A slack type shower rope washing machine

By adopting loose shower design and testing mechanism in rope-shaped washing machines, problems such as insufficient capacity and low production efficiency of traditional washing machines are solved, and more efficient and economical washing effects are achieved.

CN113605001BActive Publication Date: 2025-06-17JIANGYIN CITY YONG XIN PRINTING&DYEING MASCH CO LTD
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Patent Information

Application Number
CN202110951640.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-08-18
Publication Date
2025-06-17
Estimated Expiration
2041-08-18

AI Technical Summary

Technical Problem

Traditional rope washing machines have problems such as large area, high manufacturing cost, high equipment operation energy consumption, poor washing effect, large water consumption, and low production efficiency.

Method used

The loose-type shower rope-shaped water washing machine is designed, including the upper box and the lower box. Multiple roll groups are set up in the upper box, and multiple partitions are set up in the lower box to separate them into multiple washing chambers. Each chamber is equipped with a ship-type cloth bucket, and a stacking cloth and bubble detection mechanism are set up in the upper box, as well as pre-seater and shower components.

Benefits of technology

It improves the capacity of the washing machine, improves production efficiency, reduces production and manufacturing costs, ensures the washing effect and washing smoothness, and reduces water consumption and energy consumption.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present invention relates to a slack-type shower rope washing machine, which comprises an upper box body (1) and a lower box body (2). A plurality of roller groups (3) are arranged at intervals in the upper box body (1) along the fabric feeding direction. A plurality of partitions (4) are arranged at intervals in the lower box body (1) along the fabric feeding direction. The plurality of partitions (4) divide the lower box body (2) into a plurality of washing chambers (5). A boat-shaped cloth receiving hopper (6) is correspondingly arranged at the position of each washing chamber (5). The boat-shaped cloth receiving hopper (6) is arranged along the left-right direction. The slack-type shower rope washing machine of the present invention greatly improves the cloth capacity of the washing machine, which is beneficial to improving the production efficiency.
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Description

Technical Field

[0001] The present invention relates to a slack-type spray cord washing machine, belonging to the technical field of printing and dyeing equipment. Background Art

[0002] Cord washing machines are usually used for the washing of cotton, polyester-cotton, blended, chemical fiber and other woven and knitted fabrics as well as other fabrics after printing and dyeing, so as to wash away the residual floating color paste or additives on the fabric surface and further fix the color of the fabric. Traditional cord washing machines have many defects such as large floor area, high manufacturing cost, high energy consumption during equipment operation, poor washing effect, large water consumption, and low production efficiency.

[0003] The invention patent with the application number 201910733588.4 discloses a continuous cord jet washing machine, which includes a plurality of serially connected washing units. Each washing unit includes an upper box body and a lower box body. The lower box body is arranged in a U-shaped structure with an upward opening. A plurality of vertical partition plates are arranged at intervals in the lower box body along the fabric feeding direction. The plurality of partition plates divide the lower box body into a plurality of washing chambers. Adjacent two washing chambers are connected by a fabric conveying pipe. The fabric conveying pipe is longitudinally in an S-shaped structure and transversely in a Z-shaped structure, and it has the advantages of saving floor space, reducing manufacturing cost, improving washing effect, and saving water consumption. However, the above continuous cord jet washing machine still has the following disadvantages:

[0004] 1. The lower box body of the washing unit is arranged in a U-shaped structure. Although the water storage capacity and fabric capacity are increased to a certain extent, the production and manufacturing of the U-shaped lower box body are extremely inconvenient, greatly increasing the production and manufacturing cost, and the fabric capacity of the U-shaped lower box body is still not ideal enough;

[0005] 2. There is no fabric capacity detection mechanism in the U-shaped lower box body of the washing unit, and it is impossible to accurately know the fabric capacity condition in the lower box body, and blockage is likely to occur in the lower box body;

[0006] 3. There is no fabric stacking and bulging detection mechanism in the upper box body of the washing unit, and the fabric is likely to stack and bulge in the upper box body, thus affecting the smooth progress of production and reducing the production efficiency;

[0007] 4. There is no spray mechanism in the upper box body of the washing unit, and only the U-shaped lower box body is used to wash the fabric, resulting in low washing efficiency and poor washing effect. Summary of the Invention

[0008] The technical problem to be solved by the present invention is to provide a slack-type spray cord washing machine for the above-mentioned existing technology, which greatly improves the fabric capacity of the washing machine and is beneficial to improving the production efficiency.

