Multi-layer composite cooling and shaping device for Taiwan woolen cloth
By combining air cooling and water cooling methods, and performing extrusion shaping during the water cooling process, the problem of poor cooling effect of existing tablecloth cooling devices has been solved, achieving rapid cooling of tablecloth materials and improving production efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-02
- Publication Date
- 2026-03-24
AI Technical Summary
The existing cooling and shaping equipment for tablecloths uses a single cooling method, resulting in poor cooling effect and affecting production efficiency.
It adopts a combination of air cooling and water cooling, and extrusion shaping is carried out during the water cooling process. The driving mechanism drives the stirring shaft and cooling roller to work together to achieve the combination of air cooling and water cooling.
It accelerated the cooling and molding speed of the cloth material, thus improving production efficiency.
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Figure CN224028154U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to billiard cloth production technical field especially, relates to a billiard cloth multilayer composite cooling setting device. BACKGROUND
[0002] Billiard cloth material is a kind of fabric specially used for billiard table surface, usually made of wool and nylon, wool provides softness and elasticity, ensures that ball rolls smoothly on the table surface, nylon increases wear resistance and skid resistance, prolongs service life.Common types are competition level billiard cloth and ordinary billiard cloth, billiard cloth material has the characteristics of wear resistance, skid resistance, good elasticity and easy maintenance, is suitable for billiard table use.
[0003] Billiard cloth material is hot-pressed by multiple layers of material, and after hot-pressing, it needs to be cooled and set to speed up the forming speed and improve production efficiency;But the existing billiard cloth cooling setting device only uses single cooling method to cool, such as air cooling or water cooling, which leads to poor cooling effect. UTILITY MODEL CONTENTS
[0004] The utility model aims at solving the shortcomings in the prior art and provides a billiard cloth multilayer composite cooling setting device.
[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme:
[0006] A billiard cloth multilayer composite cooling setting device, comprising: a cooling chamber and a water storage tank, the water storage tank is welded to the middle part of the top of the cooling chamber, the upper cooling roller and the lower cooling roller are horizontally connected inside the cooling chamber, one end of the upper cooling roller and the lower cooling roller is horizontally welded with a water inlet pipe, the other end of the upper cooling roller and the lower cooling roller is horizontally welded with a water outlet pipe, the top and the bottom of the middle part of the inside of the cooling chamber are respectively horizontally rotatably connected with a second stirring shaft and a first stirring shaft, and the top of the water storage tank is horizontally rotatably connected with a third stirring shaft;
[0007] Drive mechanism, the drive mechanism is used to drive the first stirring shaft, the second stirring shaft, the third stirring shaft, the upper cooling roller and the lower cooling roller to rotate;
[0008] Air supply mechanism, the air supply mechanism is used to provide cool air into the cooling chamber;
[0009] Circulation mechanism, the circulation mechanism is used to circulate cooling water.
[0010] As a further technical scheme of the utility model, the middle part of the opposite sides of the outside of the cooling chamber is respectively provided with a feeding port and a discharging port, a ventilation pipe is vertically communicated at a corner of the top of the cooling chamber, and the top of the water storage tank is an open structure.
[0011] As a further technical scheme of the utility model, the upper cooling roller is located directly above the lower cooling roller, the upper cooling roller and the lower cooling roller are provided with two groups and are located at the two sides inside the cooling chamber respectively, and the water inlet pipe and the water outlet pipe all penetrate one side of the cooling chamber and are rotationally connected with the cooling chamber.
[0012] As a further technical scheme of the utility model, the first stirring shaft penetrates one side of the cooling chamber and is rotationally connected with the cooling chamber, the third stirring shaft penetrates one side of the water storage tank and is rotationally connected with the water storage tank, and the surfaces of the first stirring shaft, the second stirring shaft and the third stirring shaft are all evenly welded with a plurality of first stirring blades, second stirring blades and third stirring blades respectively.
[0013] As a further technical scheme of the utility model, the driving mechanism comprises a rotary motor, the rotary motor is horizontally fixedly installed on one side outside the cooling chamber, the output end of the rotary motor is fixedly connected with one end of the first stirring shaft, a third belt is connected between the first stirring shaft and the third stirring shaft, a first belt is connected between the first stirring shaft and the two water inlet pipes below, a second belt is connected between the second stirring shaft and one of the water inlet pipes above, and gears are welded on the peripheries of the four water outlet pipes, and the gears on the same side are meshed with each other.
