Pinus densiflora board shallow carbonization equipment

文档序号:1442472 发布日期:2020-02-18 浏览:29次 中文

阅读说明:本技术 一种赤松板浅层碳化设备 (Pinus densiflora board shallow carbonization equipment ) 是由 姚晓君 于 2019-11-14 设计创作,主要内容包括:本发明涉及一种浅层碳化设备,尤其涉及一种赤松板浅层碳化设备。本发明的技术问题是如何提供一种可以实现自动对赤松板进行碳化,且碳化均匀,赤松板的颜色得以保证,操作安全,工作效率高的赤松板浅层碳化设备。该设备包括底座、机架、支撑架、双轴电机等;底座顶部设有机架和双轴电机,机架位于双轴电机左侧。本发明通过夹紧组件可将赤松板移动到两个扁嘴氧焊枪之间,使得扁嘴氧焊枪可对赤松板进行碳化,碳化完成后,碳化完成的赤松板会自动掉下来,如此可以实现自动对赤松板进行碳化,且碳化均匀,赤松板的颜色得以保证,其次,碳化好一块赤松板之后下料箱内的下一块赤松板会自动掉下来,这样可以代替人工上料,操作安全。(The invention relates to shallow layer carbonization equipment, in particular to pinus densiflora board shallow layer carbonization equipment. The invention provides a pinus densiflora board shallow carbonization device which can automatically carbonize pinus densiflora boards, is uniform in carbonization, ensures the color of the pinus densiflora boards, is safe to operate and has high working efficiency. The equipment comprises a base, a frame, a support frame, a double-shaft motor and the like; the top of the base is provided with a rack and a double-shaft motor, and the rack is positioned on the left side of the double-shaft motor. According to the invention, the red pine plate can be moved between the two flat-nozzle oxygen welding guns through the clamping assembly, so that the flat-nozzle oxygen welding guns can carbonize the red pine plate, the carbonized red pine plate can automatically fall off after carbonization is completed, the red pine plate can be automatically carbonized, the carbonization is uniform, the color of the red pine plate can be ensured, and the next red pine plate in the blanking box can automatically fall off after one red pine plate is carbonized, so that manual feeding can be replaced, and the operation is safe.)

1. A Chinese red pine board shallow carbonization device comprises a base (1), a frame (2), a support frame (3) and a double-shaft motor (4), wherein the frame (2) and the double-shaft motor (4) are arranged at the top of the base (1), the frame (2) is positioned on the left side of the double-shaft motor (4), the support frame (3) is fixedly connected with four corners of the top of the base (1), the support frame (3) is positioned between the frame (2) and the double-shaft motor (4), the Chinese red pine board carbonization device is characterized by further comprising a transmission assembly, a connecting plate (11), a first fixed block (12), a flat-nozzle oxygen welding gun (13), a clamping assembly, a connecting piece, a blanking box (19), a baffle (20), a guide ring (22) and a second fixed block (23), the transmission assembly is arranged on the support frame (3), the transmission assembly is used for transmitting power, the connecting plate (11) is arranged on, still be equipped with clamping component on the drive assembly, clamping component is used for pressing from both sides the red pine board tightly, frame (2) top is equipped with the connecting piece, fixed workbin (19) of being equipped with on the connecting piece, workbin (19) bottom is opened there is the through-hole, be equipped with baffle (20) on workbin (19) of unloading, the one side of keeping away from baffle (20) on workbin (19) of unloading is connected with guide ring (22), frame (2) top still is equipped with second fixed block (23), second fixed block (23) are located workbin (19) right side of unloading, it has flat mouth oxygen welder (13) to pass in first fixed block (12), it has flat mouth oxygen welder (13) to also pass in second fixed block (23).

2. The apparatus for shallow carbonization of red pine boards as claimed in claim 1, wherein the connecting members are support bars (18), the top of the frame (2) is provided with the support bars (18), and the support bars (18) are connected with a discharging box (19).

3. The apparatus of claim 2, wherein the transmission assembly comprises a first chain wheel (5), a first rotating shaft (6), a second chain wheel (7), a first chain (8), a third chain wheel (9) and a second chain (10), the first chain wheel (5) is installed on an output shaft at one end of the double-shaft motor (4), the first rotating shaft (6) is rotatably connected between the support frames (3) at the left side and the right side, the connecting plate (11) is rotatably connected between the two first rotating shafts (6), the second chain wheel (7) is fixedly connected to the first rotating shaft (6) at the right side, the first chain (8) is wound between the second chain wheel (7) and the first chain wheel (5), the two first rotating shafts (6) are both provided with the third chain wheel (9), and the second chain (10) is wound between the third chain wheels (9) at both sides.