[0009] The technical solution adopted by the present invention to solve the above problems is as follows: A slack-type shower rope washing machine, which includes an upper box body and a lower box body. Inside the upper box body, a plurality of roller groups are arranged at intervals along the fabric feeding direction. Inside the lower box body, a plurality of partition plates are arranged at intervals along the fabric feeding direction. The plurality of partition plates divide the lower box body into a plurality of washing chambers. At the position of each washing chamber, a boat-shaped fabric receiving hopper is correspondingly arranged, and the boat-shaped fabric receiving hopper is arranged along the left-right direction.

[0010] Optionally, the fabric receiving hopper includes an inner half fabric receiving hopper and an outer half fabric receiving hopper. The inner half fabric receiving hopper is arranged inside the washing chamber, and the outer half fabric receiving hopper is connected to the outside of one side of the washing chamber. The inner half fabric receiving hopper and the outer half fabric receiving hopper are connected and communicated.

[0011] Optionally, the inner half fabric receiving hopper is integrally in a three-sided structure, and its upper side and right side are open.

[0012] Optionally, the inner half fabric receiving hopper includes a left end plate, an inner bottom plate, and two front and rear inner side plates. The inner bottom plate includes an inner arc connection section and an inner transverse support section. A plurality of water inlet holes are opened on the two front and rear inner side plates and the inner arc connection section.

[0013] Optionally, at the tops of the two front and rear inner side plates, webs are turned outwards. Support beams are arranged on the front and rear side walls of the washing chamber. The inner half fabric receiving hopper is placed on the two front and rear support beams of the washing chamber through the two front and rear webs, and the webs are connected to the support beams through connecting bolts.

[0014] Optionally, the outer half fabric receiving hopper is integrally in a four-sided closed structure, with its left end being the fabric outlet, and its right end being bent upwards to the left to form a fabric inlet.

[0015] Optionally, the outer half fabric receiving hopper includes an outer top plate, an outer bottom plate, and two front and rear outer side plates. Both the outer top plate and the outer bottom plate include an outer transverse support section, an outer arc transition section, and an outer bending section.

[0016] Optionally, a buffer plate is arranged at the position of the outer arc transition section of the outer bottom plate.

[0017] Optionally, a connecting flange is arranged at the fabric outlet position, and the outer half fabric receiving hopper is connected to the lower box body through the connecting flange.

[0018] Optionally, the inner half fabric receiving hopper and the outer half fabric receiving hopper are connected through an intermediate connection section.

[0019] Compared with the prior art, the advantages of the present invention are as follows:

[0020] 1. The present invention adopts a boat-shaped fabric receiving hopper, which greatly improves the fabric capacity of the washing machine and is beneficial to improving production efficiency;

[0021] 2. The cloth storage hopper of the ship shape of the present invention includes an inner part and an outer part, which is simple in processing and manufacturing and convenient for installation, and is beneficial to reducing the production and manufacturing cost;

[0022] 3. The inner half cloth storage hopper of the present invention is only provided with water inlet holes on the front arc sections of the left and right side plates and the bottom plate, and there are no water inlet holes on the rear straight section of the bottom plate. Therefore, during the water washing process, the fabric in the cloth storage hopper will not be affected by the suction force of the lower return water pipe, effectively ensuring the smoothness of the fabric running in the cloth storage hopper;

[0023] 4. A cloth storage amount detection mechanism is arranged above the cloth storage hopper of the lower box body of the present invention, which can accurately know the cloth storage condition in the cloth storage hopper, so that the water washing machine can timely adjust the rotational speeds of the front and rear rollers, prevent the fabric from accumulating too much in the cloth storage hopper and affecting the normal operation of the water washing machine, and effectively ensure the water washing efficiency and water washing effect;

[0024] 5. A cloth stacking detection mechanism and a bubbling detection mechanism are arranged in the upper box body of the present invention, which can effectively prevent the phenomena of cloth stacking and bubbling during the water washing process of the fabric, and effectively ensure the continuity and smoothness of production;

[0025] 6. A pre-flushing component and a flushing component are arranged in the upper box body of the present invention, and the fabric is flushed and washed during the lifting and falling process of the fabric, effectively improving the water washing efficiency and ensuring the water washing effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 is a schematic structural diagram of a slack flushing rope-shaped water washing machine of the present invention.

