Drying machine for textile fabric processing
By combining radio frequency drying and hot air drying, and utilizing a fabric top-mounted assembly and a hot air circulation assembly, the problems of low efficiency and uneven drying of traditional textile fabrics are solved, achieving efficient and uniform fabric drying, protecting fabric quality and reducing energy consumption.
Patent Information
- Application Number
- CN202511310163.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-15
- Publication Date
- 2025-11-18
AI Technical Summary
Traditional textile drying methods are inefficient and uneven, while radio frequency drying equipment is expensive and hot air drying equipment has a small contact area, which affects drying efficiency.
By combining radio frequency drying and hot air drying, the fabric is made to move in a wave-like motion by the fabric top-positioning component on the conveyor belt, and the hot air circulation component is used to improve the utilization rate of hot air. The combination of the penetration of radio frequency drying and the surface heating of hot air drying achieves uniform drying of the inner and outer layers of the fabric.
It improves drying efficiency and uniformity, protects fabric quality, reduces energy consumption, and adapts to the drying needs of different fabrics.
Smart Images

Figure CN120970232A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of drying equipment, in particular to a drying machine for textile fabric processing. BACKGROUND
[0002] In the process of textile fabric processing, the drying process is one of the key links. The traditional drying method mainly includes natural drying and hot air drying. Natural drying is low in efficiency and greatly affected by weather; while ordinary hot air drying, although high in efficiency, has problems such as uneven drying and easy damage to the fabric.
[0003] Radio frequency drying utilizes the heat generated by high-frequency electromagnetic field, which can penetrate the inside of the fabric to achieve rapid and uniform drying. However, the radio frequency drying equipment is high in cost and needs to be accurately controlled to avoid electromagnetic damage to the fabric. In some equipment, hot air drying and radio frequency drying are combined, but the fabric is always in a stationary state, the contact area between the hot air and the fabric is small, which affects the drying efficiency. Therefore, there is an urgent need for a drying machine for textile fabric processing to solve the above problems. SUMMARY
[0004] The purpose of the embodiment of the present application is to provide a drying machine for textile fabric processing to solve the problems raised in the background.
[0005] To achieve the above purpose, the present application provides the following technical scheme: A drying machine for textile fabric processing, comprising a bottom support and a top shell, the top shell is fixed at the top of the bottom support, the two ends of the top shell are open, and further comprising: A material port baffle is connected to the two ends of the top shell. A conveyor belt is rotatably connected to the bottom support for conveying textile fabric, a plurality of groups of through holes are formed in the conveyor belt. A motor is connected to the bottom support, and the output end is connected to one end of the conveyor belt. A radio frequency drying element body is located in the middle of the top shell and connected thereto, the radio frequency drying element body is located at the top of the conveyor belt for drying the textile fabric. A hot air drying mechanism is used to blow hot air to dry the textile fabric, the hot air drying mechanism comprises: an air inlet opening formed on both sides of the top shell; an air inlet fan located inside the air inlet opening and connected thereto; a heating pipe connected to the top shell and located between the air inlet fan and the conveyor belt; a hot air circulation assembly connected to the bottom support at one end and connected to the top shell at the other end; a fabric lifting assembly connected to the motor output end at one end and connected to the bottom support at the other end for lifting or lowering the fabric.
[0006] As a further scheme of the present application, the hot air circulation assembly comprises: A suction fan is connected with the bottom support; An air flow dryer is connected with the output end of the suction fan; An air suction coil is arranged in the top shell and connected with the input end of the air flow dryer; A connecting frame is connected with the output end of the suction fan; A blowing cylinder is connected with the connecting frame, penetrates through one side of the bottom support and is rotatably connected with the bottom support, and a plurality of groups of air holes are arranged on the blowing cylinder.
[0007] As a further scheme of the present application, the present application further comprises: A fan blade is arranged in the blowing cylinder and is used to rotate the blowing cylinder under the blowing action of the hot air flow.
