色久在线I久久精品reI91视频99I北条麻妃91在线I人人爽人人乐I私人avI狠狠干狠狠艹I重囗另类BBWSeⅹHD黑料I亚洲欧洲日韩在线观看

news

Focus on current issues

What are the trial steps for injection molds?

Optimize mold design and process parameters, avoid unnecessary errors, achieve a multiplier effect, and meet the high-quality requirements of mass production. In this way, even if the materials, machine settings or environmental factors change, a stable and uninterrupted mass production environment can still be ensured. Most of the defects of molded products are caused during the plasticization and injection molding stages, but improper mold design and poor mold structure are the root causes! Trial mold influence factors: mold cavity number, cold/hot runner system design, injection inlet Type, location and size, as well as the structure of the product itself. Therefore, in order to avoid product defects caused by mold design, we need to analyze the mold design and process parameters when making the mold. It needs to be emphasized that the purpose and focus of mold trial is to optimize the mold and process to meet the requirements of mass production, not just to test out good product samples.

The first step: mold dry run test
1. Inspection of mold opening and closing under low pressure
2. Inspection of mold ejection system (under low pressure)
3. Inspection of mold reset
4. Check the movement of the row position (slider), mold dry run test

Step 2: Test the balance of the injection molding cavity
1. Continuously hit 5 molds in turn, and weigh their weight
2. Record the weight of each product in each mold
3. Reduce the injection volume and fill up 3 molds each with 20%, 50%, and 90% samples in sequence
4. Weigh and record the weight of each of the above products
5. If the difference between the maximum weight and the minimum weight of the product is less than 2% of the weight, it is acceptable-if the weight fluctuation error is within 2%, it indicates that the cavity is balanced, otherwise the injection is not balanced
6. If it is a single-cavity mold, it is also necessary to test the balance of the injection of glue (observe the actual situation of the glue).

The third step: the test of the holding time (gate freezing) time
1. When the pressure holding time is set to 1 second, 3 molds are formed each time
2. As shown in the table, increase the pressure holding time and reduce the cooling time in order to make the whole cycle unchanged (until the gate is frozen and sealed and the product weight does not increase) Ⅲ. Set multiple different as shown in the figure below Holding pressure time, each time forming 3 mold products, weigh the product weight in the specified cavity, and record the data in the table in turn. Ⅳ. Determine the better holding pressure time according to the chart.

The fourth step: the determination of a better clamping force
1. When the holding pressure switch position/holding pressure is set to the best, the clamping force is set to within 90% of the maximum clamping force, 3 molds are formed, and the weight of each mold product is recorded
2. The clamping force is reduced by 5Ton in turn, 3 molds are formed each time, and the product weight of each mold is recorded until the weight of the product suddenly becomes larger, and the weight increases by about 5% when flashing around the product begins to determine the better clamping force.

The fifth step: the determination of a better cooling time
1. When the injection molding process conditions are appropriate (after the product is full), estimate the cooling time (primarily choose a longer cooling time to completely cool the product), shoot 3 molds, and measure its size
2. Record the product size in the table and observe the deformation of the rubber parts. Ⅲ. Reduce the cooling time of the product by 1 second, and hit 3 molds. Ⅳ. Reduce the cooling time until the product begins to deform and the size begins to decrease. Ⅴ. Each cooling time The size of the injection molded product should be measured after the plastic part is fully cooled (about 15 minutes). Ⅵ. The basis for determining a better cooling time-the determination of a better cooling time considering the dimensional stability of the product

Step 6: Test the flow of cooling water
1. When the injection molding process conditions are appropriate (after the product is full), estimate the cooling time (primarily choose a longer cooling time to completely cool the product), shoot 3 molds, and measure its dimensions. Ⅱ. Record in the table below Product size, observe the deformation of the plastic parts
2. The product cooling time is reduced by 1 second, and 3 molds are used. Ⅳ. Reduce the cooling time until the product begins to deform and the size begins to decrease. Ⅴ. The product injected during each cooling time should be fully cooled after the plastic part is fully cooled ( It takes about 15 minutes) to measure its size. Ⅵ. The basis for determining a better cooling time-a test that considers the dimensional stability of the product and the flow of cooling water

Step 7: Test the uniformity of mold cooling
1. Use a mold temperature measuring instrument to measure the temperature of 10 points in each of the core and cavity, and record them in the table below
2. The difference between the actual temperature at each measurement point and the average value should be less than 2°C. If the difference from the average value exceeds 2°C, it indicates that the mold cooling effect is uneven, and the cooling system mold cooling uniformity test should be improved.

