A turbine transfer mechanism for reducer part machining
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-10
- Publication Date
- 2026-08-11
AI Technical Summary
[0003]现有组装后的涡轮在通过传输带进行运输转运时,会受到中部安装的轴杆、套筒影响,会使涡轮在运输时发生晃动,其不固定的状态,在进行抓取转运时操作难度增加
[0016]1、本实用新型,转运箱内壁两侧对称设置有卸料转运带,其通过驱动机构进行同步的旋转移动,并将涡轮进行运输,对称设置的卸料转运带,能对涡轮的水平两端进行架设,套筒或轴端可置于中部间隙处,来将涡轮的位置进行水平固定,并利用卸料斜坡部和传输转运带进行转移至合适位置,并配合可升降、旋转的电动夹手进行位置转移。
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Figure CN224618649U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of speed reducer parts processing technology, specifically a turbine transfer mechanism for speed reducer parts processing. Background Technology
[0002] Worm gears are one of the important components in reducer products. Worm gears transmit motion and power between two intersecting shafts. Worm gear mechanisms are often used to transmit motion and power between two intersecting shafts. In the production process of worm gears, shafts and sleeves are provided on the worm gear.
[0003] When the assembled turbine is transported via a conveyor belt, it is affected by the shaft and sleeve installed in the middle, which causes the turbine to shake during transportation. Its unstable state increases the difficulty of operation when gripping and transferring it.
[0004] Therefore, in view of this, we have studied and improved the existing structure and its shortcomings, and proposed a turbine transfer mechanism for machining reducer parts, in order to achieve a more practical purpose. Utility Model Content
[0005] The purpose of this invention is to provide a turbine transfer mechanism for machining reducer parts, so as to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a turbine transfer mechanism for processing reducer parts, comprising a transfer box, a negative pressure fan, and an L-shaped interlocking plate. The inner walls of the transfer box are provided with unloading transfer belts on both sides, and a debris collection filter screen is embedded in the middle of the bottom wall of the transfer box. One side of the unloading transfer belt is provided with an unloading ramp, and the other side of the unloading ramp is provided with a transmission transfer belt. A transmission channel is provided between the two sets of unloading transfer belts. A top plate is mounted on the upper end of the unloading ramp. Side slots are opened on both sides of the transfer box. A negative pressure fan is installed on the top of the top plate, and a lifting rod assembly is installed at the bottom of the top plate. An air outlet box is provided at the bottom of the lifting rod assembly. A retractable air supply pipe is provided at the connection end between the air inlet of the air outlet box and the air outlet of the negative pressure fan.
[0007] A cover plate is mounted above the conveyor belt, and an opening slot is provided at the top center of the cover plate. An L-shaped fitting plate is embedded inside the opening slot. An electric push rod is horizontally installed at the bottom of the L-shaped fitting plate, and the electric push rod can push the L-shaped fitting plate to move horizontally.
[0008] The other end of the L-shaped interlocking plate is equipped with a side plate, and two sets of side plates are arranged in parallel. A drive motor is installed on the inner side of the upper side plate, and a lifting rod is installed on the inner side of the lower side plate. A gripper assembly is installed at the bottom of the lifting rod, and the bottom shaft of the drive motor is connected to the top of the lifting rod.
[0009] Furthermore, the surface of the unloading transfer belt is covered with anti-slip transport strips.
[0010] Furthermore, the dimensions of the air outlet box and the side slot are matched.
[0011] Furthermore, the air outlet of the air outlet box is located in parallel with the unloading ramp.
[0012] Furthermore, a drive motor is installed at one end of the unloading transfer belt, and a drive shaft is provided at the shaft connection end of the drive motor. A drive sleeve is fitted on the outer wall of the drive shaft, and the drive sleeve is fitted against the inner wall of the unloading transfer belt.
[0013] Furthermore, the drive motor can drive the bottom lifting rod to rotate, and the gripper assembly is composed of an electric gripper assembly.
[0014] Furthermore, the negative pressure fan is interconnected with the air supply pipe and the air outlet box via a retractable air supply pipe.
[0015] This utility model provides a turbine transfer mechanism for machining reducer parts, which has the following advantages:
[0016] 1. In this utility model, unloading transfer belts are symmetrically arranged on both sides of the inner wall of the transfer box. They are synchronously rotated and moved by the drive mechanism to transport the turbine. The symmetrically arranged unloading transfer belts can support the horizontal ends of the turbine. The sleeve or shaft end can be placed in the middle gap to fix the position of the turbine horizontally. The turbine is transferred to a suitable position by using the unloading ramp and the transfer belt, and the position is transferred in conjunction with the lifting and rotating electric gripper.