[0008] As a further scheme of the present application, the cloth top placing assembly comprises: A transmission belt is connected with the output end of the motor; A rotating belt is arranged in the bottom support and is rotatably connected with the bottom support, and one end of the rotating belt is connected with the other end of the transmission belt; A longitudinal reciprocating assembly is connected with the bottom support at one end and is connected with the rotating belt at the other end and is used to top and place the cloth.
[0009] As a further scheme of the present application, the longitudinal reciprocating assembly comprises: A plurality of groups of connecting plates are arranged, and two groups of the connecting plates arranged on the two sides are respectively connected with the rotating belts arranged on the two sides; A fixing cylinder is connected with the two groups of the connecting plates arranged on the two sides, and the fixing cylinder is provided with a plurality of groups of the fixing cylinders; A top placing rod penetrates through the fixing cylinder and is slidably connected with the fixing cylinder, the top placing rod is aligned with the through hole, and the diameter of the top placing rod is smaller than the diameter of the through hole; A plurality of groups of connecting plates are arranged, and two ends of the connecting plates are respectively connected with the top placing rods arranged on the two sides; A spring is sleeved on the top placing rod, one end of the spring is connected with the connecting plate, and the other end of the spring is connected with the fixing cylinder; A connecting rod is connected with the outermost top placing rod; A movement path assembly is connected with the bottom support and abuts against the connecting rod and is used to drive the connecting rod to move longitudinally.
[0010] As a further scheme of the present application, the movement path assembly is a concave-convex plate, and the top horizontal straight line segment and the circular arc segment of the concave-convex plate are intermittently arranged.
[0011] As a further scheme of the present application, the movement path assembly comprises: A plurality of groups of sliding blocks are slidably connected with the bottom support and are arranged along a straight line at equal intervals. The cylinder one is connected with the sliding block at one end, and the cylinder one is symmetrically arranged about the sliding block; The supporting rod one is rotatably connected with the other end of the cylinder one at the bottom end, and the supporting rod one is provided in two groups and symmetrically arranged; The supporting rod two is rotatably connected with the top end of the two groups of supporting rod one at two ends respectively; The transverse position adjusting assembly is connected with the sliding block and used for adjusting the distance between two adjacent groups of sliding blocks.
[0012] As a further scheme of the application, the transverse position adjusting assembly comprises: The rotating shaft is connected with the sliding block and slidably connected with the bottom support; The rhombic telescopic frame is rotatably connected with the rotating shaft at the center intersection; The cylinder two is rotatably connected with the two ends of the rhombic telescopic frame at the same side.
[0013] Compared with the prior art, the application has the following beneficial effects: One, efficient drying: combined with radio frequency drying and hot air drying: the application simultaneously adopts two technologies of radio frequency drying and hot air drying; the radio frequency drying has the characteristics of strong penetration and uniform drying, and can quickly remove the moisture inside the cloth; the hot air drying heats the surface of the cloth to accelerate the evaporation of moisture; the two technologies work together to significantly improve the drying efficiency of the cloth and shorten the drying time; The cloth lifting assembly: through the design of the cloth lifting assembly, the cloth on the conveying belt is periodically lifted and lowered to form a wave-like motion; this motion increases the contact area of the cloth and the hot air flow, further improving the drying efficiency.
[0014] Two, uniform drying: uniformity of radio frequency drying: radio frequency drying can penetrate the inside of the cloth and dry the inner and outer layers of the cloth at the same time, avoiding the uneven drying problem caused by traditional hot air drying; Hot air recycling: the hot air circulation assembly extracts the humid hot air flow, and after drying treatment, it is sent back to the inside of the drying machine, ensuring that the temperature and humidity of the hot air are uniformly distributed, further improving the uniformity of drying.
[0015] Three, cloth protection: prevent cloth adhesion: the cloth lifting assembly periodically lifts and lowers the cloth through the lifting rod to prevent the cloth from adhering to the conveying belt during the drying process, avoiding cloth damage; Reduce cloth damage: the mildness of radio frequency drying avoids the thermal damage of high-temperature hot air to the cloth, especially for some thin or sensitive cloth, which can effectively protect the quality of the cloth.
