CN217541511U - Homogeneity stove auxiliary device - Google Patents

Homogeneity stove auxiliary device Download PDF

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Publication number
CN217541511U
CN217541511U CN202220872318.9U CN202220872318U CN217541511U CN 217541511 U CN217541511 U CN 217541511U CN 202220872318 U CN202220872318 U CN 202220872318U CN 217541511 U CN217541511 U CN 217541511U
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China
Prior art keywords
furnace body
fan
circulation
box
filter box
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CN202220872318.9U
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Chinese (zh)
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崔东
王金宝
韩克武
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Shandong Luyu Valve Co ltd
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Shandong Luyu Valve Co ltd
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Abstract

The utility model relates to a homogeneity stove technical field specifically discloses a homogeneity stove auxiliary device, including furnace body, fan and coolant tank, the inside one side of furnace body is connected with the filter box through the installation component that sets up, filter box internally mounted has the seal box, T shape frame, two are all installed to the seal box both sides T shape frame outside all overlaps and is equipped with the circulation case, the air inlet that adaptation circulation case corresponds is all seted up at the seal box both ends, flat pipe is installed to circulation incasement side, the appearance of flat pipe and circulation case all is the multistage form of buckling, circulation chamber has all been seted up to circulation incasement portion, coupling assembling and furnace body outer wall fixed connection through setting up in the fan bottom, fan one end suction tube runs through the inside of furnace body, filter box and seal box in proper order, the utility model discloses can cool off the inside exhaust hot exhaust gas of furnace body to this reduces the loss of fan inner member.