[0014] The rotary motor is started to drive the first stirring shaft to rotate forward, the first stirring shaft drives the two water inlet pipes below to rotate forward through the two first belts, the two water inlet pipes below drive the two lower cooling rollers to rotate forward, the two lower cooling rollers drive the two water outlet pipes below to rotate forward, the two water outlet pipes below drive the two water outlet pipes above to rotate reversely through the meshed gears, the two water outlet pipes above drive the two upper cooling rollers to rotate reversely, and the two groups of upper and lower cooling rollers rotate in opposite directions to jointly extrude and shape the felt material passing through the middle.
[0015] The first stirring shaft drives the plurality of first stirring blades to rotate forward, the two upper cooling rollers drive the two water inlet pipes above to rotate reversely, one of the water inlet pipes above drives the second stirring shaft to rotate reversely through the second belt, the second stirring shaft drives the plurality of second stirring blades to rotate reversely, and the plurality of first stirring blades and the plurality of second stirring blades rotating in opposite directions stir the cold air inside the cooling chamber, so that the cold air is uniformly distributed to any position inside the cooling chamber, so that the cold air can uniformly act on the surface of the felt material to cool the felt material.
[0016] The first stirring shaft drives the third stirring shaft to rotate through the third belt, and the third stirring shaft drives a plurality of third stirring blades to rotate to stir the water in the water storage tank, accelerate the heat dissipation inside, and reduce the energy consumption of the condenser.
[0017] As a further technical scheme of the utility model, the air supply mechanism comprises a cold air machine, the cold air machine is fixedly installed on one side outside the cooling chamber, an air inlet of the cold air machine is communicated with the outside, an air outlet of the cold air machine is horizontally communicated with a gas supply pipe, and the other end of the gas supply pipe is communicated with the inside of the cooling chamber.
[0018] As a further technical scheme of the utility model, the circulating mechanism comprises a water pump and a condenser, the water pump and the condenser are installed side by side on the bottom of the water storage tank, a water suction pipe is communicated with a water inlet of the water pump, a communication pipe is communicated between a water outlet of the water pump and a water inlet of the condenser, C-shaped pipes are vertically communicated between the water inlet pipe and the water outlet pipe on the same side, horizontal pipes are horizontally connected between the two C-shaped pipes on the same side, L-shaped pipes are vertically communicated in the middle of the two horizontal pipes, one end of one L-shaped pipe is communicated with the inside of the water storage tank, and the other end of the other L-shaped pipe is inserted into the inside of the water storage tank and communicated with a water outlet of the condenser.
[0019] The utility model discloses the beneficial effects are: the air cooling and water cooling two kinds of cooling are combined together, and can be extruded to the felt material in the water cooling process, thereby accelerating the cooling forming speed of felt material, and promoting production efficiency. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 It is the structure schematic diagram of a kind of felt multilayer composite cooling and shaping device for the utility model to propose;
[0021] Figure 2 It is the side view structure schematic diagram of a kind of felt multilayer composite cooling and shaping device for the utility model to propose;
[0022] Figure 3 It is the partial sectional view structure schematic diagram of a kind of felt multilayer composite cooling and shaping device for the utility model to propose;
[0023] Figure 4 It is the internal structure schematic diagram of a kind of felt multilayer composite cooling and shaping device for the utility model to propose;
[0024] Figure 5 It is the partial structure schematic diagram of a kind of felt multilayer composite cooling and shaping device for the utility model to propose.
[0025] In the figure: 1, the third stirring shaft; 2, the third belt; 3, the C-shaped pipe; 4, the cross pipe; 5, the L-shaped pipe; 6, the rotating motor; 7, the first stirring shaft; 8, the air pipe; 9, the feeding port; 10, the cooling chamber; 11, the water storage tank; 12, the third stirring blade; 13, the air supply pipe; 14, the cooling fan; 15, the discharging port; 16, the water pump; 17, the condenser; 18, the second stirring shaft; 19, the second stirring blade; 20, the first stirring blade; 21, the water outlet pipe; 22, the gear; 23, the lower cooling roller; 24, the upper cooling roller; 25, the water inlet pipe; 26, the first belt; 27, the second belt. DETAILED DESCRIPTION
[0026] In order to make the technical means, creative features, purposes and effects of the utility model easy to understand, the utility model is further described below in combination with specific embodiments.
