Party dress digital printing equipment with drying mechanism and processing method

By designing adjustment and drying mechanisms in digital printing equipment, and utilizing close-range stable airflow and hot air cutting technology, the problems of poor drying effect and high cost have been solved, achieving efficient and low-cost garment drying.

CN117754994BActive Publication Date: 2026-04-10NINGBO PARTY MAGIC SQUARE CULTURAL CREATIVITY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-12-27
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

In existing technologies, drying equipment has poor drying effect and high cost, and cannot effectively guarantee the rapid air drying needs of garment pieces during the printing process.

Method used

A digital printing device with an adjustment mechanism and a drying mechanism was designed. By adjusting the position of the drying mechanism during the movement of the garment pieces, the device utilizes a stable airflow at close range for drying. Furthermore, the device employs hot air cutting technology with alternating longitudinal and transverse grids to ensure drying effectiveness while reducing costs.

Benefits of technology

This method achieves improved drying efficiency while ensuring drying effect, reducing costs, and avoiding impact on printed patterns.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a party clothes digital printing equipment with a drying mechanism and a processing method, which comprises an outer body, a first sliding rail is fixedly connected to the inner wall of one side of the outer body, a digital printing head is connected to the first sliding rail through a first sliding block, a bottom frame is fixedly connected to the bottom end inner wall of the outer body, a second sliding rail is fixedly connected to the inner wall of one side of the outer body, two support mechanisms are arranged on the second sliding rail at equal intervals, and a drying mechanism is connected to each support mechanism through an adjusting mechanism respectively; the adjusting mechanism comprises a sliding groove, the sliding groove is fixed to the top end of the second sliding rail, a fourth sliding block is movably clamped in the sliding groove, a supporting rod is fixedly connected to the top end of the fourth sliding block, and a U-shaped support is movably sleeved with the supporting rod, the party clothes digital printing equipment with the drying mechanism and the processing method disclosed by the application can effectively improve the drying efficiency while guaranteeing the drying effect, and can reduce the cost.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of garment printing, in particular to a party garment digital printing equipment with a drying mechanism and a processing method. BACKGROUND

[0002] Party garment is a modern garment category name. "Party" in English means lovers. This kind of garment is a set of men's and women's clothing, and the suit top and trousers (skirt) are different in material and use the material between men's and women's clothing. This kind of garment generally has prominent colors, so the demand for printing on the garment is higher.

[0003] In the process of garment printing, the pigment on the fabric after printing needs a certain time to dry. If the pigment is not completely dried, it will be printed on other positions of the garment piece. The general processing method for this problem is to extend the conveying path for drying or to set up a drying device for fast drying. The former has a higher demand for the floor area of the equipment, and the latter sets multiple drying ports above the conveying channel to uniformly dry the garment piece during transportation. This method cannot guarantee the drying effect and also causes higher cost. SUMMARY

[0004] The present application discloses a party garment digital printing equipment with a drying mechanism and a processing method, which aims to solve the technical problem that the ordinary drying method cannot guarantee the drying effect and also causes higher cost.

[0005] In order to achieve the above-mentioned purpose, the present application adopts the following technical solutions:

[0006] The utility model provides a party clothing digital printing equipment with drying mechanism, including the outer body, the side inner wall of outer body is fixedly connected with first sliding rail, and first sliding rail is connected with digital printing head through first sliding block, the bottom end inner wall of outer body is fixedly connected with the dolly, and the side inner wall of outer body is fixedly connected with second sliding rail, and two support mechanisms are arranged on second sliding rail with equal density, and every support mechanism is connected with drying mechanism through adjusting mechanism respectively, the adjusting mechanism includes the sliding slot, and the sliding slot is fixed in the top of second sliding rail, and the fourth sliding block is movably connected in the sliding slot, and the top of fourth sliding block is fixedly connected with the support rod, the outer movable sleeve of support rod is connected with U type support, and the top of support rod is movably connected in U type support, and the middle segment of support rod is fixedly connected with second connecting frame, and the outer sleeve of support rod is connected with two torsional springs, and the both ends of two torsional springs are connected with second connecting frame and U type support respectively, the top outer wall of U type support is fixedly connected with first connecting frame, and the side outer wall of U type support is fixedly connected with the stop plate, the bottom end outer wall of U type support is fixedly connected with the limiting plate, and the limiting plate is in the side of sliding slot, the drying mechanism is fixed on first connecting frame, and second connecting frame is connected with support mechanism, the side outer wall of dolly is fixedly connected with the stop block, and the stop block is in contact with the stop plate.