[0016] Four, energy saving and environmental protection: hot air circulation: hot air circulation assembly extracts the humid hot air, after drying treatment, and then sends back to the drying machine inside, improves the utilization rate of heat energy, reduces the waste of energy; Reducing energy consumption: through the optimization of drying process, reduces unnecessary energy consumption, reduces production cost.
[0017] Five, strong adaptability: through the adjustment of cylinder one and cylinder two, can control the lifting height and movement frequency of the cloth lifting rod, further optimizes the drying effect, adapts to the drying demand of different cloth. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is a front structure schematic view of a drying machine for textile cloth processing in the embodiment of the application.
[0019] Figure 2 It is a back structure schematic view of a drying machine for textile cloth processing in the embodiment of the application.
[0020] Figure 3 It is an internal structure schematic view of a drying machine for textile cloth processing in the embodiment of the application.
[0021] Figure 4 It is a structure schematic view of hot air circulation assembly and cloth lifting assembly in the embodiment of the application.
[0022] Figure 5 It is a structure schematic view of blowing cylinder in the embodiment of the application.
[0023] Figure 6 It is a structure schematic view of cloth lifting assembly in the embodiment of the application.
[0024] Figure 7 It is a part structure schematic view of longitudinal reciprocating assembly in the embodiment of the application.
[0025] Figure 8 It is a structure schematic view of movement path assembly in the embodiment of the application.
[0026] Figure 9 It is Figure 8 It is a structure enlarged schematic view of A in the middle.
[0027] In the figure: 1, bottom support; 2, top shell; 3, material port blocking belt; 4, conveying belt; 5, motor; 6, radio frequency drying element body; 7, hot air drying mechanism; 71, air inlet; 72, air inlet fan; 73, heating pipe; 74, hot air circulation assembly; 75, cloth top placing assembly; 741, air suction fan; 742, air flow dryer; 743, air suction coil; 744, connecting frame; 745, purging cylinder; 751, transmission belt; 752, rotating belt; 753, longitudinal reciprocating assembly; 7531, connecting plate one; 7532, fixed cylinder; 7533, top placing rod; 7534, connecting plate two; 7535, spring; 7536, connecting rod; 7537, movement path assembly; 91, sliding block; 92, air cylinder one; 93, support rod one; 94, support rod two; 95, transverse position adjusting assembly; 951, rotating shaft; 952, rhombus telescopic frame; 953, air cylinder two; 8, fan blade. DETAILED DESCRIPTION
[0028] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.
[0029] In the embodiments of the present application, please refer to Figures 1 to 7 A drying machine for textile fabric processing, comprising a bottom support 1 and a top shell 2, the top shell 2 is fixed on the top of the bottom support 1, the top shell 2 is open at both ends, further comprising: A material port blocking belt 3 connected with both ends of the top shell 2; A conveying belt 4 rotationally connected with the bottom support 1, used for conveying the textile fabric, a plurality of groups of through holes are formed on the conveying belt 4; A motor 5 connected with the bottom support 1, and the output end is connected with one end of the conveying belt 4; A radio frequency drying element body 6 located in the middle of the top shell 2 and connected therewith, the radio frequency drying element body 6 is located on the top of the conveying belt 4, used for drying the textile fabric; A hot air drying mechanism 7 used for blowing hot air to dry the textile fabric, the hot air drying mechanism 7 comprises: an air inlet 71 formed on both sides of the top shell 2; an air inlet fan 72 located inside the air inlet 71 and connected therewith; a heating pipe 73 connected with the top shell 2 and located between the air inlet fan 72 and the conveying belt 4; a hot air circulation assembly 74 connected with the bottom support 1 at one end and connected with the top shell 2 at the other end; a cloth top placing assembly 75 connected with the output end of the motor 5 at one end and connected with the bottom support 1 at the other end, used for lifting or lowering the cloth.