[0017] 2. In this utility model, a suspended air outlet box is provided above the symmetrically arranged unloading ramp. Air is supplied by a negative pressure fan at the top, so that the air outlet of the air outlet box performs air jet operation. The air outlet end of the air outlet box is inclined and parallel to the unloading ramp, so that the sprayed gas is vertical and sprayed onto the surface of the unloading ramp, so that the residual debris of the turbine surface is frequently blown away by air.
[0018] The blown debris will move downwards with the airflow and fall to the bottom of the transfer box, where it will be collected from the debris collection filter. The structure and control logic are simple, and the equipment has high reliability and stability. Attached Figure Description
[0019] The disclosure of this utility model will become more readily understood with reference to the accompanying drawings. It will be readily understood by those skilled in the art that these drawings are merely illustrative of the technical solutions of this utility model and are not intended to limit the scope of protection of this utility model. In the drawings:
[0020] Figure 1 This is a three-dimensional structural schematic diagram of a turbine transfer mechanism for machining reducer parts according to the present invention.
[0021] Figure 2 This is a three-dimensional structural diagram of the turbine transfer mechanism for machining reducer parts according to the present invention.
[0022] Figure 3 This is a front perspective view of a turbine transfer mechanism for machining reducer parts according to the present invention.
[0023] In the diagram: 1. Transfer box; 101. Side slot; 102. Top plate; 103. Debris collection filter; 2. Unloading transfer belt; 201. Unloading ramp; 202. Transfer belt; 3. Anti-slip transport strip; 4. Drive motor; 401. Drive shaft; 402. Drive sleeve; 5. Negative pressure fan; 501. Telescopic air supply pipe; 502. Air outlet box; 503. Lifting rod assembly; 6. Cover plate; 601. Opening slot; 7. Electric push rod; 8. L-shaped interlocking plate; 801. Side plate; 802. Drive motor; 803. Lifting rod; 804. Hand clamp assembly. Detailed Implementation
[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0025] Please see Figure 1-3This utility model provides a technical solution: a turbine transfer mechanism for processing reducer parts, including a transfer box 1, a negative pressure fan 5 and an L-shaped interlocking plate 8. The inner walls of the transfer box 1 are provided with unloading transfer belts 2 on both sides, and a debris collection filter screen 103 is embedded in the middle of the bottom wall of the transfer box 1. One side of the unloading transfer belt 2 is provided with an unloading ramp 201, and the other side of the unloading ramp 201 is provided with a transmission transfer belt 202. A transmission channel is provided between the two sets of unloading transfer belts 2. A top plate 102 is mounted on the upper end of the unloading ramp 201. Side slots 101 are opened on both sides of the transfer box 1. The top of the top plate 102 is equipped with a negative pressure fan 5, and the bottom of the top plate 102 is equipped with a lifting rod assembly 503. An air outlet box 502 is provided at the bottom of the lifting rod assembly 503. A retractable air supply pipe 501 is provided at the connection end between the air inlet of the air outlet box 502 and the air outlet of the negative pressure fan 5.
[0026] A cover plate 6 is mounted above the conveyor belt 202, and an opening slot 601 is provided at the top center of the cover plate 6. An L-shaped fitting plate 8 is embedded in the inner side of the opening slot 601. An electric push rod 7 is horizontally installed at the bottom of the L-shaped fitting plate 8, and the electric push rod 7 can push the L-shaped fitting plate 8 to move horizontally.
[0027] The other end of the L-shaped interlocking plate 8 is equipped with a side plate 801, and two sets of side plates 801 are arranged in parallel. The inner side of the upper side plate 801 is equipped with a drive motor 802, and the inner side of the lower side plate 801 is equipped with a lifting rod 803. The bottom of the lifting rod 803 is equipped with a gripper assembly 804. The bottom shaft of the drive motor 802 is connected to the top of the lifting rod 803. The surface of the unloading transfer belt 2 is covered with anti-slip transport strips 3. The dimensions of the air outlet box 502 and the side slot 101 are matched. The position of the air outlet of the air outlet box 502 and the unloading... The ramp section 201 is distributed in parallel; a drive motor 4 is installed at one end of the unloading transfer belt 2 for reversing transmission, and a drive shaft 401 is provided at the shaft connection end of the drive motor 4, and a drive sleeve 402 is sleeved on the outer wall of the drive shaft 401, and the drive sleeve 402 is fitted against the inner wall of the unloading transfer belt 2; the drive motor 802 can drive the bottom lifting rod 803 to rotate, and the gripper assembly 804 is composed of an electric gripper assembly; the negative pressure fan 5 is connected to the air outlet box 502 through a retractable air supply pipe 501.