[0007] By setting adjusting mechanism, gradually close to printing station in the course of the piece operation, with the contact of stop plate and stop block, drive stop plate to incline, with it drive drying mechanism to deviate, thereby expose printing area, when printing ends, with the movement of support mechanism, make drying mechanism to return to zero and stably locate the piece directly above, through drying mechanism to close distance and stable wind force to the piece surface drying, thereby guarantee drying effect while effectively improve drying efficiency, reduce cost effect at the same time.

[0008] In a preferred scheme, the drying mechanism includes a first support housing, and the opposite sides of the first support housing are provided with through-slots, the through-slots are provided with longitudinal grates, and the two ends of the longitudinal grates are fixedly connected with side plates, one of the side plates is fixedly connected with an air cylinder, and the air cylinder is fixed to one side of the first support housing.

[0009] By setting the drying mechanism, the drying mechanism cuts the hot air emitted by the air heater through the staggered arrangement of the ventilation openings of the longitudinal grates and the transverse grates during the drying process, so that the hot air acts more gently on the printed surface, avoiding affecting the printed pattern. Meanwhile, the longitudinal grates can shuttle in the through-slots through the repeated extension and contraction of the air cylinder, avoiding the hot air blowing directly from a single ventilation opening, thereby further avoiding affecting the printed surface while ensuring drying efficiency.

[0010] In a preferred scheme, the supporting mechanism comprises a second supporting shell, and a metal supporting plate is embedded in the top end inner wall of the second supporting shell, a plurality of ventilation holes are provided on both sides of the top end of the metal supporting plate, a suction fan is fixedly connected to the bottom end inner wall of the second supporting shell, two gaps are provided between the sides of the metal supporting plate and the top surface of the second supporting shell, and a soft magnetic strip is movably inserted into each of the two gaps, the two soft magnetic strips are simultaneously attached to the top end of the metal supporting plate, side supports are fixedly connected to the bottom end outer walls of the two soft magnetic strips, limit sliding blocks are fixedly connected to the same side outer walls of the two side supports, a limit sliding groove is arranged on the inner wall of one side of the second supporting shell, the limit sliding blocks are movably connected to the limit sliding groove, third sliding blocks are fixedly connected to the other side outer walls of the two side supports, third sliding rails are movably connected in the third sliding blocks, the third sliding rails are fixed to the inner wall of the second supporting shell, a connecting plate is fixedly connected to the outer wall of one side of the second supporting shell, a second sliding block is fixedly connected to the outer wall of one side of the connecting plate, the second sliding block is movably connected to the second sliding rail, and the top end outer wall of the connecting plate is connected with the second connecting frame.

[0011] A processing method of a party clothing digital printing equipment with a drying mechanism, comprising the following specific steps:

[0012] S1: placing and laying the clothing piece on the surface of the second supporting shell, and placing the soft magnetic strip on the surface of the clothing piece;

[0013] S2: the soft magnetic strip moves downward under the action of the third sliding rail to clamp and arrange the clothing piece;

[0014] S3: the second sliding rail drives the supporting mechanism to move towards the digital printing head, stops at the printing position, and the abutting plate and the abutting block are in contact during the process, and the drying mechanism moves to one side of the supporting mechanism;

[0015] S4: the digital printing head moves on the first sliding rail to print reciprocally;

[0016] S5: after printing, the second sliding rail drives the supporting mechanism to reciprocally displace, the drying mechanism returns to the original position to dry the printing position, and the air rod drives the longitudinal grid plate to reciprocally move during the drying process;

[0017] S6: discharging.