[0030] The wet cloth is placed on the conveying belt 4, the motor 5 is powered to drive the conveying belt 4 to rotate and convey the cloth, after the cloth enters the inside of the top shell 2, the air inlet fan 72 works to suck the outside air and heat the air through the heating pipe 73, the hot air flow blows on the surface of the cloth to dry the cloth, when the cloth moves to the bottom of the radio frequency drying element body 6, the radio frequency energy emitted by the radio frequency drying element body 6 directly acts on the inside of the cloth to realize fast drying of the cloth (the radio frequency drying has the characteristics of strong penetration and uniform drying, which can effectively reduce the drying time of the cloth), in this process, the hot air flow circulating assembly 74 removes the wet air flow in the inside of the top shell 2, and after drying, the cloth is sent to the bottom of the cloth to blow and dry the cloth, at the same time, the motor 5 drives the cloth top placing assembly 75 to move, the cloth on the conveying belt 4 is lifted and then lowered, so that the cloth moves in a wave shape, the contact area of the air flow and the cloth is increased, the drying efficiency is ensured, and the dried cloth flows out from the rear end of the top shell 2 through the conveying belt 4.
[0031] As an embodiment of the present application, please refer to Figures 2 to 4 , the hot air flow circulating assembly 74 comprises: The air suction and supply fan 741 is connected with the bottom support 1; The air flow dryer 742 is in internal communication with the input end of the air suction and supply fan 741; The air suction coil 743 is located in the inside of the top shell 2 and in internal communication with the input end of the air flow dryer 742; The connecting frame 744 is in internal communication with the output end of the air suction and supply fan 741; The blowing cylinder 745 is in internal communication with the connecting frame 744, the blowing cylinder 745 penetrates through one side of the bottom support 1 and is rotationally connected with the bottom support 1, and a plurality of groups of air holes are formed in the blowing cylinder 745.
[0032] The air suction and supply fan 741 removes the wet hot air flow in the inside of the top shell 2, the wet hot air flow is dried through the air flow dryer 742 and then sent into the connecting frame 744, and then the hot air is blown out through the air holes of the blowing cylinder 745, so that the hot air is recycled in the inside of the drying machine, the utilization rate of heat energy is improved, and the continuity and stability of the drying process are ensured.
[0033] As an embodiment of the present application, please refer to Figure 5 , further comprising: The fan blade 8 is located in the inside of the blowing cylinder 745 and is used to drive the blowing cylinder 745 to rotate under the blowing action of the hot air flow.
[0034] The fan blade 8 drives the blowing cylinder 745 to rotate under the blowing action of the hot air flow, so that the hot air is uniformly blown to the surface of the cloth, and the drying process of the cloth is further accelerated.
[0035] As an embodiment of the present application, please refer toFigure 3 、 Figure 4 、 Figure 6 and Figure 7 , the cloth top placing assembly 75 comprises: a transmission belt 751, one end of which is connected with the output end of the motor 5; a rotating belt 752, which is located inside the bottom support 1 and is rotationally connected with the bottom support 1, one end of the rotating belt 752 being connected with the other end of the transmission belt 751; a longitudinal reciprocating assembly 753, one end of which is connected with the bottom support 1 and the other end of which is connected with the rotating belt 752, which is used for top placing of the cloth.
[0036] The motor 5 drives the transmission belt 751 to rotate, the transmission belt 751 drives the rotating belt 752 to rotate, and the rotating speed of the rotating belt 752 is consistent with the rotating speed of the conveying belt 4, and the longitudinal reciprocating assembly 753 reciprocatingly top places the cloth.
