CN214333313U - Drying-machine is used in stone material processing - Google Patents

Drying-machine is used in stone material processing Download PDF

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Publication number
CN214333313U
CN214333313U CN202023226598.6U CN202023226598U CN214333313U CN 214333313 U CN214333313 U CN 214333313U CN 202023226598 U CN202023226598 U CN 202023226598U CN 214333313 U CN214333313 U CN 214333313U
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cavity
air
right end
compressor
drying
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CN202023226598.6U
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Chinese (zh)
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袁荣森
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Zhejiang Shenshang Shenpin Energy Saving Technology Co ltd
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Zhejiang Shenshang Shenpin Energy Saving Technology Co ltd
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Abstract

The utility model discloses a drying-machine for stone material processing relates to stone material processing technology field, which comprises a frame, stoving case and compressor, the upper surface of frame evenly rotates and is connected with a plurality of conveying roller, the upper surface of stoving case welding in the frame, the welding of the inside top surface of stoving case has the heating cabinet, a plurality of heating wires are evenly installed to the inside of heating cabinet, the right-hand member face of heating cabinet is pegged graft and is had the connecting pipe, the inside lower extreme of stoving case is provided with jet-propelled pipe, the bottom of jet-propelled pipe evenly is pegged graft and is had a plurality of shower nozzle, both ends all weld the montant about jet-propelled pipe top, the top of montant and the inside top surface welding of stoving case, there is the motor right rear end of the outside top surface of stoving case through the screw connection, the power take off end pin joint of motor has the cam, the compressor passes through the left end of connecting rod welding at the outside top surface of stoving case. Through the cooperation setting of compressor and heating cabinet, possess better energy-conserving effect, can save the use of air pump or fan.

