Hardwood vs. Softwood in CNC woodworking

Every material has different properties and its own set of strengths and weaknesses, and what you’re using in the shop will play a key role in how you work with it and what you’re able to accomplish. Material has an impact on everything from tool choice and feed rate to cutting speed and beyond.

Working with wood is certainly no exception, and there are many different types to choose from to best complete a given project in the realms of furniture, cabinetry, signage, and more.

Here’s a closer look at how hardwoods and softwoods vary from one another, as well as a few popular examples of each to help launch your next CNC woodworking job.

 

Hardwood

Hardwood typically comes from deciduous trees (trees that shed their leaves in the fall) and is for the most part harder, darker, and more durable than softwood. They are great for cutting intricate details and for making smaller cuts, but make sure to check the RPM of your bit before you cut. If your RPM is too high, it can cause hardwood to start to burn right there on the router table.

Hardwood grows a bit more slowly than softwood, and because of this it can tend to be a bit more expensive, but it is still a long-lasting material great for crafting high-quality furniture, decks, flooring, and more. Here’s a look at several popular types of hardwoods and their key characteristics.

  • Ash is heavy and light in color with lots of rings in its grain.
  • Beech is strong, stiff, and shock-resistant, and its small pores mean it is less likely to splinter than a more porous alternative.
  • Birch is a stiff wood with a very light color and a wavy grain.
  • Cherry is a light reddish-brown hardwood that is strong and resistant to warping, making it a popular choice for carving.
  • Elm is light brown in color and tough, though it does have a fairly low decay resistance.
  • Mahogany is a strong reddish-brown wood with even pores and indistinct rings. It also works well for carving.
  • Maple is one of the hardest woods out there and is useful for its durability. It also resists electrical shock well and has even pores and grain.
  • Oak is heavy and hard and rarely breaks. Its ring grain is prominent, making it useful for beautiful visual applications.
  • Walnut is a strong, durable brown hardwood with a straight grain in its trunk that grows wavier toward the roots.

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Softwood

Softwood is mostly derived from coniferous trees (trees that have needles that don’t shed in the winter) and is often lighter in color. Most timber comes from softwood. It is often easier to cut but if your bit is dull or of poor quality, splintering is likely to occur.

Some softwoods are harder than others, so be sure you are selecting the right kind for your project. Furniture, doors, windows, and paper products are some popular uses of softwoods. Here are some popular kinds that could serve you well on your next CNC project.

  • Cedar is most noted for its distinct, pleasing aroma and its reddish-brown color. It can be somewhat challenging to work with due to its many knots, however.
  • Cypress is also known for having knots and is not particularly strong, though it does have good decay resistance.
  • Fir has an even consistent pattern and is fairly easy to work with.
  • Pine has a lighter pale color, is lighter in weight, and is resistant to shrinking.
  • Redwood is also noted for its red shade and is resistant to decay from sunlight.
  • Spruce is one of the harder softwoods and is fairly lightweight, though it is not decay-resistant.
  • Yew is harder than many hardwoods and is also easy to work with due to its straight grain. It resists decay well and has a medium strength and low stiffness.

Other types of wood

Medium-density fiberboard (MDF) is made of a mixture of hardwoods, softwoods, and wax and resin binders, and while it cuts smoothly and is easy to work with via CNC machines, it is many times recommended for projects that will be painted or otherwise hidden after being cut as it is not a very attractive material.

Plywood is created by layering sheets of material together with glue. Because of this, the direction of the grain changes from one layer to the next, making plywood more likely to chip or splinter. It is not recommended to produce high-level CNC work, but it can serve as a good material for practice cuts or economical processes.

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Electroplating Guide: What, How and Benefits

Electroplating is an important and indispensable link in the contemporary industrial chain and is widely used in numerous industries such as machinery, electronics, automobiles, aviation, and aerospace, etc. It plays a role in decorating, protecting, and increasing the functionality of various industrial products to enable them to meet various practical needs.

What is Electroplating?

How to definition electroplating? Electroplating is one of the post finishing processes from prototype design to mass production. By plating, a product can be given a beautiful appearance and at the same time provide corrosion protection.