[0037] As an embodiment of the present application, please refer to Figure 3 、 Figure 4 、 Figure 6 and Figure 7 , the longitudinal reciprocating assembly 753 comprises: a connecting plate one 7531, which is provided with a plurality of groups, and two groups of the connecting plate one 7531 located on the two sides are connected with the rotating belts 752 on the two sides, respectively; a fixed cylinder 7532, which is connected with two adjacent groups of the connecting plate one 7531 on the two sides, respectively, and is provided with a plurality of groups; a top placing rod 7533, which penetrates through the fixed cylinder 7532 and is slidably connected with the fixed cylinder 7532, the top placing rod 7533 being aligned with the through hole and having a diameter smaller than that of the through hole; a connecting plate two 7534, which is connected with two adjacent top placing rods 7533 on the two ends, respectively, and is provided with a plurality of groups; a spring 7535, which is sleeved on the top placing rod 7533 and connected with the connecting plate two 7534 on one end and the fixed cylinder 7532 on the other end; a connecting rod 7536, which is connected with the outermost top placing rod 7533; a motion path assembly 7537, which is connected with the bottom support 1 and abuts against the connecting rod 7536, and is used for driving the connecting rod 7536 to move longitudinally and reciprocatingly; the motion path assembly 7537 is a concave-convex plate, and the top horizontal straight line segment and the circular arc segment of the concave-convex plate are intermittently arranged.
[0038] The connecting plate 7531 is driven to move synchronously by the rotating belt 752, and the connecting plate 7531 drives the fixed cylinder 7532, the top placing rod 7533 and the connecting rod 7536 to move synchronously horizontally. When the connecting rod 7536 abuts against the rising side of the upper arc segment of the concave-convex plate, the connecting rod 7536 drives the top placing rod 7533 to move upward, the spring 7535 is elastically deformed, the top placing rod 7533 extends out of the through hole of the conveying belt 4, and the cloth is lifted up. When the connecting rod 7536 abuts against the falling side of the arc segment, the top placing rod 7533 moves downward under the action of the reaction force of the spring 7535, and the cloth falls back, so that the cloth forms a wave-shaped motion state, the cloth is shaken, the contact area between the cloth and the hot air flow is increased, and the drying efficiency is improved.
[0039] In the embodiment, the bottom of the concave-convex plate is higher than the connecting rod 7536 located on the lower side.
[0040] As an embodiment of the present application, please refer to Figure 8 and Figure 9 The motion path assembly 7537 comprises: The sliding block 91 is slidably connected with the bottom support 1, and a plurality of groups of the sliding block 91 are arranged at equal intervals along a straight line. One end of the first air cylinder 92 is connected with the sliding block 91, and the first air cylinder 92 is symmetrically arranged relative to the sliding block 91. The first supporting rod 93 is rotatably connected with the other end of the first air cylinder 92 at the bottom end, and two groups of the first supporting rod 93 are symmetrically arranged. The second supporting rod 94 is rotatably connected with the top ends of the two groups of the first supporting rod 93 at both ends. The transverse position adjusting assembly 95 is connected with the sliding block 91 and is used for adjusting the distance between adjacent two groups of the sliding block 91. The transverse position adjusting assembly 95 comprises: The rotating shaft 951 is connected with the sliding block 91 and is slidably connected with the bottom support 1. The rhombus telescopic support 952 is rotatably connected with the rotating shaft 951 at the center intersection. The second air cylinder 953 is rotatably connected with the two ends of the same side of the rhombus telescopic support 952 at both ends.
[0041] The two groups of support rods one 93 and one group of support rods two 94 form an isosceles trapezoid, when the connecting rod 7536 abuts with one side support rod one 93, the connecting rod 7536 moves upward along the support rod one 93 to abut with the support rod two 94, then the connecting rod 7536 moves along the support rod two 94, at this time, the top placing rod 7533 always lifts the cloth, when the connecting rod 7536 abuts with the other side support rod one 93, the connecting rod 7536 moves downward along the support rod one 93, the top placing rod 7533 moves downward synchronously, and the cloth is placed down, the cylinder one 92 works to extend or retract, drives the two groups of support rods one 93 to rotate, thereby adjusting the height of the support rod two 94, the height of the support rod two 94 controls the lifting height of the top placing rod 7533, thereby achieving the control of the lifting height of the cloth; The cylinder two 953 works to extend or retract, drives the rhombus telescopic frame 952 to extend or retract, at this time, the center intersection distance of the rhombus telescopic frame 952 synchronously increases or shortens, drives the rotating shaft 951 to move, so that the distance between the adjacent two groups of rotating shafts 951 synchronously increases or shortens, the rotating shaft 951 drives the sliding block 91 to move, thereby adjusting the distance between the adjacent two groups of support rods two 94, so that the frequency of the longitudinal reciprocating motion of the top placing rod 7533 can be changed according to the drying efficiency, and the drying effect is ensured.