[0018] By arranging the supporting mechanism, the soft magnetic strips on both sides are placed on the surface of the clothing piece, the third sliding block moves downward under the action of the third sliding rail, and the two soft magnetic strips are retracted into the second supporting shell, so that the clothing piece on both sides can be clamped and arranged at the same time during the clamping and moving process, the generation of wrinkles is reduced, the clothing piece can also be prevented from moving under the action of the suction force of the ventilation hole, the limited fixing force of the ventilation hole is compensated, and the stability of the clothing piece during the reciprocating movement of the digital printing head on the surface of the clothing piece is better ensured.

[0019] From the above, a party clothes digital printing equipment with drying mechanism, including the outer body, the outer body one side inner wall is fixedly connected with the first slide rail, and the first slide rail is connected with the digital printing head through the first sliding block, the bottom end inner wall of the outer body is fixedly connected with the bottom frame, and the one side inner wall of the outer body is fixedly connected with the second slide rail, two support mechanisms are arranged on the second slide rail at equal density, and each support mechanism is connected with the drying mechanism through the adjusting mechanism respectively; The adjusting mechanism comprises a sliding groove, and the sliding groove is fixed at the top of the second slide rail, the fourth sliding block is movably connected in the sliding groove, the top of the fourth sliding block is fixedly connected with the supporting rod, the supporting rod is movably sleeved with the U-shaped support, the top of the supporting rod is movably connected in the U-shaped support, the middle segment of the supporting rod is fixedly connected with the second connecting frame, the supporting rod is sleeved with two torsion springs, the two ends of the two torsion springs are connected with the second connecting frame and the U-shaped support respectively, the top outer wall of the U-shaped support is fixedly connected with the first connecting frame, the one side outer wall of the U-shaped support is fixedly connected with the stop plate, the bottom end outer wall of the U-shaped support is fixedly connected with the limiting plate, and the limiting plate abuts on one side of the sliding groove; The drying mechanism is fixed on the first connecting frame, the second connecting frame is connected with the support mechanism, the one side outer wall of the bottom frame is fixedly connected with the stop block, and the stop block is in contact with the stop plate. The party clothes digital printing equipment with drying mechanism and the processing method provided by the present application have the technical effects of guaranteeing the drying effect, effectively improving the drying efficiency, and reducing the cost. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 The whole structure schematic diagram of a party clothes digital printing equipment with drying mechanism is provided.

[0021] Figure 2 The internal structure schematic diagram of a party clothes digital printing equipment with drying mechanism is provided.

[0022] Figure 3 The adjusting mechanism structure schematic diagram of a party clothes digital printing equipment with drying mechanism is provided.

[0023] Figure 4 The support mechanism split structure schematic diagram of a party clothes digital printing equipment with drying mechanism is provided.

[0024] Figure 5 The drying mechanism split structure schematic diagram of a party clothes digital printing equipment with drying mechanism is provided.

[0025] Figure 6 The specific flow chart of a processing method of a party clothes digital printing equipment with drying mechanism is provided.

[0026] In the figure: 1, outer body; 2, adjusting mechanism; 3, first sliding rail; 4, first sliding block; 5, digital printing head; 6, drying mechanism; 7, supporting mechanism; 8, bottom frame; 9, second sliding rail; 201, sliding groove; 202, limiting plate; 203, abutting plate; 204, U-shaped support; 205, first connecting frame; 206, abutting block; 207, torsional spring; 208, supporting rod; 209, fourth sliding block; 210, second connecting frame; 601, hot air machine; 602, first supporting shell; 603, through slot; 604, longitudinal grid plate; 605, side support plate; 606, transverse grid plate; 607, air rod; 701, soft magnetic strip; 702, second supporting shell; 703, ventilation hole; 704, second sliding block; 705, connecting plate; 706, metal support plate; 707, side support; 708, limiting sliding block; 709, limiting sliding groove; 710, air suction machine; 711, third sliding rail; 712, third sliding block. DETAILED DESCRIPTION

[0027] 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, not all the embodiments.