Electroplating is also called electrodeposition, and the five basic hardware for the process are a DC power supply, a plating bath, a plating solution containing ions of the plated metal, anodes (the metal to be plated layer), and cathodes (the workpiece to be processed), and conductive rods, cables, and hangers. By connecting these five pieces of hardware to form a conductive circuit, the accumulation of plating ions on the surface of the processed part is achieved through the transfer of electrons, thus reducing it to a metal coating.

How does Electroplating work?

The electroplating process is an application of an electrolytic cell that requires two different metals, an electrolyte solution, two electrodes, and a battery or other power source that generates an electric current.

To begin, determine which anode and cathode and electrolyte to use by determining which chemical reaction or reactions you want to occur when the electric current is turned on.

The next step is to make sure that the electrodes you’re going to plate is entirely clean. Instead, when metal atoms from the electrolyte are deposited on it, they will not establish a strong bond and would rub off. Cleaning is usually accomplished by putting the electrodes in an acid solution or acidic mixture or (briefly) reversing the electroplating circuit. If the electrode is exceptionally clean, atoms from the plating metal form a strong link with it by adhering to the crystallographic craft’s exterior borders.

A positive ion is an atom with too few electrons. When they reach the cathode, they combine with electrons and lose their positive charge. A negatively charged ion is an atom with too many electrons. When they reach the positive anode, they transfer electrons to the anode and lose their negative charge.

In a form of electroplating, the metal to be plated is at the anode of the circuit and the material to be plated is at the cathode. After a period of reaction, the positively charged metal molecules will slowly migrate to the negatively charged metal surface, forming a very thin layer, which is called the coating.

Materials Are Used In The Electroplating Process

There are many different types of metal materials suitable for post-plating.Including nickel, chromium, brass, cadmium, copper sulfate, gold, silver, tin, and zinc. Nickel and brass are commonly used. We can recommend suitable metal materials and electroplating solutions for your project according to your specific electroplating requirements.

Which plastic materials can be electroplated

In addition to metallic materials, many different plastics can be plated in this way, including ABS, phenolic plastics, urea-formaldehyde, nylon, and polycarbonate. You will often find electroplating plastic parts on automobiles, plumbing, household, and electrical fittings that appear to be metal but are actually plated plastic.

How are plastics electroplated?

As you know that thick plastic layers never conduct electricity,  in practice, this implies we’ll need to treat our plastic differently to make it electrically conductible. There are various steps to this process. To begin, the plastic must be thoroughly cleaned to remove contaminants such as dust, filth, grease, and surface scratches. The surface is then etched with acid and treated with a catalyst (a chemical reaction accelerator) to ensure that a coating adheres to it. Let’s now dip it in a solution of copper sulfate or nickel to cover it with a thin layer of highly conductive metal. By applying these steps in appropriate way, plastic becomes electroplated such as metal.

Application of electroplating

Plating is an integral part of the manufacturing process and is used to improve corrosion resistance, wear resistance, and aesthetics. Plating is used in a wide range of industries and products, and there is a huge market demand for it. Here is a list of some of the industries that WayKen serves and how they use electroplating.

Automotive Industrial

Electroplating is used in the automotive industry to help extend the life of a vehicle, improve its dynamics, and enhance its decorative properties. For example, for shock absorber linkages, chrome plating has a positive effect on ensuring the corrosion resistance and lubricity of the shock absorber linkage. Modern automobile decorative parts use an electroplating process, which has the role of heat vibration resistance, decoration, and corrosion resistance.

Electronic Industry

Electroplating is an important means of anti-corrosion for electronic products, which can decorate the appearance and improve the texture and ornamental properties of products. In addition, electronic companies often use gold plating to improve electrical conductivity, applying it to semiconductors and connectors, functional plating is of great significance for electronic products.

Jewelry Industry

As society continues to develop and people’s aesthetic sense progresses, many types of plating available for jewelry plating have been developed in the modern gold and silver jewelry processing industry, such as gold plating, silver plating, platinum plating, rhodium plating, palladium plating, etc. for precious metal jewelry plating, in addition to rose gold plating, black gold plating, etc. Jewelry designers and manufacturers rely on this process to enhance the color, durability, and beauty of rings, bracelets, pendants, and various other items.