[0042] In the embodiment, the bottom end of the support rod one 93 is higher than the connecting rod 7536 located on the lower side.
[0043] The working principle of the present application is that the wet cloth is placed on the conveying belt 4, the motor 5 works to provide power, drives the conveying belt 4 to rotate, and conveys the cloth, after the cloth enters the inside of the top shell 2, the air inlet fan 72 works to suck the outside air and heat the air through the heating pipe 73, the hot air flow blows on the surface of the cloth to dry the cloth, when the cloth moves to the bottom of the radio frequency drying element body 6, the radio frequency energy emitted by the radio frequency drying element body 6 directly acts on the inside of the cloth, realizes the rapid drying of the cloth (the radio frequency drying has the characteristics of strong penetration and uniform drying, which can effectively reduce the drying time of the cloth), in this process, the air suction blower 741 extracts the wet hot air flow in the inside of the top shell 2, after drying through the air flow dryer 742, the wet hot air flow is sent into the connecting frame 744, then is blown out through the air holes on the blowing cylinder 745, so that the hot air circulates in the drying machine, improves the utilization rate of heat energy, and also ensures the continuity and stability of the drying process; The rotating belt 752 drives the connecting plate 7531 to move synchronously, the connecting plate 7531 drives the fixed cylinder 7532, the lifting rod 7533 and the connecting rod 7536 to move synchronously, when the connecting rod 7536 abuts against the side support rod 93, the connecting rod 7536 moves upward along the support rod 93 to abut against the support rod 94, then the connecting rod 7536 moves along the support rod 94, at this time, the lifting rod 7533 always lifts the cloth, when the connecting rod 7536 abuts against the other side support rod 93, the connecting rod 7536 moves downward along the support rod 93, the lifting rod 7533 moves downward synchronously, and the cloth is lowered, the cylinder 92 works to extend or retract, drives the two groups of support rods 93 to rotate, thereby adjusting the height of the support rod 94, the height of the support rod 94 controls the lifting height of the lifting rod 7533, thereby controlling the lifting height of the cloth; The cylinder 953 works to extend or retract, drives the rhombus telescopic frame 952 to extend or retract, at this time, the center intersection distance of the rhombus telescopic frame 952 synchronously increases or shortens, drives the rotating shaft 951 to move, the distance between the adjacent two groups of rotating shafts 951 synchronously increases or shortens, the rotating shaft 951 drives the sliding block 91 to move, thereby adjusting the distance between the adjacent two groups of support rods 94, so that the frequency of the longitudinal reciprocating motion of the lifting rod 7533 can be changed according to the drying efficiency, and the drying effect is ensured. The longitudinal reciprocating motion of the lifting rod 7533 makes the cloth produce wavy motion, improves the contact area of the airflow and the cloth, and ensures the drying efficiency, and the dried cloth flows out from the rear end of the top shell 2 through the conveying belt 4.
[0044] It is apparent for those skilled in the art that the present application is not limited to the details of the foregoing exemplary embodiments, and the present application can be implemented in other concrete forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be considered in all aspects as illustrative and not restrictive, and the scope of the present application is defined by the appended claims rather than the foregoing description, and it is intended to embrace all changes falling within the meaning and range of equivalents of the claims. Any reference signs in the claims should not be considered as limiting the claims involved.
[0045] In addition, it should be understood that, although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, and the specification is described in this way only for the sake of clarity, and those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that those skilled in the art can understand.