Description

Drying-machine is used in stone material processing
Technical Field
The utility model relates to a stone material processing technology field especially relates to a drying-machine for stone material processing.
Background
The stone material as a high-grade building decoration material is widely applied to indoor and outdoor decoration design, curtain wall decoration and public facility construction. Common stone materials in the market at present are mainly divided into natural stone and artificial stone.
The stone material need wash when adding man-hour, and wash the back and then need dry, present drying-machine in order to obtain a large amount of heats, adopts powerful electro-heat equipment mostly, and powerful electro-heat equipment need consume more electric energy, increases stone material processing cost, does not have energy-conserving effect, for this reason we have proposed a drying-machine for stone material processing to solve the above-mentioned technical problem who provides.
SUMMERY OF THE UTILITY MODEL
The utility model provides a drying-machine for stone material processing increases stone material processing cost in order to solve the drying-machine of the prior art that above-mentioned background art provided, does not possess the problem of energy-conserving effect.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
a drying machine for stone processing comprises a rack, a drying box and a compressor, wherein the upper surface of the rack is uniformly and rotatably connected with a plurality of conveying rollers, the drying box is welded on the upper surface of the rack, the top surface of the interior of the drying box is welded with a heating box, a plurality of electric heating wires are uniformly installed in the interior of the heating box, a connecting pipe is inserted into the right end surface of the heating box, an air injection pipe is arranged at the lower end of the interior of the drying box, a plurality of spray heads are uniformly inserted into the bottom of the air injection pipe, vertical rods are welded at the left end and the right end of the top of the air injection pipe, the top of each vertical rod is welded with the top surface of the interior of the drying box, a motor is connected to the right rear end of the exterior top surface of the drying box through screws, a cam is connected to the power output end of the motor in a pin joint manner, the compressor is welded at the left end of the exterior top surface of the drying box through a connecting rod, and a sliding rod is connected to the right end surface of the compressor in a sliding manner, the improved compressor is characterized in that a spring is sleeved outside the right end of the sliding rod, a communicating pipe is welded at the bottom of the left end of the compressor, a compression cavity, an air outlet cavity and a heat collection cavity are formed in the compressor, the air outlet cavity is located on the left side of the compression cavity, the heat collection cavity is located on the outer side of the compression cavity, a plurality of air inlets are uniformly formed in the inner circumferential surface of the right end of the compression cavity, a piston is slidably connected to the right end of the compression cavity, a plurality of air pipes are uniformly inserted into the left end surface of the compression cavity, a plurality of fins are uniformly welded on the inner circumferential surface of the heat collection cavity, and a plurality of air outlets are uniformly formed in the inner circumferential surface of the left end of the heat collection cavity.
Furthermore, the bottom of the connecting pipe is connected and communicated with the upper part of the right end of the air injection pipe, and the conveying roller is positioned at the bottom of the inner side of the drying box.
Furthermore, the vertical rods at the left end and the right end are respectively positioned at the left side and the right side of the heating box, and the air outlet is communicated with the inside of the air outlet cavity.
Furthermore, the communicating pipe is communicated with the inside of the air outlet cavity, the bottom of the communicating pipe penetrates into the inside of the heating box and is communicated with the inside of the heating box, and the bottom of the communicating pipe is positioned on the left side of the electric heating wire.
Furthermore, the tail end of the air pipe penetrates through the air outlet cavity and penetrates into the right end of the interior of the heat collection cavity, and the air pipe is communicated with the interior of the heat collection cavity.
Furthermore, the left end of the sliding rod penetrates into the compression cavity and is welded with the right end face of the piston, and the piston is located on the right side of the air inlet.
Furthermore, the cam is positioned on the right side of the sliding rod, and the outer circumferential surface of the cam is connected with the right end surface of the sliding rod in a sliding mode.
Compared with the prior art, the utility model discloses the beneficial effect who realizes:
through the matching arrangement of the compressor and the heating box, the piston in the compressor can rapidly slide in the compression cavity in a reciprocating manner, so that the piston which slides in the reciprocating manner can compress the air in the compression cavity, the compressed air can be heated and generate a large amount of heat, the heated air is introduced into the heating box and is mixed with the heat generated by the electric heating wire, the mixed heat enters the air jet pipe, the air jet pipe blows the heat on the surface of the stone through the sprayer, so as to dry the stone, through the mode, the electric heating wire in the heating box is set to be lower power, so that the dryer can obtain enough heat to dry the stone, the energy-saving effect is better, the processing cost can be saved, and the compressor can push the heat in the electric heating box to flow and blow on the surface of the stone while compressing the air to generate heat, therefore, an air pump or a fan can be omitted, and the effects of energy conservation and emission reduction are further achieved.