Description

Homogeneity stove auxiliary device
Technical Field
The utility model relates to a homogeneity stove technical field specifically discloses a homogeneity stove auxiliary device.
Background
Homogenizing furnaces are often used for processing glass to allow glass that may be self-igniting to be broken in advance in the factory. The method can effectively reduce the self-explosion rate of the tempered glass after leaving the factory, improve the yield, and reduce the influence on transportation, installation and subsequent process reworking caused by the self-explosion. At present, the domestic is mainly to adopt a forced convection type electric heating hot dipping furnace to process toughened glass. The glass is heated by hot air generated by the electric heating wire, the heating element is arranged in the air channel at the bottom in the furnace, and air blown out by the fan enters the furnace after being heated in the air channel, so that the influence of heat radiation and heat conduction of the heating element on the glass can be prevented, and the phenomenon of uneven heating of the glass is avoided.
The hot waste gas of homogeneity stove inside need be discharged after using, can use the fan to discharge for the increase exhaust dynamics, and the fan is in the contact process who lasts with hot waste gas, and inner structure can generate heat, arouses the hair of the inside electrical components of fan to scald, in order to avoid the fan to damage, for this reason, we need improve it.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving the defects existing in the background technology and providing an auxiliary device of a homogenizing furnace.
In order to achieve the above purpose, the utility model provides an homogeneity stove auxiliary device, including furnace body, fan and coolant tank, the filter box is connected with through the installation component who sets up in the inside one side of furnace body, filter box internally mounted has the closed box, T shape frame, two are all installed to the closed box both sides T shape frame outside all overlaps and is equipped with the circulation case, the air inlet that adaptation circulation case corresponds is all seted up at the closed box both ends, flat pipe is installed to circulation incasement side, flat pipe and circulation case's appearance all is the multistage form of buckling, circulation chamber has all been seted up to circulation incasement portion, fan bottom is through the coupling assembling and the furnace body outer wall fixed connection who sets up, fan one end suction tube runs through the inside of furnace body, filter box and closed box in proper order, coolant tank one side just is close to fan top position department fixed connection through the supporting component who sets up with the furnace body outer wall, coolant tank both sides symmetry intercommunication respectively installs inlet tube and drain pipe, two the drain pipe is kept away from coolant tank's one end intercommunication to the inside that corresponds position department, two the outside of drain pipe all is provided with the reinforcement.
Preferably, the installation component comprises two L-shaped plates which are respectively installed on one side inside the furnace body, the two L-shaped plates are symmetrically arranged, and the filter box is installed between the two L-shaped plates in a frame mode.
Preferably, the connecting assembly comprises a fixing frame fixedly installed at the bottom of the fan, and the fixing frame is fixedly connected with the outer wall of the furnace body.
Preferably, the support component comprises an L-shaped frame fixedly installed on one side of the cooling water tank, and the L-shaped frame is fixedly connected with the outer wall of the furnace body and close to the upper position of the fan.
Preferably, the reinforcing member comprises conical seats which are sleeved on the outer side of the drain pipe, and the conical seats are clamped inside the filter box.
Preferably, the delivery pipe is installed all to flat intraductal side bottom intercommunication, just the delivery pipe all extends to the furnace body outside.
Compared with the prior art, the utility model discloses following beneficial effect has: through set up filter box and seal box in furnace body one side inner wall department, when the fan began work, the inside air current of furnace body can be along with the suction through the filter box by the fan, intercept the dust of furnace body inside at the front end by the filter box, hot waste gas pours into the circulation incasement portion through the air inlet department that seal box both ends top was seted up, the drain pipe that flat pipe and outside cooling water tank intercommunication at the circulation incasement portion communicate, cause the circulation can be along the orbit of multistage bending form and flat pipe surface and circulation case shell fully contact at the hot waste gas of circulation intracavity portion, cool off hot waste gas at the in-process of emission, cause the later stage fan when continuously using, can not appear because of the problem that hot waste gas's temperature leads to inside electrical components to damage.
Drawings
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a sectional view showing the structure of the inner part of the furnace body;
FIG. 3 is a schematic view of the communication structure between the fan and the closed box and between the fan and the filter box;
FIG. 4 is a cross-sectional view of the connection between the cooling water tank and the circulation tank of the present invention;
fig. 5 is a cross-sectional view of the internal structure of the circulation box of the present invention.
In the figure: 1. a furnace body; 2. a fan; 3. a cooling water tank; 4. an L-shaped plate; 5. a filter box; 6. a conical seat; 7. a flow-through chamber; 8. closing the box; 9. a flow-through box; 10. a water inlet pipe; 11. a T-shaped frame; 12. flat tubes; 13. a drain pipe; 14. a fixed mount; 15. an L-shaped frame.
Detailed Description
In order to make the aforementioned objects, features and advantages of the present invention more clearly understood, the present invention will be described in further detail with reference to the accompanying drawings and detailed description.
1-5, including furnace body 1, fan 2 and coolant tank 3, 1 inside one side of furnace body is connected with filter box 5 through the installation component that sets up, filter box 5 internally mounted has closed box 8, T shape frame 11 is all installed to closed box 8 both sides, two T shape frame 11 outsides all overlap and are equipped with circulation case 9, the corresponding air inlet of adaptation circulation case 9 is all seted up at closed box 8 both ends, flat pipe 12 is installed to circulation case 9 inboard, flat pipe 12 and circulation case 9's appearance all are the multistage form of buckling, circulation chamber 7 has all been seted up to circulation case 9 inside, fan 2 bottom is through the coupling assembling and furnace body 1 outer wall fixed connection that set up, fan 2 one end suction tube runs through furnace body 1 in proper order, the inside of filter box 5 and closed box 8, coolant tank 3 one side is through the supporting component that sets up and furnace body 1 outer wall and be close to fan 2 top position department fixed connection, coolant tank 3 both sides symmetry intercommunication respectively install 10 and drain pipe 13, the one end that coolant tank 3 kept away from coolant tank 3 communicates to the flat pipe 12 inside that corresponds position department is located to two drain pipes, the outer side of inlet pipe 13 all is provided with the reinforcement.
Can be convenient for through the T shape frame 11 that sets up circulate the stable installation of case 9, cause circulation case 9 and inside flat pipe 12 to hang the dress and use in 8 inboards and corresponding air inlet department of seal box, can increase the area of contact that hot exhaust gas flows through in circulation case 9 inside through the flat pipe 12 that sets up, circulation chamber 7 through setting up can be convenient for hot exhaust gas flows through in circulation case 9 insidely, can be convenient for circle the fan 2 suction tube through the seal box 8 that sets up, cause the guide of air current to enter from air inlet department only, from this and alright carry out abundant cooling with inspiratory hot exhaust gas, inlet tube 10 is convenient for carry coolant liquid for coolant tank 3, then discharge to flat pipe 12 insidely through drain pipe 13.
The installation component is including installing two L shaped plates 4 in 1 inside one side of furnace body respectively, and two L shaped plates 4 are the symmetry and set up, and filter box 5 erects jointly between two L shaped plates 4, and two L shaped plates 4 are installed in 1 inside one side of furnace body, conveniently clamp filter box 5 to make its filter box 5 can completely cut off the dust that inhales the inside mix with of hot waste gas that comes.
The connecting assembly comprises a fixing frame 14 fixedly installed at the bottom of the fan 2, the fixing frame 14 is fixedly connected with the outer wall of the furnace body 1, and the fan 2 can be stably installed on the outer side of the furnace body 1 through the arranged fixing frame 14, so that the connecting assembly can be used.
The supporting component comprises an L-shaped frame 15 fixedly arranged on one side of the cooling water tank 3, the L-shaped frame 15 is fixedly connected with the outer wall of the furnace body 1 and the upper position close to the fan 2, the cooling water tank 3 can be stably arranged through the arranged L-shaped frame 15, and cooling liquid can be poured into the cooling water tank 3 in the using process to accelerate the cooling effect.
The reinforcement includes the toper seat 6 of all suit in the drain pipe 13 outside, and toper seat 6 clamps in the inside of filter box 5, and toper seat 6 is used for strengthening the stability of drain pipe 13.
The delivery pipe is installed all to the inboard bottom of flat pipe 12 intercommunication, and the delivery pipe all extends to furnace body 1 outside, and the delivery pipe of the inboard bottom intercommunication of flat pipe 12 can be convenient for discharge the coolant liquid after the inside use of flat pipe 12.
The working principle is as follows: when the air blower is used, when the air blower 2 starts to work, the air flow inside the furnace body 1 passes through the filter box 5 along with the suction of the air blower 2, the dust inside the furnace body 1 is intercepted at the front end by the filter box 5, hot waste gas flows into the circulation box 9 through the air inlets formed above the two ends of the closed box 8, the flat pipe 12 at the edge of the air inlet is connected with the drain pipe 13 communicated with the external cooling water tank 3, so that the hot waste gas flowing inside the circulation cavity 7 can be fully contacted with the surface of the flat pipe 12 and the shell of the circulation box 9 along the multi-section bent track, the hot waste gas is cooled in the flowing and discharging process of the hot waste gas, and when the air blower 2 is continuously used in the later period, the problem that internal electrical elements are damaged due to the temperature of the hot waste gas cannot occur, and finally, the cooled gas is discharged out of the furnace body 1 below the inner side of the closed box 8 by the suction pipe of the air blower 2.
The foregoing shows and describes the general principles, essential features, and advantages of the invention. It should be understood by those skilled in the art that the present invention is not limited to the above embodiments, and that all the embodiments and descriptions are provided in the present invention, and that various changes and modifications can be made without departing from the spirit and scope of the present invention, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (6)