[0028] The inner walls of the transfer box 1 are symmetrically equipped with unloading transfer belts 2, which rotate synchronously through a drive mechanism to transport the turbine. The symmetrically arranged unloading transfer belts 2 can support the horizontal ends of the turbine, and the sleeve or shaft end can be placed in the middle gap to fix the position of the turbine horizontally. The turbine is then transferred to a suitable position using the unloading ramp 201 and the transfer belt 202, and the position is transferred in conjunction with the lifting and rotating electric gripper.
[0029] Above the symmetrically arranged unloading ramp 201, there is a suspended air outlet box 502. Air is supplied by the negative pressure fan 5 at the top, so that the air outlet of the air outlet box 502 performs air jet operation. The air outlet end of the air outlet box 502 is inclined and parallel to the unloading ramp 201, so that the ejected gas is vertical and sprayed onto the surface of the unloading ramp 201, so that the residual debris from the turbine surface machining is frequently blown away by air.
[0030] The blown debris will move downward with the airflow and fall to the bottom of the transfer box 1, where it will be collected in the debris collection filter 103. The structure and control logic are simple, and the equipment has high reliability and stability.
[0031] The discharge end of the transfer box 1 is equipped with an L-shaped fitting plate 8. The drive motor 802 and the lifting rod 803 installed on the outer side plate 801 of the L-shaped fitting plate 8 are used to clamp the turbine end through the gripper assembly 804 installed at the bottom of the lifting rod 803, thereby driving the turbine to move in position.
[0032] The above description is merely a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any changes or substitutions that can be conceived by those skilled in the art within the technical scope disclosed in this utility model without creative effort should be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the protection scope defined in the claims.
Claims
1. A turbine transfer mechanism for reducer part machining, comprising a transfer box (1), a negative pressure fan (5) and an L-shaped embedded plate (8), characterized in that: The inner walls of the transfer box (1) are provided with unloading transfer belts (2) on both sides, and the bottom wall of the transfer box (1) is embedded with a debris collection filter screen (103). The unloading transfer belt (2) is provided with an unloading ramp (201) on one side, and a transmission transfer belt (202) is provided on the other side of the unloading ramp (201). A transmission channel is provided between the two sets of unloading transfer belts (2). A top plate (102) is mounted on the upper end of the unloading ramp (201). Side slots (101) are opened on both sides of the transfer box (1). A negative pressure fan (5) is installed on the top of the top plate (102), and a lifting rod assembly (503) is installed at the bottom of the top plate (102). An air outlet box (502) is provided at the bottom of the lifting rod assembly (503). A retractable air supply pipe (501) is provided at the connection end between the air inlet of the air outlet box (502) and the air outlet of the negative pressure fan (5). A cover plate (6) is mounted above the conveyor belt (202), and an opening slot (601) is provided at the top center of the cover plate (6). An L-shaped fitting plate (8) is embedded in the inner side of the opening slot (601). An electric push rod (7) is horizontally installed at the bottom of the L-shaped fitting plate (8), and the electric push rod (7) can push the L-shaped fitting plate (8) to move horizontally. The other end of the L-shaped interlocking plate (8) is equipped with a side plate (801), and two sets of side plates (801) are arranged in parallel. A drive motor (802) is installed on the inner side of the upper side plate (801), and a lifting rod (803) is installed on the inner side of the lower side plate (801). A clamping arm (804) is installed at the bottom of the lifting rod (803), and the bottom shaft of the drive motor (802) is connected to the top of the lifting rod (803).
2. The turbine transfer mechanism for machining of a reducer part according to claim 1, wherein The surface of the unloading transfer belt (2) is covered with anti-slip transport strips (3).
3. A turbine transfer mechanism for machining reducer parts according to claim 1, characterized in that, The dimensions of the air outlet box (502) and the side slot (101) are matched.
4. A turbine transfer mechanism for machining reducer parts according to claim 1, characterized in that, The air outlet of the air outlet box (502) and the unloading ramp (201) are distributed in parallel.
5. A turbine transfer mechanism for machining reducer parts according to claim 1, characterized in that, The unloading transfer belt (2) is equipped with a drive motor (4) at one end of the reversing drive, and a drive shaft (401) is provided at the shaft connection end of the drive motor (4), and a drive sleeve (402) is sleeved on the outer wall of the drive shaft (401), and the drive sleeve (402) is fitted to the inner wall of the unloading transfer belt (2).
6. A turbine transfer mechanism for machining reducer parts according to claim 1, characterized in that, The drive motor (802) can drive the bottom lifting rod (803) to rotate, and the gripper assembly (804) is composed of an electric gripper assembly.
7. A turbine transfer mechanism for machining reducer parts according to claim 1, characterized in that, The negative pressure fan (5) is interconnected with the air supply pipe (501) and the air outlet box (502).