Drawings
Fig. 1 is a schematic view of the overall front internal structure of the present invention.
Fig. 2 is a schematic diagram of the front internal structure of the compressor of the present invention.
Fig. 3 is a schematic view of the top view structure of the present invention.
In FIGS. 1-3: 1-frame, 2-conveying roller, 3-drying box, 4-heating box, 5-heating wire, 6-connecting pipe, 7-air injection pipe, 701-nozzle, 702-vertical rod, 8-compressor, 801-compression cavity, 802-air outlet cavity, 803-heat collection cavity, 804-air inlet, 805-air outlet, 9-slide rod, 10-spring, 11-piston, 12-fin, 13-air pipe, 14-communicating pipe, 15-cam and 16-motor.
Detailed Description
The following description is provided for illustrative purposes, and other advantages and features of the present invention will become apparent to those skilled in the art from the following detailed description.
Please refer to fig. 1 to 3:
the utility model provides a drying-machine is used in stone material processing, including frame 1, stoving case 3 and compressor 8, each part to a drying-machine is used in stone material processing carries out detailed description below:
the upper surface of the rack 1 is uniformly and rotatably connected with a plurality of conveying rollers 2, the drying box 3 is welded on the upper surface of the rack 1, the top surface inside the drying box 3 is welded with a heating box 4, a plurality of heating wires 5 are uniformly installed inside the heating box 4, a connecting pipe 6 is inserted into the right end surface of the heating box 4, the lower end inside the drying box 3 is provided with an air injection pipe 7, the bottom of the air injection pipe 7 is uniformly inserted with a plurality of spray heads 701, vertical rods 702 are welded at the left end and the right end of the top of the air injection pipe 7, the top of the vertical rods 702 is welded with the top surface inside the drying box 3, the right rear end of the top surface outside the drying box 3 is connected with a motor 16 through screws, and a cam 15 is pin-connected to the power output end of the motor 16;
specifically, the conveying roller 2 can convey the stone to be dried to the bottom of the drying box 3, the heating wire 5 in the heating box 4 can generate heat after being electrified, then the heat is discharged into the air injection pipe 7 through the connecting pipe 6, and then the heat in the air injection pipe 7 is blown to the stone at the bottom of the drying box 3 through the spray head 701 so as to dry the stone;
according to the above, the compressor 8 is welded at the left end of the external top surface of the drying box 3 through the connecting rod, the right end surface of the compressor 8 is connected with the sliding rod 9 in a sliding manner, the spring 10 is sleeved outside the right end of the sliding rod 9, the communicating pipe 14 is welded at the bottom of the left end of the compressor 8, the compression cavity 801, the air outlet cavity 802 and the heat collecting cavity 803 are arranged inside the compressor 8, the air outlet cavity 802 is arranged at the left side of the compression cavity 801, the heat collecting cavity 803 is arranged at the outer side of the compression cavity 801, the inner circumferential surface of the right end of the compression cavity 801 is uniformly provided with the plurality of air inlets 804, the right end inside the compression cavity 801 is connected with the piston 11 in a sliding manner, the left end surface inside the compression cavity 801 is uniformly inserted with the plurality of air pipes 13, the inner circumferential surface inside the heat collecting cavity 803 is uniformly welded with the plurality of fins 12, and the inner circumferential surface of the left end inside the heat collecting cavity 803 is uniformly provided with the plurality of air outlets 805;
specifically, the air inlet 804 may introduce air into the compression cavity 801, the motor 16 may drive the cam 15 to rotate, after the cam 15 rotates, the cam 15 is engaged with the spring 10, so as to push the sliding rod 9 to rapidly slide back and forth left and right, and at the same time, the sliding rod 9 drives the piston 11 to rapidly slide back and forth left and right in the compression cavity 801, so that the piston 11 sliding back and forth can extrude air in the compression cavity 801, and when the air is compressed, the air is heated and generates heat, and at the same time, the heated air can transfer the heat to the inner wall of the compression cavity 801, so that the fins 12 can radiate the heat to the heat collection cavity 803 for collection, and at the same time, the heated air can also enter the heat collection cavity 803 through the air pipe 13, and then the heated air can blow the heat in the heat collection cavity 803 into the air outlet cavity 802 through the air outlet 805 by using air pressure, the heat in the air outlet cavity 802 is sent into the heating box 4 through the communicating pipe 14, so that the heat in the compressor 8 is converged with the heat in the heating box 4, the converged heat enters the air injection pipe 7 through the connecting pipe 6, and the spray head 701 of the air injection pipe 7 blows the heat to the stone and dries the stone;
then through the cooperation of compressor 8 and heating cabinet 4, set the heating wire 5 in the heating cabinet 4 to less power, just can let the drying-machine obtain sufficient heat and dry the stone material, possess better energy-conserving effect, can save stone material processing cost, and compressor 8 when compressed air produces heat, can also promote the heat flow in the heating cabinet 4 and blow on the stone material surface, with this can save the use of air pump or fan, further play energy saving and emission reduction's effect.