[0027] Please refer to the accompanying drawings Figure 1 - the accompanying drawings Figure 5 A tannery multi-layer composite cooling and shaping device, comprising a cooling chamber 10 and a water storage tank 11, the water storage tank 11 is welded to the middle part of the top of the cooling chamber 10, the upper cooling roller 24 and the lower cooling roller 23 are horizontally rotationally connected in the cooling chamber 10, one end of the upper cooling roller 24 and the lower cooling roller 23 is horizontally welded with the water inlet pipe 25, the other end of the upper cooling roller 24 and the lower cooling roller 23 is horizontally welded with the water outlet pipe 21, the top and the bottom of the middle part of the cooling chamber 10 are horizontally rotationally connected with the second stirring shaft 18 and the first stirring shaft 7 respectively, the top of the water storage tank 11 is horizontally rotationally connected with the third stirring shaft 1.
[0028] A driving mechanism is arranged for driving the first stirring shaft 7, the second stirring shaft 18, the third stirring shaft 1, the upper cooling roller 24 and the lower cooling roller 23 to rotate.
[0029] A wind supply mechanism is arranged for providing cold air into the cooling chamber 10.
[0030] A circulating mechanism is arranged for circulating cooling water.
[0031] Please refer to the accompanying drawings Figure 1 - the accompanying drawings Figure 3 In a preferred embodiment, the middle part of the opposite sides of the outside of the cooling chamber 10 is respectively provided with the feeding port 9 and the discharging port 15, the top of the cooling chamber 10 is vertically communicated with the air pipe 8, and the top of the water storage tank 11 is of an open structure.
[0032] The tannery material enters the cooling chamber 10 from the feeding port 9, passes through the two groups of upper cooling rollers 24 and lower cooling rollers 23 and is discharged from the discharging port 15, and the heat-absorbed air is discharged from the air pipe 8.
[0033] Please refer to the accompanying drawings Figure 4 - the accompanying drawings Figure 5In a preferred embodiment, the upper cooling roller 24 is located directly above the lower cooling roller 23, and the upper cooling roller 24 and the lower cooling roller 23 are provided with two groups and are located on both sides of the cooling chamber 10 respectively, and the water inlet pipe 25 and the water outlet pipe 21 both penetrate one side of the cooling chamber 10 and are rotatably connected with the cooling chamber 10.
[0034] The upper cooling roller 24 and the lower cooling roller 23 are both hollow structures, and the water inlet pipe 25 and the water outlet pipe 21 are both communicated with the interiors of the upper cooling roller 24 and the lower cooling roller 23.
[0035] Please refer to the accompanying drawings Figure 3 - the accompanying drawings Figure 5 In a preferred embodiment, one end of the first stirring shaft 7 penetrates one side of the cooling chamber 10 and is rotatably connected with the cooling chamber 10, one end of the third stirring shaft 1 penetrates one side of the water storage tank 11 and is rotatably connected with the water storage tank 11, and the surfaces of the first stirring shaft 7, the second stirring shaft 18 and the third stirring shaft 1 are respectively uniformly welded with a plurality of first stirring blades 20, second stirring blades 19 and third stirring blades 12.
[0036] Please refer to the accompanying drawings Figure 1 In a preferred embodiment, the driving mechanism includes a rotary motor 6, which is horizontally fixedly installed on one side of the outside of the cooling chamber 10, and the output end of the rotary motor 6 is fixedly connected with one end of the first stirring shaft 7, and the third belt 2 is connected between the first stirring shaft 7 and the third stirring shaft 1.
[0037] Please refer to the accompanying drawings Figure 3 - the accompanying drawings Figure 5 In a preferred embodiment, the first stirring shaft 7 and the two water inlet pipes 25 below are both connected with the first belt 26, the second stirring shaft 18 and one of the water inlet pipes 25 above are connected with the second belt 27, the four water outlet pipes 21 are all welded with gears 22, and the two gears 22 on the same side are meshed with each other.
[0038] Please refer to the accompanying drawings Figure 2 In a preferred embodiment, the air supply mechanism includes a cold air machine 14, which is fixedly installed on one side of the outside of the cooling chamber 10, the air inlet of the cold air machine 14 is communicated with the outside, the air outlet of the cold air machine 14 is horizontally communicated with the air supply pipe 13, and the other end of the air supply pipe 13 is communicated with the inside of the cooling chamber 10.
[0039] Start the cold air machine 14 to generate cold air which is introduced into the inside of the cooling chamber 10 through the air supply pipe 13.
[0040] Please refer to the accompanying drawings Figure 3In a preferred embodiment, the circulating mechanism comprises a water pump 16 and a condenser 17, which are installed side by side on the bottom of the water storage tank 11, the water inlet of the water pump 16 is communicated with a water suction pipe, and the water outlet of the water pump 16 and the water inlet of the condenser 17 are communicated with a communication pipe.