[0028] The party clothing digital printing equipment with a drying mechanism and the processing method disclosed by the present application are mainly applied to the scene of party clothing digital printing.

[0029] Reference Figure 1 and Figure 2The utility model provides a party clothing digital printing equipment with drying mechanism, including outer body 1, the inner wall of one side of outer body 1 is fixedly connected with first slide rail 3, and first slide rail 3 is connected with digital printing head 5 through first sliding block 4 on, the inner wall of bottom end of outer body 1 is fixedly connected with bottom bracket 8, and the inner wall of one side of outer body 1 is fixedly connected with second slide rail 9, and two support mechanisms 7 are arranged at equal density on second slide rail 9, and every support mechanism 7 is connected with drying mechanism 6 respectively through adjusting mechanism 2 on, adjusting mechanism 2 includes sliding slot 201, and sliding slot 201 is fixed at the top of second slide rail 9, and the fourth sliding block 209 is movably connected in sliding slot 201, and the top of fourth sliding block 209 is fixedly connected with support rod 208, and the outer movable sleeve of support rod 208 is connected with U-shaped support 204, and the top movable joint of support rod 208 is in U-shaped support 204, and the middle segment of support rod 208 is fixedly connected with second connecting frame 210, and the outer sleeve of support rod 208 is connected with two torsional springs 207, and the two ends of two torsional springs 207 are connected with second connecting frame 210, U-shaped support 204 respectively, the outer wall of the top of U-shaped support 204 is fixedly connected with first connecting frame 205, and the outer wall of one side of U-shaped support 204 is fixedly connected with abutment plate 203, the outer wall of the bottom of U-shaped support 204 is fixedly connected with limiting plate 202, and limiting plate 202 is placed on one side of sliding slot 201, drying mechanism 6 is fixed on first connecting frame 205, and second connecting frame 210 is connected with support mechanism 7, the outer wall of one side of bottom bracket 8 is fixedly connected with abutment block 206, and abutment block 206 is in contact with abutment plate 203, the piece is placed on support mechanism 7, with the repeated drive of second slide rail 9, make one of support mechanism 7 be located at the bottom of digital printing head 5 and carry out digital printing, gradually approach printing station during the operation, with the contact of abutment plate 203 and abutment block 206, drive abutment plate 203 to incline, in turn drive U-shaped support 204 to rotate with support rod 208 as the center, make drying mechanism 6 deviate, to expose printing area, when printing is finished, with the movement of support mechanism 7, abutment plate 203 is separated from abutment block 206 and under the action of torsional spring 207 and the positioning effect of limiting plate 202, make drying mechanism 6 return to the original position and be positioned stably above the piece, by drying mechanism 6 with close distance and stable wind force to the surface of piece and carry out drying, to guarantee the drying effect while effectively improving drying efficiency, reduce the effect of cost expenditure simultaneously.

[0030] Refer to Figure 5 In a preferred embodiment, the drying mechanism 6 includes a first support housing 602, and the opposite sides of the first support housing 602 are provided with through slots 603, and longitudinal grating plates 604 are inserted into the through slots 603, and the two ends of the longitudinal grating plates 604 are fixedly connected with side support plates 605.

[0031] Refer to Figure 5In one preferred implementation, one side inner wall of one side plate 605 is fixedly connected with an air rod 607, and the air rod 607 is fixed to one side outer wall of the first supporting shell 602; the top end inner wall of the first supporting shell 602 is connected with a hot air machine 601, and the bottom end inner wall of the first supporting shell 602 is inlaid with a transverse grid plate 606. During the drying process, the hot air emitted by the hot air machine 601 is cut through the staggered arrangement of the ventilation openings of the longitudinal grid plate 604 and the transverse grid plate 606, so that the hot air is more gently applied to the printed surface, avoiding affecting the printed pattern. At the same time, the longitudinal grid plate 604 is repeatedly changed in the slot 603 by the repeated extension and contraction of the air rod 607, so as to repeatedly change the staggered position of the longitudinal grid plate 604 and the transverse grid plate 606, avoiding the direct blowing of the hot air from a single ventilation opening, thereby ensuring the drying efficiency while further avoiding affecting the printed surface.