Claims (7)

1. The utility model provides a drying-machine for stone material processing, includes frame (1), stoving case (3) and compressor (8), its characterized in that:
the upper surface of the frame (1) is uniformly and rotatably connected with a plurality of conveying rollers (2);
the drying box (3) is welded on the upper surface of the rack (1), the heating box (4) is welded on the top surface inside the drying box (3), a plurality of heating wires (5) are uniformly installed inside the heating box (4), a connecting pipe (6) is inserted into the right end face of the heating box (4), an air injection pipe (7) is arranged at the lower end inside the drying box (3), a plurality of spray heads (701) are uniformly inserted into the bottom of the air injection pipe (7), vertical rods (702) are welded at the left end and the right end of the top of the air injection pipe (7), the top of each vertical rod (702) is welded with the top surface inside the drying box (3), the right rear end of the outer top surface of the drying box (3) is connected with a motor (16) through screws, and a cam (15) is connected to the power output end of the motor (16) in a pin mode;
the dryer is characterized in that the compressor (8) is welded at the left end of the outer top surface of the drying box (3) through a connecting rod, the right end surface of the compressor (8) is connected with a sliding rod (9) in a sliding manner, a spring (10) is sleeved outside the right end of the sliding rod (9), a communicating pipe (14) is welded at the bottom of the left end of the compressor (8), a compression cavity (801), an air outlet cavity (802) and a heat collection cavity (803) are formed in the compressor (8), the air outlet cavity (802) is located on the left side of the compression cavity (801), the heat collection cavity (803) is located on the outer side of the compression cavity (801), a plurality of air inlets (804) are uniformly formed in the inner circumferential surface of the right end of the compression cavity (801), a piston (11) is connected at the right end of the interior of the compression cavity (801) in a sliding manner, a plurality of air pipes (13) are uniformly inserted and connected on the left end surface of the interior of the compression cavity (801), a plurality of fins (12) are uniformly welded on the inner circumferential surface of the interior of the heat collection cavity (803), the inner circumferential surface of the left end inside the heat collection cavity (803) is uniformly provided with a plurality of air outlets (805).
2. The drying machine for stone processing according to claim 1, characterized in that: the bottom of the connecting pipe (6) is connected and communicated with the upper part of the right end of the air injection pipe (7), and the conveying roller (2) is positioned at the bottom of the inner side of the drying box (3).
3. The drying machine for stone processing according to claim 1, characterized in that: the vertical rods (702) at the left end and the right end are respectively positioned at the left side and the right side of the heating box (4), and the air outlet (805) is communicated with the inside of the air outlet cavity (802).
4. The drying machine for stone processing according to claim 1, characterized in that: the communicating pipe (14) is communicated with the inside of the air outlet cavity (802), the bottom of the communicating pipe (14) penetrates into the heating box (4) and is communicated with the inside, and the bottom of the communicating pipe (14) is positioned on the left side of the electric heating wire (5).
5. The drying machine for stone processing according to claim 1, characterized in that: the tail end of the air pipe (13) penetrates through the air outlet cavity (802) and penetrates into the right end of the interior of the heat collecting cavity (803), and the air pipe (13) is communicated with the interior of the heat collecting cavity (803).
6. The drying machine for stone processing according to claim 1, characterized in that: the left end of the sliding rod (9) penetrates into the compression cavity (801) and is welded with the right end face of the piston (11), and the piston (11) is located on the right side of the air inlet (804).
7. The drying machine for stone processing according to claim 1, characterized in that: the cam (15) is positioned on the right side of the sliding rod (9), and the outer circumferential surface of the cam (15) is connected with the right end face of the sliding rod (9) in a sliding mode.
CN202023226598.6U 2020-12-28 2020-12-28 Drying-machine is used in stone material processing Active CN214333313U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023226598.6U CN214333313U (en) 2020-12-28 2020-12-28 Drying-machine is used in stone material processing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023226598.6U CN214333313U (en) 2020-12-28 2020-12-28 Drying-machine is used in stone material processing

Publications (1)

Publication Number Publication Date
CN214333313U true CN214333313U (en) 2021-10-01

Family

ID=77902786

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202023226598.6U Active CN214333313U (en) 2020-12-28 2020-12-28 Drying-machine is used in stone material processing

Country Status (1)

Country Link
CN (1) CN214333313U (en)

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