Medical Industry

Electroplating is used in the medical industry to improve the functionality of various aspects of medical equipment. For example, aluminum electroplating, electroplating steel, and other metals can be used to conduct heat and electricity, provide good wear resistance, corrosion resistance, form strong welds, create antibacterial, biocompatible surfaces, and create markers and braided bundles of catheters that X-rays cannot penetrate.

Aerospace industry

The electroplating process is one of the powerful means to improve the surface properties of materials used in aerospace. Plating, a naturally smooth and thin finish, enhances the wear resistance of aerospace components. For example, zinc-nickel is the ability to reduce the effects of thermal stress on aircraft components, and the nickel plating layer and titanium alloy material have good bonding ability, which can improve the surface properties of titanium electroplating.

Oil and Gas Industry

The electroplating process can greatly protect oil and gas tools and other components from corrosion, thus improving overall performance and longevity. Applications of the plating process can be found in other areas such as decorative items, defense, and military industries. Electroplating is also becoming more and more widely used.

10 Benefits of electroplating

The deposited layer obtained by electroplating is called the plating layer, which can protect the base material from environmental corrosion, improve the appearance of the base material and increase the aesthetics.

By application, electroplating applications layers can be divided into three categories: protective, protective decorative, and functional. Among them, functional plating layers include wear-resistant, friction-reducing, conductive and optical layers, which are suitable for various fields. According to the needs of the industry served, the corresponding plating layer is selected.

(1) Formation of protective barrier

A plating layer is formed on the workpiece substrate, which acts as a barrier against corrosion. It can make the parts last longer, extend the duration of use and reduce the replacement rate.

(2) Enhances the appearance

Products coated with a plating layer look more shiny and attractive. Especially for jewelry, manufacturers can use electroplating as a low-cost method to improve the overall quality of the product and enhance competitiveness.

(3) Reduce friction

Such as electroplating nickel-molybdenum disulfide composite coating, molybdenum disulfide has a lubricating effect, mechanical intercalation in the nickel coating, not only can reduce the friction factor of the friction sub, and can effectively prevent the high load generated by adhesive wear, with good friction reduction performance.

(4) Enhancement of electrical conductivity

Silver plating is a highly efficient process for manufacturing electronic and electrical components because it enhances the conductivity of the product and is a cost-effective solution for electrical conductivity.

(5) Absorption of excess hydrogen gas

It can absorb excess hydrogen gas that is usually generated when manufacturing catalytic converters for automobiles. This can improve the performance of catalytic converters.

(6) Prevents whisker formation

Zinc whiskers originate from stresses in the coating deposit, which are generated by internal or external forces. External stresses may originate from locations such as post-processing of the product, repetitive bending, or thermal expansion.

Zinc-nickel alloy coatings can be applied to the metal parts of raised floor components during the manufacturing process, and these coatings are considered “zinc whisker free”, zinc-nickel alloys, which can prevent the formation of whisker spikes from occurring during certain types of manufacturing operations, and can also significantly reduce the risk of arcing and short-circuiting in electrical components and assemblies caused by whiskers breaking away from the material.

The damage is caused by arcing and short-circuiting components due to whisker detachment.

(7) Thermal resistance

Electroplating has good heat resistance, such as gold plated or galvanized nickel can withstand extremely high temperatures. The use of these metal coatings can protect engine components from extreme temperature damage, thereby extending their service life.

(8) Generating magnetism

The most common reason for applying plating or coating to magnets is to prevent corrosion. If your application is used outdoors, exposed to the elements, or in a humid environment, corrosion is inevitable with untreated magnets. Electroless nickel plating is often used in magnetic applications, such as the manufacture of computer hard drives. Magnetism makes the disk easier to read.

(9) Increase hardness

Certain alloy materials are brittle and prone to breakage due to mechanical stress and impact. Metal plating or conformal coating adds a layer of protection to parts, making brittle materials more durable and strong. Parts plated surface is less susceptible to damage from impacts or drops, which can extend service life.