[0027] Figure 2 is Figure 1 a side view of

[0028] Figure 3 is Figure 1 a top view of

[0029] Figure 4 is Figure 2 a schematic structural diagram of the inner half cloth storage hopper in

[0030] Figure 5 is Figure 4 a top view of

[0031] Figure 6 is Figure 4 an A-A cross-sectional view of

[0032] Figure 7 is Figure 2 a schematic structural diagram of the outer half cloth storage hopper in

[0033] Figure 8 is Figure 7 a top view of

[0034] Figure 9 is Figure 8 the view from direction B of

[0035] Figure 10 is Figure 2 the schematic structural view of the cloth capacity detection mechanism in

[0036] Figure 11 is Figure 10 the side view of

[0037] Figure 12 is Figure 10 the schematic structural view of the detection plate assembly in

[0038] Figure 13 is Figure 12 the partial side view of

[0039] Figure 14 is Figure 12 the view from direction C of

[0040] Figure 15 is Figure 1 the schematic structural view of the cloth stacking detection mechanism in

[0041] Figure 16 is Figure 15 the top view of

[0042] Figure 17 is Figure 1 the schematic structural view of the bubbling detection mechanism in

[0043] Figure 18 is Figure 17 the top view of

[0044] Figure 19 is Figure 1 the schematic structural view of the shower assembly in

[0045] Figure 20 is Figure 1 the schematic structural view of the pre - shower assembly in

[0046] Wherein:

[0047] Upper box body 1, lower box body 2, roll group 3, partition board 4, water washing bin chamber 5, cloth storage hopper 6, inner half cloth storage hopper 61, left end plate 611, inner bottom plate 612, inner arc connecting section 612.1, inner horizontal support section 612.2, inner side plate 613, water inlet hole 614, web 615, outer half cloth storage hopper 62, cloth outlet 621, cloth inlet 622, outer top plate 623, outer bottom plate 624, outer side plate 625, outer horizontal support section 626, outer arc transition section 627, outer bending section 628, buffer plate 629, connecting flange 6210, middle connecting section 63, spray component 7, water box 71, first cloth passing hole 72, cloth passing cone 73, middle partition board 74, second cloth passing hole 75, diversion cone 76, spray channel 77, cloth passing elbow 78, support foot plate 79, support cone plate 710, spray water inlet 711, cloth running pipe 8, circulating filtration mechanism 9, circulating pump 91, return water pipe 92, water inlet pipe 93, filtering device 94, water inlet branch pipe 95, cloth storage capacity detection mechanism 10, detection bracket 101, bearing seat 102, rotating shaft 103, detection plate assembly 104, support frame 104.1, impact plate 104.2, floating plate 104.3, hinge 104.4, linear switch 105, pull rod 106, linear switch seat 107, tension spring shaft 108, pull plate 109, connecting shaft 1010, tension spring 1011, tension spring hole 1012, limiting pipe 1013, cloth stacking detection mechanism 11, first support foot 111, first detection rod 112, first cloth passing ring 113, first cloth blocking rod 114, first counterweight 115, first detection support 116, first detection switch 117, first limiting plate 118, first limiting bolt 119, cloth guiding ring assembly 12, bubbling detection mechanism 13, second support foot 131, second detection rod 132, second cloth passing ring 133, second cloth blocking rod 134, second counterweight 135, second detection support 136, second detection switch 137, second limiting plate 138, second limiting bolt 139, pre-flushing component 14, outer cylinder 141, support bottom plate 142, third cloth passing hole 143, inner cylinder 144, upper cone 145, lower cone 146, edge protection round steel 147, pre-flushing water inlet 148, cloth inlet component 15, cloth outlet component 16, support beam 17. Detailed implementation mode

[0048] The present invention will be further described in detail below in conjunction with the embodiments with reference to the drawings.

