end part of each rotating roller (201), and the blanking support (6) faces the second blanking support (4) and is provided with a plurality of transverse transmission assemblies (8).
2. The blanking device of a profile extruder according to claim 1, characterized in that the first blanking support (2) and the second blanking support (4) are aligned along a straight line and are longitudinally transmitted along the length direction, the heights of the first blanking support (2) and the second blanking support (4) are flush, and the height dimension of the top end face of the transverse transmission assembly (8) is flush with the height dimension of the second blanking support (4).
3. The blanking device of a profile extruder according to claim 1, characterized in that the second blanking support (4) and the blanking support (6) are transversely aligned, one end of the transverse transmission assembly (8) is fixed on the blanking support (6), and the other end extends towards the direction along the direction between every two supporting frames (401) towards the second blanking support (4).
4. The blanking device of a profile extruder according to claim 1, characterized in that the air cooling device (3) comprises an upper blower (301) and a lower blower (302), the air outlet of the upper blower (301) is turned 45 ° towards the profile traction direction, and the air outlet of the lower blower (302) is turned 45 ° towards the profile traction direction.
5. The blanking device of the profile extruder according to claim 1, characterized in that the traction device (7) comprises a sliding seat (701), a clamping assembly (703) and a driving assembly (704) which are arranged on the sliding seat (701), an opening of the traction rail (5) faces upwards, a sliding rail I (501) and a sliding rail II (502) are respectively arranged on two sides of the inner surface of the traction rail (5), and pulleys (702) are arranged on two sides of the sliding seat (701) corresponding to the sliding rail I (501) and the sliding rail II (502).
6. The blanking device of a profile extruder according to claim 5, characterized in that the clamping assembly (703) comprises a clamping bracket (7031) arranged on the sliding seat (701), a clamping cylinder (7032) and a clamping pressing plate (7033), wherein the clamping bracket (7031) is C-shaped and is opened towards one side of the blanking bracket (6), the clamping cylinder (7032) is arranged above the clamping bracket (7031), and an output end of the clamping cylinder downwards passes through the clamping bracket (7031) to be connected to the clamping pressing plate (7033).
7. The blanking device of the profile extrusion press according to claim 5, characterized in that the driving assembly (704) comprises a rack (7041) arranged in the traction track (5), a gear (7042) arranged on the bottom end face of the sliding seat (701) and a driving motor (7043) arranged on the top end face of the sliding seat (701), wherein the output end of the driving motor (7043) penetrates through the sliding seat (701) downwards to be connected to the middle part of the gear (7042), and the gear (7042) is in meshed connection with the rack (7041).
8. The blanking device of a profile extruder according to claim 1, characterized in that the blanking support (6) is provided with a T-shaped support (601) close to one side of the second blanking support (4), the transverse transmission assembly (8) comprises a transmission wheel (801), a transmission belt (802), a transmission rod (803) and a toothed chain (804), the transmission wheel (801) is fixed at the end part of the T-shaped support (601), the transmission belt (802) is meshed with the transmission wheel (801), the transmission rod (803) is arranged below the blanking support (6) in a penetrating manner, the end part of the transmission rod (803) is provided with a rotary motor (805), and the transmission rod (803) is connected with one side of the transmission wheel (801) through the toothed chain (804).
CN202321928440.4U 2023-07-21 2023-07-21 Discharging device of section bar extruder Active CN220804988U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321928440.4U CN220804988U (en) 2023-07-21 2023-07-21 Discharging device of section bar extruder

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321928440.4U CN220804988U (en) 2023-07-21 2023-07-21 Discharging device of section bar extruder

Publications (1)

Publication Number Publication Date
CN220804988U true CN220804988U (en) 2024-04-19

Family

ID=90701514

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321928440.4U Active CN220804988U (en) 2023-07-21 2023-07-21 Discharging device of section bar extruder

Country Status (1)

Country Link
CN (1) CN220804988U (en)

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