Step 8: Determine the best injection speed
1. Record hydraulic oil temperature, melt temperature and mold temperature
2. Set the end position of the sol first, and only use the first level of glue
3. Set the holding pressure and holding time to zero, and after determining the starting position of injection, gradually increase the injection speed
4. Adjust the injection speed and fill to 95% of the rubber part (observe whether there is any padding, leave a 5-10mm padding amount)
5. Record the highest injection speed reached when filling to 95% of the rubber part
6. Record the highest injection speed and peak pressure of injection in the "Injection Speed ??Analysis Data Sheet"
7. Gradually reduce the injection speed, increase the injection pressure, observe and record the peak injection pressure when the rubber is filled to 95% of the position
m.ydjsjt.com

主站蜘蛛池模板: 成人在线免费观看网站 | 久久99精品久久久久久久久久久久 | 人人澡人人澡人人 | 一区二区三区四区五区在线视频 | 欧美在线视频a | 99精品在线观看 | 精品国偷自产国产一区 | 狠狠婷婷| 日韩在线无 | 夜夜操网 | 久久久久久久久久福利 | 国产亚州精品视频 | av高清在线观看 | 99视频在线观看一区三区 | 亚洲特级毛片 | 久久久久亚洲最大xxxx | 一级黄色片在线 | 99久久婷婷国产精品综合 | 一本一道波多野毛片中文在线 | 91九色成人蝌蚪首页 | 久久夜色精品国产欧美乱极品 | av不卡网站| 国产精品igao视频网入口 | 精品美女国产在线 | 久久情侣偷拍 | 蜜臀av性久久久久蜜臀aⅴ四虎 | 久久视频精品在线观看 | 麻豆视频免费在线播放 | 99精品久久久久久久久久综合 | 亚洲精品视频网 | 国产大片黄色 | 一级c片| 欧美亚洲专区 | 2018好看的中文在线观看 | 精品日韩在线一区 | 一级性视频 | 日韩高清激情 | 欧美成人精品在线 | 久草精品视频在线播放 | 亚州av免费 | 狠狠干在线 | 国内精品久久久久久久 | 免费在线观看日韩视频 | 亚洲aⅴ乱码精品成人区 | 国产成人91| 亚洲精品 在线视频 | 婷婷久久丁香 | 91尤物国产尤物福利在线播放 | 免费视频二区 | 91片黄在线观看动漫 | 九九热在线观看视频 | 伊人色播 | 成人久久18免费网站 | 一区二区三区高清在线 | 麻豆一区二区三区视频 | 日日操日日操 | 国产一区影院 | 天天舔天天搞 | 麻豆94tv免费版 | 69亚洲视频 | 欧美日韩午夜在线 | 香蕉久草| 91av99| 久久夜夜爽 | 日韩av看片 | 一本一本久久a久久精品牛牛影视 | 国产区免费在线 | 欧美污污网站 | 蜜臀av性久久久久蜜臀aⅴ涩爱 | 国产精品一区二区三区在线免费观看 | 亚洲精品中文在线观看 | 97超碰中文 | 波多野结衣电影一区二区三区 | 欧美网站黄色 | 亚洲综合视频在线观看 | 成人午夜影院在线观看 | 我爱av激情网 | 国产精品久久久久久久久久直播 | 精品福利网站 | 日韩中文免费视频 | 日本一区二区三区免费观看 | 成年人网站免费在线观看 | 久久国产精品免费一区二区三区 | 亚洲国产伊人 | 在线观看国产www | 97视频在线免费观看 | 亚洲国产一二三 | 欧美日韩一二三四区 | 久操操| 国产精品免费久久久久久 | 久久久久观看 | 在线免费视频a | 99久久精品免费视频 | 狠狠色噜噜狠狠狠 | 中文字幕第一页av | 久久精品com| 狠狠做六月爱婷婷综合aⅴ 日本高清免费中文字幕 | 亚洲国产大片 | 草在线|