(10) Absorption of light and energy

Black chemical nickel plating absorbs the light and energy necessary for many manufacturing processes in the aerospace, automotive and aviation industries. It ensures compliance with Department of Defense guidelines and other industry standards.

summary

The quality of the basic raw materials used for copper electroplating production is directly related to the quality of the product and the production cost of electroplating. How to control the quality and cost of these raw materials has a lot to do with the selection of suppliers.

Therefore, selecting suppliers is also an important task to be done in electroplating and barrel plating production management. Determining the best manufacturing option is critical to your company’s efficiency. Electroplating is a functionally and economically beneficial option for a variety of applications, but you need to work with the right plating company to see all the benefits. The rack plating, electroless plating, and chromium plating also help to increase production level of manufacturing companies.

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Real Hardware Engineers Code: How to Use Code to Maximize Efficiency in Solidworks, Reporting & More

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Time to read: 6 min

Go, Go, Go—we’ve all heard the inspirational and aspirational desire of upper management to get it done, get it done right, and as always, get it done faster. One way to be more efficient as an engineer is to learn to code. In this blog post, I hope to help convince you to start coding in your mechanical engineering practice. At the end, I’ll show you how to set up two of my favorite Macros inside of Solidworks to help you make parts faster. 

Coding Can Maximize Your Engineering Time

There is only so much time in a day, and you, as an engineer, only have so many focused clicks before your mind starts to wander. My mind usually wanders from, “I want to go outside,” to tacos, to margaritas, to “What time is it? It’s five o’clock somewhere…” as I start to wiggle in my seat (Thanks, Jimmy). So, the real goal for you to be successful is to concentrate where your clicks are used. 

For mechanicals, you want to concentrate on clicking inside your wheelhouse engineering applications (CAD, FEA packages, MATLAB simulations, thumbing through engineering texts, data sheets). Why? Well, because that’s what is truly your job. Also, since you’re unlikely to get an admin anytime soon, you need to figure out a way to speed yourself up by becoming more efficient. 

A good senior mechanical engineer should be able to output 75-100 parts a year—all at different varying complexity, of course, but that’s a good target. So, if you think about it, if you are a perfect clicker, that’s a minimum of: file-save as- save as step- pick file location- pick name of file- save, 75 to 100 times. 

But wait: Your part goes into review, and someone wants a quick fix on a typo on your drawing. Repeat the clicks. And then, someone else wants another change, and you upload your file to the Fictiv platform and see that your hole diameter to depth ratio is not machineable. Repeat the clicks again. Oh, and you want to test it for 3D printing and need an STL. Click, click click. You realize you made a mistake. Update your model and click click click, again and again. 

Engineer your way to a better solution by learning to code. As Smokey the Bear would say…”Only YOU can prevent carpal tunnel.” 

Coding ultimately saves time; it’s just a muscle you have to work out for it to get stronger. If you don’t start, you’ll never get better. 

Why code? A script is entirely easier to review than, say, an Excel sheet (I used to TA for 3 classes of 60 students, plus my own engineering work —> no script, no help).

Excel sheets can be organized any which way, and most users don’t assign variables–they give cells values. F=ma. Something simple can turn into =c6*$f$3…and that’s simple, but already, you have no context what that means, without hunting in a spreadsheet trying to decode the original user’s Excel organization.  

Now, start actually doing unit conversion, adding in constants, and then everyone starts doing it differently inside the Excel matrix. F=ma in a script—well, it should automatically trigger some apple-falling-from-the-tree thoughts. 

With code, on the other hand, you can follow it step by step, and it’s easier to see fundamental engineering errors. Syntax will work itself out, because else:  # your code will not run. This, in and of itself, helps make reviewing engineering work more efficient for everyone involved.   

See my two side-by-side comparisons below, where I show a very basic engineering equation in Python and in Excel. The Python example is self-contained, and someone should be able to review it very quickly. The Excel example isn’t hard and can be decoded, but $E$5 doesn’t mean anything, unless you figure out what E5 is inside the sheet.

If your goal is to create a usable document, knowing how you got to the numbers in front of you is as important as the numbers you end up with. And knowing how you got to your answers is easier with a script. That script can allow you to speed up every task like it from that point on, with a little bit of upfront work. Hey, it’s more interesting than copy-pasting for hours every day.