4. The device for carbonizing a Pinus densiflora board in a shallow layer according to claim 3, wherein the clamping assembly comprises a mounting frame (14), a torsion spring (15), a connecting block (16) and a clamping block (17), the two second chains (10) are fixedly connected with the mounting frame (14), the torsion spring (15) and the connecting block (16) are mounted on the mounting frame (14), the torsion spring (15) penetrates through the connecting block (16), and the clamping block (17) is arranged on the connecting block (16).

5. The apparatus of claim 4, further comprising a push rod (1701) and a roller (21), wherein the push rod (1701) is fixedly arranged on the clamping block (17), and the roller (21) is rotatably connected to the lower tank (19).

6. The apparatus of claim 5, further comprising bearing seats (24), a second rotating shaft (25), a first gear (26), a driving wheel (27), a belt (28), a third rotating shaft (29), a second gear (30) and a conveyor belt (31), wherein the base (1) is provided with four bearing seats (24), the four bearing seats (24) are all arranged between the four supporting frames (3), the second rotating shaft (25) is connected between the two bearing seats (24), the second rotating shaft (25) is connected with the first gear (26) and the driving wheel (27), the first gear (26) is arranged at the front side of the driving wheel (27), the belt (28) is wound between the driving wheel (27) and an output shaft at the other end of the double-shaft motor (4), the third rotating shaft (29) is arranged between the other two bearing seats (24), and the third rotating shaft (29) is also arranged between the front side and the rear side of the frame (2), a second gear (30) is fixedly connected to the third rotating shaft (29) on the right side, the second gear (30) is meshed with the first gear (26), and a conveying belt (31) is wound between the two third rotating shafts (29).

Technical Field

The invention relates to shallow layer carbonization equipment, in particular to pinus densiflora board shallow layer carbonization equipment.

Background

The shallow carbonized wood is pure natural anti-corrosion wood, adopts a natural red pine board, does not add any harmful anti-corrosion agent in the production process, does not produce any environmental pollution problem, only adopts an oxygen welding gun for carbonization, so that the shallow layer of the wood has a very thin carbonized layer without toxicity or harm, the carbonized shallow layer has concave-convex feeling, the texture is clear, and the three-dimensional effect can be produced.

Need the staff to hold oxygen welder and make a round trip to carry out the carbonization to the positive and negative two sides of china red pine board when traditional chinese red pine board shallow layer carbonization, the carbonization is inhomogeneous, and the colour of chinese red pine board is hardly guaranteed, and the operation is dangerous, and work efficiency is also very low, produces the waste product moreover easily.

In order to solve the problem, the device which can automatically carbonize the pinus densiflora board, is uniform in carbonization, ensures the color of the pinus densiflora board, is safe to operate and has high working efficiency is provided.

Disclosure of Invention

In order to overcome the defects that the front and back surfaces of the pinus densiflora are carbonized back and forth by holding an oxygen welding gun by hands, the carbonization is not uniform, the color of the pinus densiflora is difficult to ensure, the operation is dangerous, and the working efficiency is very low, the technical problem of the invention is as follows: the red pine board shallow carbonization equipment has the advantages that the red pine board can be automatically carbonized, the carbonization is uniform, the color of the red pine board is guaranteed, the operation is safe, and the working efficiency is high.

The technical implementation scheme of the invention is as follows: a pinus densiflora board superficial layer carbonization device comprises a base, a frame, a support frame, a double-shaft motor, a transmission assembly, a connecting plate, a first fixed block, a flat nozzle oxygen welding gun, a clamping assembly, a connecting piece, a blanking box, a baffle, a guide ring and a second fixed block, wherein the frame and the double-shaft motor are arranged at the top of the base, the frame is positioned on the left side of the double-shaft motor, the support frame is fixedly connected at four corners of the top of the base and is positioned between the frame and the double-shaft motor, the transmission assembly is arranged on the support frame and is used for transmitting power, the connecting plate is arranged on the transmission assembly, the first fixed block is fixed on the connecting plate, the clamping assembly is also arranged on the transmission assembly and is used for clamping the pinus densiflora board, the connecting piece is arranged at the top of the frame, the blanking box is fixedly arranged on, the top of the frame is also provided with a second fixed block, the second fixed block is positioned on the right side of the blanking box, the first fixed block penetrates through the flat-nozzle oxygen welding gun, and the second fixed block also penetrates through the flat-nozzle oxygen welding gun.