[0032] Referring to Figure 3 and Figure 4 In one preferred implementation, the supporting mechanism 7 includes a second supporting shell 702, and the top end inner wall of the second supporting shell 702 is inlaid with a metal supporting plate 706, and the top end of the metal supporting plate 706 is provided with a plurality of ventilation holes 703 on both sides. The bottom end inner wall of the second supporting shell 702 is fixedly connected with a suction fan 710.

[0033] Referring to Figure 3 and Figure 4 In one preferred implementation, two gaps are provided between the two sides of the metal supporting plate 706 and the top surface of the second supporting shell 702, and two soft magnetic strips 701 are movably inserted in the two gaps respectively, and the two soft magnetic strips 701 are simultaneously attached to the top end of the metal supporting plate 706.

[0034] Referring to Figure 3 and Figure 4 In one preferred implementation, the bottom end outer wall of each of the two soft magnetic strips 701 is fixedly connected with a side bracket 707, and the same side outer wall of each of the two side brackets 707 is fixedly connected with a limiting sliding block 708. One side inner wall of the second supporting shell 702 is provided with a limiting sliding groove 709, and the limiting sliding block 708 is movably connected in the limiting sliding groove 709.

[0035] Referring to Figure 3 and Figure 4 In one preferred implementation, the other side outer wall of each of the two side brackets 707 is fixedly connected with a third sliding block 712, and the third sliding block 712 is movably connected with a third sliding rail 711, and the third sliding rail 711 is fixed to the inner wall of the second supporting shell 702.

[0036] Referring to Figure 3 and Figure 4In a preferred implementation, one side wall of the second supporting shell 702 is fixedly connected with a connecting plate 705, one side wall of the connecting plate 705 is fixedly connected with a second sliding block 704, the second sliding block 704 is movably connected in the second sliding rail 9, and the top end wall of the connecting plate 705 is connected with the second connecting frame 210, wherein the clothes piece is placed on the top end of the metal supporting plate 706, the air suction fan 710 sucks the air inside the second supporting shell 702, generates suction through the ventilation hole 703, and makes the clothes piece adhere to the surface of the metal supporting plate 706, then the two soft magnetic strips 701 are placed on the surface of the clothes piece, with the third sliding rail 711 driving the third sliding block 712 to move downward, the two soft magnetic strips 701 are driven to shrink into the second supporting shell 702, so that the clothes piece can be clamped and arranged at the same time, the generation of wrinkles is reduced, the clothes piece can be prevented from moving under the action of the suction of the ventilation hole 703, and the limited fixing force of the ventilation hole 703 is compensated, so that the stability of the clothes piece is better avoided when the digital printing head 5 reciprocates on the surface of the clothes piece.

[0037] Referring to Figure 6 A processing method of a party clothes digital printing equipment with a drying mechanism, comprising the following specific steps:

[0038] S1: placing and laying the clothes piece on the surface of the second supporting shell 702, and then placing the soft magnetic strip 701 on the surface of the clothes piece;

[0039] S2: the soft magnetic strip 701 moves downward under the action of the third sliding rail 711, clamps and arranges the clothes piece;

[0040] S3: the second sliding rail 9 drives the supporting mechanism 7 to move towards the digital printing head 5, stops at the printing position, the abutting plate 203 contacts the abutting block 206 in the process, and the drying mechanism 6 moves to one side of the supporting mechanism 7;

[0041] S4: the digital printing head 5 moves on the first sliding rail 3 to perform reciprocating printing;

[0042] S5: after printing, the second sliding rail 9 drives the supporting mechanism 7 to reciprocate, the drying mechanism 6 returns to the original position to dry the printing position, and the air rod 607 drives the longitudinal grid plate 604 to reciprocate in the drying process;

[0043] S6: discharging.