[0041] Please refer to the accompanying drawings Figure 1 - the accompanying drawings Figure 3 In a preferred embodiment, the C-shaped pipes 3 are vertically communicated between the same side water inlet pipes 25 and the same side water outlet pipes 21, and the horizontal pipes 4 are horizontally connected between the two C-shaped pipes 3 of the same side, and the L-shaped pipes 5 are vertically communicated in the middle of the two horizontal pipes 4.
[0042] The end of the C-shaped pipe 3 and the end of the water inlet pipe 25 and the end of the water outlet pipe 21 are rotationally connected.
[0043] Please refer to the accompanying drawings Figure 1 - the accompanying drawings Figure 3 In a preferred embodiment, the other end of one of the L-shaped pipes 5 is communicated with the inside of the water storage tank 11, and the other end of the other L-shaped pipe 5 extends into the inside of the water storage tank 11 and is communicated with the water outlet of the condenser 17.
[0044] From the above description, it can be seen that the above-mentioned embodiments of the utility model realize the following technical effects: starting the cold air blower 14 to generate cold air and pass into the inside of the cooling chamber 10 through the air supply pipe 13; starting the water pump 16 and the condenser 17, the water pump 16 extracts the water in the water storage tank 11 into the condenser 17 for cooling, and then passes through one of the L-shaped pipes 5 into the two C-shaped pipes 3 through the horizontal pipe 4, and then passes into the two upper cooling rollers 24 and the two lower cooling rollers 23 through the four water inlet pipes 25, and then the water in the upper cooling rollers 24 and the two lower cooling rollers 23 after absorbing heat passes into the other two C-shaped pipes 3 through the four water outlet pipes 21, and then passes into the L-shaped pipe 5 through the other horizontal pipe 4 and then flows back to the water storage tank 11, realizing the recycling use of the cooling water;
[0045] Starting the rotating motor 6 to drive the first stirring shaft 7 to rotate forward, the first stirring shaft 7 drives the two air inlet pipes below to rotate forward through the two first belts 26, the two air inlet pipes below drive the two lower cooling rollers 23 to rotate forward, the two lower cooling rollers 23 drive the two air outlet pipes below to rotate forward, the two air outlet pipes below drive the two air outlet pipes above to rotate reversely through the meshing gears 22, the two air outlet pipes above drive the two upper cooling rollers 24 to rotate reversely, and the two groups of upper cooling rollers 24 and lower cooling rollers 23 rotate in opposite directions to jointly extrude and shape the felt material passing through the middle, and the cold water in the upper cooling rollers 24 and the lower cooling rollers 23 jointly cools the felt material passing through the middle.
[0046] The first stirring shaft 7 drives the plurality of first stirring blades 20 to rotate forward, and the two upper cooling rollers 24 drive the two upper air inlet pipes to rotate reversely, one of the two upper air inlet pipes drives the second stirring shaft 18 to rotate reversely through the second belt 27, and the second stirring shaft 18 drives the plurality of second stirring blades 19 to rotate reversely; the plurality of first stirring blades 20 and the plurality of second stirring blades 19 rotating in opposite directions stir the cooling air in the cooling box, so that the cooling air is uniformly distributed to any position in the cooling box, so that the cooling air can uniformly act on the surface of the tanning material to cool the tanning material; the wind cooling and the water cooling are combined together, and the tanning material can be extruded and shaped during the water cooling, so that the cooling and shaping speed of the tanning material is accelerated, and the production efficiency is improved.
[0047] The first stirring shaft 7 drives the third stirring shaft 1 to rotate through the third belt 2, the third stirring shaft 1 drives the plurality of third stirring blades 12 to rotate to stir the water in the water storage tank 11, so that the heat inside the water storage tank 11 is dissipated, and the energy consumption of the condenser 17 is reduced.
[0048] Those skilled in the art should understand that the above discussion of any embodiment is only exemplary and is not intended to imply that the scope (including claims) of the present application is limited to these examples; under the idea of the present application, the above embodiments or technical features in different embodiments can also be combined, the steps can be implemented in any order, and there are many other changes of different aspects of the present application as described above, which are not provided in details for the sake of brevity.
[0049] The present application is intended to cover all such alternatives, modifications and variations as fall within the broad scope of the claims. Accordingly, any and all such modifications, variations or equivalents that fall within the spirit and scope of the application are intended to be included within the scope of the application.