I delved into C, C++, and MATLAB in college and ended up in a job where everyone used Excel. While I clearly wasn’t going to be able to convert a Fortune 500 company to MATLAB (although I have always succeeded at getting at least one license), I taught myself Visual Basic (VBA) macros and to write code that could fully automate gigantic spreadsheets and reports for Interface Control Documents (ICDs) for jet engines. 

Without code, someone could handle 30-50 ICDs. With code, the same person could handle 200 ICDs and multiple different engine programs. 

This is how I ventured into VBA: because I hated copying and pasting all day. Later, I learned that VBA could be used inside Solidworks, NX, and basically all Windows applications. 

To help you actually apply what I’ll teach you in this post, including how to get started with some basic VBA, a zip folder of Macros to increase efficiencies in Solidworks, and scripts for “Save as STEP” and “Export as PDF”, download this supplementary tools slide deck. 

Setting up Macros in Solidworks
Now, I’ll teach you how to add two of my most used Macros to Solidworks, to help you be more efficient. One exports your current Solidworks CAD file as a step to a folder on your desktop. The other exports your DWG file to a PDF file, to a folder on your desktop. This will allow you to upload them to Fictiv’s website faster, saving you clicks.

These two Macros will export your open DWG to PDF and append drawing pages for multi-page DWGs. One macro will also append the rev letter to the end of the file, if you use it. The other macro will export STP and append rev if you use the rev property in the SW file.

Download the supplementary tools here for a zip folder of Macros. 

To get the rev letter to appear, you need to use the property feature (File>>properties). If you don’t put that in or have anything in that value box (see images below), you will not get your rev control.

Fun fact: Here, if you look at the code, you could also automatically export other properties. If you look for the property towards the end of the code, you can see how you search for “Revision” and get its value. If you use Solidworks and define the material as an example, you should be able to figure out how to extract that from your properties in your code.

Table: Script for getting revision and saving as step

You can also see how save as “step” is done. You could easily make this macro save as an “.stl” I bet you’re smart enough to figure that out. (Make sure to save it as a new script and make it its own button, so you can still make steps, too!).

How to Add These Macros as Buttons Inside Solidworks: 

For the step export, you want to be in the part environment (modeling area) to add a button (as this is where your CAD file is).

For export PDF, you want to be in the DWG environment (as this is where your SWDW is).

Edit these Macros: 

Sw>>Tools>> Macro>>Edit 

Under the file location, copy and paste in a location of your choice for the output of both macros in between the quotes “your_file _location“:

The reason this is hard-coded is to speed things up. Guiding you to select the directory doesn’t help speed you up. I only export stuff when I’m sending it elsewhere (quality release, Fictiv, etc).

Note: You actually have to create a folder and copy its location. The code will not auto-generate this folder for you if it doesn’t exist. In Tables 1 and 2, I’ve copied the code to show you in red highlighting where you need to update your code to work. 

Here is a screenshot of the edit tool from inside the Solidworks VBA edit window:

Code Can Help You Get Work Done Faster

I learned to code in college because I had to. Then, I learned it better because it was the only way I could handle all my TA and RA responsibilities, while also managing my own workload. That perspective then rolled into my work life because it was always the same—too much to do, and not enough time. I encourage you to do the same, in order to maximize your efficiency and save you clicks (and save your wrists).

Don’t forget to download the supplementary tools to help you get started.

And speaking of efficiencies, Fictiv exists to help speed you up and alleviate you from frustrating admin work (!) so your smart engineering brain can be focused on creating the next big thing. So be sure to check out our digital manufacturing platform for instant quotes, automated DfM, and access to a wide range of capabilities for mechanical parts through a single platform.

A Brief History of CNC Machining

From workshops to large industrial plants, computer numerical control — or CNC — machines have become integral parts of the production and manufacturing industries. The history of CNC machining dates back to when it was simply referred to as numerical control. This was an older system that didn’t involve programmable computers.

The history of CNC machines dates back to John Parsons, who is credited with the first CNC machine. CNC technology has evolved for several decades from punch tape-controlled devices to computer-programmable machines.

Today, engineers continue producing CNC machinery with better speed and accuracy through automated precision.

Fictiv’s custom CNC machining service helps teams with their projects every day, delivering high-quality parts with fast lead times. Create an account to get your instant quote.