[0044] Working principle: when processing, the garment piece is placed on the supporting mechanism 7, and with the repeated driving of the second sliding rail 9, one of the supporting mechanisms 7 is located at the bottom end of the digital printing head 5 for digital printing, and in the running process, gradually approaches the printing station, and with the contact of the abutting plate 203 and the abutting block 206, the abutting plate 203 is driven to tilt, and the U-shaped support 204 is driven to rotate around the supporting rod 208, so that the drying mechanism 6 is offset, so as to expose the printing area, and when the printing is finished, with the movement of the supporting mechanism 7, the abutting plate 203 is separated from the abutting block 206 and is positioned above the garment piece under the action of the torsion spring 207 and the positioning action of the limiting plate 202, so that the drying mechanism 6 is returned to the original position and is stably positioned above the garment piece, and the garment piece is dried by the drying mechanism 6 at a close distance and with stable wind force, so as to effectively improve the drying efficiency while ensuring the drying effect, and at the same time, the cost is reduced, and at the same time, the hot air fan 601 emits hot air, which is cut by the staggered arrangement of the ventilation openings of the longitudinal grating plate 604 and the transverse grating plate 606, so that the hot air is more soft to act on the printing surface, avoiding affecting the printed pattern, and at the same time, the longitudinal grating plate 604 is repeatedly changed in position with the transverse grating plate 606 by the repeated extension and contraction of the air rod 607 to shuttle in the slot 603, so as to avoid the hot air blowing directly from a single ventilation opening, thereby further avoiding affecting the printing surface while ensuring the drying efficiency, wherein the garment piece is placed on the top end of the metal supporting plate 706, the air suction fan 710 sucks the air in the second supporting shell 702, and generates suction force through the ventilation hole 703, and the garment piece is attached to the surface of the metal supporting plate 706, and then the two soft magnetic strips 701 are placed on the surface of the garment piece, and with the downward movement of the third sliding block 712 driven by the third sliding rail 711, the two soft magnetic strips 701 are retracted into the second supporting shell 702, so that the garment piece can be clamped on both sides while being arranged during clamping and moving, thereby reducing the generation of wrinkles, and the garment piece can also be prevented from moving under the action of the suction force of the ventilation hole 703, and the limited fixing force of the ventilation hole 703 is compensated, so that the stability of the garment piece is better when the digital printing head 5 reciprocates on the surface of the garment piece.

[0045] The above is only the preferred specific embodiment of the present application, but the protection scope of the present application is not limited thereto, and any person skilled in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.