[0049] As Figures 1 - 20As shown in the figure, the present invention relates to a slack rope washing machine, which includes an upper box body 1 and a lower box body 2. A plurality of roller groups 3 are arranged at intervals in the upper box body 1 along the fabric feeding direction (front-back direction). A plurality of partition plates 4 are arranged at intervals in the lower box body 2 along the fabric feeding direction (front-back direction). The plurality of partition plates 4 divide the lower box body 2 into a plurality of washing chambers 5. A boat-shaped cloth receiving hopper 6 is correspondingly arranged at the position of each washing chamber 5. The boat-shaped cloth receiving hopper 6 is arranged along the left-right direction;

[0050] The cloth receiving hopper 6 includes an inner half cloth receiving hopper 61 and an outer half cloth receiving hopper 62. The inner half cloth receiving hopper 61 is arranged in the washing chamber 5. The outer half cloth receiving hopper 62 is connected to the outside of one side of the washing chamber 5. The inner half cloth receiving hopper 61 and the outer half cloth receiving hopper 62 are communicated with each other;

[0051] The inner half cloth receiving hopper 61 is integrally in a three-sided structure, with its upper side and right side open;

[0052] The inner half cloth receiving hopper 61 includes a left end plate 611, an inner bottom plate 612, and two front and rear inner side plates 613. The inner bottom plate 612 includes an inner arc connecting section 612.1 and an inner transverse support section 612.2. A plurality of water inlet holes 614 are provided on the two front and rear inner side plates 613 and the inner arc connecting section 612.1;

[0053] Webs 615 are turned outwards at the tops of the two front and rear inner side plates 613. Support beams 17 are arranged on the front and rear side walls of the washing chamber 5. The inner half cloth receiving hopper 61 is placed on the two front and rear support beams 17 of the washing chamber 5 through the two front and rear webs 615. The webs 615 are connected to the support beams 17 through connecting bolts;

[0054] The outer half cloth receiving hopper 62 is integrally in a four-sided closed structure, with its left end being a cloth outlet 621 and its right end being bent upwards to the left to form a cloth inlet 622;

[0055] The outer half cloth receiving hopper 62 includes an outer top plate 623, an outer bottom plate 624, and two front and rear outer side plates 625. The outer top plate 623 and the outer bottom plate 624 both include an outer transverse support section 626, an outer arc transition section 627, and an outer bending section 628;

[0056] A buffer plate 629 is arranged at the position of the outer arc transition section 627 of the outer bottom plate 624;

[0057] A connecting flange 6210 is arranged at the position of the cloth outlet 621. The outer half cloth receiving hopper 62 is connected to the lower box body 2 through the connecting flange 6210;

[0058] The inner half cloth receiving hopper 61 and the outer half cloth receiving hopper 62 are connected through an intermediate connecting section 63;

[0059] A spray component 7 is arranged between two adjacent roll groups 3. The spray component 7 is located below the roll group 3, and the spray component 7 is connected to the boat-shaped cloth receiving hopper 6 through a cloth conveying pipe 8;

[0060] The cloth conveying pipe 8 is arranged in a downward-sloping manner;

[0061] The spray component 7 includes a water box 71 with an open top. A first cloth passing hole 72 is opened at the bottom of the water box 71. An upwardly large and downwardly small cloth passing cone 73 is arranged upward at the position of the first cloth passing hole 72. An intermediate partition 74 is arranged above the cloth passing cone 73. A second cloth passing hole 75 is opened on the intermediate partition 74. A downwardly large and upwardly small diversion cone 76 is arranged downward at the position of the second cloth passing hole 75. The diversion cone 76 is located inside the cloth passing cone 73, and a spray channel 77 is formed between the diversion cone 76 and the cloth passing cone 73;

[0062] The lower end of the cloth passing cone 73 is connected with a cloth passing elbow 78;

[0063] Support foot plates 79 are arranged on the inner wall of the middle part of the water box 71, and the intermediate partition 74 is arranged on the four support foot plates 79;

[0064] A support cone plate 710 is arranged downward at the position of the first cloth passing hole 72, and the cloth passing cone 73 is supported on the support cone plate 710;

[0065] One end of the cloth conveying pipe 8 is connected with the cloth passing elbow 78, and the other end of the cloth conveying pipe 8 is connected with the cloth inlet 622 of the outer half cloth receiving hopper 62;

[0066] A circulation filtering mechanism 9 is correspondingly arranged outside each water washing chamber 5;

[0067] The circulation filtering mechanism 9 includes a circulation pump 91. The water inlet of the circulation pump 91 is connected with the water washing chamber 5 through a return water pipe 92, and the water outlet of the circulation pump 91 is connected with the spray component 7 through a water inlet pipe 93;

[0068] A filtering device 94 is arranged on the return water pipe 92;