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Gold Vs. Crypto: Which One Is a Better Investment?

The crypto industry has been on a whirlwind ride.

In late 2022, the cryptocurrency market was tormented by scandals, falling prices, and investors fleeing the industry for safer havens, including gold and precious metals.

This has led some investors to question whether cryptocurrencies and Bitcoin, in particular, are able to play a similar role to gold within an investment portfolio.

Let’s start with the basics and take a look at the key similarities and differences between gold and cryptocurrencies.

Gold and crypto: how are they similar?

Both gold and bitcoin are in limited supply

While gold has been in use for centuries, it has a finite supply. In the same way, Bitcoin's total supply is just 21 million.

Both gold and bitcoin are alternatives to fiat currencies

Gold was used as money in the past and can be converted to cash in almost any currency. Bitcoin, meanwhile, is being increasingly integrated into various global payment systems.

However, comparing gold’s and bitcoin’s use as a form of payment, bitcoin might hold an edge, since it is a fixed unit of account that’s easily divisible and transportable.

Gold, in contrast, might not be as easily divisible on the spot, especially if you own bigger gold bars.

Gold and crypto: how are they different?

Gold has been around much longer than bitcoin

Bitcoin first appeared in 2009, so, as an asset, it hasn’t even reached adulthood. Gold, however, is what you might call its elder peer, as its history dates back more than 5,000 years.

You can touch gold, but you can’t touch bitcoin

Bitcoin is a digital currency that exists only digitally and can be bought only online. So, obviously, you can’t actually touch it, unlike gold bars and coins.

Gold, in contrast, is a physical asset that you can touch and buy online or in a physical store.

Nordic Swedish style dual purpose sisal cat nest (large size)

Nordic Swedish style cool color cat nest Nordic design multi-functional cat sisal bucket, tree hole design, combines the advantages of scratching post, cat nest and climbing frame, fashionable style and practical function;
The semi-enclosed setting and large-area sisal blanket meet the daily needs of cats.

Size: Large size 37 x 37 x 80cm|Small size 38 x 38 x 56cm

Enjoy the joy of sharpening your claws
A large area of ​​sisal blanket covers the wall of the tube, so that naughty kittens can no longer destroy the furniture and can grind their claws to relieve stress.

Comfortable and stable top bed
The lambswool soft pad is placed on the top, which is comfortable and skin-friendly and does not shed hair. It is convenient for daily hair cleaning and allows cats to lock in a fixed place for sleeping.

A practical choice for multi-cat households
The multi-layer square tube design only takes up the area of ​​a chair, allowing cats to have their own small room.

Decorate your home with Nordic design
The simple and elegant Nordic design highlights the practical functions of the product, and the low-key and elegant gray color makes the cat home more tasteful.

Gain a sense of security
The cat nest in the tree hole where you can safely hide has a spacious interior that is safe but not oppressive, allowing the cat hiding inside to have a peaceful dream.

product details
The fashionable sofa cloth of high-quality fabrics is combined with lamb velvet, which is simple and elegant, high quality, strong and durable.

It is full of space. The internal space is 30% larger than that of traditional sisal buckets. The multi-layered spaces are interconnected, allowing cats to move freely.

Double-sided sisal is made of 100% natural sisal and is finely woven to make a thickened sisal blanket, which is strong, scratch-resistant and does not shed chips.

Easy to clean and removable lambswool nest pad makes it easy to clean hair and keep it clean and tidy at all times.

The solid plate barrel body is made of PVC plate with strong pressure resistance and flexibility, which is strong, durable and not easy to be damaged.

Precautions

  1. Avoid high-temperature washing and sunlight exposure;
  2. Clean the inner pad regularly to reduce bacterial growth.

Product parameters

  • Product material: lambswool, sofa cloth, sisal blanket, PVC board
  • Product size: Large size 37 x 37 x 80cm | Small size 38 x 38 x 56cm
  • Since the dimensions are all measured by hand, there may be slight errors. Please refer to the actual product.
  • Precautions:
    The products are all newly produced and transported in a sealed manner. The wood board material will have a slight smell and does not affect health. It only needs to be placed in a ventilated place for 3-5 days;
    It is recommended to wipe it with a damp cloth and avoid washing it with water;
    Cats are curious and wary of unfamiliar things. In the early stage, it is recommended to put items with a familiar smell inside for proper guidance.
  • Please measure the required dimensions clearly. Reasons for exchange, return or refund due to inconsistent dimensions after purchase will not be accepted.
  • Since the dimensions are all measured by hand, there may be slight errors. Please refer to the actual product.
  • Made in China, or containing simplified Chinese packaging and instructions
  • In case of any dispute, Pets Thing reserves the right of final decision.