Claims

1. A party wear digital printing apparatus with drying mechanism comprising of outer body (1) characterized in that, The side inner wall of the outer body (1) is fixedly connected with a first sliding rail (3), a digital printing head (5) is connected with the first sliding rail (3) through a first sliding block (4), the bottom end inner wall of the outer body (1) is fixedly connected with a chassis (8), the side inner wall of the outer body (1) is fixedly connected with a second sliding rail (9), two supporting mechanisms (7) are arranged on the second sliding rail (9) at equal intervals, and the drying mechanism (6) is connected with each supporting mechanism (7) through the adjusting mechanism (2); The adjusting mechanism (2) comprises a sliding groove (201) fixed at the top end of the second sliding rail (9), a fourth sliding block (209) movably connected in the sliding groove (201), a supporting rod (208) fixedly connected at the top end of the fourth sliding block (209), a U-shaped support (204) movably sleeved on the supporting rod (208), the top end of the supporting rod (208) movably connected in the U-shaped support (204), a second connecting frame (210) fixedly connected at the middle segment of the supporting rod (208), two torsion springs (207) sleeved on the supporting rod (208), the two ends of the two torsion springs (207) connected with the second connecting frame (210) and the U-shaped support (204), a first connecting frame (205) fixedly connected at the top end outer wall of the U-shaped support (204), a stop plate (203) fixedly connected at the side outer wall of the U-shaped support (204), a limiting plate (202) fixedly connected at the bottom end outer wall of the U-shaped support (204), and the limiting plate (202) abutting against the side of the sliding groove (201); The drying mechanism (6) is fixed on the first connecting frame (205), the second connecting frame (210) is connected with the supporting mechanism (7), a stop block (206) is fixedly connected at the side outer wall of the chassis (8), and the stop block (206) is in contact with the stop plate (203); The supporting mechanism (7) comprises a second supporting shell (702), a metal supporting plate (706) embedded at the top end inner wall of the second supporting shell (702), a plurality of ventilation holes (703) penetrating through the top end two sides of the metal supporting plate (706), and a suction fan (710) fixedly connected at the bottom end inner wall of the second supporting shell (702); Two gaps are arranged between the two sides of the metal supporting plate (706) and the top surface of the second supporting shell (702), and two soft magnetic strips (701) are movably inserted in the two gaps, and the two soft magnetic strips (701) are simultaneously attached to the top end of the metal supporting plate (706); The bottom end outer walls of the two soft magnetic strips (701) are fixedly connected with side supports (707), the same side outer walls of the two side supports (707) are fixedly connected with limiting sliding blocks (708), and the inner wall of the second supporting shell (702) is provided with a limiting sliding groove (709), and the limiting sliding blocks (708) are movably connected in the limiting sliding groove (709). The other side outer wall of the two side supports (707) is fixedly connected with a third sliding block (712), and the third sliding block (712) is movably connected with a third sliding rail (711), and the third sliding rail (711) is fixed to the inner wall of the second support shell (702); One side outer wall of the second support shell (702) is fixedly connected with a connecting plate (705), and one side outer wall of the connecting plate (705) is fixedly connected with a second sliding block (704), and the second sliding block (704) is movably connected in the second sliding rail (9), and the top outer wall of the connecting plate (705) is connected with the second connecting frame (210).

2. A party wear digital printing apparatus with drying mechanism as claimed in claim 1 wherein, The drying mechanism (6) comprises a first support shell (602), and the opposite two side inner walls of the first support shell (602) are provided with penetrating grooves (603), and the penetrating grooves (603) are provided with longitudinal grating plates (604) penetratingly, and the two ends of the longitudinal grating plates (604) are fixedly connected with side support plates (605).

3. A party wear digital printing apparatus with drying mechanism as claimed in claim 2 wherein, One side inner wall of one of the side support plates (605) is fixedly connected with an air rod (607), and the air rod (607) is fixed to one side outer wall of the first support shell (602); The top inner wall of the first support shell (602) is connected with a hot air blower (601), and the bottom inner wall of the first support shell (602) is embedded with a transverse grating plate (606).

4. The processing method of the party clothes digital printing equipment with drying mechanism, applied to the party clothes digital printing equipment with drying mechanism in claim 3, characterized in that, The method comprises the following specific steps: S1: the clothes piece is placed and laid on the surface of the second support shell (702), and the soft magnetic strip (701) is placed on the surface of the clothes piece; S2: the soft magnetic strip (701) is moved downward under the action of the third sliding rail (711), and the clothes piece is clamped and arranged; S3: the second sliding rail (9) drives the supporting mechanism (7) to move towards the digital printing head (5), and stops at the printing position, and in the process, the abutting plate (203) is in contact with the abutting block (206), and the drying mechanism (6) moves to one side of the supporting mechanism (7); S4: the digital printing head (5) moves on the first sliding rail (3) to print reciprocatingly; S5: after printing, the second sliding rail (9) drives the supporting mechanism (7) to reciprocally displace, the drying mechanism (6) is returned to the original position to dry the printing position, and the air rod (607) drives the longitudinal grating plate (604) to reciprocally move during the drying process; S6: discharging.

Citation Information

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