[0069] A spray water inlet 711 is arranged on one side of the water box 71, and the spray water inlet 711 is connected with the water inlet pipe 93;

[0070] The height of the spray water inlet 711 is lower than the height of the cloth passing cone 73;

[0071] The connection position between the water washing chamber 5 and the return water pipe 92 is located below the inner half cloth receiving hopper 61;

[0072] A cloth capacity detection mechanism 10 is provided in each water washing chamber 5, and the cloth capacity detection mechanism 10 is located above the inner cloth hopper 61;

[0073] The cloth capacity detection mechanism 10 includes two front and rear detection brackets 101. A bearing seat 102 is provided on the detection bracket 101. A rotating shaft 103 is installed between the two front and rear bearing seats 102, and a detection plate assembly 104 is provided on the rotating shaft 103;

[0074] The detection plate assembly 104 includes a support frame 104.1. The rotating shaft 103 is installed in the upper part of the support frame 104.1. A collision plate 104.2 is inclined to the right at the bottom of the support frame 104.1, and a floating plate 104.3 is provided at the bottom of the collision plate 104.2;

[0075] The floating plate 104.3 is hinged to the collision plate 104.2 through a hinge 104.4;

[0076] A linear switch 105 is provided on the right side of the water washing chamber 5, and the linear switch 105 is connected to the middle part of the support frame 104.1 through a pull rod 106;

[0077] A linear switch seat 107 is provided on the outside of the lower box body 2. The linear switch seat 107 is located above the outer half cloth hopper 62, and the linear switch 105 is arranged on the linear switch seat 107;

[0078] A tension spring shaft 108 is provided on the left or right side of the water washing chamber 5. A pull plate 109 is provided on the tension spring shaft 108. A connecting shaft 1010 is provided on the corresponding side of the upper end of the support frame 104.1 with respect to the pull plate 109. A tension spring 1011 is connected between the pull plate 109 and the connecting shaft 1010;

[0079] A plurality of tension spring holes 1012 are formed in the pull plate 109. The tension spring shaft 108 is installed in one of the tension spring holes 1012, and the tension of the tension spring can be adjusted by installing the tension spring shaft in the tension spring holes at different positions;

[0080] A limiting tube 1013 is provided on the detection bracket 101 on the opposite side of the tension spring 1011, and the limiting tube 1013 is matched with the support frame 104.1;

[0081] A cloth stacking detection mechanism 11 is provided above the spray assembly 7;

[0082] The cloth piling detection mechanism 11 includes a first supporting foot 111 which is fixedly arranged on the left side wall or the right side wall of the upper box body 1. A first detection rod 112 is inserted through the first supporting foot 111 in the left-right direction. One end of the first detection rod 112 extends out of the upper box body 1. A first cloth-passing ring 113 is arranged on the first detection rod 112 forward or backward. A first cloth-blocking rod 114 is arranged in the first cloth-passing ring 113. The first cloth-blocking rod 114 is arranged in parallel with the first detection rod 112. A first counterweight 115 is arranged on the outer end of the first detection rod 112 on the side opposite to the first cloth-passing ring 113.

[0083] A first detection support 116 is arranged at the corresponding position of the outer end of the first counterweight 115. The first detection support 116 is fixedly arranged on the upper box body 1. A first detection switch 117 is arranged on the first detection support 116.

[0084] A first limiting plate 118 is arranged at the connection position between the first supporting foot 111 and the upper box body 1. Two upper and lower first limiting bolts 119 are arranged on the first limiting plate 118. The two upper and lower first limiting bolts 119 are respectively located on the upper and lower sides of the first counterweight 115.

[0085] The two upper and lower first limiting bolts 119 are respectively located on the front and rear sides of the first detection rod 112. The upper first limiting bolt 119 is located on the corresponding side of the first cloth-passing ring 113, and the lower first limiting bolt 119 is located on the corresponding side of the first counterweight 115.

[0086] A cloth guiding ring assembly 12 is arranged between two adjacent spray components 7.

[0087] A bubbling detection mechanism 13 is arranged below the cloth guiding ring assembly 12.