Halloween Pumpkin Plush Pumpkin Stuffed Pillow

Basic Info.

Model NO.
YKML03

Material
Cotton

Age Group
Adults

Feature
Anti-Pilling, Portable

Type
Pillow

Knitting Method
Stuffed

Pattern
Embroidered

Usage
Home, Travel, Airplane, Picnic, Hospital, Bath, Hotel

Payment
T/T

Place of Origin
China

Logo
Custom Logo

Shipping
by Sea

Event
Gift

Name
Plush Bear

MOQ
1000PCS

Character
Lovely

Technology
Embroidery

Transport Package
Export Carton

Specification
Customized Size

Trademark
YK

Origin
China

HS Code
9503002100

Production Capacity
3000000/Month

Product Description

Halloween Pumpkin plush pumpkin stuffed pillow 

 

 

Other Information

Size 15cm Material Super soft plush and stuffed with PP Cotton Color Standard as per picture or according to your requirement Logo Embroidery or printing, can be customized Label or hang tag Can be customized Packing 1pc/polybag inside, export carton outside Sample time About 3-5 working days Production time About 25 days, or according to order quantity Price terms FOB Shenzhen, China or negotiable Payment terms 30% deposit + 70% before shipment, or negotiable MOQ 3000pcs, or negotiable OEM/ODM Welcome Safety Eco-friendly Standard ICTI, SGS, ISO, BV, CE, EN71, ASTM Production capacity 300,000pcs per month

Packing & Shipping

 

Packing: 1pc/polybag inside

export carton outside; or according to your requirement

Shipping: for sample: by FedEx/DHL/TNT/UPS/EMS;

for mass products: by Sea or by Air

Our Service

1. For all your inquires, we will reply you detailedly within 24 hours.

 2. We have good sales person with responsibility sense and good English.

 3. We provide OEM service. Can customize logo and label and hang tag. Can customize the retail packing box according to your requirement.

4. We have professional plush toy designer with rich experience and we can provide ODM service.

Company Information

Dongguan Yi Kang Plush Toys Co., Ltd., Located in Dongguan city, Guangdong province, China. We are specializing in all kinds of plush toys for over 13 years, Covers an area of over 5000 square meters, Has over 500 employees and 200 sets of machines and equipments. Our products have been exported to many European and American countries and regions. We will do our best to provide good products and services for you.

 Welcome to visit us!

FAQ

Q1. Which material can be used for plush toy?
The plush toy can be made by soft fleece, plush fleece, stuffed by PP cotton or Foam Particle . We can recommend the fit material according to your design.

 Q2. Can you make the color of the plush toy as we need?

 Yes, You can appoint the color you need for the toy. Give the PMS color number to us. If the quantity you need is small, we can find the similar material as you need. If the quantity is big, we can customize the fabric as the Pantone color you need.

 Q3. How about the logo?
We will make your logo by printing or embroidery method according to your requirement.

Q4. Can you help for design?
Yes, We have our own designer, you can give your logo and idea to us, we can provide the design work.

Q5. How can I get the sample?
 After approved the design, material and printing or embroidery,  You pay the sample cost, we will make the sample for you, give the photos of the sample once we finish it, if you feel ok, we will send the sample to you.

 Q6. How can I control the quality of the goods?
We have strict quality control in production process.
You can arrange the third party inspection company come to our company to inspect the goods after the mass production has been finished.

 

 Q7. How about the shipping?
You can use your own forwarder to ship the goods. We will deliver the goods to your forwarder’s wearhouse. 
We also have good cooperated forwarder, if you are not convenient at this part, we can arrange our forwarder to ship the goods for you.