Claims
1. A tannery multi-layer composite cooling and setting device, characterized by, Include: Cooling chamber (10) and water storage tank (11), the water storage tank (11) is welded to the middle of the top of the cooling chamber (10), the upper cooling roller (24) and the lower cooling roller (23) are connected with the inside of the cooling chamber (10) horizontally, one end of the upper cooling roller (24) and the lower cooling roller (23) is welded with water inlet pipe (25) horizontally, the other end of the upper cooling roller (24) and the lower cooling roller (23) is welded with water outlet pipe (21) horizontally, the top and bottom of the middle part of the inside of the cooling chamber (10) are rotatably connected with the second stirring shaft (18) and the first stirring shaft (7) respectively, the top of the water storage tank (11) is rotatably connected with the third stirring shaft (1); Driving mechanism, the driving mechanism is used for driving the first stirring shaft (7), the second stirring shaft (18), the third stirring shaft (1), the upper cooling roller (24) and the lower cooling roller (23) to rotate; Air supply mechanism, the air supply mechanism is used for providing cold air into the cooling chamber (10); Circulation mechanism, the circulation mechanism is used for circulating cooling water.
2. A multi-layer composite cooling and setting device for carpets according to claim 1, characterized in that The middle part of the opposite side of the outside of the cooling chamber (10) is provided with inlet (9) and outlet (15) respectively, the top of the cooling chamber (10) is vertically connected with the air pipe (8) in one corner, the top of the water storage tank (11) is open structure.
3. A multi-layer composite cooling and setting device for carpets according to claim 1, characterized in that, The upper cooling roller (24) is located directly above the lower cooling roller (23), the upper cooling roller (24) and the lower cooling roller (23) are provided with two groups and are located on both sides of the inside of the cooling chamber (10), the water inlet pipe (25) and the water outlet pipe (21) are all through the side of the cooling chamber (10) and are rotatably connected with the cooling chamber (10).
4. A multi-layer composite cooling and setting device for carpets according to claim 3, characterised in that, The first stirring shaft (7) is rotatably connected with the side of the cooling chamber (10) through one end, the third stirring shaft (1) is rotatably connected with the side of the water storage tank (11) through one end, the surfaces of the first stirring shaft (7), the second stirring shaft (18) and the third stirring shaft (1) are evenly welded with a plurality of first stirring blades (20), second stirring blades (19) and third stirring blades (12) respectively.
5. A multi-layer composite cooling and setting device for carpets according to claim 4, characterised in that, The driving mechanism includes rotary motor (6), the rotary motor (6) is fixedly installed horizontally on the outside of the cooling chamber (10), the output end of the rotary motor (6) is fixedly connected with one end of the first stirring shaft (7), the third belt (2) is connected between the first stirring shaft (7) and the third stirring shaft (1).
6. A multi-layer composite cooling and setting device for carpets according to claim 5, characterised in that, The first belt (26) is connected between the first stirring shaft (7) and the two water inlet pipes (25) below, the second belt (27) is connected between the second stirring shaft (18) and one of the water inlet pipes (25) above, the gears (22) are welded on the outer periphery of the four water outlet pipes (21), and the gears (22) on the same side are meshed with each other.
7. A multi-layer composite cooling and setting device for carpets according to claim 1, characterized in that, The air supply mechanism comprises a cold air machine (14) fixedly installed on one side outside the cooling chamber (10), an air inlet of the cold air machine (14) is communicated with the outside, an air outlet of the cold air machine (14) is horizontally communicated with a gas supply pipe (13), and the other end of the gas supply pipe (13) is communicated with the inside of the cooling chamber (10).
8. A multi-layer composite cooling and setting device for carpets according to claim 6, characterised in that, The circulating mechanism comprises a water pump (16) and a condenser (17) installed side by side on the inner bottom of the water storage tank (11), a water suction pipe is communicated with a water inlet of the water pump (16), and a communication pipe is communicated between a water outlet of the water pump (16) and a water inlet of the condenser (17).
9. A multi-layer composite cooling and setting device for carpets according to claim 8, characterised in that, A C-shaped pipe (3) is vertically communicated between the water inlet pipe (25) and the water outlet pipe (21) on the same side, and a horizontal pipe (4) is horizontally connected between two C-shaped pipes (3) on the same side.
10. A multi-layer composite cooling and setting device for carpets according to claim 9, characterised in that, The other end of one of the L-shaped pipes (5) is communicated with the inside of the water storage tank (11), and the other end of the other L-shaped pipe (5) extends into the inside of the water storage tank (11) and is communicated with a water outlet of the condenser (17).