[0088] The bubbling detection mechanism 13 includes a second supporting foot 131 which is fixedly arranged on the left side wall or the right side wall of the upper box body 1. A second detection rod 132 is inserted through the second supporting foot 131 in the left-right direction. One end of the second detection rod 132 extends out of the upper box body 1. A second cloth-passing ring 133 is arranged on the second detection rod 132 forward or backward. A second cloth-blocking rod 134 is arranged in the second cloth-passing ring 133. The second cloth-blocking rod 134 is arranged in parallel with the second detection rod 132. A second counterweight 135 is arranged on the outer end of the second detection rod 132 on the side corresponding to the second cloth-passing ring 133.

[0089] A second detection support 136 is arranged at the corresponding position of the outer end of the second counterweight 135. The second detection support 136 is fixedly arranged on the upper box body 1. A second detection switch 137 is arranged on the second detection support 136.

[0090] A second limiting plate 138 is provided at the connection position between the second supporting foot 131 and the upper box body 1. Two upper and lower second limiting bolts 139 are provided on the second limiting plate 138, and the two upper and lower second limiting bolts 139 are respectively located on the upper and lower sides of the second counterweight 135;

[0091] The two upper and lower second limiting bolts 139 are respectively located on the front and rear sides of the second detection rod 132. The upper second limiting bolt 139 is located on the side away from the second cloth passing ring 133, and the lower second limiting bolt 139 is located on the side close to the second cloth passing ring 133;

[0092] Two front and rear pre-flushing components 14 are further provided in the upper box body 1, and the two front and rear pre-flushing components 14 are respectively located below the first roll group 3 and the last roll group 3;

[0093] The pre-flushing component 14 includes an outer cylinder 141 with an open top. A support bottom plate 142 is provided at the bottom of the outer cylinder 141. A third cloth passing hole 143 is provided on the support bottom plate 142, and an inner cylinder 144 is provided upward at the position of the third cloth passing hole 143;

[0094] An upper conical cylinder 145 with a large upper part and a small lower part is provided upward at the top of the inner cylinder 144;

[0095] A lower conical cylinder 146 with a large upper part and a small lower part is provided downward at the bottom of the outer cylinder 141;

[0096] A guard edge round steel 147 is provided at the bottom of the lower conical cylinder 146;

[0097] A pre-flushing water inlet 148 is provided on one side of the outer cylinder 141. Water inlet branch pipes 95 are provided on the water inlet pipes 93 of the frontmost and rearmost circulating filtration mechanisms 9. The pre-flushing water inlet 148 is connected to the water inlet branch pipes 95;

[0098] A cloth feeding component 15 and a cloth discharging component 16 are respectively provided on the front and rear sides of the upper box body 1.

[0099] Working principle:

[0100] The fabric is fed into the upper box body of the rope washing machine through the cloth feeding component, pre-flushed upward through the front pre-flushing component and then enters the first roll group, and then is flushed downward through the flushing component and sent into the lower boat-shaped cloth storage hopper through the cloth passing pipe for washing. The fabric after being washed by the boat-shaped cloth storage hopper enters the latter roll group upward again, and then is flushed downward through the latter flushing component and sent into the latter boat-shaped cloth storage hopper through the latter cloth passing pipe for washing. After passing through multiple flushing components and multiple boat-shaped cloth storage hoppers for washing in this way, the fabric finally passes through the rear pre-flushing component for pre-flushing and is sent out of the rope washing machine through the cloth discharging component to complete the entire washing process.

[0101] A cloth capacity detection mechanism is provided in each water washing chamber. The fabric is fed into the boat-shaped cloth storage hopper through the cloth guiding pipe. If the cloth capacity in the boat-shaped cloth storage hopper is too large, the fabric will squeeze the striker plate and the floating plate of the cloth capacity detection mechanism to the left, causing the support frame to rotate to the left. The pull rod pulls the linear switch. At this time, the linear switch feeds back a signal to the control system, thereby controlling the rotation speed of the upstream roller group and reducing the cloth feeding volume, so as to prevent the fabric in the cloth storage hopper from piling up and affecting the water washing quality. When the cloth capacity in the cloth storage hopper returns to normal, the fabric no longer squeezes the cloth capacity detection mechanism. At this time, the support frame, the pull rod and the linear switch are reset under the action of the tension spring. At this time, the linear switch transmits a signal to the control system, thereby controlling the rotation speed of the upstream roller group to return to normal.