As the improvement of the scheme, the connecting piece is a supporting rod, the top of the rack is provided with the supporting rod, and the supporting rod is connected with the blanking box.

As the improvement of above-mentioned scheme, the drive assembly is including first sprocket, first pivot, the second sprocket, first chain, third sprocket and second chain, install first sprocket on the output shaft of biax motor one end, the rotary type is connected with first pivot between the support frame of the left and right sides, the connecting plate rotary type is connected between two first pivots, fixedly connected with second sprocket in the first pivot on right side, around having first chain between second sprocket and the first sprocket, all be equipped with the third sprocket in two first pivots, around having the second chain between the third sprocket of both sides.

As the improvement of the scheme, the clamping assembly comprises an installation frame, a torsion spring, a connecting block and a clamping block, wherein the installation frame is fixedly connected to the two second chains, the torsion spring and the connecting block are installed on the installation frame, the torsion spring penetrates through the connecting block, and the clamping block is arranged on the connecting block.

As an improvement of the scheme, the automatic feeding device further comprises a push rod and a roller, the push rod is fixedly arranged on the clamping block, and the roller is rotatably connected in the blanking box.

As an improvement of the scheme, the automatic transmission device further comprises bearing seats, a second rotating shaft, a first gear, a transmission wheel, a belt, a third rotating shaft, a second gear and a transmission belt, wherein the four bearing seats are arranged on the base, the four bearing seats are all located between the four supporting frames, the second rotating shaft is connected between the two bearing seats, the first gear and the transmission wheel are connected to the second rotating shaft, the first gear is located on the front side of the transmission wheel, the belt is wound between the transmission wheel and an output shaft at the other end of the double-shaft motor, the third rotating shaft is arranged between the other two bearing seats, the third rotating shaft is also arranged between the front side and the rear side of the rack, the second gear is fixedly connected to the third rotating shaft on the right side, the second gear.

The beneficial effects are that:

1. can remove the red pine board between two flat mouth oxygen welder through clamping component, make flat mouth oxygen welder can carbonize the red pine board, the carbonization is accomplished the back, clamping component loosens the red pine board that the carbonization was accomplished, the red pine board that the carbonization was accomplished can fall down automatically, and thus, can realize automizing the carbonization to the red pine board, and the carbonization is even, the colour of red pine board can be guaranteed, secondly, the next red pine board in the unloading case can fall down automatically after carbonizing a red pine board, can replace artifical material loading like this, the operation is safe, high working efficiency.

2. Can reduce the friction between red pine board and the workbin through the cylinder for red pine board can more smoothly shift out the workbin, can not lead to the clamp splice to press from both sides not to go out red pine board because of frictional force is too big.

3. Can go out the china red pine board conveying through the conveyer belt, can not pile up on the base because of the china red pine board and influence equipment work.

Drawings

Fig. 1 is a schematic perspective view of the present invention.

Fig. 2 is a partial perspective view of the present invention.

Fig. 3 is a partial cross-sectional schematic view of the present invention.

Fig. 4 is a exploded perspective view of the clamping assembly of the present invention.

Fig. 5 is an enlarged schematic view of the three-dimensional structure of the invention a.

Number designation in the figures: 1. the welding machine comprises a base, 2, a rack, 3, a support frame, 4, a double-shaft motor, 5, a first chain wheel, 6, a first rotating shaft, 7, a second chain wheel, 8, a first chain, 9, a third chain wheel, 10, a second chain, 11, a connecting plate, 12, a first fixing block, 13, a flat nozzle oxygen welding gun, 14, a mounting frame, 15, a torsion spring, 16, a connecting block, 17, a clamping block, 1701, a push rod, 18, a support rod, 19, a blanking box, 20, a baffle, 21, a roller, 22, a guide ring, 23, a second fixing block, 24, a bearing seat, 25, a second rotating shaft, 26, a first gear, 27, a driving wheel, 28, a belt, 29, a third rotating shaft, 30, a second gear and 31.

Detailed Description

Embodiments of the present invention will be described in detail below with reference to the accompanying drawings.

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