Claims
1. A dryer for textile fabric processing, comprising a bottom support and a top outer shell, wherein the top outer shell is fixed to the top of the bottom support, and the top outer shell has openings at both ends, characterized in that, Also includes: The feed inlet baffle is connected to both ends of the top outer casing; A conveyor belt, rotatably connected to a bottom support, is used to transport textile fabrics. The conveyor belt has several sets of through holes. The motor is connected to the bottom support, and its output end is connected to one end of the conveyor belt; The radio frequency drying element body is located in the middle of the top housing and connected thereto. The radio frequency drying element body is located on top of the conveyor belt and is used to dry textile fabrics. A hot air drying mechanism is used to blow hot air to dry textile fabrics. The hot air drying mechanism includes: an air inlet, which is opened on both sides of the top outer shell; an air inlet fan, which is located inside the air inlet and connected to it; a heating tube, which is connected to the top outer shell and located between the air inlet fan and the conveyor belt; a hot airflow circulation assembly, which is connected to the bottom support at one end and to the top outer shell at the other end; and a fabric lifting assembly, which is connected to the motor output at one end and to the bottom support at the other end, for lifting or lowering the fabric.
2. The dryer for textile fabric processing according to claim 1, characterized in that, The hot air circulation assembly includes: The exhaust fan is connected to the bottom support. The airflow dryer has its output end internally connected to the input end of the exhaust fan. The exhaust coil is located inside the top housing and is connected to the inside of the airflow dryer inlet. The connecting frame is internally connected to the output end of the exhaust fan; The purge cylinder is connected to the inside of the connecting frame. The purge cylinder passes through one side of the bottom support and is rotatably connected to it. Several sets of air holes are opened on the purge cylinder.
3. A drying machine for textile fabric processing according to claim 2, characterized in that, Also includes: The fan blades, located inside the purging cylinder, are used to drive the purging cylinder to rotate under the purging action of the hot airflow.
4. A drying machine for textile fabric processing according to claim 1, characterized in that, The fabric top-laying assembly includes: A drive belt, one end of which is connected to the motor output; A rotating belt is located inside the bottom bracket and is rotatably connected to it; one end of the rotating belt is connected to the other end of the transmission belt. The longitudinal reciprocating component is connected to the bottom support at one end and to the rotating belt at the other end, and is used to top-load the fabric.
5. A drying machine for textile fabric processing according to claim 4, characterized in that, The longitudinal reciprocating component includes: Connecting plate one, the connecting plate one is provided with several sets, and the two sets of connecting plates one located on both sides are respectively connected to the rotating belts on both sides; The fixed cylinder is connected to two adjacent sets of connecting plates on both sides, and the fixed cylinder is provided in several sets; A top-mounted rod penetrates the fixed cylinder and is slidably connected to it. The top-mounted rod is aligned with the through hole and its diameter is smaller than the diameter of the through hole. Connecting plate two, with its two ends respectively connected to two adjacent sets of top rods, and the connecting plate two is provided with several sets; A spring is fitted onto the top rod, with one end connected to the connecting plate 2 and the other end connected to the fixed cylinder; The connecting rod connects to the outermost top rod; The motion path component is connected to the bottom support and abuts against the connecting rod, and is used to drive the connecting rod to reciprocate longitudinally.
6. A drying machine for textile fabric processing according to claim 5, characterized in that, The motion path component is a concave-convex plate, with horizontal straight segments and arc segments intermittently arranged at the top of the concave-convex plate.
7. A drying machine for textile fabric processing according to claim 5, characterized in that, The motion path component includes: A sliding block is slidably connected to the bottom support. Several groups of sliding blocks are provided and arranged in a straight line with equal spacing. Cylinder 1, one end of which is connected to the sliding block, and cylinder 1 is symmetrically arranged about the sliding block; Support rod one, the bottom end of which is rotatably connected to the other end of cylinder one; support rod one is provided in two sets and is arranged symmetrically. Support rod two, with both ends rotatably connected to the top ends of the two sets of support rod one; The lateral position adjustment component, connected to the sliding block, is used to adjust the distance between two adjacent sets of sliding blocks.
8. A drying machine for textile fabric processing according to claim 7, characterized in that, The lateral position adjustment component includes: The rotating shaft is connected to the sliding block and slidably connected to the bottom support. The diamond-shaped telescopic frame is rotatably connected to the rotating shaft at its central intersection. Cylinder 2 is rotatably connected at both ends to the two ends of the diamond-shaped telescopic frame on the same side.