[0102] A cloth piling detection mechanism is provided above each spray assembly. When the fabric enters the flushing assembly downward after passing through the roller group, if the fabric does not pile up, the fabric can smoothly pass through the cloth passing ring of the cloth piling detection mechanism. When the fabric passing through the roller group piles up, the piled fabric is blocked by the cloth passing ring and the cloth blocking rod and cannot pass through smoothly. When the cloth piling weight exceeds the weight of the counterweight, it will drive the cloth passing ring to rotate downward, and the counterweight will tilt upward and leave the position of the detection switch. At this time, the detection switch feeds back a signal to the control system to stop the machine and issue an alarm. The staff can resume normal production only after cleaning the fabric at the position of the cloth piling detection mechanism.

[0103] Similarly, when the fabric enters the roller group upward, it needs to pass through the bubbling detection mechanism under the cloth guiding ring. When the fabric does not produce bubbles, it can smoothly pass through the cloth passing ring of the bubbling detection mechanism. When the fabric produces bubbles, it will squeeze the cloth passing ring of the bubbling detection mechanism. When the squeezing force exceeds the weight of the counterweight, it will drive the cloth passing ring to rotate upward, and the counterweight will tilt upward and leave the position of the detection switch. At this time, the detection switch feeds back a signal to the control system to stop the machine and issue an alarm. The staff can resume normal production only after cleaning the fabric at the position of the bubbling detection mechanism.

[0104] In addition to the above embodiments, the present invention also includes other embodiments. Any technical solutions formed by equivalent transformation or equivalent substitution shall fall within the protection scope of the claims of the present invention.

Claims

1. A slack type shower rope-like washing machine, characterized in that: It includes an upper box body (1) and a lower box body (2). Inside the upper box body (1), a plurality of roller groups (3) are arranged at intervals along the cloth feeding direction. Inside the lower box body (2), a plurality of partition plates (4) are arranged at intervals along the cloth feeding direction. The plurality of partition plates (4) divide the lower box body (2) into a plurality of water washing chambers (5). At the position of each water washing chamber (5), a boat-shaped cloth receiving hopper (6) is correspondingly arranged. The boat-shaped cloth receiving hopper (6) is arranged along the left-right direction. The cloth receiving hopper (6) includes an inner half cloth receiving hopper (61) and an outer half cloth receiving hopper (62). The inner half cloth receiving hopper (61) is arranged inside the water washing chamber (5). The outer half cloth receiving hopper (62) is connected and arranged on one side outside the water washing chamber (5). The inner half cloth receiving hopper (61) and the outer half cloth receiving hopper (62) are communicated with each other. The inner half cloth receiving hopper (61) is integrally in a three-sided body structure, and its upper side and right side are open. The inner half cloth receiving hopper (61) includes a left end plate (611), an inner bottom plate (612), and two front and rear inner side plates (613). The inner bottom plate (612) includes an inner arc connecting section (612.1) and an inner transverse support section (612.2). A plurality of water inlet holes (614) are formed in the two front and rear inner side plates (613) and the inner arc connecting section (612.1). On the tops of the two front and rear inner side plates (613), webs (615) are turned outwards. On the front and rear side walls of the water washing chamber (5), support beams (17) are arranged. The inner half cloth receiving hopper (61) is placed on the two front and rear support beams (17) of the water washing chamber (5) through the two front and rear webs (615). The webs (615) are connected to the support beams (17) through connecting bolts. The outer half cloth receiving hopper (62) is integrally in a four-sided closed structure. Its left end is a cloth outlet (621), and its right end is bent upwards to the left to form a cloth inlet (622). The outer half cloth receiving hopper (62) includes an outer top plate (623), an outer bottom plate (624), and two front and rear outer side plates (625). The outer top plate (623) and the outer bottom plate (624) both include an outer transverse support section (626), an outer arc transition section (627), and an outer bending section (628). A buffer plate (629) is arranged at the position of the outer arc transition section (627) of the outer bottom plate (624).

2. The slack type shower rope-like washing machine according to claim 1, characterized in that: A connecting flange (6210) is arranged at the position of the cloth outlet (621). The outer half cloth receiving hopper (62) is connected to the lower box body (2) through the connecting flange (6210).

3. The slack type shower rope-like washing machine according to claim 1, characterized in that: The inner half cloth receiving hopper (61) and the outer half cloth receiving hopper (62) are connected through an intermediate connecting section (63).

Citation Information

Patent Citations

  • Continuous rope-shaped jetting water washer

    CN110409087A

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    CN111733558A

  • Loose type shower rope-shaped washing machine

    CN216156138U