1. The utility model provides a homogeneity stove auxiliary device, includes furnace body (1), fan (2) and coolant tank (3), its characterized in that: one side in the furnace body (1) is connected with a filter box (5) through an arranged installation component, a closed box (8) is arranged in the filter box (5), T-shaped frames (11) are arranged on two sides of the closed box (8), circulation boxes (9) are sleeved outside the two T-shaped frames (11), both ends of the closed box (8) are provided with air inlets corresponding to the adaptive circulation boxes (9), the inner side of the circulation box (9) is provided with a flat pipe (12), the flat pipe (12) and the circulation box (9) are both in a multi-section bent shape, circulation cavities (7) are arranged in the circulation boxes (9), the bottom of the fan (2) is fixedly connected with the outer wall of the furnace body (1) through a connecting component, a suction pipe at one end of the fan (2) sequentially penetrates through the furnace body (1), the filter box (5) and the sealing box (8), one side of the cooling water tank (3) is fixedly connected with the outer wall of the furnace body (1) and the position close to the upper part of the fan (2) through a supporting component, inlet tube (10) and drain pipe (13) are installed to cooling water tank (3) both sides symmetry intercommunication respectively, two the one end intercommunication that cooling water tank (3) were kept away from in drain pipe (13) communicates to flat pipe (12) inside of corresponding position department, two the outside of drain pipe (13) all is provided with the reinforcement.
2. The auxiliary device of the homogenizing furnace according to claim 1, characterized in that: the mounting assembly comprises two L-shaped plates (4) which are respectively mounted on one side inside the furnace body (1), the two L-shaped plates (4) are symmetrically arranged, and the filter box (5) is jointly erected between the two L-shaped plates (4).
3. The auxiliary device of the homogenizing furnace according to claim 1, characterized in that: the connecting assembly comprises a fixing frame (14) fixedly installed at the bottom of the fan (2), and the fixing frame (14) is fixedly connected with the outer wall of the furnace body (1).
4. The auxiliary device of claim 3, wherein: the support assembly comprises an L-shaped frame (15) fixedly installed on one side of the cooling water tank (3), and the L-shaped frame (15) is fixedly connected with the outer wall of the furnace body (1) and is close to the upper position of the fan (2).
5. The auxiliary device of the homogenizing furnace according to claim 1, characterized in that: the reinforcing member comprises conical seats (6) which are sleeved on the outer side of the drain pipe (13), and the conical seats (6) are clamped inside the filter box (5).
6. The auxiliary device of the homogenizing furnace according to claim 1, characterized in that: the delivery pipe is installed all to flat pipe (12) inboard bottom intercommunication, just the delivery pipe all extends to furnace body (1) outside.
CN202220872318.9U 2022-04-15 2022-04-15 Homogeneity stove auxiliary device Active CN217541511U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220872318.9U CN217541511U (en) 2022-04-15 2022-04-15 Homogeneity stove auxiliary device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220872318.9U CN217541511U (en) 2022-04-15 2022-04-15 Homogeneity stove auxiliary device

Publications (1)

Publication Number Publication Date
CN217541511U true CN217541511U (en) 2022-10-04

Family

ID=83432267

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220872318.9U Active CN217541511U (en) 2022-04-15 2022-04-15 Homogeneity stove auxiliary device

Country Status (1)

Country Link
CN (1) CN217541511U (en)

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